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ZFC3H1 和 U1-70K 促进具有 5' 剪接位点基序的 mRNAs 在核斑中的核滞留。

ZFC3H1 and U1-70K promote the nuclear retention of mRNAs with 5' splice site motifs within nuclear speckles.

机构信息

Department of Biochemistry, University of Toronto, Ontario M5S 1A8, Canada.

Department of Molecular Genetics, University of Toronto, Ontario M5S 1A8, Canada.

出版信息

RNA. 2022 Jun;28(6):878-894. doi: 10.1261/rna.079104.122. Epub 2022 Mar 29.

Abstract

Quality control of mRNA represents an important regulatory mechanism for gene expression in eukaryotes. One component of this quality control is the nuclear retention and decay of misprocessed RNAs. Previously, we demonstrated that mature mRNAs containing a 5' splice site (5'SS) motif, which is typically found in misprocessed RNAs such as intronic polyadenylated (IPA) transcripts, are nuclear retained and degraded. Using high-throughput sequencing of cellular fractions, we now demonstrate that IPA transcripts require the zinc finger protein ZFC3H1 for their nuclear retention and degradation. Using reporter mRNAs, we demonstrate that ZFC3H1 promotes the nuclear retention of mRNAs with intact 5'SS motifs by sequestering them into nuclear speckles. Furthermore, we find that U1-70K, a component of the spliceosomal U1 snRNP, is also required for the nuclear retention of these reporter mRNAs and likely functions in the same pathway as ZFC3H1. Finally, we show that the disassembly of nuclear speckles impairs the nuclear retention of reporter mRNAs with 5'SS motifs. Our results highlight a splicing independent role of U1 snRNP and indicate that it works in conjunction with ZFC3H1 in preventing the nuclear export of misprocessed mRNAs by sequestering them into nuclear speckles.

摘要

mRNA 的质量控制是真核生物基因表达的一个重要调控机制。该质量控制的一个组成部分是对错误加工 RNA 的核保留和降解。此前,我们证明了含有 5'剪接位点(5'SS)基序的成熟 mRNA(通常存在于错误加工的 RNA 中,如内含子多聚腺苷酸化(IPA)转录本)被核保留和降解。我们现在通过对细胞组分进行高通量测序,证明 IPA 转录本需要锌指蛋白 ZFC3H1 才能进行核保留和降解。通过报告 mRNA,我们证明 ZFC3H1 通过将它们隔离到核斑点中来促进具有完整 5'SS 基序的 mRNA 的核保留。此外,我们发现剪接体 U1 snRNP 的组成部分 U1-70K 也需要这些报告 mRNA 的核保留,并且可能与 ZFC3H1 具有相同的功能途径。最后,我们表明核斑点的解体会损害具有 5'SS 基序的报告 mRNA 的核保留。我们的结果突出了 U1 snRNP 的剪接非依赖性作用,并表明它与 ZFC3H1 一起通过将它们隔离到核斑点中来防止错误加工的 mRNA 的核输出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2bf/9074902/573ef9cd5598/878f01.jpg

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