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Yvh1富含半胱氨酸结构域的突变分析,Yvh1是酵母翻译能力所需的一种蛋白质。

Mutational Analyses of the Cysteine-Rich Domain of Yvh1, a Protein Required for Translational Competency in Yeast.

作者信息

Zang Hannah, Shackelford Robert, Bewley Alice, Beeser Alexander E

机构信息

Duke University School of Medicine, Durham, NC 27708, USA.

Logan University, St. Louis, MO 63017, USA.

出版信息

Biology (Basel). 2022 Aug 22;11(8):1246. doi: 10.3390/biology11081246.

Abstract

Ribosome assembly is a complex biological process facilitated by >200 trans-acting factors (TAFs) that function as scaffolds, place-holders or complex remodelers to promote efficient and directional ribosomal subunit assembly but are not themselves part of functional ribosomes. One such yeast TAF is encoded by Mrt4 which assembles onto pre-60S complexes in the nuclear compartment and remains bound to pre-60S complexes as they are exported into the cytoplasm. There, Mrt4 is displaced from pre-60S complexes facilitating the subsequent addition of the ribosomal stalk complex (P0/P1/P2). Ribosomal stalk proteins interact with translational GTPases (trGTPase) which facilitate and control protein synthesis on the ribosome. The rRNA-binding domain of Mrt4 is structurally similar to P0, with both proteins binding to the same interface of pre-60S subunits in a mutually exclusive manner; the addition of the ribosomal stalk therefore requires the displacement of Mrt4 from pre-60S subunits. Mrt4 removal requires the C-terminal cysteine-rich domain (CRD) of the dual-specificity phosphatase Yvh1. Unlike many other TAFs, yeast lacking Yvh1 are viable but retain Mrt4 on cytoplasmic pre-60S complexes precluding ribosomal stalk addition. Although Yvh1’s role in Mrt4 removal is well established, how Yvh1 accomplishes this is largely unknown. Here, we report an unbiased genetic screen to isolate Yvh1 variants that fail to displace Mrt4 from pre-60S ribosomes. Bioorthogonal non-canonical amino acid tagging (BONCAT) approaches demonstrate that these YVH1 loss-of-function variants also display defects in nascent protein production. The further characterization of one LOF variant, Yvh1F283L, establishes it as an expression-dependent, dominant-negative variant capable of interfering with endogenous Yvh1 function, and we describe how this Yvh1 variant can be used as a novel probe to better understand ribosome maturation and potentially ribosome heterogeneity in eukaryotes.

摘要

核糖体组装是一个复杂的生物学过程,由200多种反式作用因子(TAFs)推动,这些因子充当支架、占位符或复合物重塑剂,以促进核糖体亚基高效且定向地组装,但它们本身并非功能性核糖体的组成部分。酵母中的一个这样的TAF由Mrt4编码,它在细胞核区室组装到前60S复合物上,并在前60S复合物输出到细胞质时仍与之结合。在那里,Mrt4从前60S复合物上被取代,促进核糖体柄复合物(P0/P1/P2)随后的添加。核糖体柄蛋白与翻译性GTP酶(trGTPase)相互作用,后者促进并控制核糖体上的蛋白质合成。Mrt4的rRNA结合结构域在结构上与P0相似,两种蛋白质以互斥的方式结合到前60S亚基的同一界面;因此,核糖体柄的添加需要Mrt4从前60S亚基上被取代。去除Mrt4需要双特异性磷酸酶Yvh1的C端富含半胱氨酸结构域(CRD)。与许多其他TAFs不同,缺乏Yvh1的酵母仍可存活,但在细胞质前60S复合物上保留Mrt4,从而阻止核糖体柄的添加。尽管Yvh1在去除Mrt4中的作用已得到充分证实,但其具体实现方式在很大程度上仍不清楚。在这里,我们报告了一项无偏向性的遗传筛选,以分离无法从前60S核糖体上取代Mrt4的Yvh1变体。生物正交非天然氨基酸标记(BONCAT)方法表明,这些YVH1功能丧失变体在新生蛋白质产生方面也存在缺陷。对一种功能丧失变体Yvh1F283L的进一步表征表明,它是一种表达依赖性的显性负变体能够干扰内源性Yvh1的功能,并且我们描述了这种Yvh1变体如何用作一种新型探针,以更好地理解真核生物中的核糖体成熟以及潜在的核糖体异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7866/9404827/db51603a3e1d/biology-11-01246-g001.jpg

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