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本文引用的文献

1
Control of protein quality and stoichiometries by N-terminal acetylation and the N-end rule pathway.N-端乙酰化和 N-端规则途径对蛋白质质量和化学计量的控制。
Mol Cell. 2013 May 23;50(4):540-51. doi: 10.1016/j.molcel.2013.03.018. Epub 2013 Apr 18.
2
N-terminal acetylation of the yeast Derlin Der1 is essential for Hrd1 ubiquitin-ligase activity toward luminal ER substrates.酵母 Derlin Der1 的 N 端乙酰化对于 Hrd1 泛素连接酶对腔内 ER 底物的活性是必不可少的。
Mol Biol Cell. 2013 Apr;24(7):890-900. doi: 10.1091/mbc.E12-11-0838. Epub 2013 Jan 30.
3
The N-end rule pathway.N-端规则途径。
Annu Rev Biochem. 2012;81:261-89. doi: 10.1146/annurev-biochem-051710-093308. Epub 2012 Apr 10.
4
Protein N-terminal acetyltransferases: when the start matters.蛋白 N-端乙酰转移酶:从起点开始的重要性。
Trends Biochem Sci. 2012 Apr;37(4):152-61. doi: 10.1016/j.tibs.2012.02.003. Epub 2012 Mar 7.
5
Enrich: software for analysis of protein function by enrichment and depletion of variants.Enrich:一种通过对变体进行富集和耗尽来分析蛋白质功能的软件。
Bioinformatics. 2011 Dec 15;27(24):3430-1. doi: 10.1093/bioinformatics/btr577. Epub 2011 Oct 17.
6
Molecular mechanism of scanning and start codon selection in eukaryotes.真核生物扫描和起始密码子选择的分子机制。
Microbiol Mol Biol Rev. 2011 Sep;75(3):434-67, first page of table of contents. doi: 10.1128/MMBR.00008-11.
7
Towards a functional understanding of protein N-terminal acetylation.朝着对蛋白质 N 端乙酰化功能的理解。
PLoS Biol. 2011 May;9(5):e1001074. doi: 10.1371/journal.pbio.1001074. Epub 2011 May 31.
8
The N-end rule pathway and regulation by proteolysis.N端规则途径与蛋白酶解调控
Protein Sci. 2011 Aug;20(8):1298-345. doi: 10.1002/pro.666.
9
Deep mutational scanning: assessing protein function on a massive scale.深度突变扫描:大规模评估蛋白质功能。
Trends Biotechnol. 2011 Sep;29(9):435-42. doi: 10.1016/j.tibtech.2011.04.003. Epub 2011 May 10.
10
High-resolution mapping of protein sequence-function relationships.高分辨率蛋白质序列-功能关系图谱绘制。
Nat Methods. 2010 Sep;7(9):741-6. doi: 10.1038/nmeth.1492. Epub 2010 Aug 15.

高通量分析体内蛋白质稳定性。

High-throughput analysis of in vivo protein stability.

机构信息

Department of Genome Sciences, University of Washington, Box 355065, Seattle, Washington 98195;

出版信息

Mol Cell Proteomics. 2013 Nov;12(11):3370-8. doi: 10.1074/mcp.O113.031708. Epub 2013 Jul 29.

DOI:10.1074/mcp.O113.031708
PMID:23897579
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3820947/
Abstract

Determining the half-life of proteins is critical for an understanding of virtually all cellular processes. Current methods for measuring in vivo protein stability, including large-scale approaches, are limited in their throughput or in their ability to discriminate among small differences in stability. We developed a new method, Stable-seq, which uses a simple genetic selection combined with high-throughput DNA sequencing to assess the in vivo stability of a large number of variants of a protein. The variants are fused to a metabolic enzyme, which here is the yeast Leu2 protein. Plasmids encoding these Leu2 fusion proteins are transformed into yeast, with the resultant fusion proteins accumulating to different levels based on their stability and leading to different doubling times when the yeast are grown in the absence of leucine. Sequencing of an input population of variants of a protein and the population of variants after leucine selection allows the stability of tens of thousands of variants to be scored in parallel. By applying the Stable-seq method to variants of the protein degradation signal Deg1 from the yeast Matα2 protein, we generated a high-resolution map that reveals the effect of ∼30,000 mutations on protein stability. We identified mutations that likely affect stability by changing the activity of the degron, by leading to translation from new start codons, or by affecting N-terminal processing. Stable-seq should be applicable to other organisms via the use of suitable reporter proteins, as well as to the analysis of complex mixtures of fusion proteins.

摘要

确定蛋白质的半衰期对于理解几乎所有的细胞过程都是至关重要的。目前测量体内蛋白质稳定性的方法,包括大规模方法,在通量或区分稳定性的微小差异方面都受到限制。我们开发了一种新方法 Stable-seq,它使用简单的遗传选择结合高通量 DNA 测序来评估大量蛋白质变体的体内稳定性。这些变体与代谢酶融合,这里使用的是酵母亮氨酸蛋白。编码这些 Leu2 融合蛋白的质粒被转化为酵母,根据它们的稳定性,融合蛋白积累到不同的水平,导致酵母在缺乏亮氨酸的情况下生长时的倍增时间不同。对蛋白质降解信号 Deg1 的变体进行测序,以及在亮氨酸选择后的变体测序,允许同时对数万种变体的稳定性进行评分。通过将 Stable-seq 方法应用于酵母 Matα2 蛋白的 Deg1 蛋白的变体,我们生成了一个高分辨率的图谱,揭示了大约 30000 个突变对蛋白质稳定性的影响。我们发现了一些可能通过改变降解信号的活性、导致从新的起始密码子翻译,或影响 N 端加工来影响稳定性的突变。通过使用合适的报告蛋白,Stable-seq 应该可以应用于其他生物体,以及融合蛋白的复杂混合物的分析。