Institute of Molecular Pathology and Immunology of the University of Porto, R. Dr. Roberto Frias, S/N, 4200-465 Porto, Portugal.
Mamm Genome. 2011 Oct;22(9-10):572-82. doi: 10.1007/s00335-011-9350-6. Epub 2011 Jul 19.
X Chromosome inactivation (XCI) silences one copy of most X-linked genes in female mammals. Notably, human and mouse differ strikingly in the number and organization of the genes that escape XCI. While on the human X Chromosome (Chr) escape genes are organized in domains, the few known genes that escape inactivation in the mouse appear to be isolated. Here we characterize the gene Cxorf26 and adjacent noncoding transcripts that map to XqD. We assess allelic expression in a nonrandomly X-inactivated cell line and directly demonstrate that 2610029G23Rik (Cxorf26) and its head-to-head neighbor (5530601H04Rik) escape X inactivation, creating a small escape domain. Both genes are robustly expressed from the inactive X Chr at approximately 50 and 30% of the expression levels of the active X, respectively. Additionally, consistent with XCI escape, the first exon of Cxorf26 is embedded within an unmethylated CpG island. To extend these results, we assayed ncRNAs adjacent to three other escape genes, Eif2s3x, Kdm5c, and Ddx3x. By allelic expression, three ncRNAs (D330035k16Rik, D930009k15Rik, and Gm16481) also escape X inactivation in the mouse, consistent with previous studies that reported female-biased expression. Altogether, these results establish that mouse escapees, like their human counterparts, can be clustered. Moreover, the fact that these ncRNAs are not found on the human X raises intriguing questions about potential regulatory roles of rapidly evolving ncRNAs in controlling escape gene expression.
X 染色体失活 (XCI) 会使雌性哺乳动物中大多数 X 连锁基因的一个拷贝沉默。值得注意的是,人类和小鼠在逃避 XCI 的基因数量和组织上存在显著差异。虽然人类 X 染色体 (Chr) 上的逃避基因组织在域中,但在小鼠中已知逃避失活的少数几个基因似乎是孤立的。在这里,我们描述了位于 XqD 上的基因 Cxorf26 和相邻的非编码转录本。我们在一个非随机 X 失活细胞系中评估等位基因表达,并直接证明 2610029G23Rik (Cxorf26) 和其头对头邻居 (5530601H04Rik) 逃避 X 失活,形成一个小的逃避域。这两个基因都从失活的 X Chr 以大约 50%和 30%的活性 X 表达水平强烈表达。此外,与 XCI 逃避一致,Cxorf26 的第一个外显子嵌入在未甲基化的 CpG 岛中。为了扩展这些结果,我们检测了三个其他逃避基因 Eif2s3x、Kdm5c 和 Ddx3x 附近的 ncRNAs。通过等位基因表达,三个 ncRNAs (D330035k16Rik、D930009k15Rik 和 Gm16481) 在小鼠中也逃避 X 失活,与先前报道的雌性偏倚表达的研究一致。总的来说,这些结果表明,与人类对应物一样,小鼠逃避者可以聚类。此外,这些 ncRNAs 不在人类 X 染色体上这一事实提出了一个有趣的问题,即快速进化的 ncRNAs 可能在控制逃避基因表达方面具有潜在的调节作用。