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一种用于识别目标蛋白内源性翻译后修饰的简单工具集:表皮生长因子受体(EGFR)信号通路的简要概述

A simple toolset to identify endogenous post-translational modifications for a target protein: a snapshot of the EGFR signaling pathway.

作者信息

Horita Henrick, Law Andy, Hong Soonjin, Middleton Kim

机构信息

R&D Department, Cytoskeleton Inc., 1830 S Acoma St, Denver, Colorado, `80223, United States

R&D Department, Cytoskeleton Inc., 1830 S Acoma St, Denver, Colorado, `80223, United States.

出版信息

Biosci Rep. 2017 Aug 31;37(4). doi: 10.1042/BSR20170919. Epub 2017 Jul 19.

Abstract

Identification of a novel post-translational modification (PTM) for a target protein, defining its physiologic role, and studying its potential crosstalk with other PTMs is a challenging process. A set of highly sensitive tools termed Signal-Seeker kits was developed, which enables rapid and simple detection of post-translational modifications on any target protein.  The methodology for these tools utilizes affinity purification of modified proteins from a cell or tissue lysate and immunoblot analysis. These tools utilize a single lysis system that is effective at identifying endogenous, dynamic PTM changes, as well as the potential crosstalk between PTMs. As a proof-of-concept experiment, the acetylation, tyrosine phosphorylation, SUMOylation 2/3, and ubiquitination profiles of the EGFR - Ras - c-Fos axis were examined in response to EGF stimulation. All 10 previously identified PTMs of this signaling axis were confirmed using these tools, and it also identified acetylation as a novel modification of c-Fos. This axis in the EGF/EGFR signaling pathway was chosen because it is a well-established signaling pathway with proteins localized in the membrane, cytoplasmic, and nuclear compartments that ranged in abundance from 4.18x10 (EGFR) to 1.35x10 (c-Fos) molecules per A431 cell. These tools enabled the identification of low abundance PTMs, such as c-Fos Ac, at 17 molecules per cell. These studies highlight how pervasive PTMs are, and how stimulants like EGF induce multiple PTM changes on downstream signaling axis. Identification of endogenous changes and potential crosstalk between multiple PTMs for a target protein or signaling axis will provide regulatory mechanistic insight to investigators.

摘要

鉴定目标蛋白的一种新型翻译后修饰(PTM)、确定其生理作用并研究其与其他PTM的潜在串扰是一个具有挑战性的过程。开发了一套名为Signal-Seeker试剂盒的高灵敏度工具,可快速简便地检测任何目标蛋白上的翻译后修饰。这些工具的方法利用从细胞或组织裂解物中亲和纯化修饰蛋白并进行免疫印迹分析。这些工具使用单一裂解系统,该系统可有效识别内源性动态PTM变化以及PTM之间的潜在串扰。作为概念验证实验,研究了EGFR-Ras-c-Fos轴在EGF刺激下的乙酰化、酪氨酸磷酸化、SUMO化2/3和泛素化谱。使用这些工具确认了该信号轴先前确定的所有10种PTM,并且还将乙酰化鉴定为c-Fos的一种新型修饰。选择EGF/EGFR信号通路中的这个轴是因为它是一个成熟的信号通路,其蛋白定位于膜、细胞质和细胞核区室,每个A431细胞中的丰度范围从4.18x10(EGFR)到1.35x10(c-Fos)分子。这些工具能够识别低丰度的PTM,例如每个细胞17个分子的c-Fos Ac。这些研究突出了PTM的普遍性,以及像EGF这样的刺激物如何在下游信号轴上诱导多种PTM变化。鉴定目标蛋白或信号轴的内源性变化以及多种PTM之间的潜在串扰将为研究人员提供调控机制方面的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e43/6192658/24a4b6d5f132/bsr-37-bsr20170919-g8.jpg

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