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首页> 外文期刊>The Journal of biological chemistry >Substrate Recognition in Nuclear Protein Quality Control Degradation Is Governed by Exposed Hydrophobicity That Correlates with Aggregation and Insolubility
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Substrate Recognition in Nuclear Protein Quality Control Degradation Is Governed by Exposed Hydrophobicity That Correlates with Aggregation and Insolubility

机译:核蛋白质质量控​​制下降的底物识别通过暴露的疏水性来控制与聚集和不溶性相关

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摘要

Misfolded proteins present an escalating deleterious challenge to cells over the course of their lifetime. One mechanism the cell possesses to prevent misfolded protein accumulation is their destruction by protein quality control (PQC) degradation systems. In eukaryotes, PQC degradation typically proceeds via multiple ubiquitin-protein ligases that act throughout the cell to ubiquitinate misfolded proteins for proteasome degradation. What the exact feature of misfolding that each PQC ubiquitin-protein ligase recognizes in their substrates remains an open question. Our previous studies of the budding yeast nuclear ubiquitin-protein ligase San1 indicated that it recognizes exposed hydrophobicity within its substrates, with the threshold of hydrophobicity equivalent to that of 5 contiguous hydrophobic residues. Here, we uncover an additional parameter: the nature of the exposed hydrophobicity that confers San1-mediated degradation correlates with significant protein insolubility. San1 particularly targets exposed hydrophobicity that leads to insolubility and aggregation above a certain threshold. Our studies presented here provide additional insight into the details of misfolded nuclear protein recognition and demonstrate that there is selectivity for the type of exposed hydrophobicity.
机译:错误折叠的蛋白质在终身过程中对细胞带来了升级的有害挑战。一种机制细胞具有防止错误折叠的蛋白质积累是蛋白质质量控​​制(PQC)降解系统的破坏。在真核生物中,PQC降解通常通过多个泛素蛋白质连接酶进行,该蛋白质连接酶在整个细胞中起作用以普遍突出的错误折叠的蛋白质进行蛋白酶体降解。错误折叠的确切特征是,每个PQC泛素蛋白质连接酶识别在其基材中仍然是一个敞开的问题。我们以前对芽孢芽核蛋白蛋白质连接酶SAN1的研究表明,它识别其底物内暴露的疏水性,其疏水性阈值等于5个连续的疏水性残基的阈值。在这里,我们发现另外的参数:赋予SAN1介导的降解的暴露疏水性的性质与显着的蛋白质不可溶性相关。 SAN1特别是靶向暴露的疏水性,导致不溶性和聚集在一定阈值上方。我们在这里提出的研究提供了额外的洞察,并证明存在暴露疏水性类型的选择性。

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