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通过多种方法在酿酒酵母中定义小泛素样修饰蛋白质组。

Defining the SUMO-modified proteome by multiple approaches in Saccharomyces cerevisiae.

作者信息

Hannich J Thomas, Lewis Alaron, Kroetz Mary B, Li Shyr-Jiann, Heide Heinrich, Emili Andrew, Hochstrasser Mark

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, USA.

出版信息

J Biol Chem. 2005 Feb 11;280(6):4102-10. doi: 10.1074/jbc.M413209200. Epub 2004 Dec 6.

Abstract

SUMO, or Smt3 in Saccharomyces cerevisiae, is a ubiquitin-like protein that is post-translationally attached to multiple proteins in vivo. Many of these substrate modifications are cell cycle-regulated, and SUMO conjugation is essential for viability in most eukaryotes. However, only a limited number of SUMO-modified proteins have been definitively identified to date, and this has hampered study of the mechanisms by which SUMO ligation regulates specific cellular pathways. Here we use a combination of yeast two-hybrid screening, a high copy suppressor selection with a SUMO isopeptidase mutant, and tandem mass spectrometry to define a large set of proteins (>150) that can be modified by SUMO in budding yeast. These three approaches yielded overlapping sets of proteins with the most extensive set by far being those identified by mass spectrometry. The two-hybrid data also yielded a potential SUMO-binding motif. Functional categories of SUMO-modified proteins include SUMO conjugation system enzymes, chromatin- and gene silencing-related factors, DNA repair and genome stability proteins, stress-related proteins, transcription factors, proteins involved in translation and RNA metabolism, and a variety of metabolic enzymes. The results point to a surprisingly broad array of cellular processes regulated by SUMO conjugation and provide a starting point for detailed studies of how SUMO ligation contributes to these different regulatory mechanisms.

摘要

SUMO(在酿酒酵母中为Smt3)是一种类泛素蛋白,在体内可通过翻译后修饰附着于多种蛋白质。许多这类底物修饰受细胞周期调控,SUMO缀合对于大多数真核生物的生存能力至关重要。然而,迄今为止,仅明确鉴定出有限数量的SUMO修饰蛋白,这阻碍了对SUMO连接调节特定细胞途径机制的研究。在此,我们结合酵母双杂交筛选、使用SUMO异肽酶突变体的高拷贝抑制子筛选以及串联质谱,来确定一组在芽殖酵母中可被SUMO修饰的大量蛋白质(>150种)。这三种方法产生了重叠的蛋白质组,其中迄今为止最广泛的一组是通过质谱鉴定的。双杂交数据还产生了一个潜在的SUMO结合基序。SUMO修饰蛋白的功能类别包括SUMO缀合系统酶、与染色质和基因沉默相关的因子、DNA修复和基因组稳定性蛋白、应激相关蛋白、转录因子、参与翻译和RNA代谢的蛋白以及多种代谢酶。结果表明SUMO缀合调节的细胞过程出人意料地广泛,为详细研究SUMO连接如何促成这些不同调节机制提供了一个起点。

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