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METTL3 改变了帽状酶的表达及其对核糖体蛋白的活性。

METTL3 alters capping enzyme expression and its activity on ribosomal proteins.

机构信息

Department of Internal Medicine, Division of Pulmonary Diseases and Critical Care Medicine, Virginia Commonwealth University, Richmond, VA, 23298, USA.

Department of Cancer Biology and Genetics and Comprehensive Cancer Center, The Ohio State University, Columbus, OH, 43210, USA.

出版信息

Sci Rep. 2024 Nov 12;14(1):27720. doi: 10.1038/s41598-024-78152-5.

Abstract

The 5' cap, catalyzed by RNA guanylyltransferase and 5'-phosphatase (RNGTT), is a vital mRNA modification for the functionality of mRNAs. mRNA capping occurs in the nucleus for the maturation of the functional mRNA and in the cytoplasm for fine-tuning gene expression. Given the fundamental importance of RNGTT in mRNA maturation and expression there is a need to further investigate the regulation of RNGTT. N6-methyladenosine (mA) is one of the most abundant RNA modifications involved in the regulation of protein translation, mRNA stability, splicing, and export. We sought to investigate whether mA could regulate the expression and activity of RNGTT. In this short report, we demonstrated that the 3'UTR of RNGTT mRNA is methylated with ma by the mA writer methyltransferase 3 (METTL3). Knockdown of METTL3 resulted in reduced protein expression of RNGTT. Sequencing of capped mRNAs identified an underrepresentation of ribosomal protein mRNA overlapping with 5' terminal oligopyrimidine (TOP) mRNAs, and genes are dysregulated when cytoplasmic capping is inhibited. Pathway analysis identified disruptions in the mTOR and p70S6K pathways. A reduction in RPS6 mRNA capping, protein expression, and phosphorylation was detected with METTL3 knockdown.

摘要

5' 帽,由 RNA 鸟苷转移酶和 5'-磷酸酶(RNGTT)催化,是 mRNA 功能的重要 mRNA 修饰。mRNA 加帽发生在细胞核中以成熟功能性 mRNA,发生在细胞质中以精细调节基因表达。鉴于 RNGTT 在 mRNA 成熟和表达中的基本重要性,需要进一步研究 RNGTT 的调节。N6-甲基腺苷(mA)是参与调节蛋白质翻译、mRNA 稳定性、剪接和输出的最丰富的 RNA 修饰之一。我们试图研究 mA 是否可以调节 RNGTT 的表达和活性。在这个简短的报告中,我们证明了 RNGTT mRNA 的 3'UTR 通过 mA 写入甲基转移酶 3(METTL3)被 mA 甲基化。METTL3 的敲低导致 RNGTT 蛋白表达减少。加帽的 mRNA 测序确定核糖体蛋白 mRNA 的重叠与 5' 端寡嘧啶(TOP)mRNA 减少,当细胞质加帽被抑制时,基因被失调。通路分析确定 mTOR 和 p70S6K 通路受到干扰。用 METTL3 敲低检测到 RPS6 mRNA 加帽、蛋白表达和磷酸化减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa67/11557883/405c136bae8c/41598_2024_78152_Fig1_HTML.jpg

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