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EGFR kinase possesses a broad specificity for ErbB phosphorylation sites and ligand increases catalytic-centre activity without affecting substrate binding affinity

机译:EGFR激酶对ErbB磷酸化位点具有广泛的特异性并且配体可提高催化中心活性而不会影响底物结合亲和力

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摘要

We previously found that EGF (epidermal growth factor) increases the EGFR (EGF receptor) kinase-binding affinity towards the major tyrosine phosphorylation sites in downstream adaptor proteins such as Gab1 (Grb2-associated binding protein 1) and Shc [Src homology 2 (SH2) domain and collagen containing protein], but not that towards EGFR autophosphorylation sites [Fan, Wong, Deb and Johnson (2004) J. Biol. Chem. >279, 38143–38150]. EGFR activation can also result in transphosphorylation of tyrosine resides in the C-terminal region of the related receptors ErbB2, ErbB3 and ErbB4 in heterodimers which are formed upon ligand stimulation. In the present study, we investigated the specificity of EGFR kinase by comparing the steady state kinetic parameters for peptides derived from all four ErbBs in the absence or presence of EGF. Our results demonstrated that (i) EGFR kinase can efficiently phosphorylate a broad range of diverse peptide sequences representing ErbB sites; (ii) certain ErbB2, ErbB3 and ErbB4 sites had higher specificity constants than any EGFR sequence and (iii) EGF stimulation consistently increases the kcat approx. 5-fold, but does not significantly alter the Km for any ErbB peptides. Furthermore, peptides containing lysine at position −2 or −3 N-terminal to the target tyrosine were found to be poor EGFR kinase substrates, and substitution of these lysines with glutamine decreased the Km and increased the kcat for these substrates. We conclude that EGFR kinase-mediated ErbB transphosphorylations are mostly controlled at the level of oligomerization, and not by a preference of the EGFR kinase for phosphorylation sites in any particular ErbB. The results also demonstrated that, unlike phosphorylation sites in select downstream targets, EGF does not regulate the recognition of phosphorylation sites in the C-terminal region of any of the ErbBs.
机译:我们以前发现,EGF(表皮生长因子)增加了对下游衔接子蛋白(例如Gab1(Grb2相关结合蛋白1)和Shc [Src同源性2(SH2) )和含有胶原蛋白的蛋白质],但不针对EGFR自磷酸化位点[Fan,Wong,Deb和Johnson(2004)J. Biol。化学> 279 ,38143-38150]。 EGFR激活还可能导致酪氨酸的转磷酸化位于异源二聚体中相关受体ErbB2,ErbB3和ErbB4的C端区域,后者是在配体刺激下形成的。在本研究中,我们通过比较在不存在或存在EGF的情况下衍生自所有四个ErbB的肽的稳态动力学参数来研究EGFR激酶的特异性。我们的结果表明:(i)EGFR激酶可以有效地磷酸化代表ErbB位点的多种肽序列; (ii)某些ErbB2,ErbB3和ErbB4位点具有比任何EGFR序列更高的特异性常数,并且(iii)EGF刺激持续增加kcat值。 5倍,但不会显着改变任何ErbB肽的Km。此外,发现在靶酪氨酸的-2或-3 N末端的位置上含有赖氨酸的肽是较差的EGFR激酶底物,这些赖氨酸被谷氨酰胺取代会降低Km,并增加这些底物的kcat。我们得出结论,EGFR激酶介导的ErbB转磷酸化主要控制在寡聚水平,而不是由EGFR激酶偏爱任何特定ErbB中的磷酸化位点。结果还证明,与某些下游靶标中的磷酸化位点不同,EGF不能调节任何ErbBs C端区域中磷酸化位点的识别。

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