首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Resolution of the HLA-DRB6 puzzle: a case of grafting a de novo-generated exon on an existing gene.
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Resolution of the HLA-DRB6 puzzle: a case of grafting a de novo-generated exon on an existing gene.

机译:HLA-DRB6难题的解决:将从头产生的外显子嫁接到现有基因上的案例。

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摘要

HLA-DRB6, one of the human major histocompatibility complex genes, lacks exon 1, which normally codes for the leader and the first four amino acid residues of the mature protein. Because it also lacks the HLA promoter, it was surprising to find that the gene is transcribed at a low level in a chimpanzee B-lymphoblastoma cell line, in which the DRB6 homolog is truncated as in humans. The study designed to resolve the paradox has revealed that a retrovirus related to the mouse mammary tumor viruses was inserted into intron 1 of DRB6 > 23 million years ago. The insertion was either accompanied or followed by the deletion of exon 1 and the promoter region of DRB6. In the 3' long terminal repeat of the retrovirus, however, an open reading frame for a new exon arose, which codes for a sequence of mostly hydrophobic amino acid residues; the sequence could function as a leader for the truncated DRB6 gene. This new exon has a functional donor splice site at its 3' end, which enables it to be spliced in register with DRB6 exon 2. Upstream from the new exon is a promoter enabling transcription of the DRB6 gene. Besides providing an example of a de novo generation of an exon, the study suggests a potential mechanism for generating new genes through the replacement of old exons with newly generated ones.
机译:HLA-DRB6是人类主要的组织相容性复杂基因之一,缺少外显子1,该外显子1通常编码成熟蛋白的前导序列和前四个氨基酸残基。由于它也缺少HLA启动子,因此令人惊讶地发现该基因在黑猩猩B淋巴母细胞瘤细胞系中以低水平转录,其中DRB6同源物在人类中被截短。旨在解决这一悖论的研究表明,与小鼠乳腺肿瘤病毒相关的逆转录病毒已被插入> 2300万年前的DRB6内含子1中。插入伴随或随后是外显子1和DRB6启动子区的缺失。然而,在逆转录病毒的3'长末端重复序列中,出现了一个新的外显子的开放阅读框,该外显子编码大部分疏水性氨基酸残基的序列。该序列可以充当DRB6基因截短的前导序列。该新的外显子在其3'末端具有功能性供体剪接位点,使其能够与DRB6外显子2进行剪接。新外显子的上游是启动子,其能够使DRB6基因转录。除了提供一个外显子从头产生的例子外,该研究还提出了一种潜在的机制,可以通过用新生成的外显子替换旧的外显子来生成新的基因。

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