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Male mice with large inversions or deletions of X-chromosome palindrome arms are fertile and express their associated genes during post-meiosis

机译:X染色体回文臂大量倒置或缺失的雄性小鼠可繁殖并在减数分裂后表达其相关基因

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摘要

Large (>10 kb) palindromic sequences are enriched on mammalian sex chromosomes. In mice, these palindromes harbor gene families (≥2 gene copies) expressed exclusively in post-meiotic testicular germ cells, a time when most single-copy sex-linked genes are transcriptionally repressed. This observation led to the hypothesis that palindromic structures or having ≥2 gene copies enable post-meiotic gene expression. We tested these hypotheses by using CRISPR to precisely engineer large (10’s of kb) inversions and deletions of X-chromosome palindrome arms for two regions that carry the mouse 4930567H17Rik and Mageb5 palindrome gene families. We found that 4930567H17Rik and Mageb5 gene expression is unaffected in mice carrying palindrome arm inversions and halved in mice carrying palindrome arm deletions. We assessed whether palindrome-associated genes were sensitive to reduced expression in mice carrying palindrome arm deletions. Male mice carrying palindrome arm deletions are fertile and show no defects in post-meiotic spermatogenesis. Together, these findings suggest palindromic structures on the sex chromosomes are not necessary for their associated genes to evade post-meiotic transcriptional repression and that these genes are not sensitive to reduced expression levels. Large sex chromosome palindromes may be important for other reasons, such as promoting gene conversion between palindrome arms.
机译:大(> 10kb)回文序列在哺乳动物性染色体上富集。在小鼠中,这些回文中包含仅在减数分裂后的睾丸生殖细胞中表达的基因家族(≥2个基因拷贝),而此时大多数单拷贝的性连锁基因被转录抑制。该观察结果提出了以下假设:回文结构或具有≥2个基因拷贝的基因可实现减数分裂后的基因表达。我们通过使用CRISPR对两个区域(携带小鼠4930567H17Rik和Mageb5回文基因家族)的X染色体回文臂进行了大的(10's kb)反转和缺失工程,来测试这些假设。我们发现4930567H17Rik和Mageb5基因表达在进行回文臂倒置的小鼠中不受影响,而在进行回文臂缺失的小鼠中减半。我们评估了与回文相关的基因是否对携带回文臂缺失的小鼠的表达降低敏感。携带回文臂缺失的雄性小鼠可育,减数分裂后的精子发生没有缺陷。总之,这些发现表明性染色体上的回文结构对于其相关基因逃避减数分裂后的转录抑制不是必需的,并且这些基因对降低的表达水平不敏感。大的性染色体回文可能由于其他原因而很重要,例如促进回文各臂之间的基因转换。

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