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RNA decay, evolution, and the testis

机译:RNA衰减,进化和睾丸

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摘要

NMD is a highly conserved pathway that degrades specific subsets of RNAs. There is increasing evidence for roles of NMD in development. In this commentary, we focus on spermatogenesis, a process dramatically impeded upon loss or disruption of NMD. NMD requires strict regulation for normal spermatogenesis, as loss of a newly discovered NMD repressor, UPF3A, also causes spermatogenic defects, most prominently during meiosis. We discuss the unusual evolution of UPF3A, whose paralog, UPF3B, has the opposite biochemical function and acts in brain development. We also discuss the regulation of NMD during germ cell development, including in chromatoid bodies, which are specifically found in haploid germ cells. The ability of NMD to coordinately degrade batteries of RNAs in a regulated fashion during development is akin to the action of transcriptional pathways, yet has the advantage of driving rapid changes in gene expression.
机译:NMD是一种高度保守的途径,可降低RNA的特定子集。 NMD在发展中的角色越来越多的证据。 在这种评论中,我们专注于精子发生,这一过程造成了损失或破坏NMD的过程。 NMD需要严格的正常精子发生调节,因为新发现的NMD阻遏物UPF3A的丧失也引起了分裂过程中最显着的缺陷。 我们讨论了UPF3A的不寻常演变,其Paralog,UPF3B具有相反的生物化学功能和脑发展起作用。 我们还讨论了生殖细胞发育期间NMD的调节,包括在单倍体胚芽细胞中具体发现的染色体体。 NMD在开发期间以规范的方式协调RNA电池的能力是类似于转录途径的作用,但具有驱动基因表达的快速变化的优点。

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