Department of Molecular Biology, University Medical Centre Göttingen, 37073 Göttingen, Germany.
Institute for Organic and Biomolecular Chemistry, Georg-August-University, 37077 Göttingen, Germany.
RNA. 2018 Oct;24(10):1339-1350. doi: 10.1261/rna.064238.117. Epub 2018 Jul 3.
-methyladenosine (mA) modifications in RNAs play important roles in regulating many different aspects of gene expression. While mAs can have direct effects on the structure, maturation, or translation of mRNAs, such modifications can also influence the fate of RNAs via proteins termed "readers" that specifically recognize and bind modified nucleotides. Several YTH domain-containing proteins have been identified as mA readers that regulate the splicing, translation, or stability of specific mRNAs. In contrast to the other YTH domain-containing proteins, YTHDC2 has several defined domains and here, we have analyzed the contribution of these domains to the RNA and protein interactions of YTHDC2. The YTH domain of YTHDC2 preferentially binds mA-containing RNAs via a conserved hydrophobic pocket, whereas the ankyrin repeats mediate an RNA-independent interaction with the 5'-3' exoribonuclease XRN1. We show that the YTH and R3H domains contribute to the binding of YTHDC2 to cellular RNAs, and using crosslinking and analysis of cDNA (CRAC), we reveal that YTHDC2 interacts with the small ribosomal subunit in close proximity to the mRNA entry/exit sites. YTHDC2 was recently found to promote a "fast-track" expression program for specific mRNAs, and our data suggest that YTHDC2 accomplishes this by recruitment of the RNA degradation machinery to regulate the stability of mA-containing mRNAs and by utilizing its distinct RNA-binding domains to bridge interactions between mA-containing mRNAs and the ribosomes to facilitate their efficient translation.
m6A 修饰在 RNA 中发挥重要作用,调节基因表达的许多不同方面。虽然 mA 可以直接影响 mRNA 的结构、成熟或翻译,但这些修饰也可以通过专门识别和结合修饰核苷酸的称为“阅读器”的蛋白质来影响 RNA 的命运。已经鉴定出几种含有 YTH 结构域的蛋白质作为 mA 阅读器,它们调节特定 mRNA 的剪接、翻译或稳定性。与其他含有 YTH 结构域的蛋白质不同,YTHDC2 具有几个定义的结构域,在这里,我们分析了这些结构域对 YTHDC2 的 RNA 和蛋白质相互作用的贡献。YTHDC2 的 YTH 结构域通过保守的疏水性口袋优先结合含有 mA 的 RNA,而锚蛋白重复序列介导与 5'-3'外切核酸酶 XRN1 的 RNA 独立相互作用。我们表明,YTH 和 R3H 结构域有助于 YTHDC2 与细胞 RNA 的结合,并且使用交联和 cDNA 分析 (CRAC),我们揭示 YTHDC2 与小核糖体亚基在接近 mRNA 进入/出口位点的地方相互作用。最近发现 YTHDC2 促进特定 mRNA 的“快速通道”表达程序,我们的数据表明,YTHDC2 通过招募 RNA 降解机制来调节含有 mA 的 mRNA 的稳定性,并利用其独特的 RNA 结合结构域来桥接含有 mA 的 mRNA 与核糖体之间的相互作用,从而促进它们的有效翻译,从而实现这一目标。