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Methyl-CpG-binding protein 2 represses LINE-1 expression and retrotransposition but not Alu transcription

机译:甲基CpG结合蛋白2抑制LINE-1表达和逆转座,但不抑制Alu转录

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摘要

In order to explore the defense mechanism by which retrotransposons are repressed, we assessed the ability of methyl-CpG-binding protein 2, MeCP2, to influence LINE-1 (L1) and Alu transcription and, furthermore, L1 retrotransposition. In transient transfection assays, targeting of the transcriptional-repression domain (TRD) of MeCP2 (via a linked Gal4 DNA-binding domain) to the transcriptional start site of L1 promoter-driven reporter constructs efficiently repressed transcription. The Gal4-linked TRD of the related methyl-CpG-binding protein MBD1 also repressed transcription but not that of MBD2. Furthermore, full-length MeCP2 effectively repressed transcription of a HpaII-methylated L1 reporter. Secondly, we used a genetic assay employing a full-length neo-marked L1 reporter construct to study L1 retrotransposition. We found the Gal4-linked TRD of MeCP2 to repress effectively L1 retrotransposition when targeted to the retrotransposition reporter. Retrotransposition was also reduced in response toin vitro HpaII methylation of the reporter and was further decreased by co-expressed full-length MeCP2. In striking contrast expression of the Gal4-linked TRD of MeCP2 had no inhibiting effect on transcription of an AluSx reporter tagged with a 7S-upstream sequence. Furthermore, full-length MeCP2 abrogated the methylation-induced repression of this reporter. Our results indicate that MeCP2 serves a role in repression of L1 expression and retrotransposition but has no inhibiting effect on Alu transcription.
机译:为了探索抑制逆转座子的防御机制,我们评估了甲基-CpG结合蛋白2 MeCP2影响LINE-1(L1)和Alu转录以及L1逆转座的能力。在瞬时转染测定中,将MeCP2的转录抑制域(TRD)(通过连接的Gal4 DNA结合域)靶向L1启动子驱动的报告基因构建体的转录起始位点有效抑制了转录。相关的甲基CpG结合蛋白MBD1的Gal4连接的TRD也抑制转录,但不抑制MBD2的转录。此外,全长MeCP2有效抑制HpaII甲基化的L1报告基因的转录。其次,我们使用了一种遗传分析方法,该方法采用了全长的新标记L1报告基因构建体来研究L1逆转座。我们发现MeCP2的Gal4连锁的TRD可以有效地抑制L1逆转座子,当它靶向逆转座子记者。逆转座子还响应于报告基因的体外HpaII甲基化而降低,并通过共表达全长MeCP2进一步降低。与之形成鲜明对比的是,MeCP2的Gal4连接的TRD的表达对带有7S上游序列标记的AluSx报告基因的转录没有抑制作用。此外,全长MeCP2消除了甲基化诱导的该报道基因的抑制。我们的结果表明,MeCP2在抑制L1表达和逆转座中起作用,但对Alu转录没有抑制作用。

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