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A SelB/EF-Tu/aIF2γ-like protein from Methanosarcina mazei in the GTP-bound form binds cysteinyl-tRNACys

机译:来自马氏甲烷八叠球菌的SelB / EF-Tu /aIF2γ样蛋白以GTP结合形式结合半胱氨酸-tRNACys

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摘要

The putative translation elongation factor Mbar_A0971 from the methanogenic archaeon Methanosarcina barkeri was proposed to be the pyrrolysine-specific paralogue of EF-Tu (“EF-Pyl”). In the present study, the crystal structures of its homologue from Methanosarcina mazei (MM1309) were determined in the GMPPNP-bound, GDP-bound, and apo forms, by the single-wavelength anomalous dispersion phasing method. The three MM1309 structures are quite similar (r.m.s.d. < 0.1 Å). The three domains, corresponding to domains 1, 2, and 3 of EF-Tu/SelB/aIF2γ, are packed against one another to form a closed architecture. The MM1309 structures resemble those of bacterial/archaeal SelB, bacterial EF-Tu in the GTP-bound form, and archaeal initiation factor aIF2γ, in this order. The GMPPNP and GDP molecules are visible in their co-crystal structures. Isothermal titration calorimetry measurements of MM1309·GTP·Mg2+, MM1309·GDP·Mg2+, and MM1309·GMPPNP·Mg2+ provided dissociation constants of 0.43, 26.2, and 222.2 μM, respectively. Therefore, the affinities of MM1309 for GTP and GDP are similar to those of SelB rather than those of EF-Tu. Furthermore, the switch I and II regions of MM1309 are involved in domain–domain interactions, rather than nucleotide binding. The putative binding pocket for the aminoacyl moiety on MM1309 is too small to accommodate the pyrrolysyl moiety, based on a comparison of the present MM1309 structures with that of the EF-Tu·GMPPNP·aminoacyl-tRNA ternary complex. A hydrolysis protection assay revealed that MM1309 binds cysteinyl (Cys)-tRNACys and protects the aminoacyl bond from non-enzymatic hydrolysis. Therefore, we propose that MM1309 functions as either a guardian protein that protects the Cys moiety from oxidation or an alternative translation factor for Cys-tRNACys.
机译:拟产甲烷的甲烷甲烷八叠球菌的推定翻译延伸因子Mbar_A0971被提议为EF-Tu(“ EF-Pyl”)的吡咯赖氨酸特异性旁系同源物。在本研究中,通过单波长异常色散定相方法确定了其与马氏甲烷八叠球菌(MM1309)的同源物的晶体结构,它们以GMPPNP结合,GDP结合和载脂蛋白形式存在。三种MM1309结构非常相似(r.m.s.d. <0.1Å)。对应于EF-Tu / SelB /aIF2γ的域1、2和3的三个域相互堆积在一起,形成一个封闭的体系结构。 MM1309的结构依次类似于细菌/古细菌SelB,GTP结合形式的细菌EF-Tu和古细菌起始因子aIF2γ。 GMPPNP和GDP分子在其共晶结构中可见。 MM1309·GTP·Mg 2 + ,MM1309·GDP·Mg 2 + 和MM1309·GMPPNP·Mg 2 + 的等温滴定热法测量提供的解离常数分别为0.43、26.2和222.2μM。因此,MM1309对GTP和GDP的亲和力类似于SelB,而不是EF-Tu。此外,MM1309的开关I和II区参与域间相互作用,而不是核苷酸结合。根据目前的MM1309结构与EF-Tu·GMPPNP·氨基酰基-tRNA三元复合物的比较,基于MM1309的氨基酰基部分的假定结合口袋太小,无法容纳吡咯基部分。水解保护实验表明,MM1309结合了半胱氨酸(Cys)-tRNA Cys 并保护了氨酰基键免受非酶水解。因此,我们认为MM1309既可以作为保护Cys部分不受氧化的保护蛋白,又可以作为Cys-tRNA Cys 的替代翻译因子。

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