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通过 QTAX 策略对酵母 26S 蛋白酶体复合物的细胞周期特异性蛋白相互作用网络进行表征。

Characterization of cell cycle specific protein interaction networks of the yeast 26S proteasome complex by the QTAX strategy.

机构信息

Departments of Physiology & Biophysics and Developmental & Cell Biology, University of California, Irvine, California 92697-4560, USA.

出版信息

J Proteome Res. 2010 Apr 5;9(4):2016-29. doi: 10.1021/pr1000175.

Abstract

Ubiquitin-proteasome dependent protein degradation plays a fundamental role in the regulation of the eukaryotic cell cycle. Cell cycle transitions between different phases are tightly regulated to prevent uncontrolled cell proliferation, which is characteristic of cancer cells. To understand cell cycle phase specific regulation of the 26S proteasome and reveal the molecular mechanisms underlying the ubiquitin-proteasome degradation pathway during cell cycle progression, we have carried out comprehensive characterization of cell cycle phase specific proteasome interacting proteins (PIPs) by QTAX analysis of synchronized yeast cells. Our efforts have generated specific proteasome interaction networks for the G1, S, and M phases of the cell cycle and identified a total of 677 PIPs, 266 of which were not previously identified from unsynchronized cells. On the basis of the dynamic changes of their SILAC ratios across the three cell cycle phases, we have employed a profile vector-based clustering approach and identified 20 functionally significant groups of PIPs, 3 of which are enriched with cell cycle related functions. This work presents the first step toward understanding how dynamic proteasome interactions are involved in various cellular pathways during the cell cycle.

摘要

泛素-蛋白酶体依赖的蛋白质降解在真核细胞周期的调控中起着根本作用。细胞周期在不同阶段之间的转换受到严格控制,以防止不受控制的细胞增殖,这是癌细胞的特征。为了理解细胞周期特定阶段对 26S 蛋白酶体的调节,并揭示细胞周期进程中泛素-蛋白酶体降解途径的分子机制,我们通过对同步酵母细胞进行 QTAX 分析,对细胞周期特定蛋白酶体相互作用蛋白 (PIP) 进行了全面表征。我们的努力为细胞周期的 G1、S 和 M 期生成了特定的蛋白酶体相互作用网络,并鉴定了总共 677 个 PIP,其中 266 个以前从未从非同步细胞中鉴定出来。基于它们在三个细胞周期阶段的 SILAC 比值的动态变化,我们采用了基于轮廓向量的聚类方法,鉴定了 20 个功能显著的 PIP 组,其中 3 个富含与细胞周期相关的功能。这项工作是理解动态蛋白酶体相互作用如何参与细胞周期中各种细胞途径的第一步。

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