Department of Veterinary and Biomedical Sciences, University of Minnesota, Saint Paul, MN 55108, USA.
Department of Neurosurgery, University of Minnesota, Minneapolis, MN 55455, USA.
Viruses. 2022 Apr 29;14(5):935. doi: 10.3390/v14050935.
The acquisition of mG-cap-binding proteins is now recognized as a major variable driving the form and function of host RNAs. This manuscript compares the 5'-cap-RNA binding proteins that engage HIV-1 precursor RNAs, host mRNAs, small nuclear (sn)- and small nucleolar (sno) RNAs and sort into disparate RNA-fate pathways. Before completion of the transcription cycle, the transcription start site of nascent class II RNAs is appended to a non-templated guanosine that is methylated (mG-cap) and bound by hetero-dimeric CBP80-CBP20 cap binding complex (CBC). The CBC is a nexus for the co-transcriptional processing of precursor RNAs to mRNAs and the snRNA and snoRNA of spliceosomal and ribosomal ribonucleoproteins (RNPs). Just as sn/sno-RNAs experience hyper-methylation of mG-cap to trimethylguanosine (TMG)-cap, so do select HIV RNAs and an emerging cohort of mRNAs. TMG-cap is blocked from Watson:Crick base pairing and disqualified from participating in secondary structure. The HIV TMG-cap has been shown to license select viral transcripts for specialized cap-dependent translation initiation without eIF4E that is dependent upon CBP80/NCBP3. The exceptional activity of HIV precursor RNAs secures their access to maturation pathways of sn/snoRNAs, canonical and non-canonical host mRNAs in proper stoichiometry to execute the retroviral replication cycle.
现在人们已经认识到,mG 帽结合蛋白的获得是驱动宿主 RNA 形态和功能的主要变量。本文比较了参与 HIV-1 前体 RNA、宿主 mRNA、小核 (sn) 和小核仁 (sno) RNA 结合并分入不同 RNA 命运途径的 5'-帽-RNA 结合蛋白。在转录周期完成之前,新生 II 类 RNA 的转录起始位点被添加到非模板化的鸟苷上,该鸟苷被甲基化 (mG-帽) 并被异二聚体 CBP80-CBP20 帽结合复合物 (CBC) 结合。CBC 是前体 RNA 向 mRNA 以及剪接体和核糖体核糖核蛋白 (RNP) 的 snRNA 和 snoRNA 的共转录加工的枢纽。正如 sn/sno-RNA 经历 mG-帽的高度甲基化以形成三甲基鸟苷 (TMG)-帽一样,一些 HIV RNA 和新兴的一批 mRNA 也是如此。TMG-帽不能与 Watson:Crick 碱基配对,也没有资格参与二级结构。已经表明,HIV 的 TMG-帽可以为选定的病毒转录物赋予专门的依赖帽子的翻译起始能力,而无需依赖 CBP80/NCBP3 的 eIF4E。HIV 前体 RNA 的特殊活性确保了它们能够进入 sn/snoRNA、规范和非规范宿主 mRNA 的成熟途径,以适当的化学计量比执行逆转录病毒复制周期。