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四倍体金鱼中突触蛋白SNAP - 25的多个基因座。

Multiple loci for synapse protein SNAP-25 in the tetraploid goldfish.

作者信息

Risinger C, Larhammar D

机构信息

Department of Medical Genetics, Uppsala University, Sweden.

出版信息

Proc Natl Acad Sci U S A. 1993 Nov 15;90(22):10598-602. doi: 10.1073/pnas.90.22.10598.

Abstract

The common goldfish Carassius auratus is tetraploid and has 100 chromosomes. We describe here goldfish cDNA clones for SNAP-25, a 200-amino-acid synaptosome-associated protein that has remained highly conserved during evolution. SNAP-25 occurs as a single-copy gene in mouse, chicken, and Drosophila melanogaster. Sequences of six distinct goldfish cDNA clones and Southern hybridizations show that the goldfish has three, or possibly four, SNAP-25 loci rather than two as expected. A gene duplication early in actinopterygian fish evolution gave rise to the loci SnapA and SnapB. The proteins SNAP-A and SNAP-B are 94% and 91% identical to the mouse protein but are only 91% identical to each other. SNAP-B has a larger number of unique amino acid replacements than SNAP-A and also has more dramatic replacements. The tetraploidization resulted in two SnapB loci whose divergence from each other is consistent with a tetraploidization event 15-20 million years ago. The presence of duplicate SnapA loci has not yet been possible to confirm, possibly because they are still very similar to each other. Two of the SnapA cDNA clones and one SnapB cDNA clone have frameshift mutations. As these aberrant alleles otherwise display high sequence identity to the functional alleles, they probably became nonfunctional recently. The findings of allelic variability and aberrant alleles emphasize the importance of characterizing multiple DNA clones in tetraploid species.

摘要

普通金鱼(Carassius auratus)是四倍体,有100条染色体。我们在此描述金鱼中SNAP - 25的cDNA克隆,SNAP - 25是一种200个氨基酸的突触体相关蛋白,在进化过程中一直高度保守。SNAP - 25在小鼠、鸡和黑腹果蝇中以单拷贝基因形式存在。六个不同的金鱼cDNA克隆的序列以及Southern杂交表明,金鱼有三个,或者可能四个SNAP - 25基因座,而不是预期的两个。在辐鳍鱼进化早期的一次基因复制产生了基因座SnapA和SnapB。蛋白质SNAP - A和SNAP - B与小鼠蛋白质的同源性分别为94%和91%,但它们彼此之间的同源性仅为91%。SNAP - B比SNAP - A有更多独特的氨基酸替换,并且替换也更显著。四倍体化导致了两个SnapB基因座,它们之间的差异与1500万至2000万年前的四倍体化事件一致。目前尚无法证实是否存在重复的SnapA基因座,可能是因为它们彼此之间仍然非常相似。两个SnapA cDNA克隆和一个SnapB cDNA克隆存在移码突变。由于这些异常等位基因在其他方面与功能等位基因显示出高度的序列同一性,它们可能是最近才变得无功能的。等位基因变异性和异常等位基因的发现强调了在四倍体物种中对多个DNA克隆进行表征的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daa1/47824/2ef19db5fbd7/pnas01529-0200-a.jpg

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