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RNA结合蛋白SAMD4:当前认知与未来展望

RNA binding protein SAMD4: current knowledge and future perspectives.

作者信息

Wang Xin-Ya, Zhang Li-Na

机构信息

Beijing International Science and Technology Cooperation Base of Antivirus Drug, Faculty of Environment and Life, Beijing University of Technology, 100124, Beijing, People's Republic of China.

出版信息

Cell Biosci. 2023 Feb 2;13(1):21. doi: 10.1186/s13578-023-00968-x.

Abstract

SAMD4 protein family is a class of novel RNA-binding proteins that can mediate post-transcriptional regulation and translation repression in eukaryotes, which are highly conserved from yeast to humans during evolution. In mammalian cells, SAMD4 protein family consists of two members including SAMD4A/Smaug1 and SAMD4B/Smaug2, both of which contain common SAM domain that can specifically bind to different target mRNAs through stem-loop structures, also known as Smaug recognition elements (SREs), and regulate the mRNA stability, degradation and translation. In addition, SAMD4 can form the cytoplasmic mRNA silencing foci and regulate the translation of SRE-containing mRNAs in neurons. SAMD4 also can form the cytosolic membrane-less organelles (MLOs), termed as Smaug1 bodies, and regulate mitochondrial function. Importantly, many studies have identified that SAMD4 family members are involved in various pathological processes including myopathy, bone development, neural development, and cancer occurrence and progression. In this review, we mainly summarize the structural characteristics, biological functions and molecular regulatory mechanisms of SAMD4 protein family members, which will provide a basis for further research and clinical application of SAMD4 protein family.

摘要

SAMD4蛋白家族是一类新型的RNA结合蛋白,可在真核生物中介导转录后调控和翻译抑制,在进化过程中从酵母到人类都高度保守。在哺乳动物细胞中,SAMD4蛋白家族由两个成员组成,包括SAMD4A/Smaug1和SAMD4B/Smaug2,两者都含有共同的SAM结构域,该结构域可通过茎环结构(也称为Smaug识别元件,SREs)特异性结合不同的靶mRNA,并调节mRNA的稳定性、降解和翻译。此外,SAMD4可在神经元中形成细胞质mRNA沉默灶,并调节含SRE的mRNA的翻译。SAMD4还可形成称为Smaug1小体的胞质无膜细胞器(MLOs),并调节线粒体功能。重要的是,许多研究已确定SAMD4家族成员参与多种病理过程,包括肌病、骨骼发育、神经发育以及癌症的发生和发展。在本综述中,我们主要总结SAMD4蛋白家族成员的结构特征、生物学功能和分子调控机制,这将为SAMD4蛋白家族的进一步研究和临床应用提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f68/9893680/3c23d2924e6c/13578_2023_968_Fig1_HTML.jpg

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