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81.
Nutrient excess and altered mitochondrial proteome and function contribute to neurodegeneration in diabetes 总被引:1,自引:0,他引:1
Diabetic neuropathy is a major complication of diabetes that results in the progressive deterioration of the sensory nervous system. Mitochondrial dysfunction has been proposed to play an important role in the pathogenesis of the neurodegeneration observed in diabetic neuropathy. Our recent work has shown that mitochondrial dysfunction occurs in dorsal root ganglia (DRG) sensory neurons in streptozotocin (STZ) induced diabetic rodents. In neurons, the nutrient excess associated with prolonged diabetes may trigger a switching off of AMP kinase (AMPK) and/or silent information regulator T1 (SIRT1) signaling leading to impaired peroxisome proliferator-activated receptor γ coactivator-1 (PGC-1α) expression/activity and diminished mitochondrial activity. This review briefly summarizes the alterations of mitochondrial function and proteome in sensory neurons of STZ-diabetic rodents. We also discuss the possible involvement of AMPK/SIRT/PGC-1α pathway in other diabetic models and different tissues affected by diabetes. 相似文献
82.
Effect of osmolytes and chaperone-like action of P-protein on folding of nucleocapsid protein of Chandipura virus. 总被引:10,自引:0,他引:10
A Majumder S Basak T Raha S P Chowdhury D Chattopadhyay S Roy 《The Journal of biological chemistry》2001,276(33):30948-30955
Amino acid sequences of nucleocapsid proteins are mostly conserved among different rhabdoviruses. The protein plays a common functional role in different RNA viruses by enwrapping the viral genomic RNA in an RNase-resistant form. Upon expression of the nucleocapsid protein alone in COS cells and in bacteria, it forms large insoluble aggregates. In this work, we have reported for the first time the full-length cloning of the N gene of Chandipura virus and its expression in Escherichia coli in a soluble monomeric form and purification using nonionic detergents. The biological activity of the soluble recombinant protein has been tested, and it was found to possess efficient RNA-binding ability. The state of aggregation of the recombinant protein was monitored using light scattering. In the absence of nonionic detergents, it formed large aggregates. Aggregation was significantly reduced in the presence of osmolytes such as d-sorbitol. Aggregate formation was suppressed in the presence of another viral product, phosphoprotein P, in a chaperone-like manner. Both the osmolyte and phosphoprotein P also suppressed aggregation to a great extent during refolding from a guanidine hydrochloride-denatured form. The function of the phosphoprotein and osmolyte appears to be synergistic to keep the N-protein in a soluble biologically competent form in virus-infected cells. 相似文献
83.
Piyali Chowdhury Koushik Sen Shreyasi Gupta Suravi Majumder Payel Guha Arindam Chakraborty Amar K. Chandra Dilip Mukherjee 《Proceedings of the Zoological Society》2018,71(1):48-55
Testosterone is commonly known for its role in the regulation of reproductive physiology in men. Epidemiologic studies suggest that endogenous testosterone levels may be implicated in cardiovascular diseases (CVDs). Our study aimed to investigate the relationship between serum total testosterone (TT) levels and lipid profile as well as fasting blood glucose (FBG) levels in male patients ranging from 40 to 70 years old with angiographically proven CVDs from Nadia and Murshidabad district of West Bengal, India. These data were compared with the normal men with no CVD history. We observed a significantly low serum TT levels in CVD patient group compared to the normal group. Among CVD patients, a significant (p < 0.05) negative association was found between serum TT and total cholesterol, triglyceride, low density lipoprotein and very low density lipoprotein, whereas a significant positive correlation (p < 0.05) was found between serum TT and high density lipoprotein. We also observed a highly significant negative correlation between TT and FBG levels in CVD patient group. Thus, in these two densely populated district of West Bengal with poor socio-economic condition, low levels of serum TT in elderly men is associated with CVD that appear together with an atherogenic lipid milieu that may be involved in the pathogenesis of CVD. Results further indicate that low serum TT might have a role in the development of hyperglycemia as evidenced from high FBG level in elderly men. 相似文献
84.
M.S. Ali M. Rahmatullah Rownak Jahan H.K.M. Yusuf A.A. Chowdhury 《Enzyme and microbial technology》1979,1(2):127-128
The effect of the insecticide 2,2-dichlorovinyldimethylphosphate (DDVP) on citric acid fermentation in Aspergillus niger was studied. The appearance of citric acid in the culture medium was increasingly delayed with increasing concentration of the insecticide, and at concentrations at or above 80 μg/ml medium, citric acid production was first observed after 192 h incubation, compared with 96 h in the control flasks. The timing of the maximum rate of citric acid formation was also similarly delayed. DDVP also resulted in a delay in the utilization of inorganic phosphate by the cultures. 相似文献
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87.
Drahota Z Chowdhury SK Floryk D Mrácek T Wilhelm J Rauchová H Lenaz G Houstek J 《Journal of bioenergetics and biomembranes》2002,34(2):105-113
Oxidation of glycerophosphate (GP) by brown adipose tissue mitochondria in the presence of antimycin A was found to be accompanied by significant production of hydrogen peroxide. GP-dependent hydrogen peroxide production could be detected by p-hydroxyphenylacetate fluorescence changes or as an antimycin A-insensitive oxygen consumption. One-electron acceptor, potassium ferricyanide, highly stimulated the rate of GP-dependent antimycin A-insensitive oxygen uptake, which was prevented by inhibitors of mitochondrial GP dehydrogenase (mGPDH) or by coenzyme Q(CoQ). GP-dependent ferricyanide-induced peroxide production was also determined luminometrically, using mitochondria or partially purified mGPDH. Ferricyanide-induced peroxide production was negligible, when succinate or NADH was used as a substrate. These results indicate that hydrogen peroxide is produced directly by mGPDH and reflect the differences in the transport of reducing equivalents from mGPDH and succinate dehydrogenase to the CoQ pool. The data suggest that more intensive production of reactive oxygen species may be present in mammalian cells with active mGPDH. 相似文献
88.
89.
Margherita Rosati Mahesh Agarwal Xintao Hu Santhi Devasundaram Dimitris Stellas Bhabadeb Chowdhury Jenifer Bear Robert Burns Duncan Donohue Laurent Pessaint Hanne Andersen Mark G. Lewis Evangelos Terpos Meletios Athanasios Dimopoulos Alexander Wlodawer James I. Mullins David J. Venzon George N. Pavlakis Barbara K. Felber 《PLoS pathogens》2021,17(9)
The speed of development, versatility and efficacy of mRNA-based vaccines have been amply demonstrated in the case of SARS-CoV-2. DNA vaccines represent an important alternative since they induce both humoral and cellular immune responses in animal models and in human trials. We tested the immunogenicity and protective efficacy of DNA-based vaccine regimens expressing different prefusion-stabilized Wuhan-Hu-1 SARS-CoV-2 Spike antigens upon intramuscular injection followed by electroporation in rhesus macaques. Different Spike DNA vaccine regimens induced antibodies that potently neutralized SARS-CoV-2 in vitro and elicited robust T cell responses. The antibodies recognized and potently neutralized a panel of different Spike variants including Alpha, Delta, Epsilon, Eta and A.23.1, but to a lesser extent Beta and Gamma. The DNA-only vaccine regimens were compared to a regimen that included co-immunization of Spike DNA and protein in the same anatomical site, the latter of which showed significant higher antibody responses. All vaccine regimens led to control of SARS-CoV-2 intranasal/intratracheal challenge and absence of virus dissemination to the lower respiratory tract. Vaccine-induced binding and neutralizing antibody titers and antibody-dependent cellular phagocytosis inversely correlated with transient virus levels in the nasal mucosa. Importantly, the Spike DNA+Protein co-immunization regimen induced the highest binding and neutralizing antibodies and showed the strongest control against SARS-CoV-2 challenge in rhesus macaques. 相似文献
90.
Debapriya De Priyanka Chowdhury Sujogya K. Panda Utpal Ghosh 《Journal of cellular biochemistry》2019,120(12):19841-19857
Despite the advancement of the pharmaceutical industry, medicinal plants are still a reliable source of traditional medicines to cure a number of diseases. Various parts of Dillenia pentagyna are used in traditional medicine in India for treatment of various disorders including cancers, but detailed mechanisms are still unknown. Dried leaves of D. pentagyna were extracted with ethanol and termed as an ethanolic extract of leaves of D. pentagyna (EELDP). Our aim was to elucidate the role of EELDP in in-vitro cell migration and apoptosis in highly metastatic human lung adenocarcinoma A549 cells. We measured cell viability and in-vitro cell migration in three different human cancer cells A549, HeLa and U2OS treated with EELDP (0-0.6 mg/mL). However, A549 cells showed higher sensitivity to EELDP treatment. Hence we studied several key markers of metastasis and apoptosis pathway in A549 cells treated with EELDP. EELDP treatment significantly reduced in-vitro cell migration, wound healing, expression and activity of MMP-2, MMP-9 via reduction of nuclear factor kappa Beta (NF-κβ). EELDP also reduced vimentin, N-cadherin and increased claudin-1. The intrinsic pathway of apoptosis was triggered by EELDP via the NF-κβ pathway through the increase of the Bax to Bcl2 ratio, leading to the fall of mitochondrial membrane potential and subsequently induced release of cytochrome c, activation of caspase-3 followed by nuclear fragmentation in A549 cells. Furthermore, we observed change of a few markers of metastasis and apoptosis in other two cell types HeLa and U2OS treated with EELDP. These data implicate that the effect of EELDP is not cell-specific. Since only 0.1 mg/mL EELDP significantly reduces in-vitro cell migration and increases apoptosis, the active compound(s) present in EELDP is very much potent to control highly metastatic cancer. 相似文献