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A human sex-chromosomal gene family expressed in male germ cells and encoding variably charged proteins.

机译:人类性别染色体基因家族,在雄性生殖细胞中表达并编码可变电荷的蛋白质。

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摘要

Approximately 12 X-Y homologous gene pairs have been identified in the non-recombining portions of human sex chromosomes. These X-Y gene pairs fall into two categories. In the first category, both X and Y homologs are ubiquitously expressed. In the second category, the X homolog is ubiquitously expressed, whereas the Y homolog is expressed exclusively in the testis. Here we describe a family of human X-Y genes that cannot be assigned to either category. Designated VCX / Y ( Variable Charge X / Y; VCY previously known as BPY1 ), this gene family has multiple members on both X and Y, and all appear to be expressed exclusively in male germ cells. Members of the VCX / Y family share a high degree of sequence identity, with the exception that a 30 nucleotide unit is tandemly repeated in X-linked members but is present only once in Y-linked members. These atypical features suggest that the VCX / Y family has evolved in a manner previously unrecognized for mammalian X-Y genes. We also found that a copy of VCX is present in CRI-S232, a previously described genomic fragment derived from the X chromosome. Studies have shown that aberrant recombination between arrays of CRI-S232-homologous repeats flanking the steroid sulfatase ( STS ) gene results in STS deletion, which is manifested clinically as X-linked ichthyosis. The revelation that CRI-S232 contains VCX offers a more precise description of the genetic etiology of X-linked ichthyosis: it results from aberrant recombination between VCX gene arrays that flank the STS locus.
机译:在人性染色体的非重组部分中已经鉴定出大约12个X-Y同源基因对。这些X-Y基因对分为两类。在第一类中,X和Y同系物都被普遍表达。在第二类中,X同源物普遍表达,而Y同源物仅在睾丸中表达。在这里,我们描述了无法分配到任何类别的人类X-Y基因家族。指定为VCX / Y(可变电荷X / Y; VCY,以前称为BPY1),该基因家族在X和Y上均具有多个成员,并且似乎全部在雄性生殖细胞中表达。 VCX / Y家族成员具有高度的序列同一性,不同之处是在X连锁成员中串联重复一个30个核苷酸的单元,而在Y连锁成员中仅存在一次。这些非典型特征表明,VCX / Y家族以哺乳动物X-Y基因以前无法识别的方式进化。我们还发现VCX的副本存在于CRI-S232中,CRI-S232是先前描述的源自X染色体的基因组片段。研究表明,在类固醇硫酸酯酶(STS)基因侧翼的CRI-S232同源重复序列之间异常重组会导致STS缺失,这在临床上表现为X连锁鱼鳞病。 CRI-S232包含VCX的发现提供了对X连锁鱼鳞病的遗传病因的更精确描述:这是由于STS基因座两侧的VCX基因阵列之间异常重组所致。

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