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缝隙连接膜通道蛋白相关基因在人类和小鼠染色体上的分布。

Distribution of genes for gap junction membrane channel proteins on human and mouse chromosomes.

作者信息

Hsieh C L, Kumar N M, Gilula N B, Francke U

机构信息

Howard Hughes Medical Institute, Stanford, California.

出版信息

Somat Cell Mol Genet. 1991 Mar;17(2):191-200. doi: 10.1007/BF01232976.

Abstract

Gap junctions are widely distributed structures that mediate communication between cells. The channels that allow passage of small molecules between adjacent cells are made up of oligomeric proteins (connexins) that are encoded by a family of related genes. By probing somatic cell hybrid DNA on Southern filters with rat or human cDNAs or human genomic fragments, we have mapped four functioning gap junction genes, (alpha 1, beta 1, beta 2, and alpha 3), to different sites on human chromosomes: GJA1 (connexin43) to 6p21.1-q24.1; GJB1 (connexin32) to Xcen-q22; GJB2 (connexin26) to 13; and GJA3 (connexin46) also to 13, probably near GJB2. The GJA3 probe also hybridized to a restriction fragment that was mapped to chromosome 1. A GJA1-related pseudogene GJA1P was assigned to chromosome 5. The homologous loci in mouse were assigned to regions of known conserved syntenic groups: Gja-1 to chromosome 10; Gjb-1 to XD-F4 and Gjb-2 to 14. Of two sites of hybridization with the GJA3 probe, on mouse 14 and 5, we assume that the site on 14 corresponds to the GJA3 locus on human 13. Based on these data, additional members of this family of related genes can be isolated and characterized, and possible human and mouse mutations can be identified.

摘要

缝隙连接是广泛分布的结构,介导细胞间通讯。允许小分子在相邻细胞间通过的通道由寡聚蛋白(连接蛋白)组成,这些蛋白由一个相关基因家族编码。通过用大鼠或人类cDNA或人类基因组片段探测Southern印迹上的体细胞杂交DNA,我们已将四个功能性缝隙连接基因(α1、β1、β2和α3)定位到人类染色体的不同位点:GJA1(连接蛋白43)定位于6p21.1 - q24.1;GJB1(连接蛋白32)定位于Xcen - q22;GJB2(连接蛋白26)定位于13号染色体;GJA3(连接蛋白46)也定位于13号染色体,可能靠近GJB2。GJA3探针还与一个定位到1号染色体的限制性片段杂交。一个与GJA1相关的假基因GJA1P定位于5号染色体。小鼠中的同源基因座定位于已知保守同线群的区域:Gja - 1定位于10号染色体;Gjb - 1定位于XD - F4,Gjb - 2定位于14号染色体。对于与GJA3探针杂交的两个位点,在小鼠14号和5号染色体上,我们假定14号染色体上的位点对应于人类13号染色体上的GJA3基因座。基于这些数据,可以分离和鉴定该相关基因家族的其他成员,并识别可能的人类和小鼠突变。

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