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编码人类信号转导衔接蛋白Nck(NCK)、Shc(SHC1)和Grb2(GRB2)的基因的染色体定位。

Chromosome locations of genes encoding human signal transduction adapter proteins, Nck (NCK), Shc (SHC1), and Grb2 (GRB2).

作者信息

Huebner K, Kastury K, Druck T, Salcini A E, Lanfrancone L, Pelicci G, Lowenstein E, Li W, Park S H, Cannizzaro L

机构信息

Jefferson Cancer Institute, Thomas Jefferson University, Philadelphia, PA 19107.

出版信息

Genomics. 1994 Jul 15;22(2):281-7. doi: 10.1006/geno.1994.1385.

Abstract

Abnormalities due to chromosomal aberration or point mutation in gene products of growth factor receptors or in ras gene products, which lie on the same signaling pathway, can cause disease in animals and humans. Thus, it can be important to determine chromosomal map positions of genes encoding "adapter" proteins, which are involved in transducing signals from receptor tyrosine kinases to downstream signal recipients such as ras, because adaptor protein genes could also, logically, serve as targets of mutation, rearrangement, or other aberration in disease. Therefore, DNAs from panels of rodent-human hybrids carrying defined complements of human chromosomes were assayed for the presence of the cognate genes for NCK, SHC, and GRB2, three SH2 or SH2/SH3 (Src homology 2 and 3) domain-containing adapter proteins. Additionally, NCK and SHC genes were more narrowly localized by chromosomal in situ hybridization. The NCK locus is at chromosome region 3q21, a region involved in neoplasia-associated changes; the SHC cognate locus, SHC1, is at 1q21, and the GRB2 locus is at 17q22-qter telomeric to the HOXB and NGFR loci. Both SHC1 and GRB2 are in chromosome regions that may be duplicated in some tumor types.

摘要

由于位于同一信号通路的生长因子受体基因产物或ras基因产物中的染色体畸变或点突变所导致的异常,可在动物和人类中引发疾病。因此,确定编码“衔接子”蛋白的基因在染色体上的定位可能很重要,这些衔接子蛋白参与将受体酪氨酸激酶的信号传递给下游信号受体,如ras,因为从逻辑上讲,衔接子蛋白基因也可能成为疾病中突变、重排或其他畸变的靶点。因此,对携带特定人类染色体互补体的啮齿动物-人类杂交细胞系的DNA进行检测,以确定NCK、SHC和GRB2这三种含SH2或SH2/SH3(Src同源结构域2和3)结构域的衔接子蛋白的同源基因是否存在。此外,通过染色体原位杂交更精确地定位了NCK和SHC基因。NCK基因座位于染色体区域3q21,该区域涉及肿瘤相关变化;SHC同源基因座SHC1位于1q21,GRB2基因座位于17q22 - qter,在HOXB和NGFR基因座的端粒方向。SHC1和GRB2都位于某些肿瘤类型中可能会发生重复的染色体区域。

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