首页> 美国卫生研究院文献>Biochemical Journal >An investigation of the role of Glu-842 Glu-844 and His-846 in the function of the cytoplasmic domain of the epidermal growth factor receptor.
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An investigation of the role of Glu-842 Glu-844 and His-846 in the function of the cytoplasmic domain of the epidermal growth factor receptor.

机译:对Glu-842Glu-844和His-846在表皮生长因子受体的胞质域功能中的作用的研究。

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摘要

Activation of several protein kinases is mediated, at least in part, by phosphorylation of conserved Thr or Tyr residues located in a variable loop region, near the active site. In certain kinases, this activation loop also controls access of peptide substrates to the active site. In the corresponding region of the epidermal growth factor (EGF) receptor, a potential phosphorylation site, Tyr-845, does not appear to have a major regulatory role. In order to find out whether this variable loop can modulate the peptide phosphorylation and self-phosphorylation activities of the EGF receptor kinase, we investigated the role of residues around Tyr-845, using site-directed mutagenesis. Multiple sequence alignment showed that residues Glu-842, Glu-844 and His-846 are conserved or nearly conserved in eight members of the EGF receptor family. Mutants Glu-842-->Ser, Glu-844-->Gln and His-846-->Ala were expressed in the baculovirus/insect cell system, purified to near-homogeneity and characterized with respect to their peptide phosphorylation and self-phosphorylation activities. All three mutants were active, and these changes did not affect ATP binding directly. However, all mutations increased the Km(app.) for peptide substrates and MnATP in peptide phosphorylation reactions. The Vmax. for the phosphorylation of peptide RREELQDDYEDD was unaltered, but the Vmax. for self-phosphorylation (with variable [MnATP]) decreased 4-, 2- and 7-fold for mutants Glu-842-->Ser, Glu-844-->Gln and His-846-->Ala respectively, compared with the wild-type. These results suggest that binding of this peptide restored an optimal conformation at the active site that might be impaired by the mutations. A study of the dependence of initial rates of self-phosphorylation on cytoplasmic domain concentration showed that the order of reaction increased with the progress of self-phosphorylation. Both pre-phosphorylation and high concentrations of ammonium sulphate restored maximal or near-maximal levels of self-phosphorylation in the mutants, possibly through compensating conformational changes. A plausible homology model, based on the cyclic AMP-dependent protein kinase catalytic subunit, accommodated the sequence Glu-841-Glu-Lys-Glu as an insertion in the peptide binding loop at the edge of the active site cleft. The model suggests that Glu-844 and His-846 may participate in H-bonding interactions, thus stabilizing the active site region, while Glu-842 does not appear to interact with regions of the catalytic core.
机译:几种蛋白激酶的活化至少部分地通过位于活性位点附近的可变环区域中的保守的Thr或Tyr残基的磷酸化来介导。在某些激酶中,该激活环还控制肽底物进入活性位点。在表皮生长因子(EGF)受体的相应区域中,潜在的磷酸化位点Tyr-845似乎没有主要的调节作用。为了找出这个可变环是否可以调节EGF受体激酶的肽磷酸化和自身磷酸化活性,我们使用定点诱变研究了Tyr-845周围残基的作用。多个序列比对显示,残基Glu-842,Glu-844和His-846在EGF受体家族的八个成员中是保守的或几乎保守的。突变体Glu-842-> Ser,Glu-844-> Gln和His-846-> Ala在杆状病毒/昆虫细胞系统中表达,纯化至接近均一,并根据其肽的磷酸化和自磷酸化活性。这三个突变体均具有活性,并且这些变化不会直接影响ATP的结合。但是,所有突变都会增加肽底物的Km(app。)和肽磷酸化反应中的MnATP。 Vmax。肽RREELQDDYEDD的磷酸化未改变,但Vmax。突变体Glu-842-> Ser,Glu-844-> Gln和His-846-> Ala的自磷酸化(具有[MnATP]可变)分别降低了4倍,2倍和7倍野生型。这些结果表明该肽的结合在活性位点恢复了最佳构象,该构象可能被突变所破坏。对自磷酸化起始速率对细胞质域浓度的依赖性的研究表明,反应顺序随自磷酸化的进行而增加。预磷酸化和高浓度的硫酸铵都可以通过补偿构象变化来恢复突变体中自磷酸化的最大或接近最大水平。一个合理的同源性模型,基于环状AMP依赖性蛋白激酶催化亚基,在活性位点边缘的肽结合环中插入Glu-841-Glu-Lys-Glu序列。该模型表明,Glu-844和His-846可能参与H键相互作用,从而稳定了活性位点区域,而Glu-842似乎并未与催化核心区域相互作用。

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