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人类多 tRNA 合成酶复合物的三维结构。

3-Dimensional architecture of the human multi-tRNA synthetase complex.

机构信息

Department of Cardiovascular and Metabolic Sciences, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, OH 44195, USA.

Department of Chemistry, Cleveland State University, Cleveland, OH 44115, USA.

出版信息

Nucleic Acids Res. 2020 Sep 4;48(15):8740-8754. doi: 10.1093/nar/gkaa569.

Abstract

In mammalian cells, eight cytoplasmic aminoacyl-tRNA synthetases (AARS), and three non-synthetase proteins, reside in a large multi-tRNA synthetase complex (MSC). AARSs have critical roles in interpretation of the genetic code during protein synthesis, and in non-canonical functions unrelated to translation. Nonetheless, the structure and function of the MSC remain unclear. Partial or complete crystal structures of all MSC constituents have been reported; however, the structure of the holo-MSC has not been resolved. We have taken advantage of cross-linking mass spectrometry (XL-MS) and molecular docking to interrogate the three-dimensional architecture of the MSC in human HEK293T cells. The XL-MS approach uniquely provides structural information on flexibly appended domains, characteristic of nearly all MSC constituents. Using the MS-cleavable cross-linker, disuccinimidyl sulfoxide, inter-protein cross-links spanning all MSC constituents were observed, including cross-links between eight protein pairs not previously known to interact. Intra-protein cross-links defined new structural relationships between domains in several constituents. Unexpectedly, an asymmetric AARS distribution was observed featuring a clustering of tRNA anti-codon binding domains on one MSC face. Possibly, the non-uniform localization improves efficiency of delivery of charged tRNA's to an interacting ribosome during translation. In summary, we show a highly compact, 3D structural model of the human holo-MSC.

摘要

在哺乳动物细胞中,八种细胞质氨酰-tRNA 合成酶(AARS)和三种非合成酶蛋白存在于一个大型多 tRNA 合成酶复合物(MSC)中。AARSs 在蛋白质合成过程中对遗传密码的解释以及与翻译无关的非典型功能中起着关键作用。尽管如此,MSC 的结构和功能仍不清楚。已经报道了 MSC 所有成分的部分或完整晶体结构;然而,尚未解析全酶的结构。我们利用交联质谱(XL-MS)和分子对接技术来研究人 HEK293T 细胞中 MSC 的三维结构。XL-MS 方法独特地提供了几乎所有 MSC 成分中具有柔性附加结构域的结构信息。使用 MS 可裂解交联剂二琥珀酰亚胺基氧化磺(disuccinimidyl sulfoxide),观察到跨越所有 MSC 成分的蛋白质间交联,包括以前未知相互作用的八个蛋白质对之间的交联。蛋白质内交联定义了几个成分中结构域之间的新的结构关系。出乎意料的是,观察到不对称的 AARS 分布,特征是一个 MSC 面上的 tRNA 反密码子结合结构域聚类。可能,非均匀定位提高了翻译过程中带电荷的 tRNA 与相互作用核糖体的递呈效率。总之,我们展示了人类全酶 MSC 的高度紧凑的三维结构模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d611/7470956/b4b6f0b48f23/gkaa569fig1.jpg

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