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Hydrostatic pressure-induced changes in cellular protein synthesis

机译:静水压力诱导的细胞蛋白质合成变化

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Hydrostatic pressure is a well-known effector of cellular protein synthesis. High continuous hydrostatic pressure inhibits protein synthesis in general It has been known for a long time that 30S ribosomal subunit is associated with the effects of pressure on protein synthesis in prokaryotes, however, the mechanisms of action are still not completely understood Our new data suggest that synthesis of eukaryotic elongation factor-2 (eEF-2) is decreased under 30 MPa continuous hydrostatic pressure Thus, eEF-2 may have a role in the synthesis of pressure-regulated proteins in eukaryotic cells The presence of pressure-sensitive proteins indicate that hydrostatic pressure can induce very specific responses in stressed cells. Accumulation of heat shock protein 70 and 90 beta occurs under high pressure, independent of the general inhibition of protein synthesis, although this response appears clearly weaker than during heat stress.
机译:静水压力是细胞蛋白质合成的公知效应。高连续静压压力抑制蛋白质合成一般已知已经已知长期以来30S核糖体亚基与压力对原核生物中蛋白质合成的影响有关,然而,行动机制仍然没有完全理解我们的新数据表明真核伸长因子-2(eEF-2)的合成在30MPa连续静压压力下降低,因此EEF-2可以在真核细胞中的压力调节蛋白的合成中作用,压敏蛋白的存在表明静液压压力可以在应激细胞中诱导非常具体的反应。热休克蛋白70和90β的积累发生在高压下,与蛋白质合成的一般抑制无关,尽管这种反应显然比在热应激期间明显弱。

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