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小鼠A/HeJ Y染色体:又一条变质的优质Y染色体。

The mouse A/HeJ Y chromosome: another good Y gone bad.

作者信息

Hunt Patricia A, Jackson Jodi M, Horan Sonia, Lawson Crystal A, Grindell Laura, Washburn Linda L, Eicher Eva M

机构信息

School of Molecular Biosciences, Washington State University, Pullman, WA, 99164-4660, USA.

出版信息

Chromosome Res. 2008;16(4):623-36. doi: 10.1007/s10577-008-1216-8. Epub 2008 May 20.

Abstract

In both humans and mice there are numerous reports of Y chromosome abnormalities that interfere with sex determination. Recent studies in the mouse of one such mutation have identified Y chromosome nondisjunction during preimplantation development as the cause of abnormal testis determination that results in a high frequency of true hermaphroditism. We report here that the mouse Y chromosome from the A/HeJ inbred strain induces similar aberrations in sex determination. Our analyses provide evidence, however, that the mechanism underlying these aberrations is not Y chromosome nondisjunction. On the basis of our findings, we postulate that a mutation at or near the centromere affects both the segregation and sex-determining properties of the A/HeJ Y chromosome. This Y chromosome adds to the growing list of Y chromosome aberrations in humans and mice. In both species, the centromere of the Y is structurally and morphologically distinct from the centromeres of all other chromosomes. We conclude that these centromeric features make the human and mouse Y chromosomes extremely sensitive to minor structural alterations, and that our studies provide yet another example of a good Y chromosome gone 'bad.'

摘要

在人类和小鼠中,有许多关于Y染色体异常干扰性别决定的报道。最近对小鼠中一种此类突变的研究已确定,植入前发育期间的Y染色体不分离是导致异常睾丸决定的原因,而这会导致高频率的真两性畸形。我们在此报告,来自A/HeJ近交系的小鼠Y染色体在性别决定中会诱发类似的畸变。然而,我们的分析提供了证据,表明这些畸变背后的机制并非Y染色体不分离。基于我们的发现,我们推测着丝粒处或其附近的一个突变会影响A/HeJ Y染色体的分离和性别决定特性。这条Y染色体增加了人类和小鼠中Y染色体畸变的种类。在这两个物种中,Y染色体的着丝粒在结构和形态上都与所有其他染色体的着丝粒不同。我们得出结论,这些着丝粒特征使人类和小鼠的Y染色体对微小的结构改变极其敏感,并且我们的研究提供了又一个正常Y染色体“变坏”的例子。

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