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The evolution and genomic landscape of CGB1 and CGB2 genes

机译:CGB1和CGB2基因的进化和基因组格局

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摘要

The origin of completely novel proteins is a significant question in evolution. The luteinizing hormone (LHB)/chorionic gonadotropin (CGB) gene cluster in humans contains a candidate example of this process. Two genes in this cluster (CGB1 and CGB2) exhibit nucleotide sequence similarity with the other LHB/CGB genes, but as a result of frameshifting are predicted to encode a completely novel protein. Our analysis of these genes from humans and related primates indicates a recent origin in the lineage specific to humans and African great apes. While the function of these genes is not yet known, they are strongly conserved between human and chimpanzee and exhibit three-fold lower diversity than LHB across human populations with no mutations that would disrupt the coding sequence. The 5′-upstream region of CGB1/2 contains most of the promoter sequence of hCGβ plus a novel region proximal to the putative transcription start site. In silico prediction of putative transcription factor binding sites supports the hypothesis that CGB1 and CGB2 gene products are expressed in, and may contribute to, implantation and placental development.
机译:全新蛋白质的起源是进化中的重要问题。人体内的促黄体生成激素(LHB)/绒毛膜促性腺激素(CGB)基因簇包含了这一过程的候选例子。该簇中的两个基因(CGB1和CGB2)与其他LHB / CGB基因具有核苷酸序列相似性,但是由于移码,预计会编码一个全新的蛋白质。我们对来自人类和相关灵长类动物的这些基因的分析表明,其起源于人类和非洲大猿类特有的血统。尽管这些基因的功能尚不清楚,但它们在人和黑猩猩之间是高度保守的,并且在整个人类群体中显示出比LHB低三倍的多样性,并且没有会破坏编码序列的突变。 CGB1 / 2的5'上游区域包含hCGβ的大多数启动子序列,以及一个靠近假定的转录起始位点的新区域。在计算机模拟中预测的转录因子结合位点支持以下假说,即CGB1和CGB2基因产物在植入和胎盘发育中表达,并可能对此有贡献。

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