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A protein-binding domain, EH, identified in the receptor tyrosine kinase substrate Eps15 and conserved in evolution.

机译:在受体酪氨酸激酶底物Eps15中鉴定出蛋白质结合域EH,并在进化中保守。

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摘要

In this report we structurally and functionally define a binding domain that is involved in protein association and that we have designated EH (for Eps15 homology domain). This domain was identified in the tyrosine kinase substrate Eps15 on the basis of regional conservation with several heterogeneous proteins of yeast and nematode. The EH domain spans about 70 amino acids and shows approximately 60% overall amino acid conservation. We demonstrated the ability of the EH domain to specifically bind cytosolic proteins in normal and malignant cells of mesenchymal, epithelial, and hematopoietic origin. These observations prompted our search for additional EH-containing proteins in mammalian cells. Using an EH domain-specific probe derived from the eps15 cDNA, we cloned and characterized a cDNA encoding an EH-containing protein with overall similarity to Eps15; we designated this protein Eps15r (for Eps15-related). Structural comparison of Eps15 and Eps15r defines a family of signal transducers possessing extensive networking abilities including EH-mediated binding and association with Src homology 3-containing proteins.
机译:在本报告中,我们在结构上和功能上定义了一个参与蛋白质缔合的结合域,并指定了EH(用于Eps15同源域)。该结构域是在酪氨酸激酶底物Eps15中根据酵母和线虫的几种异质蛋白的区域保守性鉴定的。 EH结构域跨越约70个氨基酸,显示出约60%的总氨基酸保守性。我们证明了EH域能够特异性结合间充质,上皮和造血起源的正常和恶性细胞中的胞质蛋白。这些发现促使我们在哺乳动物细胞中寻找其他含EH的蛋白质。使用源自eps15 cDNA的EH结构域特异性探针,我们克隆并鉴定了一个编码与Eps15总体相似的含EH蛋白的cDNA。我们将该蛋白命名为Eps15r(用于Eps15相关蛋白)。 Eps15和Eps15r的结构比较定义了具有广泛联网功能的信号转换器家族,包括EH介导的结合以及与含Src同源性3的蛋白质的缔合。

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