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SmcHD1, containing a structural-maintenance-of-chromosomes hinge domain, has a critical role in X inactivation

机译:包含染色体铰链结构域的SmcHD1在X失活中起关键作用

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X-chromosome inactivation is the mammalian dosage compensation mechanism by which transcription of X-linked genes is equalized between females and males. In an N-ethyl-N-nitrosourea (ENU) mutagenesis screen on mice for modifiers of epigenetic reprogramming, we identified the MommeD1 (modifier of murine metastable epialleles) mutation as a semidominant suppressor of variegation. MommeD1 shows homozygous female-specific mid-gestation lethality and hypomethylation of the X-linked gene Hprt1, suggestive of a defect in X inactivation(1). Here we report that the causative point mutation lies in a previously uncharacterized gene, Smchd1 (structural maintenance of chromosomes hinge domain containing 1). We find that SmcHD1 is not required for correct Xist expression, but localizes to the inactive X and has a role in the maintenance of X inactivation and the hypermethylation of CpG islands associated with the inactive X. This finding links a group of proteins normally associated with structural aspects of chromosome biology with epigenetic gene silencing.
机译:X染色体失活是哺乳动物剂量补偿机制,通过该机制,雌雄之间的X连锁基因转录均等。在对小鼠进行表观遗传重编程修饰因子的N-乙基-N-亚硝基脲(ENU)诱变筛选中,我们鉴定出MommeD1(鼠类亚稳态表位等位基因修饰因子)突变是半主要的变异抑制因子。 MommeD1显示纯合的女性特异的妊娠中期致死率和X连锁基因Hprt1的甲基化不足,提示X失活存在缺陷(1)。在这里我们报告致病点突变位于以前未表征的基因,Smchd1(染色体铰链域包含1的结构维持)。我们发现SmcHD1不是正确的Xist表达所必需的,而是位于非活性X上,并在维持X失活和与非活性X相关的CpG岛的超甲基化中起作用。这一发现将通常与蛋白质相关的一组蛋白质联系在一起。表观遗传基因沉默的染色体生物学的结构方面。

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