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首页> 外文期刊>Journal of Bioinformatics and Sequence Analysis >In silico sequence specific analysis of ERBB2 RTK alterations responsible for neuroectodermal tumors of Homo sapiens
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In silico sequence specific analysis of ERBB2 RTK alterations responsible for neuroectodermal tumors of Homo sapiens

机译:在计算机上序列分析智人神经外胚层肿瘤的ERBB2 RTK改变

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摘要

Current theories of oncogenesis suggest that tumors develop as a result of sequential alterations, which activate or inactivate tumor?suppressor?genes involved in the regulation of the cell cycle, and ultimately over express or suppress the proteins derived from those genes. Mutation is an obvious way of constitutive activation of a kinase. Owing to the importance of ERBB proteins in both development and cellular transformation, a lot of attention has been drawn to characterize the functions of this family of receptor tyrosine kinases. ERBB2 alterations are frequent in human tumors and result from translocation, mutation or amplification.?The ERBB2 (Her2) proto-oncogene encodes a receptor tyrosine kinase, which is frequently amplified and over expressed in human tumors. The?protein sequence of ERBB2, containing 1255 residues obtained from?Swiss-Prot, was induced with a mutation to be?characterized by using?Insilico?tools and compared with the wild type.
机译:当前的肿瘤发生理论表明,肿瘤是由于顺序改变而发展的,顺序改变激活或灭活参与细胞周期调控的肿瘤抑制基因,并最终过度表达或抑制衍生自那些基因的蛋白质。突变是激酶组成性激活的明显方式。由于ERBB蛋白在发育和细胞转化中的重要性,已经引起了许多关注以表征该受体酪氨酸激酶家族的功能。 ERBB2改变在人类肿瘤中很常见,并且是由易位,突变或扩增引起的。ERBB2(Her2)原癌基因编码一种受体酪氨酸激酶,该激酶在人类肿瘤中经常被扩增和过度表达。用“ Insilico”工具诱导ERBB2的α蛋白序列,该序列含有从“ Swiss-Prot”获得的含有1255个残基的残基,并与野生型进行比较。

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