Department of Biology, York University, Toronto, Canada.
Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, Canada.
Nucleic Acids Res. 2023 Sep 8;51(16):8805-8819. doi: 10.1093/nar/gkad563.
Splicing requires the tight coordination of dynamic spliceosomal RNAs and proteins. U6 is the only spliceosomal RNA transcribed by RNA Polymerase III and undergoes an extensive maturation process. In humans and fission yeast, this includes addition of a 5' γ-monomethyl phosphate cap by members of the Bin3/MePCE family as well as snoRNA guided 2'-O-methylation. Previously, we have shown that the Bin3/MePCE homolog Bmc1 is recruited to the S. pombe telomerase holoenzyme by the LARP7 family protein Pof8, where it acts in a catalytic-independent manner to protect the telomerase RNA and facilitate holoenzyme assembly. Here, we show that Bmc1 and Pof8 are required for the formation of a distinct U6 snRNP that promotes 2'-O-methylation of U6, and identify a non-canonical snoRNA that guides this methylation. We also show that the 5' γ-monomethyl phosphate capping activity of Bmc1 is not required for its role in promoting snoRNA guided 2'-O-methylation, and that this role relies on different regions of Pof8 from those required for Pof8 function in telomerase. Our results are consistent with a novel role for Bmc1/MePCE family members in stimulating 2'-O-methylation and a more general role for Bmc1 and Pof8 in guiding noncoding RNP assembly beyond the telomerase RNP.
剪接需要动态剪接体 RNA 和蛋白质的紧密协调。U6 是唯一由 RNA 聚合酶 III 转录的剪接体 RNA,并经历广泛的成熟过程。在人类和裂殖酵母中,这包括由 Bin3/MePCE 家族成员添加 5'γ-单磷酸帽以及 snoRNA 指导的 2'-O-甲基化。以前,我们已经表明,Bin3/MePCE 同源物 Bmc1 被 LARP7 家族蛋白 Pof8 招募到 S. pombe 端粒酶全酶中,在那里它以非催化依赖的方式发挥作用,以保护端粒酶 RNA 并促进全酶组装。在这里,我们表明 Bmc1 和 Pof8 是形成促进 U6 2'-O-甲基化的独特 U6 snRNP 所必需的,并鉴定了一种指导这种甲基化的非典型 snoRNA。我们还表明,Bmc1 的 5'γ-单磷酸帽加帽活性与其在促进 snoRNA 指导的 2'-O-甲基化中的作用无关,并且该作用依赖于 Pof8 的与 Pof8 在端粒酶中功能所需的不同区域。我们的结果与 Bmc1/MePCE 家族成员在刺激 2'-O-甲基化中的新作用以及 Bmc1 和 Pof8 在指导非编码 RNP 组装方面的更普遍作用一致,超出了端粒酶 RNP。