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首页> 外文期刊>BMC Genomics >The human ABC transporter pseudogene family: Evidence for transcription and gene-pseudogene interference
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The human ABC transporter pseudogene family: Evidence for transcription and gene-pseudogene interference

机译:人类ABC转运蛋白假基因家族:转录和基因假基因干扰的证据

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Background Pseudogenes are an integral component of the human genome. Little attention, however, has so far been paid to the phenomenon that some pseudogenes are transcriptionally active. Recently, we demonstrated that the human ortholog of the rodent testis-specific ATP-binding cassette (ABC) transporter Abca17 is a ubiquitously transcribed pseudogene (ABCA17P). The aim of the present study was to establish a complete inventory of all ABC transporter pseudogenes in the human genome and to identify transcriptionally active ABC transporter pseudogenes. Moreover, we tested the hypothesis that a regulatory interdependency exists between ABC transporter pseudogenes and their parental protein coding equivalents. Results Systematic bioinformatic analysis revealed the existence of 22 ABC transporter pseudogenes within the human genome. We identified two clusters on chromosomes 15 and 16, respectively, which harbor almost half of all pseudogenes (n = 10). Available information from EST and mRNA databases and RT-PCR expression profiling indicate that a large portion of the ABC transporter pseudogenes (45%, n = 10) are transcriptionally active and some of them are expressed as alternative splice variants. We demonstrate that both pseudogenes of the pseudoxanthoma elasticum gene ABCC6, ABCC6P1 and ABCC6P2, are transcribed. ABCC6P1 and ABCC6 possess near-identical promoter sequences and their tissue-specific expression profiles are strikingly similar raising the possibility that they form a gene-pseudogene dual transcription unit. Intriguingly, targeted knockdown of the transcribed pseudogene ABCC6P1 resulted in a significant reduction of ABCC6 mRNA expression levels. Conclusion The human genome contains a surprisingly small number of ABC transporter pseudogenes relative to other known gene families. They are unevenly distributed across the chromosomes. Importantly, a significant portion of the ABC transporter pseudogenes is transcriptionally active. The downregulation of ABCC6 mRNA levels by targeted suppression of the expression of its pseudogene ABCC6P1 provides evidence, for the first time, for a regulatory interdependence of a transcribed pseudogene and its protein coding counterpart in the human genome.
机译:背景假基因是人类基因组的组成部分。然而,到目前为止,很少有人关注某些假基因具有转录活性的现象。最近,我们证明了啮齿动物睾丸特异性ATP结合盒(ABC)转运蛋白Abca17的人类直系同源基因是一个普遍转录的假基因(ABCA17P)。本研究的目的是建立人类基因组中所有ABC转运蛋白假基因的完整清单,并鉴定具有转录活性的ABC转运蛋白假基因。此外,我们测试了ABC转运蛋白假基因与其亲本蛋白编码等同物之间存在调控相互依赖性的假设。结果系统的生物信息学分析揭示了人类基因组中存在22个ABC转运蛋白假基因。我们分别在15号和16号染色体上发现了两个簇,它们几乎占据了所有假基因的一半(n = 10)。来自EST和mRNA数据库以及RT-PCR表达谱的可用信息表明,很大一部分ABC转运蛋白假基因(45%,n = 10)具有转录活性,其中一些表达为替代剪接变体。我们证明了伪拟黄瘤基因ABCC6,ABCC6P1和ABCC6P2的两个伪基因都被转录。 ABCC6P1和ABCC6具有几乎相同的启动子序列,它们的组织特异性表达谱非常相似,从而增加了它们形成基因-假基因双转录单元的可能性。有趣的是,转录的假基因ABCC6P1的靶向敲低导致ABCC6 mRNA表达水平显着降低。结论相对于其他已知基因家族,人类基因组中包含的ABC转运蛋白假基因数量少得令人惊讶。它们在染色体上分布不均。重要的是,ABC转运蛋白假基因的很大一部分具有转录活性。通过有针对性地抑制其假基因ABCC6P1的表达来下调ABCC6 mRNA的水平,首次为转录的假基因及其蛋白编码对应物在人类基因组中的调控相互依赖性提供了证据。

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