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Expanding the Repertoire of an ERK2 Recruitment Site: Cysteine Footprinting Identifies the D-Recruitment Site as a Mediator of Ets-1 Binding

机译:扩展ERK2招聘网站的库:半胱氨酸足迹确定D招聘网站作为Ets-1绑定的介体。

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摘要

Many substrates of ERK2 contain a D-site, a sequence recognized by ERK2 that is used to promote catalysis. Despite lacking a canonical D-site, the substrate Ets-1 is displaced from ERK2 by peptides containing one. This suggests that Ets-1 may contain a novel or cryptic D-site. To investigate this possibility a protein footprinting strategy was developed to elucidate ERK2–ligand interactions. Using this approach, single cysteine reporters were placed in the D-recruitment site (DRS) of ERK2 and the resulting ERK2 proteins subjected to alkylation by iodoacetamide. The ability of residues 1–138 of Ets-1 to protect the cysteines from alkylation was determined. The pattern of protection observed is consistent with Ets-1 occupying a hydrophobic binding site within the DRS of ERK2. Significantly, a peptide derived from the D-site of Elk-1, which is known to bind the DRS, exhibits a similar pattern of cysteine protection. This analysis expands the repertoire of the DRS on ERK2 and suggests that other targeting sequences remain to be identified. Furthermore, cysteine-footprinting is presented as a useful way to interrogate protein–ligand interactions at the resolution of a single amino acid.
机译:ERK2的许多底物包含一个D位点,该位点被ERK2识别,可用于促进催化作用。尽管缺乏典型的D位点,但底物Ets-1却被包含一个的肽从ERK2置换。这表明Ets-1可能包含一个新的或隐秘的D位点。为了研究这种可能性,开发了一种蛋白质足迹策略来阐明ERK2-配体之间的相互作用。使用这种方法,将单个半胱氨酸报告基因置于ERK2的D招聘位点(DRS),并将所得的ERK2蛋白通过碘乙酰胺进行烷基化。确定了Ets-1的残基1–138保护半胱氨酸免受烷基化的能力。观察到的保护模式与Ets-1在ERK2的DRS中占据疏水结合位点一致。重要地,已知与DRS结合的源自Elk-1的D位的肽表现出相似的半胱氨酸保护模式。这项分析扩展了DRS在ERK2上的功能,并建议其他靶向序列尚待鉴定。此外,半胱氨酸足迹被认为是在单个氨基酸分辨率下询问蛋白质-配体相互作用的一种有用方法。

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