76 research outputs found

    Boron nitride nanosheets/PNIPAM hydrogels with improved thermo-responsive performance

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    Thermo-responsive hydrogel is an important smart material. However, its slow thermal response rate limits the scope of its applications. Boron nitride nanosheet-reinforced thermos-responsive hydrogels, which can be controlled by heating, were fabricated by in situ polymerization of N-isopropylacrylamide in the presence of boron nitride nanosheets. The hydrogels exhibit excellent thermo-responsiveness and much enhanced thermal response rate than that of pure poly(N-isopropylacrylamide) hydrogels. Interestingly, the hydrogels can be driven to move in aqueous solution by heating. Importantly, the composite hydrogel is hydrophilic at a temperature below lower critical solution temperature (LCST), while it is hydrophobic at a temperature above LCST. Therefore, it can be used for quick absorption and release of dyes and oils from water. All these properties demonstrate the potential of hydrogel composites for water purification and treatment

    Combining Cell-Free Protein Synthesis and NMR Into a Tool to Study Capsid Assembly Modulation

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    International audienceModulation of capsid assembly by small molecules has become a central concept in the fight against viral infection. Proper capsid assembly is crucial to form the high molecular weight structures that protect the viral genome and that, often in concert with the envelope, allow for cell entry and fusion. Atomic details underlying assembly modulation are generally studied using preassembled protein complexes, while the activity of assembly modulators during assembly remains largely open and poorly understood, as necessary tools are lacking. We here use the full-length hepatitis B virus (HBV) capsid protein (Cp183) as a model to present a combination of cell-free protein synthesis and solid-state NMR as an approach which shall open the possibility to produce and analyze the formation of higher-order complexes directly on exit from the ribosome. We demonstrate that assembled capsids can be synthesized in amounts sufficient for structural studies, and show that addition of assembly modulators to the cell-free reaction produces objects similar to those obtained by addition of the compounds to preformed Cp183 capsids. These results establish the cell-free system as a tool for the study of capsid assembly modulation directly after synthesis by the ribosome, and they open the perspective of assessing the impact of natural or synthetic compounds, or even enzymes that perform post-translational modifications, on capsids structures

    New way for green and low-carbon development of coal industry under the target of “daul-carbon”

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    Under the background of “dual-carbon” goal and current technological conditions, coal, waste and carbon constitute an impossible triangle in the coal industry which severely constrains its green, low-carbon, and sustainable development. Adhering to the principles of treating waste with waste and returning the waste to where it comes from, with a focus on the three-dimensional perspectives of damage reduction in coal mining, the functional utilization of mining waste, and low-carbon disposal of carbon in mining industry, this paper explores a synergistic development path for coal, waste and carbon. It provides a comprehensive solution to unravel the impossible triangle and promote the overall green, low-carbon development of coal industry. The specific contributions of this work include: ① Clarifying the scientific connotation of damage reduction in coal mining, the spatial combination characteristics of aquifers in the ecologically fragile areas, the movement patterns of overlying strata under the application of coal mining damage reduction techniques, and the surface deformation patterns resulting from overlying strata damage; proposing the original technologies of drilling-backfilling-retention for section pillar extraction, narrow strip mining with backfill, and backfilling behind fully-mechanized longwall face aiming to address the challenges posed by damage reduction mining; ② Interpreting the scientific connotation of functional utilization for mining waste; clarifying the scientific issues related to the modification methods and mechanisms of magnesium-coal-based solid waste material, the mechanisms of synergistic interactions among diverse solid wastes, and the properties control of total solid waste backfilling materials. These efforts have led to the establishment of a key technological system for the functional utilization of solid waste, with a core focus on the modification of solid waste raw materials, the development of solid waste-based cementitious materials, and the preparation of solid waste based backfilling materials; ③ Elucidating the scientific connotation of low-carbon disposal of carbon with a scientific practical framework and implementation pathway; clarifying some scientific issues related to mineralization material preparation, storage space construction, CO2 storage and control mechanisms, the long-term environmental effects of CO2 storage, and reservoir stability in the low-carbon disposal process of carbon. The scientific issues related to mineralization material preparation, seal space key technologies such as fractured space CO2 storage and CO2 sequestration through coal mine carbon solidification are explicitly defined which results in a new model for achieving a low-carbon CO2 storage in coal mine goaf. Based on the green, low-carbon and sustainable development of coal industry, it is of great significance to collaboratively promote the damage reduction in coal mining, the functional utilization of mining waste, and the low-carbon disposal of carbon. This coordinated effort plays a crucial role in advancing the realization of the dual-carbon goal in the coal industry

    SARS-CoV-2 spike-reactive naĂŻve B cells and pre-existing memory B cells contribute to antibody responses in unexposed individuals after vaccination

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    IntroductionSince December 2019, the emergence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) causing coronavirus disease 2019 (COVID-19) has presented considerable public health challenges. Multiple vaccines have been used to induce neutralizing antibodies (nAbs) and memory B-cell responses against the viral spike (S) glycoprotein, and many essential epitopes have been defined. Previous reports have identified severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) spike-reactive naĂŻve B cells and preexisting memory B cells in unexposed individuals. However, the role of these spike-reactive B cells in vaccine-induced immunity remains unknown.MethodsTo elucidate the characteristics of preexisting SARS-CoV-2 S-reactive B cells as well as their maturation after antigen encounter, we assessed the relationship of spike-reactive B cells before and after vaccination in unexposed human individuals. We further characterized the sequence identity, targeting domain, broad-spectrum binding activity and neutralizing activity of these SARS-CoV-2 S-reactive B cells by isolating monoclonal antibodies (mAbs) from these B cells.ResultsThe frequencies of both spike-reactive naĂŻve B cells and preexisting memory B cells before vaccination correlated with the frequencies of spike-reactive memory B cells after vaccination. Isolated mAbs from spike-reactive naĂŻve B cells before vaccination had fewer somatic hypermutations (SHMs) than mAbs isolated from spike-reactive memory B cells before and after vaccination, but bound SARS-CoV-2 spike in vitro. Intriguingly, these germline-like mAbs possessed broad binding profiles for SARS-CoV-2 and its variants, although with low or no neutralizing capacity. According to tracking of the evolution of IGHV4-4/IGKV3-20 lineage antibodies from a single donor, the lineage underwent SHMs and developed increased binding activity after vaccination.DiscussionOur findings suggest that spike-reactive naĂŻve B cells can be expanded and matured by vaccination and cocontribute to vaccine-elicited antibody responses with preexisting memory B cells. Selectively and precisely targeting spike-reactive B cells by rational antigen design may provide a novel strategy for next-generation SARS-CoV-2 vaccine development

    Synthesis, Biological Evaluation and Mechanism Studies of Deoxytylophorinine and Its Derivatives as Potential Anticancer Agents

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    Previous studies indicated that (+)-13a-(S)-Deoxytylophorinine (1) showed profound anti-cancer activities both in vitro and in vivo and could penetrate the blood brain barrier to distribute well in brain tissues. CNS toxicity, one of the main factors to hinder the development of phenanthroindolizidines, was not obviously found in 1. Based on its fascinating activities, thirty-four derivatives were designed, synthesized; their cytotoxic activities in vitro were tested to discover more excellent anticancer agents. Considering the distinctive mechanism of 1 and interesting SAR of deoxytylophorinine and its derivatives, the specific impacts of these compounds on cellular progress as cell signaling transduction pathways and cell cycle were proceeded with seven representative compounds. 1 as well as three most potent compounds, 9, 32, 33, and three less active compounds, 12, 16, 35, were selected to proform this study to have a relatively deep view of cancer cell growth-inhibitory characteristics. It was found that the expressions of phospho-Akt, Akt, phospho-ERK, and ERK in A549 cells were greater down-regulated by the potent compounds than by the less active compounds in the Western blot analysis. To the best of our knowledge, this is the first report describing phenanthroindolizidines alkaloids display influence on the crucial cell signaling proteins, ERK. Moreover, the expressions of cyclin A, cyclin D1 and CDK2 proteins depressed more dramatically when the cells were treated with 1, 9, 32, and 33. Then, these four excellent compounds were subjected to flow cytometric analysis, and an increase in S-phase was observed in A549 cells. Since the molecular level assay results of Western blot for phospho-Akt, Akt, phospho-ERK, ERK, and cyclins were relevant to the potency of compounds in cellular level, we speculated that this series of compounds exhibit anticancer activities through blocking PI3K and MAPK signaling transduction pathways and interfering with the cell cycle progression

    Production, assemblage et analyse par RMN à l'état solide de différents formes de la capside du virus de l'hépatite B

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    Hepatitis B is a widely spread liver disease which causes a heavy burden for human health, with 257 millions of people affected by chronic infection and about 780,000 deaths per year. Yet, infected patients can not be completely cured by current treatments using notably nucleos(t)ide analogues and interferons. In order to achieve the goal of the World Health Assembly (WHA), who wishes to eliminate hepatitis B by 2030, new therapies need to be developed. Given its critical role for the Hepatitis B virus (HBV) life cycle, the core protein (Cp) is today one of the antiviral targets with the highest potential. Our research focuses on the characterization of HBV capsids in different conformational states using biochemistry and solid-state NMR, aiming at revealing their precise conformation under different conditions, including the interaction of capsids with antivirals, and the correlation between capsid conformation and viral maturation. For sample preparation, both a bacterial expression system and a wheat germ cell-free protein synthesis system have been established in the laboratory to produce HBV capsids, and protocols to disassemble and reassemble capsids with different nucleic acids have been implemented. Both capsids preformed in E. coli and capsids reassembled in vitro were addressed to NMR studies. Different capsids forms include the truncated versions Cp140 and Cp149, the full length protein Cp183, the phosphorylated P-Cp183 and mutant forms. First, we have prepared samples for the sequential assignment of the protein using solid-state NMR. The use of carbon-13 detection asks for several tens of milligrams of sample, which were produced using labeled isotopes and bacterial expression in minimal media. Sequential assignments were performed using the truncated capsid Cp149, which showed highly similar spectra to Cp183. This sample was also used to identify conformational differences between the four different monomers in the capsid, which are due to the T=4 icosahedral symmetry. Then, the main body of the thesis is the investigation and comparison of a variety of different capsid forms, including Cp183, P-Cp183, Cp149, Cp140, another truncated form resulting in mainly T=3 icosahedral assemblies, and Cp140 C61A and Cp183 F97L mutants. We investigated all samples in both the E. coli-produced and reassembled forms, which needs for the full-length protein the presence of nucleic acids, of which we tested several, including the viral pregenomic RNA. We investigated different symmetries, as well as oxidation states of the capsid, and compared the differences via chemical shift perturbations observed in NMR spectra. We reported in a site-specific manner the major conformational changes observed between the different preparations. Proton-detected solid-state NMR at 100 kHz has recently emerged as a tool for analyzing proteins with the need of less sample amount. We have applied this strategy to the analysis of the Cp149 capsids, in order to obtain sequential assignments of the amide proton resonances. For this, deuteration of the protein in bacteria was used as well, needing adaptation of sample preparation protocols. Proton detection can be successfully combined with cell-free protein synthesis, which gives low yields compared to bacterial expression. This approach is of potential interest to analyze capsid assembly modulation induced by the presence of drugs. While we have started in the framework of this thesis to analyze the capsid in presence of different capsid assembly modulators by carbon-13 detected NMR on E. coli and reassembled capsids (preliminary results not reported here), proton detection opens the way to an analysis of the impact of capsid modulation directly on the exit of the core proteins from the ribosome, on assembly. We showed that cell-free expression combined with proton-detection solid-state NMR can be used to analyze capsid chemical shifts, and thus in future work the conformational modulationsL’hépatite B est une maladie du foie qui pose un problème majeur de santé publique. Il n’existe à ce jour aucun traitement permettant de guérir complètement de l’infection, et de nouvelles thérapies ont besoin d’être développées. Étant donné son rôle clé dans le cycle de vie du virus de l’hépatite B (VHB), la protéine core qui forme la capside virale est aujourd’hui l’une des cibles avec le plus grand potentiel thérapeutique. Nos recherches sont focalisées sur la caractérisation des capsides du VHB dans différents états conformationnels en utilisant des techniques de biochimie et de RMN du solide, afin de révéler leur conformation précise sous différentes conditions, incluant l’interaction des capsides avec des antiviraux, et la relation entre la conformation de la capside et la maturation du virus. Un système d’expression bactérienne ainsi qu’un système acellulaire de synthèse de protéine à base de germes de blé ont été établis au laboratoire pour produire les capsides, et des protocoles pour désassembler puis réassembler les capsides en présence de différents types d’ARN ont été implémentés. Des échantillons de capsides formées dans E. coli et réassemblées in vitro ont été analysés par RMN. Les différentes formes de capsides observées incluent les protéines tronquées Cp140 et Cp149, la protéine entière Cp183, phosphorylée P-Cp183, et enfin des mutants. Dans un premier temps, nous avons préparé des échantillons pour l’attribution séquentielle de la protéine core par RMN du solide. L’utilisation de la détection carbone en RMN requiert plusieurs dizaines de milligrammes d’échantillon, qui ont pu être produits en utilisant l’expressions bactérienne en milieu minimum contenant des isotopes marqués. Les attributions séquentielles ont été réalisées sur la protéine tronquée Cp149, qui donne des spectres très similaires à Cp183. Cet échantillon a également été utilisé pour identifier les différences conformationnelles entre les 4 monomères de la capside, qui sont provoquées par la symétrie icosaédrale T=4. Ensuite, l’objet principal de cette thèse a été l’investigation et la comparaison d’une large variété de capsides, dans leur forme autoassemblée dans les bactéries E. coli, ainsi que dans leur forme réassemblée. Pour le réassemblage de la protéine entière, qui requiert la présence d’acides nucléiques, nous avons testé différents types d’ARN y compris l’ARN viral prégénomique. Nous avons étudié différentes symétries (T=3 et T=4), ainsi que les états d’oxydation de la capside, et comparé les différences de conformation grâce aux perturbations de déplacements chimiques observées dans les spectres RMN. Nous avons pu identifier les acides aminés impliqués dans les changements conformationnels majeurs entre les différentes préparations. La RMN du solide en détection proton à 100 kHz a récemment émergé comme un outils important pour l’analyse de protéines produites en quantités moindres. Nous avons appliqué cette stratégie à l’analyse des capsides de Cp149 afin d’obtenir l’attribution des protons amides. La détection proton par RMN du solide peut être combinée avec succès à la synthèse des protéines en système acellulaire, qui donne de faibles rendements par rapport aux cultures en bactéries. Cette approche est particulièrement intéressante pour analyser la modulation de l’assemblage des capsides induite par la présence de drogues. Bien que nous ayons commencé à étudier l’impact de modulateurs d’assemblage par RMN en détection carbone sur des capsides formées dans E. coli et réassemblées (données préliminaires non montrées dans ce manuscrit), la détection proton ouvre la voie vers l’analyse de l’impact de ces modulateurs sur l’assemblage des protéines core directement à la sortie du ribosom

    Study on the Problems and Countermeasure in the Animal Products Quality and Safety

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    As the supply chain of animal products is long, there are many factors which would influence the quality safety of animal production. Therefore, by focusing on the present and having a vision for future, Jiaozuo government promulgated Ten Polices on the Food Safety in Jiaozuo City, which pushed forward the technological development, intensified measures to monitor the quality of animal products, set up a series of mechanism, and provided reference for the food quality and safety monitoring

    Production, assemblage et analyse par RMN à l'état solide de différents formes de la capside du virus de l'hépatite B

    No full text
    L’hépatite B est une maladie du foie qui pose un problème majeur de santé publique. Il n’existe à ce jour aucun traitement permettant de guérir complètement de l’infection, et de nouvelles thérapies ont besoin d’être développées. Étant donné son rôle clé dans le cycle de vie du virus de l’hépatite B (VHB), la protéine core qui forme la capside virale est aujourd’hui l’une des cibles avec le plus grand potentiel thérapeutique. Nos recherches sont focalisées sur la caractérisation des capsides du VHB dans différents états conformationnels en utilisant des techniques de biochimie et de RMN du solide, afin de révéler leur conformation précise sous différentes conditions, incluant l’interaction des capsides avec des antiviraux, et la relation entre la conformation de la capside et la maturation du virus. Un système d’expression bactérienne ainsi qu’un système acellulaire de synthèse de protéine à base de germes de blé ont été établis au laboratoire pour produire les capsides, et des protocoles pour désassembler puis réassembler les capsides en présence de différents types d’ARN ont été implémentés. Des échantillons de capsides formées dans E. coli et réassemblées in vitro ont été analysés par RMN. Les différentes formes de capsides observées incluent les protéines tronquées Cp140 et Cp149, la protéine entière Cp183, phosphorylée P-Cp183, et enfin des mutants. Dans un premier temps, nous avons préparé des échantillons pour l’attribution séquentielle de la protéine core par RMN du solide. L’utilisation de la détection carbone en RMN requiert plusieurs dizaines de milligrammes d’échantillon, qui ont pu être produits en utilisant l’expressions bactérienne en milieu minimum contenant des isotopes marqués. Les attributions séquentielles ont été réalisées sur la protéine tronquée Cp149, qui donne des spectres très similaires à Cp183. Cet échantillon a également été utilisé pour identifier les différences conformationnelles entre les 4 monomères de la capside, qui sont provoquées par la symétrie icosaédrale T=4. Ensuite, l’objet principal de cette thèse a été l’investigation et la comparaison d’une large variété de capsides, dans leur forme autoassemblée dans les bactéries E. coli, ainsi que dans leur forme réassemblée. Pour le réassemblage de la protéine entière, qui requiert la présence d’acides nucléiques, nous avons testé différents types d’ARN y compris l’ARN viral prégénomique. Nous avons étudié différentes symétries (T=3 et T=4), ainsi que les états d’oxydation de la capside, et comparé les différences de conformation grâce aux perturbations de déplacements chimiques observées dans les spectres RMN. Nous avons pu identifier les acides aminés impliqués dans les changements conformationnels majeurs entre les différentes préparations. La RMN du solide en détection proton à 100 kHz a récemment émergé comme un outils important pour l’analyse de protéines produites en quantités moindres. Nous avons appliqué cette stratégie à l’analyse des capsides de Cp149 afin d’obtenir l’attribution des protons amides. La détection proton par RMN du solide peut être combinée avec succès à la synthèse des protéines en système acellulaire, qui donne de faibles rendements par rapport aux cultures en bactéries. Cette approche est particulièrement intéressante pour analyser la modulation de l’assemblage des capsides induite par la présence de drogues. Bien que nous ayons commencé à étudier l’impact de modulateurs d’assemblage par RMN en détection carbone sur des capsides formées dans E. coli et réassemblées (données préliminaires non montrées dans ce manuscrit), la détection proton ouvre la voie vers l’analyse de l’impact de ces modulateurs sur l’assemblage des protéines core directement à la sortie du ribosomeHepatitis B is a widely spread liver disease which causes a heavy burden for human health, with 257 millions of people affected by chronic infection and about 780,000 deaths per year. Yet, infected patients can not be completely cured by current treatments using notably nucleos(t)ide analogues and interferons. In order to achieve the goal of the World Health Assembly (WHA), who wishes to eliminate hepatitis B by 2030, new therapies need to be developed. Given its critical role for the Hepatitis B virus (HBV) life cycle, the core protein (Cp) is today one of the antiviral targets with the highest potential. Our research focuses on the characterization of HBV capsids in different conformational states using biochemistry and solid-state NMR, aiming at revealing their precise conformation under different conditions, including the interaction of capsids with antivirals, and the correlation between capsid conformation and viral maturation. For sample preparation, both a bacterial expression system and a wheat germ cell-free protein synthesis system have been established in the laboratory to produce HBV capsids, and protocols to disassemble and reassemble capsids with different nucleic acids have been implemented. Both capsids preformed in E. coli and capsids reassembled in vitro were addressed to NMR studies. Different capsids forms include the truncated versions Cp140 and Cp149, the full length protein Cp183, the phosphorylated P-Cp183 and mutant forms. First, we have prepared samples for the sequential assignment of the protein using solid-state NMR. The use of carbon-13 detection asks for several tens of milligrams of sample, which were produced using labeled isotopes and bacterial expression in minimal media. Sequential assignments were performed using the truncated capsid Cp149, which showed highly similar spectra to Cp183. This sample was also used to identify conformational differences between the four different monomers in the capsid, which are due to the T=4 icosahedral symmetry. Then, the main body of the thesis is the investigation and comparison of a variety of different capsid forms, including Cp183, P-Cp183, Cp149, Cp140, another truncated form resulting in mainly T=3 icosahedral assemblies, and Cp140 C61A and Cp183 F97L mutants. We investigated all samples in both the E. coli-produced and reassembled forms, which needs for the full-length protein the presence of nucleic acids, of which we tested several, including the viral pregenomic RNA. We investigated different symmetries, as well as oxidation states of the capsid, and compared the differences via chemical shift perturbations observed in NMR spectra. We reported in a site-specific manner the major conformational changes observed between the different preparations. Proton-detected solid-state NMR at 100 kHz has recently emerged as a tool for analyzing proteins with the need of less sample amount. We have applied this strategy to the analysis of the Cp149 capsids, in order to obtain sequential assignments of the amide proton resonances. For this, deuteration of the protein in bacteria was used as well, needing adaptation of sample preparation protocols. Proton detection can be successfully combined with cell-free protein synthesis, which gives low yields compared to bacterial expression. This approach is of potential interest to analyze capsid assembly modulation induced by the presence of drugs. While we have started in the framework of this thesis to analyze the capsid in presence of different capsid assembly modulators by carbon-13 detected NMR on E. coli and reassembled capsids (preliminary results not reported here), proton detection opens the way to an analysis of the impact of capsid modulation directly on the exit of the core proteins from the ribosome, on assembly. We showed that cell-free expression combined with proton-detection solid-state NMR can be used to analyze capsid chemical shifts, and thus in future work the conformational modulation
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