Department of Molecular Microbiology and Genetics, Institute of Microbiology and Genetics, Göttingen Center for Molecular Biosciences (GZMB), Georg-August-University Göttingen, 37077 Göttingen, Germany.
Int J Mol Sci. 2021 Oct 28;22(21):11653. doi: 10.3390/ijms222111653.
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.
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。