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核糖体 40S 亚基动态头部区域的多角度邻近视角

A Multi-Perspective Proximity View on the Dynamic Head Region of the Ribosomal 40S Subunit.

机构信息

Department of Molecular Microbiology and Genetics, Institute of Microbiology and Genetics, Göttingen Center for Molecular Biosciences (GZMB), Georg-August-University Göttingen, 37077 Göttingen, Germany.

出版信息

Int J Mol Sci. 2021 Oct 28;22(21):11653. doi: 10.3390/ijms222111653.

Abstract

A comparison of overlapping proximity captures at the head region of the ribosomal 40S subunit () in from four adjacent perspectives, namely Asc1/RACK1, Rps2/uS5, Rps3/uS3, and Rps20/uS10, corroborates dynamic co-localization of proteins that control activity and fate of both ribosomes and mRNA. Co-locating factors that associate with the are involved in (i) (de)ubiquitination of ribosomal proteins (Hel2, Bre5-Ubp3), (ii) clamping of inactive ribosomal subunits (Stm1), (iii) mRNA surveillance and vesicular transport (Smy2, Syh1), (iv) degradation of mRNA (endo- and exonucleases Ypl199c and Xrn1, respectively), (v) autophagy (Psp2, Vps30, Ykt6), and (vi) kinase signaling (Ste20). Additionally, they must be harmonized with translation initiation factors (eIF3, cap-binding protein Cdc33, eIF2A) and mRNA-binding/ribosome-charging proteins (Scp160, Sro9). The Rps/uS-BioID perspectives revealed substantial Asc1/RACK1-dependent configuration indicating a function of the β-propeller in context-specific spatial organization of this microenvironment. Toward resolving context-specific constellations, a Split-TurboID analysis emphasized the ubiquitin-associated factors Def1 and Lsm12 as neighbors of Bre5 at . These shuttling proteins indicate a common regulatory axis for the fate of polymerizing machineries for the biosynthesis of proteins in the cytoplasm and RNA/DNA in the nucleus.

摘要

从四个相邻的视角(Asc1/RACK1、Rps2/uS5、Rps3/uS3 和 Rps20/uS10)对核糖体 40S 亚基头部区域的重叠接近捕获进行比较,证实了控制核糖体和 mRNA 活性和命运的蛋白质的动态共定位。与 共定位的因子参与了(i)核糖体蛋白的(去)泛素化(Hel2、Bre5-Ubp3),(ii)无活性核糖体亚基的夹闭(Stm1),(iii)mRNA 监测和囊泡运输(Smy2、Syh1),(iv)mRNA 的降解(内切核酸酶和外切核酸酶 Ypl199c 和 Xrn1 分别),(v)自噬(Psp2、Vps30、Ykt6)和(vi)激酶信号转导(Ste20)。此外,它们必须与翻译起始因子(eIF3、帽结合蛋白 Cdc33、eIF2A)和 mRNA 结合/核糖体加载蛋白(Scp160、Sro9)协调。Rps/uS-BioID 视角揭示了大量依赖 Asc1/RACK1 的 构象,表明β-桨叶在这个微环境的上下文特异性空间组织中的功能。为了解决上下文特异性的结构,Split-TurboID 分析强调了泛素相关因子 Def1 和 Lsm12 作为 Bre5 在 处的邻居。这些穿梭蛋白表明,对于细胞质中蛋白质生物合成和核中 RNA/DNA 的聚合机器的命运,存在一个共同的调节轴。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6045/8583833/1c45db13af4d/ijms-22-11653-g001.jpg

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