Lee Kanghyun, Sharma Ruchika, Shrestha Om Kumar, Bingman Craig A, Craig Elizabeth A
Department of Biochemistry, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Nat Struct Mol Biol. 2016 Nov;23(11):1003-1010. doi: 10.1038/nsmb.3299. Epub 2016 Sep 26.
Ribosome-associated J protein-Hsp70 chaperones promote nascent-polypeptide folding and normal translational fidelity. The J protein Zuo1 is known to span the ribosomal subunits, but understanding of its function is limited. Here we present new structural and cross-linking data allowing more precise positioning of Saccharomyces cerevisiae Zuo1 near the 60S polypeptide-exit site and suggesting interactions of Zuo1 with the ribosomal protein eL31 and 25S rRNA helix 24. The junction between the 60S-interacting and subunit-spanning helices is a hinge that positions Zuo1 on the 40S yet accommodates subunit rotation. Interaction between the Zuo1 C terminus and 40S occurs via 18S rRNA expansion segment 12 (ES12) of helix 44, which originates at the decoding site. Deletions in either ES12 or the Zuo1 C terminus alter readthrough of stop codons and -1 frameshifting. Our study offers insight into how this cotranslational chaperone system may monitor decoding-site activity and nascent-polypeptide transit, thereby coordinating protein translation and folding.
核糖体相关J蛋白-Hsp70伴侣蛋白促进新生多肽折叠和正常的翻译保真度。已知J蛋白Zuo1横跨核糖体亚基,但其功能的了解有限。在此,我们展示了新的结构和交联数据,这些数据能更精确地将酿酒酵母Zuo1定位在60S多肽出口位点附近,并表明Zuo1与核糖体蛋白eL31和25S rRNA螺旋24相互作用。60S相互作用螺旋和跨亚基螺旋之间的连接是一个铰链,它将Zuo1定位在40S上,但能适应亚基旋转。Zuo1 C末端与40S之间的相互作用通过螺旋44的18S rRNA扩展片段12(ES12)发生,该片段起源于解码位点。ES12或Zuo1 C末端的缺失会改变终止密码子的通读和-1移码。我们的研究深入了解了这种共翻译伴侣系统如何监测解码位点活性和新生多肽转运,从而协调蛋白质翻译和折叠。