首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Cdc37 has distinct roles in protein kinase quality control that protect nascent chains from degradation and promote posttranslational maturation
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Cdc37 has distinct roles in protein kinase quality control that protect nascent chains from degradation and promote posttranslational maturation

机译:Cdc37在蛋白激酶质量控制中具有独特的作用可保护新生链免于降解并促进翻译后成熟

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摘要

Cdc37 is a molecular chaperone that functions with Hsp90 to promote protein kinase folding. Analysis of 65 Saccharomyces cerevisiae protein kinases (∼50% of the kinome) in a cdc37 mutant strain showed that 51 had decreased abundance compared with levels in the wild-type strain. Several lipid kinases also accumulated in reduced amounts in the cdc37 mutant strain. Results from our pulse-labeling studies showed that Cdc37 protects nascent kinase chains from rapid degradation shortly after synthesis. This degradation phenotype was suppressed when cdc37 mutant cells were grown at reduced temperatures, although this did not lead to a full restoration of kinase activity. We propose that Cdc37 functions at distinct steps in kinase biogenesis that involves protecting nascent chains from rapid degradation followed by its folding function in association with Hsp90. Our studies demonstrate that Cdc37 has a general role in kinome biogenesis.
机译:Cdc37是一种分子伴侣蛋白,可与Hsp90一起发挥功能,促进蛋白激酶折叠。对cdc37突变菌株中的65种酿酒酵母蛋白激酶(约占kinome的50%)的分析表明,与野生型菌株相比,其中51种的丰度降低了。几种脂质激酶在cdc37突变株中也以减少的量积累。我们的脉冲标记研究结果表明,Cdc37保护新生激酶链免于合成后迅速降解。当cdc37突变细胞在降低的温度下生长时,这种降解表型被抑制,尽管这并未导致激酶活性的完全恢复。我们提出,Cdc37在激酶生物发生的不同步骤起作用,涉及保护新生链免于快速降解,然后使其折叠功能与Hsp90结合。我们的研究表明Cdc37在kinome生物发生中具有一般作用。

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