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Ac-LysargiNase 可与胰蛋白酶联合鉴定泛素化位点。

Ac-LysargiNase Complements Trypsin for the Identification of Ubiquitinated Sites.

机构信息

State Key Laboratory of Proteomics , Beijing Proteome Research Center , National Center for Protein Sciences (Beijing), Research Unit of Proteomics & Research and Development of New Drug, Institute of Lifeomics, Beijing 102206 , P. R. China.

School of Basic Medical Science, Key Laboratory of Combinatorial Biosynthesis and Drug Discovery of Ministry of Education, School of Pharmaceutical Sciences , Wuhan University , Wuhan 430071 , P. R. China.

出版信息

Anal Chem. 2019 Dec 17;91(24):15890-15898. doi: 10.1021/acs.analchem.9b04340. Epub 2019 Nov 27.

Abstract

Mass spectrometry (MS)-based identification of ubiquitinated sites requires trypsin digestion prior to MS analysis, and a signature peptide was produced with a diglycine residue attached to the ubiquitinated lysine (K-ε-GG peptide). However, the missed cleavage of modified lysines by trypsin results in modified peptides with increased length and charge, whose detection by MS analysis is suppressed by the vast majority of internally unmodified peptides. LysargiNase, the mirrored trypsin, is reported to cleave before lysine and arginine residues and to be favorable for the identification of methylation and phosphorylation, but its digestive characteristics related to ubiquitination are unclear. Herein, we tested the capacity of the in-house developed acetylated LysargiNase (Ac-LysargiNase) with high activity and stability, for cleaving ubiquitinated sites in both the seven types of ubiquitin chains and their corresponding K-ε-GG peptides. Interestingly, Ac-LysargiNase could efficiently cleave the K63-linked chain but had little effect on the other types of chains. Additionally, Ac-LysargiNase had higher exopeptidase activity than trypsin. Utilizing these features of the paired mirror proteases, a workflow of trypsin and Ac-LysargiNase tandem digestion was developed for the identification of ubiquitinated proteins. Through this method, the charge states and ionization capacity of the unmodified peptides were efficiently reduced, and the identification of modified sites was consequently increased by 30% to 50%. Strikingly, approximately 15% of the modified sites were cleaved by Ac-LysargiNase, resulting in shorter K-ε-GG peptides for better identification. The enzyme Ac-LysargiNase is expected to serve as an option for increasing the efficiency of modified site identification in ubiquitome research.

摘要

基于质谱(MS)的泛素化位点鉴定需要在 MS 分析前进行胰蛋白酶消化,并且在泛素化赖氨酸(K-ε-GG 肽)上连接一个二甘氨酸残基会产生特征性肽。然而,胰蛋白酶对修饰赖氨酸的漏切会导致修饰肽的长度和电荷增加,其通过 MS 分析的检测受到绝大多数内部未修饰肽的抑制。报道称,镜像胰蛋白酶 LysargiNase 在赖氨酸和精氨酸残基之前切割,并有利于甲基化和磷酸化的鉴定,但它与泛素化相关的消化特性尚不清楚。在此,我们测试了内源性开发的高活性和高稳定性的乙酰化 LysargiNase(Ac-LysargiNase)对 7 种泛素链及其相应 K-ε-GG 肽中泛素化位点的切割能力。有趣的是,Ac-LysargiNase 可以有效地切割 K63 连接的链,但对其他类型的链几乎没有影响。此外,Ac-LysargiNase 的外肽酶活性比胰蛋白酶高。利用这对镜像蛋白酶的特性,开发了一种胰蛋白酶和 Ac-LysargiNase 串联消化的工作流程,用于鉴定泛素化蛋白。通过这种方法,未修饰肽的电荷状态和离子化能力得到有效降低,修饰位点的鉴定率提高了 30%至 50%。引人注目的是,大约 15%的修饰位点被 Ac-LysargiNase 切割,产生更短的 K-ε-GG 肽,有利于更好的鉴定。酶 Ac-LysargiNase 有望成为提高泛素组研究中修饰位点鉴定效率的一种选择。

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