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Hsp70-nucleotide exchange factor (NEF) Fes1 has non-NEF roles in degradation of gluconeogenic enzymes and cell wall integrity

机译:Hsp70核苷酸交换因子(NEF)Fes1在糖异生酶的降解和细胞壁完整性中具有非NEF作用

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摘要

Fes1 is a conserved armadillo repeat-containing Hsp70 nucleotide exchange factor important for growth at high temperature, proteasomal protein degradation and prion propagation. Depleting or mutating Fes1 induces a stress response and causes defects in these processes that are ascribed solely to disruption of Fes1 regulation of Hsp70. Here, we find Fes1 was essential for degradation of gluconeogenic enzymes by the vacuole import and degradation (Vid) pathway and for cell wall integrity (CWI), which is crucial for growth at high temperature. Unexpectedly, Fes1 mutants defective in physical or functional interaction with Hsp70 retained activities that support Vid and CWI. Fes1 and the Fes1 mutants bound to the Vid substrate Fbp1 in vitro and captured Slt2, a signaling kinase that regulates CWI, from cell lysates. Our data show that the armadillo domain of Fes1 binds proteins other than Hsp70, that Fes1 has important Hsp70-independent roles in the cell, and that major growth defects caused by depleting Fes1 are due to loss of these functions rather than to loss of Hsp70 regulation. We uncovered diverse functions of Fes1 beyond its defined role in regulating Hsp70, which points to possible multi-functionality among its conserved counterparts in other organisms or organelles.
机译:Fes1是保守的含犰狳重复的Hsp70核苷酸交换因子,对高温下生长,蛋白酶体蛋白降解和病毒繁殖非常重要。耗尽或突变Fes1会引起应激反应,并导致这些过程中的缺陷,这些缺陷完全归因于Fes1对Hsp70的调控破坏。在这里,我们发现Fes1对于通过液泡导入和降解(Vid)途径降解糖异生酶和对细胞壁完整性(CWI)至关重要,而后者对于高温下的生长至关重要。出乎意料的是,Fes1突变体与Hsp70的物理或功能相互作用存在缺陷,保留了支持Vid和CWI的活性。 Fes1和Fes1突变体在体外与Vid底物Fbp1结合,并从细胞裂解物中捕获Slt2(一种调节CWI的信号激酶)。我们的数据表明,Fes1的犰狳结构域结合了Hsp70以外的蛋白质,Fes1在细胞中具有重要的Hsp70独立作用,并且由于Fes1耗尽而导致的主要生长缺陷是由于这些功能的丧失而不是由于Hsp70调控的丧失。我们发现Fes1在调节Hsp70中的作用超出了其定义的功能,这表明它在其他生物或细胞器的保守对等物中可能具有多功能性。

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