Söhl Goran, Willecke Klaus
Institut für Genetik, Universität Bonn, Germany.
Cell Commun Adhes. 2003 Jul-Dec;10(4-6):173-80. doi: 10.1080/cac.10.4-6.173.180.
Gap junctions, composed of connexin protein subunits, allow direct communication through conduits between neighboring cells. Twenty and twenty-one members of the connexin gene family are likely to be expressed in the mouse and human genome, respectively, 19 of which can be grouped into sequence-orthologous pairs. Their gene structure appears to be relatively simple. In most cases, an untranslated exon1 is separated by an intron of different lengh from exon2 that includes the uninterrupted coding region and the 3'-untranslated region. However, there are several exceptions to this scheme, since some mouse connexin genes contain different 5'-untranslated regions spliced either in an alternative and/or consecutive manner. Additionally, in at least 3 mouse and human connexin genes (mCx36, mCx39, mCx57 and hCx31.3, hCx36, as well as hCx40.1) the reading frame is spliced together from 2 different exons. So far, there are two nomenclatures to classify the known connexin genes: The "Gja/Gjb" nomenclature, as it is currently adopted by the NCBI data base, contains some inconsistencies compared to the "Cx" nomenclature. Here we suggest some minor corrections to co-ordinate the "Gja/Gjb" nomenclature with the "Cx" nomenclature. Furthermore, this short review contains an update on phenotypic correlations between connexin deficient mice and patients bearing mutations in their orthologous connexin genes.
间隙连接由连接蛋白亚基组成,可通过相邻细胞间的通道实现直接通讯。连接蛋白基因家族在小鼠和人类基因组中可能分别有20个和21个成员表达,其中19个可归为序列直系同源对。它们的基因结构似乎相对简单。在大多数情况下,一个非翻译外显子1通过不同长度的内含子与外显子2隔开,外显子2包含不间断的编码区和3'非翻译区。然而,该模式存在一些例外情况,因为一些小鼠连接蛋白基因包含以交替和/或连续方式拼接的不同5'非翻译区。此外,在至少3个小鼠和人类连接蛋白基因(小鼠Cx36、Cx39、Cx57以及人类Cx31.3、Cx36和Cx40.1)中,阅读框由2个不同的外显子拼接而成。到目前为止,有两种命名法对已知的连接蛋白基因进行分类:NCBI数据库目前采用的“Gja/Gjb”命名法与“Cx”命名法相比存在一些不一致之处。在此,我们提出一些小的修正,以使“Gja/Gjb”命名法与“Cx”命名法协调一致。此外,这篇简短的综述包含了关于连接蛋白缺陷小鼠与在其直系同源连接蛋白基因中携带突变的患者之间表型相关性的最新信息。