589 research outputs found

    Chaperoning mitochondrial biogenesis

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    Structural properties and neuronal toxicity of amyotrophic lateral sclerosis–associated Cu/Zn superoxide dismutase 1 aggregates

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    The appearance of protein aggregates is a characteristic of protein misfolding disorders including familial amyotrophic lateral sclerosis, a neurodegenerative disease caused by inherited mutations in Cu/Zn superoxide dismutase 1 (SOD1). Here, we use live cell imaging of neuronal and nonneuronal cells to show that SOD1 mutants (G85R and G93A) form an aggregate structure consisting of immobile scaffolds, through which noninteracting cellular proteins can diffuse. Hsp70 transiently interacts, in a chaperone activity-dependent manner, with these mutant SOD1 aggregate structures. In contrast, the proteasome is sequestered within the aggregate structure, an event associated with decreased degradation of a proteasomal substrate. Through the use of time-lapse microscopy of individual cells, we show that nearly all (90%) aggregate-containing cells express higher levels of mutant SOD1 and died within 48 h, whereas 70% of cells expressing a soluble mutant SOD1 survived. Our results demonstrate that SOD1 G85R and G93A mutants form a distinct class of aggregate structures in cells destined for neuronal cell death

    Estimulação elétrica nervosa transcutânea nas modalidades convencional e acupuntura na dor induzida pelo frio

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    Transcutaneous electrical nerve stimulation (TENS) is a non-pharmacological method already established in the modulation of acute and chronic pain. The purpose of this study was to assess the effect of conventional TENS and acupuncture-like TENS on cold-induced pain. Thirty healthy subjects aged 18 to 40 years old were randomized into in three groups: placebo, conventional TENS, and acupuncture-like TENS. A cold-induced pain protocol was used, in six cycles (two pre-treatment, two during, and two after treatment); TENS was applied for 20 minutes through 2 channels, the conventional modality at sensory level at 80 Hz, and the acupuncture modality at motor level at 4 Hz. Variables analysed were pain threshold, tolerance to pain, and pain intensity. No statistically significant differences were found in any variable between post and pre-treatment measures in all groups. Hence neither conventional or acupuncture-like TENS had any effect on cold-induced pain. Further studies are suggested, with different experimental pain models, and with longer time of TENS application.A estimulação elétrica nervosa transcutânea (TENS) é um recurso não-farmacológico já consagrado na modulação de dores agudas e crônicas. O objetivo deste estudo foi verificar o efeito da TENS convencional e na modalidade TENS-acupuntura na dor induzida pelo frio. Trinta indivíduos saudáveis com idade entre 18 e 40 anos foram distribuídos ao acaso em três grupos: placebo, TENS convencional e TENS-acupuntura. Foi utilizado um protocolo de indução de dor pelo frio composto por seis ciclos: dois pré-tratamento, dois durante e dois após o tratamento. A TENS foi aplicada por 20 minutos por dois canais, sendo a modalidade convencional, no nível sensorial, na freqüência de 80 Hz e a modalidade acupuntura, no nível motor, a 4 Hz. Foram medidos limiar de dor, tolerância à dor e intensidade da dor. Não foi encontrada diferença estatisticamente significante nos valores medidos durante a após o tratamento quando comparados aos dos ciclos pré-tratamento, em todas as variáveis. Nas duas modalidades estudadas pois, a TENS, nos parâmetros de aplicação utilizados, não modificou a dor induzida por frio, sugerindo-se novos estudos com maior tempo de aplicação da TENS e diferentes modelos de dor experimental

    In vivo binding of active heat shock transcription factor 1 to human chromosome 9 heterochromatin during stress

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    Activation of the mammalian heat shock transcription factor (HSF)1 by stress is a multistep process resulting in the transcription of heat shock genes. Coincident with these events is the rapid and reversible redistribution of HSF1 to discrete nuclear structures termed HSF1 granules, whose function is still unknown. Key features are that the number of granules correlates with cell ploidy, suggesting the existence of a chromosomal target. Here we show that in humans, HSF1 granules localize to the 9q11-q12 heterochromatic region. Within this locus, HSF1 binds through direct DNA–protein interaction with a nucleosome-containing subclass of satellite III repeats. HSF1 granule formation only requires the DNA binding competence and the trimerization of the factor. This is the first example of a transcriptional activator that accumulates transiently and reversibly on a chromosome-specific heterochromatic locus

    Synthesis of spiroacetals using functionalised titanium carbenoids

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    Alkylidenation of lactones with functionalised titanium carbenoid reagents (Schrock carbenes) followed by acid-induced cyclisation of the resulting enol ethers constitutes a new method for the preparation of [4.4], [4.5] and [5.5] spiroacetals (1,6-dioxaspiro[4.4]nonanes, 1,6-dioxaspiro[4.5]decanes and 1,7-dioxaspiro[5.5]undecanes, respectively, sometimes termed 5,5-, 5,6- and 6,6-spiroketals). The titanium carbenoids are easily generated from readily available thioacetals

    Serotonergic signalling suppresses ataxin 3 aggregation and neurotoxicity in animal models of Machado-Joseph disease

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    Polyglutamine diseases are a class of dominantly inherited neurodegenerative disorders for which there is no effective treatment. Here we provide evidence that activation of serotonergic signalling is beneficial in animal models of Machado-Joseph disease. We identified citalopram, a selective serotonin reuptake inhibitor, in a small molecule screen of FDA-approved drugs that rescued neuronal dysfunction and reduced aggregation using a Caenorhabditis elegans model of mutant ataxin 3-induced neurotoxicity. MOD-5, the C. elegans orthologue of the serotonin transporter and cellular target of citalopram, and the serotonin receptors SER-1 and SER-4 were strong genetic modifiers of ataxin 3 neurotoxicity and necessary for therapeutic efficacy. Moreover, chronic treatment of CMVMJD135 mice with citalopram significantly reduced ataxin 3 neuronal inclusions and astrogliosis, rescued diminished body weight and strikingly ameliorated motor symptoms. These results suggest that small molecule modulation of serotonergic signalling represents a promising therapeutic target for Machado-Joseph disease.This work was supported by Fundação para a Ciência e Tecnologia (FCT) and COMPETE through the projects ‘[PTDC/SAU-GMG/112617/2009] (to P.M.) and [EXPL/ BIM-MEC/0239/2012] (to A.T.C.)’, by National Ataxia foundation (to P.M.), by Ataxia UK (to P.M.), by National Institutes of Health (NIH) ‘[GM038109, GM081192, AG026647, and NS047331] (to R.I.M.)’, by The Chicago Biomedical Consortium (to R.I.M.) and by the Ellison Medical Foundation (to R.I.M.). A.T.C., A.J., S.E., L.S.S., C.B., S.D.S., A.S.F. and A.N.C. were supported by the FCT individual fellowships SFRH/BPD/79469/2011, SFRH/BD/76613/2011, SFRH/BD/78554/2011, SFRH/BD/ 84650/2012, SFRH/BPD/74452/2010, SFRH/BD/78388/ 2011, SFRH/BPD/91562/2012 and SFRH/BD/51059/2010, respectively. FCT fellowships are co-financed by POPH, QREN, Governo da República Portuguesa and EU/FSE.info:eu-repo/semantics/publishedVersio
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