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三种丝裂原活化蛋白激酶(MAPK)信号通路成像分析方法的开发与应用,用于为激酶抑制剂提供MAPK模块选择性分析:MK2-EGFP转位、c-Jun和ERK激活。

Development and implementation of three mitogen-activated protein kinase (MAPK) signaling pathway imaging assays to provide MAPK module selectivity profiling for kinase inhibitors: MK2-EGFP translocation, c-Jun, and ERK activation.

作者信息

Nickischer Debra, Laethem Carmen, Trask Oscar J, Williams Rhonda Gates, Kandasamy Ramani, Johnston Patricia A, Johnston Paul A

机构信息

Sphinx RTP Laboratories, Eli Lilly and Company, Research Triangle Park, NC, USA.

出版信息

Methods Enzymol. 2006;414:389-418. doi: 10.1016/S0076-6879(06)14022-7.

Abstract

This chapter describes the development and implementation of three independent imaging assays for the major mitogen-activated protein kinase (MAPK) signaling modules: p38, JNK, and ERK. There are more than 500 protein kinases encoded in the human genome that share an ATP-binding site and catalytic domain conserved in both sequence and structure. The majority of kinase inhibitors have been found to be competitive with ATP, raising concerns regarding kinase selectivity and potency in an environment of millimolar intracellular concentrations of ATP, as well as the potential for off-target effects via the many other cellular proteins that bind and/or utilize ATP. The apparent redundancy of the kinase isoforms and functions in the MAPK signaling modules present additional challenges for kinase inhibitor selectivity and potency. Imaging assays provide a method to address many of these concerns. Cellular imaging approaches facilitate analysis of the targets expressed in the context of their endogenous substrates and scaffolding proteins and in a complex environment for which subcellular localization, cross talk between pathways, phosphatase regulatory control, and intracellular ATP concentrations are relevant to the functions of the kinase. The assays described herein provide a strategy to profile kinase inhibitors for MAPK pathway selectivity while simultaneously providing information on cell morphology or toxicity. Results suggest that the MAPK pathways are indeed susceptible to nonselective kinase inhibitors such as staurosporin and inhibitors that inhibit upstream MAPK Kinase Kinases (MKKKs) and MAPK Kinases (MKKs) in the MAPK signaling pathway, especially those involved in cross talk between the pathways. However, selective MAPK inhibitors were identified that exhibited pathway selectivity as evidenced by significantly lower IC(50) values for their respective p38, JNK, or ERK signaling pathway assays.

摘要

本章描述了针对主要的丝裂原活化蛋白激酶(MAPK)信号模块:p38、JNK和ERK,开发并实施的三种独立成像分析方法。人类基因组中编码有500多种蛋白激酶,它们共享一个在序列和结构上均保守的ATP结合位点和催化结构域。已发现大多数激酶抑制剂与ATP具有竞争性,这引发了人们对激酶选择性和效能的担忧,因为细胞内ATP浓度为毫摩尔级,同时还担心通过许多其他结合和/或利用ATP的细胞蛋白产生脱靶效应。MAPK信号模块中激酶异构体和功能的明显冗余,给激酶抑制剂的选择性和效能带来了额外挑战。成像分析提供了一种解决其中许多问题的方法。细胞成像方法有助于在其内源底物和支架蛋白的背景下,以及在亚细胞定位、信号通路间的串扰、磷酸酶调节控制和细胞内ATP浓度与激酶功能相关的复杂环境中,对表达的靶标进行分析。本文所述的分析方法提供了一种策略,可对MAPK途径选择性的激酶抑制剂进行分析,同时提供有关细胞形态或毒性的信息。结果表明,MAPK途径确实易受非选择性激酶抑制剂(如星形孢菌素)以及抑制MAPK信号通路中上游MAPK激酶激酶(MKKK)和MAPK激酶(MKK)的抑制剂影响,尤其是那些参与信号通路间串扰的抑制剂。然而,也鉴定出了选择性MAPK抑制剂,它们表现出途径选择性,其各自的p38、JNK或ERK信号通路分析的IC(50)值显著更低,证明了这一点。

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