50 research outputs found

    Validation of MIPAS HNO3 operational data

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    Nitric acid (HNO3) is one of the key products that are operationally retrieved by the European Space Agency (ESA) from the emission spectra measured by the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) onboard ENVISAT. The product version 4.61/4.62 for the observation period between July 2002 and March 2004 is validated by comparisons with a number of independent observations from ground-based stations, aircraft/balloon campaigns, and satellites. Individual HNO3 profiles of the ESA MIPAS level-2 product show good agreement with those of MIPAS-B and MIPAS-STR (the balloon and aircraft version of MIPAS, respectively), and the balloon-borne infrared spectrometers MkIV and SPIRALE, mostly matching the reference data within the combined instrument error bars. In most cases differences between the correlative measurement pairs are less than 1 ppbv (5-10%) throughout the entire altitude range up to about 38 km (similar to 6 hPa), and below 0.5 ppbv (15-20% or more) above 30 km (similar to 17 hPa). However, differences up to 4 ppbv compared to MkIV have been found at high latitudes in December 2002 in the presence of polar stratospheric clouds. The degree of consistency is further largely affected by the temporal and spatial coincidence, and differences of 2 ppbv may be observed between 22 and 26 km (similar to 50 and 30 hPa) at high latitudes near the vortex boundary, due to large horizontal inhomogeneity of HNO3. Similar features are also observed in the mean differences of the MIPAS ESA HNO3 VMRs with respect to the ground-based FTIR measurements at five stations, aircraft-based SAFIRE-A and ASUR, and the balloon campaign IBEX. The mean relative differences between the MIPAS and FTIR HNO3 partial columns are within +/- 2%, comparable to the MIPAS systematic error of similar to 2%. For the vertical profiles, the biases between the MIPAS and FTIR data are generally below 10% in the altitudes of 10 to 30 km. The MIPAS and SAFIRE HNO3 data generally match within their total error bars for the mid and high latitude flights, despite the larger atmospheric inhomogeneities that characterize the measurement scenario at higher latitudes. The MIPAS and ASUR comparison reveals generally good agreements better than 10-13% at 20-34 km. The MIPAS and IBEX measurements agree reasonably well (mean relative differences within +/- 15%) between 17 and 32 km. Statistical comparisons of the MIPAS profiles correlated with those of Odin/SMR, ILAS-II, and ACE-FTS generally show good consistency. The mean differences averaged over individual latitude bands or all bands are within the combined instrument errors, and generally within 1, 0.5, and 0.3 ppbv between 10 and 40 km (similar to 260 and 4.5 hPa) for Odin/SMR, ILAS-II, and ACE-FTS, respectively. The standard deviations of the differences are between 1 to 2 ppbv. The standard deviations for the satellite comparisons and for almost all other comparisons are generally larger than the estimated measurement uncertainty. This is associated with the temporal and spatial coincidence error and the horizontal smoothing error which are not taken into account in our error budget. Both errors become large when the spatial variability of the target molecule is high.Peer reviewe

    Validation of HNO3, ClONO2, and N2O5 from the Atmospheric Chemistry Experiment Fourier Transform Spectrometer (ACE-FTS)

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    The Atmospheric Chemistry Experiment (ACE) satellite was launched on 12 August 2003. Its two instruments measure vertical profiles of over 30 atmospheric trace gases by analyzing solar occultation spectra in the ultraviolet/visible and infrared wavelength regions. The reservoir gases HNO3, ClONO2, and N2O5 are three of the key species provided by the primary instrument, the ACE Fourier Transform Spectrometer (ACE-FTS). This paper describes the ACE-FTS version 2.2 data products, including the N2O5 update, for the three species and presents validation comparisons with available observations. We have compared volume mixing ratio (VMR) profiles of HNO3, ClONO2, and N2O5 with measurements by other satellite instruments (SMR, MLS, MIPAS), aircraft measurements (ASUR), and single balloon-flights (SPIRALE, FIRS-2). Partial columns of HNO3 and ClONO2 were also compared with measurements by ground-based Fourier Transform Infrared (FTIR) spectrometers. Overall the quality of the ACE-FTS v2.2 HNO3 VMR profiles is good from 18 to 35 km. For the statistical satellite comparisons, the mean absolute differences are generally within ±1 ppbv ±20%) from 18 to 35 km. For MIPAS and MLS comparisons only, mean relative differences lie within±10% between 10 and 36 km. ACE-FTS HNO3 partial columns (~15–30 km) show a slight negative bias of −1.3% relative to the ground-based FTIRs at latitudes ranging from 77.8° S–76.5° N. Good agreement between ACE-FTS ClONO2 and MIPAS, using the Institut für Meteorologie und Klimaforschung and Instituto de Astrofísica de Andalucía (IMK-IAA) data processor is seen. Mean absolute differences are typically within ±0.01 ppbv between 16 and 27 km and less than +0.09 ppbv between 27 and 34 km. The ClONO2 partial column comparisons show varying degrees of agreement, depending on the location and the quality of the FTIR measurements. Good agreement was found for the comparisons with the midlatitude Jungfraujoch partial columns for which the mean relative difference is 4.7%. ACE-FTS N2O5 has a low bias relative to MIPAS IMK-IAA, reaching −0.25 ppbv at the altitude of the N2O5 maximum (around 30 km). Mean absolute differences at lower altitudes (16–27 km) are typically −0.05 ppbv for MIPAS nighttime and ±0.02 ppbv for MIPAS daytime measurements

    Olfactory Stem Cells, a New Cellular Model for Studying Molecular Mechanisms Underlying Familial Dysautonomia

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    International audienceBackground: Familial dysautonomia (FD) is a hereditary neuropathy caused by mutations in the IKBKAP gene, the most common of which results in variable tissue-specific mRNA splicing with skipping of exon 20. Defective splicing is especially severe in nervous tissue, leading to incomplete development and progressive degeneration of sensory and autonomic neurons. The specificity of neuron loss in FD is poorly understood due to the lack of an appropriate model system. To better understand and modelize the molecular mechanisms of IKBKAP mRNA splicing, we collected human olfactory ecto-mesenchymal stem cells (hOE-MSC) from FD patients. hOE-MSCs have a pluripotent ability to differentiate into various cell lineages, including neurons and glial cells.Methodology/Principal Findings: We confirmed IKBKAP mRNA alternative splicing in FD hOE-MSCs and identified 2 novel spliced isoforms also present in control cells. We observed a significant lower expression of both IKBKAP transcript and IKAP/hELP1 protein in FD cells resulting from the degradation of the transcript isoform skipping exon 20. We localized IKAP/hELP1 in different cell compartments, including the nucleus, which supports multiple roles for that protein. We also investigated cellular pathways altered in FD, at the genome-wide level, and confirmed that cell migration and cytoskeleton reorganization were among the processes altered in FD. Indeed, FD hOE-MSCs exhibit impaired migration compared to control cells. Moreover, we showed that kinetin improved exon 20 inclusion and restores a normal level of IKAP/hELP1 in FD hOE-MSCs. Furthermore, we were able to modify the IKBKAP splicing ratio in FD hOE-MSCs, increasing or reducing the WT (exon 20 inclusion):MU (exon 20 skipping) ratio respectively, either by producing free-floating spheres, or by inducing cells into neural differentiation.Conclusions/Significance: hOE-MSCs isolated from FD patients represent a new approach for modeling FD to better understand genetic expression and possible therapeutic approaches. This model could also be applied to other neurological genetic diseases

    Financial Characteristics of Companies Audited by Large Audit Firms

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    Purpose “ The purpose of this paper is to examine how financial characteristics associated with the choice of a big audit firm with further investigation on the agency costs of free cash flows.Design/methodology/approach “ The sample used for this work includes industrial listed companies from Germany and France. To test our hypothesis, we used a number of logit models, extending the standard model selection audit firm, to include the variables of interest. Following previous work, our dependent dummy variable is Big4 or non-Big4.Findings “ We observed that most independent variables in the German companies show similar results to previous work, but we did not have the same results for the French industry. Moreover, our findings suggest that the total debt and dividends can be an important reason for determining the choice of a large audit firm, reducing agency costs of free cash flows.Research limitations/implications “ This study has some limitations on the measurements of the cost of the audit fees and also generates opportunities for additional searching.Originality/value “ The paper provides only one aspect to explain the relationship between the problems of agency costs of free cash flow and influence in choosing a large auditing firm, which stems from investors\u27 demand for higher quality audits

    Genome-wide Analyses Identify KIF5A as a Novel ALS Gene

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    To identify novel genes associated with ALS, we undertook two lines of investigation. We carried out a genome-wide association study comparing 20,806 ALS cases and 59,804 controls. Independently, we performed a rare variant burden analysis comparing 1,138 index familial ALS cases and 19,494 controls. Through both approaches, we identified kinesin family member 5A (KIF5A) as a novel gene associated with ALS. Interestingly, mutations predominantly in the N-terminal motor domain of KIF5A are causative for two neurodegenerative diseases: hereditary spastic paraplegia (SPG10) and Charcot-Marie-Tooth type 2 (CMT2). In contrast, ALS-associated mutations are primarily located at the C-terminal cargo-binding tail domain and patients harboring loss-of-function mutations displayed an extended survival relative to typical ALS cases. Taken together, these results broaden the phenotype spectrum resulting from mutations in KIF5A and strengthen the role of cytoskeletal defects in the pathogenesis of ALS.Peer reviewe

    Les cellules souches olfactives humaines : un nouveau modèle d'étude des mécanismes à l'origine d'une maladie neurodégénérative, la dysautonomie familiale

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    La dysautonomie familiale (FD) est une neuropathie héréditaire provoquée par des mutations au sein du gène IKBKAP, la plus commune d'entre elles induisant un épissage alternatif de l'exon 20 au sein de du pré-ARNm de façon tissu-spécifique. L'épissage aberrant est particulièrement prononcé dans les tissus nerveux, conduisant à la dégénerescence progressive des neurones sensoriels et autonomes. La spécificité de la perte des cellules nerveuses dans la FD est mal comprise, par manque d'un modèle approprié. Afin de mieux comprendre les mécanismes moléculaires de l'épissage des ARNm d'IKBKAP, nous avons utilisé un modèle original : les cellules souches olfactives ecto-mesenchymateuses (hOE-MSC) de patients FD. Les hOE-MSC sont pluripotentes et ont la capacité de se différencier en diverses lignées cellulaires, y compris les neurones et les cellules gliales.Nous avons confirmé la présence du transcrit exempt de l'exon 20 d'IKBKAP dans les hOE-MSC de FD et nous avons observé une expression significativement inférieure de la somme des transcrits IKBKAP chez ces patients, du fait de la dégradation d'une partie des isoforme aberrants. Cette réduction est correlée avec une réduction d'expression de la protéine traduite à partir du transcrit d’IKBKAP possèdant l’exon 20, IKAP/hELP1. Nous avons localisé IKAP/hELP1 dans différents compartiments cellulaires, y compris le noyau, ce qui soutient des rôles multiples de cette protéine. Nous avons confirmé que la kinétine, une cytokinine, améliorait le taux de transcrit incluant l'exon 20 et rétablissait des niveaux normaux d'IKAP/hELP1 dans les hOE-MSC de FD. Par ailleurs, nous avons pu modifier le rapport d'épissage d'IKBKAP en augmentant ou en réduisant le ratio WT (inclusion de l'exon 20) : MU (saut de l'exon 20) respectivement, en produisant des sphères flottantes, ou en engageant les cellules vers une différentiation neurale. Les sphères et les cellules différenciées ont été étudiées au niveau pan-génomique, ce qui a permis d'identifier le développement du système nerveux comme étant le processus le plus affecté chez les FD. De plus, nous soulignons le rôle de la kinétine comme un probable régulateur de facteurs d'épissage contribuant à la restauration d'un épissage correct d'IKBKAP.Les hOE-MSC isolées de patients FD représentent une nouvelle approche pour modéliser la pathologie et mieux comprendre l'expression génétique et les approches thérapeutiques possibles de la FD. En outre, elles offrent une application originale à la compréhension d'autres maladies génétiques neurologiques.Familial dysautonomia (FD) is a hereditary neuropathy caused by mutations in the IKBKAP gene, the most common of which results in variable tissue-specific mRNA splicing with skipping of exon 20. Defective splicing is especially severe in nervous tissue, leading to incomplete development and progressive degeneration of sensory and autonomic neurons. The specificity of neuron loss in FD is poorly understood due to the lack of an appropriate model system. To better understand and modelize the molecular mechanisms of IKBKAP mRNA splicing, we collected human olfactory ecto-mesenchymal stem cells (hOE-MSCs) from FD patients. hOE-MSCs have a pluripotent ability to differentiate into various cell lineages, including neurons and glial cells.We confirmed IKBKAP mRNA alternative splicing in FD hOE-MSCs and observed a significant lower expression of both IKBKAP transcripts and IKAP/hELP1 protein in FD cells resulting from the degradation of the transcript isoform skipping exon 20. We localized IKAP/hELP1 in different cell compartments, including the nucleus, which supports multiple roles for that protein. Moreover, we showed that kinetin improved exon 20 inclusion and restores a normal level of IKAP/hELP1 in FD hOE-MSCs. Furthermore, we were able to modify the IKBKAP splicing ratio in FD hOE-MSCs, increasing or reducing the WT (exon 20 inclusion):MU (exon 20 skipping) ratio respectively, either by producing free-floating spheres, or by inducing cells into neural differentiation. Spheres forming cells and lineage neuroglial progenitors were investigated at the genome-wide level, and we confirmed that nervous system development was the most altered process in FD. More, we highlight kinetin role as a putative regulator of splicing factors which contribute to restore a correct splicing of IKBKAP.hOE-MSCs isolated from FD patients represent a new approach for modeling FD to better understand genetic expression and possible therapeutic approaches. This model could also be applied to other neurological genetic diseases

    Les cellules souches olfactives humaines (un nouveau modèle d'étude des mécanismes à l'origine d'une maladie neurodégénérative, la dysautonomie familiale)

    No full text
    La dysautonomie familiale (FD) est une neuropathie héréditaire provoquée par des mutations au sein du gène IKBKAP, la plus commune d'entre elles induisant un épissage alternatif de l'exon 20 au sein de du pré-ARNm de façon tissu-spécifique. L'épissage aberrant est particulièrement prononcé dans les tissus nerveux, conduisant à la dégénerescence progressive des neurones sensoriels et autonomes. La spécificité de la perte des cellules nerveuses dans la FD est mal comprise, par manque d'un modèle approprié. Afin de mieux comprendre les mécanismes moléculaires de l'épissage des ARNm d'IKBKAP, nous avons utilisé un modèle original : les cellules souches olfactives ecto-mesenchymateuses (hOE-MSC) de patients FD. Les hOE-MSC sont pluripotentes et ont la capacité de se différencier en diverses lignées cellulaires, y compris les neurones et les cellules gliales.Nous avons confirmé la présence du transcrit exempt de l'exon 20 d'IKBKAP dans les hOE-MSC de FD et nous avons observé une expression significativement inférieure de la somme des transcrits IKBKAP chez ces patients, du fait de la dégradation d'une partie des isoforme aberrants. Cette réduction est correlée avec une réduction d'expression de la protéine traduite à partir du transcrit d IKBKAP possèdant l exon 20, IKAP/hELP1. Nous avons localisé IKAP/hELP1 dans différents compartiments cellulaires, y compris le noyau, ce qui soutient des rôles multiples de cette protéine. Nous avons confirmé que la kinétine, une cytokinine, améliorait le taux de transcrit incluant l'exon 20 et rétablissait des niveaux normaux d'IKAP/hELP1 dans les hOE-MSC de FD. Par ailleurs, nous avons pu modifier le rapport d'épissage d'IKBKAP en augmentant ou en réduisant le ratio WT (inclusion de l'exon 20) : MU (saut de l'exon 20) respectivement, en produisant des sphères flottantes, ou en engageant les cellules vers une différentiation neurale. Les sphères et les cellules différenciées ont été étudiées au niveau pan-génomique, ce qui a permis d'identifier le développement du système nerveux comme étant le processus le plus affecté chez les FD. De plus, nous soulignons le rôle de la kinétine comme un probable régulateur de facteurs d'épissage contribuant à la restauration d'un épissage correct d'IKBKAP.Les hOE-MSC isolées de patients FD représentent une nouvelle approche pour modéliser la pathologie et mieux comprendre l'expression génétique et les approches thérapeutiques possibles de la FD. En outre, elles offrent une application originale à la compréhension d'autres maladies génétiques neurologiques.Familial dysautonomia (FD) is a hereditary neuropathy caused by mutations in the IKBKAP gene, the most common of which results in variable tissue-specific mRNA splicing with skipping of exon 20. Defective splicing is especially severe in nervous tissue, leading to incomplete development and progressive degeneration of sensory and autonomic neurons. The specificity of neuron loss in FD is poorly understood due to the lack of an appropriate model system. To better understand and modelize the molecular mechanisms of IKBKAP mRNA splicing, we collected human olfactory ecto-mesenchymal stem cells (hOE-MSCs) from FD patients. hOE-MSCs have a pluripotent ability to differentiate into various cell lineages, including neurons and glial cells.We confirmed IKBKAP mRNA alternative splicing in FD hOE-MSCs and observed a significant lower expression of both IKBKAP transcripts and IKAP/hELP1 protein in FD cells resulting from the degradation of the transcript isoform skipping exon 20. We localized IKAP/hELP1 in different cell compartments, including the nucleus, which supports multiple roles for that protein. Moreover, we showed that kinetin improved exon 20 inclusion and restores a normal level of IKAP/hELP1 in FD hOE-MSCs. Furthermore, we were able to modify the IKBKAP splicing ratio in FD hOE-MSCs, increasing or reducing the WT (exon 20 inclusion):MU (exon 20 skipping) ratio respectively, either by producing free-floating spheres, or by inducing cells into neural differentiation. Spheres forming cells and lineage neuroglial progenitors were investigated at the genome-wide level, and we confirmed that nervous system development was the most altered process in FD. More, we highlight kinetin role as a putative regulator of splicing factors which contribute to restore a correct splicing of IKBKAP.hOE-MSCs isolated from FD patients represent a new approach for modeling FD to better understand genetic expression and possible therapeutic approaches. This model could also be applied to other neurological genetic diseases.AIX-MARSEILLE2-Bib.electronique (130559901) / SudocSudocFranceF

    The Stock Market, the Housing Market and Consumer Behaviour

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    After the buoyancy of stock markets in the late nineties, share prices have generally trended downwards since 2001. By contrast, house prices have continued to increase, rising more rapidly than the general price level in several countries. These developments have led to renewed interest in the impact of asset prices on consumption and overall demand. This paper analyses the roles of household financial wealth and housing wealth across G7 countries (with the exception of Germany), in determining private consumption. It provides some estimates of the sensitivity of consumption to various forms of wealth and tests whether these sensitivities have changed over time. The impacts of recent financial and housing market developments on consumption are also quantified. The main results are, first, that for all countries, wealth channels are identified, second, that these effects vary significantly across countries, and third that for some countries, their importance has tended to rise markedly over the recent past.
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