Zhu G, Decker S J, Mayer B J, Saltiel A R
Department of Physiology, University of Michigan, School of Medicine, Ann Arbor 48109.
J Biol Chem. 1993 Jan 25;268(3):1775-9.
Src homology regions 2 (SH2) and 3 (SH3) are noncatalytic domains that are conserved among several proteins implicated in the regulation of cell proliferation. Using bacterially expressed fusion proteins containing the SH2 domain of the abl tyrosine kinase, we have quantitated the binding of these domains to the activated epidermal growth factor (EGF) receptor (EGFR). A 35S-labeled abl SH2 fusion protein binds to the human EGFR immunoprecipitated from EGF-treated NIH3T3 cells that overexpress the receptor. This binding is totally dependent on the pretreatment of cells with EGF. The interaction is rapid, reaching 50% of maximum within 1 min, and attaining apparent equilibrium by 10 min. Dissociation of the complex is biphasic with a rapidly dissociating component (t1/2 of less than 1 min), as well as a slowly dissociable component. The 35S-labeled abl SH2 fusion protein specifically binds to the EGFR in a saturable manner and is differentially inhibited by unlabeled fusion proteins containing SH2 domains from phospholipase C, the p85 subunit of phosphatidylinositol-3 kinase, and the GTPase activation protein of ras. To identify residues critical for abl SH2-EGFR binding, six point mutants were constructed in the highly conserved FLVRES motif. Three mutants (V170L, E172Q, and E174Q) display binding affinities similar to that of wild type. However, three other mutants (R171K, S173C, and S175C) have greatly reduced affinity. Interestingly, the binding affinity to the EGFR determined by the in vitro assay directly correlates with the transforming ability of the corresponding v-abl constructs in vivo (Mayer, B. J., Jackson, P. K., Etten, R. A. V., and Baltimore, D. (1992) Mol. Cell. Biol. 12, 609-618). These data indicate that the Arg-171, Ser-173, and Ser-175 are critical for both transformation and abl SH2 domain binding to phosphotyrosine-containing proteins.
Src同源区2(SH2)和3(SH3)是非催化结构域,在几种参与细胞增殖调控的蛋白质中保守。利用含有abl酪氨酸激酶SH2结构域的细菌表达融合蛋白,我们已对这些结构域与活化的表皮生长因子(EGF)受体(EGFR)的结合进行了定量。一种35S标记的abl SH2融合蛋白与从过表达该受体的经EGF处理的NIH3T3细胞中免疫沉淀的人EGFR结合。这种结合完全依赖于用EGF对细胞进行预处理。相互作用迅速,在1分钟内达到最大值的50%,并在10分钟时达到明显的平衡。复合物的解离是双相的,有一个快速解离成分(半衰期小于1分钟)以及一个缓慢解离成分。35S标记的abl SH2融合蛋白以可饱和的方式特异性结合EGFR,并受到来自磷脂酶C、磷脂酰肌醇-3激酶的p85亚基和ras的GTP酶激活蛋白的含SH2结构域的未标记融合蛋白的差异抑制。为了鉴定对abl SH2-EGFR结合至关重要的残基,在高度保守的FLVRES基序中构建了六个点突变体。三个突变体(V170L、E172Q和E174Q)显示出与野生型相似的结合亲和力。然而,其他三个突变体(R171K、S173C和S175C)的亲和力大大降低。有趣的是,通过体外测定确定的与EGFR的结合亲和力与相应的v-abl构建体在体内的转化能力直接相关(迈耶,B.J.,杰克逊,P.K.,埃滕,R.A.V.,和巴尔的摩,D.(1992年)《分子与细胞生物学》12,609 - 618)。这些数据表明,精氨酸-171、丝氨酸-173和丝氨酸-175对于转化以及abl SH2结构域与含磷酸酪氨酸的蛋白质的结合都至关重要。