首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >The Interaction of the Chaperonin Tailless Complex Polypeptide 1 (Tcp1) Ring Complex (Tric) with Ribosome-Bound Nascent Chains Examined Using Photo-Cross-Linking
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The Interaction of the Chaperonin Tailless Complex Polypeptide 1 (Tcp1) Ring Complex (Tric) with Ribosome-Bound Nascent Chains Examined Using Photo-Cross-Linking

机译:伴侣蛋白无尾复合多肽1(Tcp1)环复合物(Tric)与核糖体绑定的新生链的光交叉连接检查的相互作用。

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摘要

The eukaryotic chaperonin tailless complex polypeptide 1 (TCP1) ring complex (TRiC) (also called chaperonin containing TCP1 [CCT]) is a hetero-oligomeric complex that facilitates the proper folding of many cellular proteins. To better understand the manner in which TRiC interacts with newly translated polypeptides, we examined its association with nascent chains using a photo-cross-linking approach. To this end, a series of ribosome-bound nascent chains of defined lengths was prepared using truncated mRNAs. Photoactivatable probes were incorporated into these 35S- labeled nascent chains during translation. Upon photolysis, TRiC was cross-linked to ribosome-bound polypeptides exposing at least 50–90 amino acids outside the ribosomal exit channel, indicating that the chaperonin associates with much shorter nascent chains than indicated by previous studies. Cross-links were observed for nascent chains of the cytosolic proteins actin, luciferase, and enolase, but not to ribosome-bound preprolactin. The pattern of cross-links became more complex as the nascent chain increased in length. These results suggest a chain length–dependent increase in the number of TRiC subunits involved in the interaction that is consistent with the idea that the substrate participates in subunit-specific contacts with the chaperonin. Both ribosome isolation by centrifugation through sucrose cushions and immunoprecipitation with anti-puromycin antibodies demonstrated that the photoadducts form on ribosome-bound polypeptides. Our results indicate that TRiC/CCT associates with the translating polypeptide shortly after it emerges from the ribosome and suggest a close association between the chaperonin and the translational apparatus.
机译:真核伴侣蛋白无尾复合物多肽1(TCP1)环复合物(TRiC)(也称为包含TCP1 [CCT]的伴侣蛋白)是一种杂合寡聚复合物,有助于许多细胞蛋白的正确折叠。为了更好地理解TRiC与新翻译的多肽相互作用的方式,我们使用光交联方法检查了其与新生链的关联。为此,使用截短的mRNAs制备了一系列长度确定的核糖体结合的新生链。在翻译过程中,将可光激活的探针掺入这些 35 S标记的新生链中。光解后,TRiC与核糖体结合的多肽交联,在核糖体出口通道外暴露至少50-90个氨基酸,这表明伴侣蛋白的新生链比以前的研究短得多。观察到了交联的胞质蛋白肌动蛋白,萤光素酶和烯醇酶的新生链,但没有与核糖体结合的催乳激素。随着新生链长度的增加,交联的模式变得更加复杂。这些结果表明,参与相互作用的TRiC亚基数量依赖链长增加,这与底物参与与伴侣蛋白的亚基特异性接触的想法是一致的。通过蔗糖垫离心分离核糖体和用抗嘌呤霉素抗体进行免疫沉淀,都表明在核糖体结合的多肽上形成了光加合物。我们的结果表明TRiC / CCT在其从核糖体中出现后不久就与翻译多肽结合,并提示伴侣蛋白与翻译装置之间存在紧密的联系。

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