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X 连锁和 Y 连锁锌指基因中核苷酸替换率的对比

Contrasting rates of nucleotide substitution in the X-linked and Y-linked zinc finger genes.

作者信息

Shimmin L C, Chang B H, Li W H

机构信息

Human Genetics Center, University of Texas Houston Health Science Center, 77225.

出版信息

J Mol Evol. 1994 Dec;39(6):569-78. doi: 10.1007/BF00160402.

DOI:10.1007/BF00160402
PMID:7807546
Abstract

We have sequenced the entire exon (approximately 1.180 bp) encoding the zinc finger domain of the X-linked and Y-linked zinc finger genes (ZFX and ZFY, respectively) in the orangutan, the baboon, the squirrel monkey, and the rat; a total of 9,442 bp were sequenced. The ratio of the rates of synonymous substitution in the ZFY and ZFX genes is estimated to be 2.1 in primates. This is close to the ratio of 2.3 estimated from primate ZFY and ZFX intron sequences and supports the view that the male-to-female ratio of mutation rate in humans in considerably higher than 1 but not extremely large. The ratio of synonymous substitution rates in ZFY and ZFX is estimated to be 1.3 in the rat lineage but 4.2 in the mouse lineage. The former is close to the estimate (1.4) from introns. The much higher ratio in the mouse lineage (not statistically significant) might have arisen from relaxation of selective constraints. The synonymous divergence between mouse and rat ZFX is considerably lower than that between mouse and rat autosomal genes, agreeing with previous observations and providing some evidence for stronger selective constraints on synonymous changes in X-linked genes than in autosomal genes. At the protein level ZFX has been highly conserved in all placental mammals studied while ZFY has been well conserved in primates and foxes but has evolved rapidly in mice and rats, possibly due to relaxation of functional constraints as a result of the development of X-inactivation of ZFX in rodents. The long persistence of the ZFY-ZFX gene pair in mammals provides some insight into the process of degeneration of Y-linked genes.

摘要

我们已对猩猩、狒狒、松鼠猴和大鼠中X连锁和Y连锁锌指基因(分别为ZFX和ZFY)编码锌指结构域的整个外显子(约1180 bp)进行了测序;共测序9442 bp。在灵长类动物中,ZFY和ZFX基因的同义替换率之比估计为2.1。这接近于从灵长类动物ZFY和ZFX内含子序列估计的2.3的比率,并支持这样一种观点,即人类中突变率的男女比例远高于1,但并非极大。在大鼠谱系中,ZFY和ZFX的同义替换率之比估计为1.3,而在小鼠谱系中为4.2。前者接近于从内含子得出的估计值(1.4)。小鼠谱系中高得多的比率(无统计学意义)可能是由于选择性限制的放松所致。小鼠和大鼠ZFX之间的同义差异远低于小鼠和大鼠常染色体基因之间的差异,这与先前的观察结果一致,并为X连锁基因的同义变化比常染色体基因受到更强的选择性限制提供了一些证据。在蛋白质水平上,ZFX在所有研究的胎盘哺乳动物中高度保守,而ZFY在灵长类动物和狐狸中保守良好,但在小鼠和大鼠中进化迅速,这可能是由于啮齿动物中ZFX的X染色体失活发展导致功能限制放松的结果。ZFY - ZFX基因对在哺乳动物中的长期存在为Y连锁基因的退化过程提供了一些见解。

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Mouse Zfx protein is similar to Zfy-2: each contains an acidic activating domain and 13 zinc fingers.小鼠Zfx蛋白与Zfy-2相似:二者均含有一个酸性激活结构域和13个锌指结构。
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Unusual distribution of Zfy and Zfx sequences on the sex chromosomes of the wood lemming, a species exhibiting XY sex reversal.Zfy和Zfx序列在木旅鼠性染色体上的异常分布,木旅鼠是一种表现出XY性反转的物种。
Cytogenet Cell Genet. 1992;60(1):48-54. doi: 10.1159/000133294.

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Mouse Y-linked Zfy1 and Zfy2 are expressed during the male-specific interphase between meiosis I and meiosis II and promote the 2nd meiotic division.小鼠Y染色体连锁基因Zfy1和Zfy2在减数分裂I和减数分裂II之间的雄性特异性间期表达,并促进第二次减数分裂。
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