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971.
A cationic nonselective stretch-activated channel in the Reissner's membrane of the guinea pig cochlea 总被引:1,自引:0,他引:1
Yeh Te-Huei; Herman Philippe; Tsai Ming-Cheng; Huy Patrice Tran Ba; Van Den Abbeele Thierry 《American journal of physiology. Cell physiology》1998,274(3):C566
The Reissner's membrane (RM) separates in the mammalian cochleathe K+-rich endolymph from theNa+-rich perilymph. Thepatch-clamp technique was used to investigate the transport mechanismsin epithelial cells of RM freshly dissected from the guinea pigcochlea. This study shows a stretch-activated nonselective cationicchannel (SA channel) with a linear current-voltage relationship (23 pS)highly selective for cations over anions [K+ Na+ (1) > Ba2+ (0.65) > Ca2+ (0.32) Cl (0.14)] andactivated by the intrapipette gradient pressure. The openprobability-pressure relationship is best fitted by a Boltzmanndistribution (half-maximal pressure = 37.8 mmHg, slope constant = 8.2 mmHg). SA channels exhibit a strong voltage dependency and areinsensitive to internal Ca2+, ATP,and fenamates but are blocked by 1 µMGdCl3 in the pipette. They arereversibly activated by in situ superfusion of the cell with hyposmoticsolutions. Kinetic studies show that depolarization and mechanical orosmotic stretch modify the closed and open time constants probably by adifferent mechanism. These channels could participate inpressure-induced modifications of ionic permeability of the RM. 相似文献
972.
973.
974.
Darren R. Brenner Paul Brennan Paolo Boffetta Christopher I. Amos Margaret R. Spitz Chu Chen Gary Goodman Joachim Heinrich Heike Bickeböller Albert Rosenberger Angela Risch Thomas Muley John R. McLaughlin Simone Benhamou Christine Bouchardy Juan Pablo Lewinger John S. Witte Gary Chen Shelley Bull Rayjean J. Hung 《Human genetics》2016,135(8):963-963
975.
Samuel M. D. Oliveira Ramakanth Neeli‐Venkata Nadia S. M. Goncalves João A. Santinha Leonardo Martins Huy Tran Jarno Mäkelä Abhishekh Gupta Marilia Barandas Antti Häkkinen Jason Lloyd‐Price José M. Fonseca Andre S. Ribeiro 《Molecular microbiology》2016,99(4):686-699
In Escherichia coli, under optimal conditions, protein aggregates associated with cellular aging are excluded from midcell by the nucleoid. We study the functionality of this process under sub‐optimal temperatures from population and time lapse images of individual cells and aggregates and nucleoids within. We show that, as temperature decreases, aggregates become homogeneously distributed and uncorrelated with nucleoid size and location. We present evidence that this is due to increased cytoplasm viscosity, which weakens the anisotropy in aggregate displacements at the nucleoid borders that is responsible for their preference for polar localisation. Next, we show that in plasmolysed cells, which have increased cytoplasm viscosity, aggregates are also not preferentially located at the poles. Finally, we show that the inability of cells with increased viscosity to exclude aggregates from midcell results in enhanced aggregate concentration in between the nucleoids in cells close to dividing. This weakens the asymmetries in aggregate numbers between sister cells of subsequent generations required for rejuvenating cell lineages. We conclude that the process of exclusion of protein aggregates from midcell is not immune to stress conditions affecting the cytoplasm viscosity. The findings contribute to our understanding of E. coli's internal organisation and functioning, and its fragility to stressful conditions. 相似文献
976.
977.
R Shao M C Hu B P Zhou S Y Lin P J Chiao R H von Lindern B Spohn M C Hung 《The Journal of biological chemistry》1999,274(31):21495-21498
The adenovirus E1A protein has been implicated in increasing cellular susceptibility to apoptosis induced by tumor necrosis factor (TNF); however, its mechanism of action is still unknown. Since activation of nuclear factor kappaB (NF-kappaB) has been shown to play an anti-apoptotic role in TNF-induced apoptosis, we examined apoptotic susceptibility and NF-kappaB activation induced by TNF in the E1A transfectants and their parental cells. Here, we reported that E1A inhibited activation of NF-kappaB and rendered cells more sensitive to TNF-induced apoptosis. We further showed that this inhibition was through suppression of IkappaB kinase (IKK) activity and IkappaB phosphorylation. Moreover, deletion of the p300 and Rb binding domains of E1A abolished its function in blocking IKK activity and IkappaB phosphorylation, suggesting that these domains are essential for the E1A function in down-regulating IKK activity and NF-kappaB signaling. However, the role of E1A in inhibiting IKK activity might be indirect. Nevertheless, our results suggest that inhibition of IKK activity by E1A is an important mechanism for the E1A-mediated sensitization of TNF-induced apoptosis. 相似文献
978.
Caio C. de Carvalho Ian P. Murray Hung Nguyen Tin Nguyen David C. Cantu 《Proteins》2024,92(2):157-169
Acyltransferases (AT) are enzymes that catalyze the transfer of acyl group to a receptor molecule. This review focuses on ATs that act on thioester-containing substrates. Although many ATs can recognize a wide variety of substrates, sequence similarity analysis allowed us to classify the ATs into fifteen distinct families. Each AT family is originated from enzymes experimentally characterized to have AT activity, classified according to sequence similarity, and confirmed with tertiary structure similarity for families that have crystallized structures available. All the sequences and structures of the AT families described here are present in the thioester-active enzyme (ThYme) database. The AT sequences and structures classified into families and available in the ThYme database could contribute to enlightening the understanding acyl transfer to thioester-containing substrates, most commonly coenzyme A, which occur in multiple metabolic pathways, mostly with fatty acids. 相似文献
979.
980.
Effects of Ellagic Acid by Oral Administration on N-Acetylation and Metabolism of 2-Aminofluorene in Rat Brain Tissues 总被引:1,自引:0,他引:1
Numerous studies have demonstrated that the Acetyl Coenzyme A-dependent arylamine NAT enzyme exist in many tissues of experimental animals including humans, and that NAT has been shown to be exist in mouse brain tissue. Increased NAT activity levels are associated with increased sensitivity to the mutagenic effects of arylamine carcinogens. Attenuation of liver NAT activity is related to breast and bladder cancer processes. Therefore, the effects of ellagic acid (EA) on the in vitro and in vivo N-acetylation of 2-aminofluorene (AF) were investigated in cerebrum, cerebellum and pineal gland tissues from male Sprague-Dawley rats. For in vitro examination, cytosols with or without EA (0.5–500 M) co-treatment decreased 7–72%, 15–63% and 10–78% of AF acetylation for cerebrum, cerebellum and pineal gland tissues, respectively. For in vivo examination, EA and AF at the same time treated groups with all 3 examined tissues did show significant differences (the changes of total amounts of AF and AF metabolites based on the Anova analysis) when compared to the ones without EA cotreatment rats. The pretreatment of male rats with EA (10 mg/kg) 24 hr prior to the administration of AF (50 mg/kg) (one day of EA administration suffice to induce large changes in phase II enzyme activity) resulted in a 76% decrease in total AF and metabolites in pineal gland but did not show significant differences in cerebrum and cerebellum tissues. This is the first demonstration to show that EA decreases the N-acetylation of carcinogens in rat brain tissues. 相似文献