Kaschner Lindsey A, Sharma Ruchika, Shrestha Om Kumar, Meyer Alison E, Craig Elizabeth A
Graduate Program in Cellular and Molecular Biology, University of Wisconsin-Madison, USA; Department of Biochemistry, University of Wisconsin-Madison, USA.
Department of Biochemistry, University of Wisconsin-Madison, USA.
Biochim Biophys Acta. 2015 May;1853(5):1035-45. doi: 10.1016/j.bbamcr.2015.01.014. Epub 2015 Jan 30.
J-proteins, obligate co-chaperones, provide specialization for Hsp70 function in a variety of cellular processes. Two of the 13 J-proteins of the yeast cytosol/nucleus, Zuo1 and Jjj1, are associated with 60S ribosomal subunits. Abundant Zuo1 facilitates folding of nascent polypeptides; Jjj1, of much lower abundance, functions in ribosome biogenesis. However, overexpression of Jjj1 substantially rescues growth defects of cells lacking Zuo1. We analyzed a region held in common by Zuo1 and Jjj1, outside the signature J-domain found in all J-proteins. This shared "zuotin homology domain" (ZHD) is important for ribosome association of both proteins. An N-terminal segment of Jjj1, containing the J-domain and ZHD, is ribosome-associated and, like full-length Jjj1, is competent to rescue both the cold- and cation-sensitivity of ∆zuo1. However, this fragment, when expressed at normal levels, cannot rescue the cytosolic ribosome biogenesis defect of ∆jjj1. Our results are consistent with a model in which the primary functions of Zuo1 and Jjj1 occur in the cytosol. In addition, our data suggest that Zuo1 and Jjj1 bind overlapping sites on ribosomes due to an interaction via their common ZHDs, but Jjj1 binds primarily to pre-60S particles and Zuo1 to mature subunits. We hypothesize that ZUO1 and JJJ1, which are conserved throughout eukaryotes, arose from an ancient duplication of a progenitor J-protein gene that encoded the ZHD ribosome-binding region; subsequently, specialized roles and additional ribosome interaction sites evolved.
J蛋白作为专一性的共伴侣蛋白,在多种细胞过程中为Hsp70的功能提供特异性。酵母胞质/细胞核中的13种J蛋白中有两种,即Zuo1和Jjj1,与60S核糖体亚基相关联。大量存在的Zuo1促进新生多肽的折叠;丰度低得多的Jjj1在核糖体生物合成中发挥作用。然而,Jjj1的过表达能显著挽救缺乏Zuo1的细胞的生长缺陷。我们分析了Zuo1和Jjj1共有的一个区域,该区域位于所有J蛋白中都存在的标志性J结构域之外。这个共享的“zuotin同源结构域”(ZHD)对这两种蛋白与核糖体的结合很重要。Jjj1的一个N端片段,包含J结构域和ZHD,与核糖体相关,并且像全长Jjj1一样,能够挽救∆zuo1的冷敏感性和阳离子敏感性。然而,当以正常水平表达时,这个片段无法挽救∆jjj1的胞质核糖体生物合成缺陷。我们的结果与一个模型一致,即Zuo1和Jjj1的主要功能发生在胞质中。此外,我们的数据表明,由于通过它们共同的ZHD相互作用,Zuo1和Jjj1在核糖体上结合重叠位点,但Jjj1主要结合前60S颗粒,而Zuo1结合成熟亚基。我们推测,在整个真核生物中保守的ZUO1和JJJ1,起源于一个编码ZHD核糖体结合区域的祖代J蛋白基因的古老复制;随后,专门的作用和额外的核糖体相互作用位点逐渐演化。