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通过质谱筛选组合文库。2. 蛋白酪氨酸磷酸酶SHP-1最佳底物的鉴定。

Screening combinatorial libraries by mass spectrometry. 2. Identification of optimal substrates of protein tyrosine phosphatase SHP-1.

作者信息

Wang Peng, Fu Hua, Snavley Donald F, Freitas Michael A, Pei Dehua

机构信息

Department of Chemistry and Ohio State Biochemistry Program, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio 43210, USA.

出版信息

Biochemistry. 2002 May 14;41(19):6202-10. doi: 10.1021/bi025591f.

Abstract

Protein tyrosine phosphatases (PTPs) are a large family of enzymes that catalyze the hydrolytic removal of the phosphoryl group from phosphotyrosyl (pY) proteins. In this work, we have developed a novel combinatorial library method, termed "enzyme-catalyzed loss of isotope peak signal enhancement (ECLIPSE)", to determine the substrate specificity of PTPs. This method involves partial labeling of pY at a nonbridging phosphate oxygen atom with 50% (18)O ((16)O/(18)O = 1:1). A 361-member solution-phase peptide library with randomization at the -1 and -2 positions (relative to pY), RNNXXpYA-NH(2) (X = 19 alpha-amino acids except for Cys), was synthesized with the partially (18)O-labeled pY by the split-synthesis method. Each member of the resulting pY peptide library appeared as a doublet peak in the mass spectrum (m/z m and m + 2.0043). Limited treatment of the library with a PTP removed the mass-degenerate phosphoryl group from the most preferred substrates to generate products as singlet peaks, which were readily identified and sequenced by tandem mass spectrometry. Screening of the pY library against the catalytic domain of SHP-1 revealed that SHP-1 prefers an acidic residue at the -2 position, with aspartic acid being slightly better than glutamic acid. At the -1 position, SHP-1 also prefers an acidic residue, although a variety of other amino acids are also tolerated. On the other hand, positively charged residues at these positions render the corresponding peptides very poor substrates of SHP-1. Several selected peptides were individually synthesized and assayed against SHP-1, and the kinetic data confirmed the screening results. These results demonstrate that ECLIPSE is a viable method for studying the substrate specificity of PTPs.

摘要

蛋白质酪氨酸磷酸酶(PTPs)是一类大家族的酶,可催化从磷酸酪氨酸(pY)蛋白上水解去除磷酸基团。在本研究中,我们开发了一种新颖的组合文库方法,称为“酶催化同位素峰信号增强损失法(ECLIPSE)”,以确定PTPs的底物特异性。该方法涉及用50%的18O(16O/18O = 1:1)对pY的非桥连磷酸氧原子进行部分标记。通过裂分合成法,合成了一个包含361个成员的溶液相肽文库,该文库在相对于pY的-1和-2位置(RNNXXpYA-NH2,X = 19种除半胱氨酸外的α-氨基酸)具有随机化,且pY为部分18O标记。所得pY肽文库的每个成员在质谱中均表现为双峰(m/z m和m + 2.0043)。用一种PTP对该文库进行有限处理,可从最优选的底物上去除质量简并的磷酸基团,生成单峰产物,这些产物可通过串联质谱轻松鉴定和测序。用pY文库针对SHP-1的催化结构域进行筛选,结果显示SHP-1在-2位置偏爱酸性残基,天冬氨酸略优于谷氨酸。在-1位置,SHP-1也偏爱酸性残基,不过也能耐受多种其他氨基酸。另一方面,这些位置带正电荷的残基会使相应的肽成为SHP-1的极差底物。分别合成了几种选定的肽并针对SHP-1进行检测,动力学数据证实了筛选结果。这些结果表明,ECLIPSE是研究PTPs底物特异性的一种可行方法。

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