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首页> 外文期刊>The Journal of biological chemistry >Regulation of inorganic polyphosphate is required for proper vacuolar proteolysis in fission yeast
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Regulation of inorganic polyphosphate is required for proper vacuolar proteolysis in fission yeast

机译:在裂变酵母中适当的真空蛋白水解需要无机多磷酸盐的调节

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摘要

Regulation of cellular proliferation and quiescence is a central issue in biology that has been studied using model unicellular eukaryotes, such as the fission yeast Schizosaccharomyces pombe. We previously reported that the ubiquitin/proteasome pathway and autophagy are essential to maintain quiescence induced by nitrogen deprivation in S. pombe; however, specific ubiquitin ligases that maintain quiescence are not fully understood. Here we investigated the SPX-RING-type ubiquitin ligase Pqr1, identified as required for quiescence in a genetic screen. Pqr1 is found to be crucial for vacuolar proteolysis, the final step of autophagy, through proper regulation of phosphate and its polymer polyphosphate. Pqr1 restricts phosphate uptake into the cell through ubiquitination and subsequent degradation of phosphate transporters on plasma membranes. We hypothesized that Pqr1 may act as the central regulator for phosphate control in S. pombe, through the function of the SPX domain involved in phosphate sensing. Deletion of pqr1+ resulted in hyperaccumulation of intracellular phosphate and polyphosphate and in improper autophagy-dependent proteolysis under conditions of nitrogen starvation. Polyphosphate hyperaccumulation in pqr1+ -deficient cells was mediated by the polyphosphate synthase VTC complex in vacuoles. Simultaneous deletion of VTC complex subunits rescued Pqr1 mutant phenotypes, including defects in proteolysis and loss of viability during quiescence. We conclude that excess polyphosphate may interfere with proteolysis in vacuoles by mechanisms that as yet remain unknown. The present results demonstrate a connection between polyphosphate metabolism and vacuolar functions for proper autophagy-dependent proteolysis, and we propose that polyphosphate homeostasis contributes to maintenance of cellular viability during quiescence.
机译:细胞增殖和静脉的调节是使用模型单细胞真核生物研究的生物学中的核心问题,例如裂变酵母Schizosaccharomyces Pombe。我们之前据报道,泛素/蛋白酶体途径和自噬是必不可少的,以维持S.Pombe在氮剥夺症诱导的静止;然而,没有完全理解维持静脉的特异性泛素连接酶。在这里,我们研究了SPX环型泛素连接酶PQR1,根据遗传筛网中的静态所需的鉴定。发现PQR1对于真空蛋白水解,通过适当调节磷酸盐及其聚合物多磷酸盐的最终步骤是至关重​​要的。 PQR1通过泛素化限制磷酸盐吸收到细胞中,并随后在血浆膜上降解磷酸盐转运蛋白。我们假设PQR1可以充当磷酸盐域中磷酸盐对照的中央调节器,通过磷酸盐感测的SPX结构域的功能。 PQR1 +缺失导致细胞内磷酸盐和多磷酸盐的高累积性,并在氮饥饿条件下进行了不正确的自噬依赖性蛋白水解。 PQR1 + -DEFISCOLE细胞中的多磷酸盐高累积由多磷酸合酶VTC复合物介导的空泡中。同时缺失VTC复合亚基拯救了PQR1突变表型,包括在静态期间蛋白水解和活力损失的缺陷。我们得出结论,过量的多磷酸盐可能会干扰真空中的蛋白水解,其机制仍然是未知的。本结果表明了多磷酸盐代谢与真空功能之间适当的自噬蛋白水解的关系,并且我们提出了多磷酸化稳态在静止期间对细胞活力有助于维持。

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