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首页> 外文期刊>FEBS Open Bio >Identification of protein interfaces within the multi‐aminoacyl‐tRNA synthetase complex: the case of lysyl‐tRNA synthetase and the scaffold protein p38
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Identification of protein interfaces within the multi‐aminoacyl‐tRNA synthetase complex: the case of lysyl‐tRNA synthetase and the scaffold protein p38

机译:鉴定多氨酰基tRNA合成酶复合物中的蛋白质界面:赖氨酰tRNA合成酶和支架蛋白p38

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Human cytoplasmic lysyl‐tRNA synthetase (LysRS) is associated within a multi‐aminoacyl‐tRNA synthetase complex (MSC). Within this complex, the p38 component is the scaffold protein that binds the catalytic domain of LysRS via its N‐terminal region. In addition to its translational function when associated to the MSC, LysRS is also recruited in nontranslational roles after dissociation from the MSC. The balance between its MSC‐associated and MSC‐dissociated states is essential to regulate the functions of LysRS in cellular homeostasis. With the aim of understanding the rules that govern association of LysRS in the MSC, we analyzed the protein interfaces between LysRS and the full‐length version of p38, the scaffold protein of the MSC. In a previous study, the cocrystal structure of LysRS with a N‐terminal peptide of p38 was reported [Ofir‐Birin Y et?al . (2013) Mol Cell 49, 30–42]. In order to identify amino acid residues involved in interaction of the two proteins, the non‐natural, photo‐cross‐linkable amino acid p ‐benzoyl‐ l ‐phenylalanine (Bpa) was incorporated at 27 discrete positions within the catalytic domain of LysRS. Among the 27 distinct LysRS mutants, only those with Bpa inserted in place of Lys356 or His364 were cross‐linked with p38. Using mass spectrometry, we unambiguously identified the protein interface of the cross‐linked complex and showed that Lys356 and His364 of LysRS interact with the peptide from Pro8 to Arg26 in native p38, in agreement with the published cocrystal structure. This interface, which in LysRS is located on the opposite side of the dimer to the site of interaction with its tRNA substrate, defines the core region of the MSC. The residues identified herein in human LysRS are not conserved in yeast LysRS, an enzyme that does not associate within the MSC, and contrast with the residues proposed to be essential for LysRS:p38 association in the earlier work.
机译:人胞质赖氨酰tRNA合成酶(LysRS)与多氨酰基tRNA合成酶复合物(MSC)相关。在此复合物中,p38成分是通过其N末端区域结合LysRS催化结构域的支架蛋白。除了与MSC关联时的翻译功能外,从MSC分离后,LysRS也以非翻译的角色募集。 MSC关联状态与MSC分离状态之间的平衡对于调节LysRS在细胞稳态中的功能至关重要。为了理解控制MSC中LysRS关联的规则,我们分析了LysRS与全长版本的p38(MSC的支架蛋白)之间的蛋白质界面。在以前的研究中,报道了LysRS与p38的N末端肽的共晶体结构[Ofir-Birin Y et al。 (2013)Mol Cell 49,30–42]。为了鉴定参与这两种蛋白质相互作用的氨基酸残基,在LysRS催化域内的27个离散位置掺入了非天然的,可光交联的氨基酸对苯甲酰基-1-苯丙氨酸(Bpa)。在这27种不同的LysRS突变体中,只有那些插入Bpa代替Lys356或His364的突变体才与p38交联。使用质谱法,我们明确鉴定了交联复合物的蛋白质界面,并显示LysRS的Lys356和His364与天然p38中从Pro8到Arg26的肽相互作用,这与已公开的共晶体结构一致。该界面在LysRS中位于与其tRNA底物相互作用的位点的二聚体的相对侧,定义了MSC的核心区域。人LysRS中本文鉴定的残基在酵母LysRS中是不保守的,酵母LysRS是一种在MSC中不缔合的酶,与在早期工作中提出的对于LysRS:p38缔合至关重要的残基形成对比。

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