Yanagisawa Tatsuo, Ishii Ryohei, Hikida Yasushi, Fukunaga Ryuya, Sengoku Toru, Sekine Shun-ichi, Yokoyama Shigeyuki
RIKEN Systems and Structural Biology Center, 1-7-22 Suehiro-cho, Tsurumi, Yokohama, 230-0045, Japan.
J Struct Funct Genomics. 2015 Mar;16(1):25-41. doi: 10.1007/s10969-015-9193-6. Epub 2015 Jan 25.
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·Mg(2+), MM1309·GDP·Mg(2+), and MM1309·GMPPNP·Mg(2+) 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)-tRNA(Cys) 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-tRNA(Cys).
来自产甲烷古菌巴氏甲烷八叠球菌的假定翻译延伸因子Mbar_A0971被认为是EF-Tu的吡咯赖氨酸特异性旁系同源物(“EF-Pyl”)。在本研究中,通过单波长反常色散相位法测定了来自马氏甲烷八叠球菌(MM1309)的其同源物在结合GMPPNP、结合GDP和无配体形式下的晶体结构。这三种MM1309结构非常相似(均方根偏差<0.1 Å)。对应于EF-Tu/SelB/aIF2γ的结构域1、2和3的三个结构域相互堆积形成一个封闭结构。MM1309结构依次类似于细菌/古菌SelB、结合GTP形式的细菌EF-Tu和古菌起始因子aIF2γ的结构。在它们的共晶体结构中可以看到GMPPNP和GDP分子。对MM1309·GTP·Mg(2+)、MM1309·GDP·Mg(2+)和MM1309·GMPPNP·Mg(2+)进行等温滴定量热法测量,得到的解离常数分别为0.43、26.2和222.2 μM。因此,MM1309对GTP和GDP的亲和力与SelB相似,而不是与EF-Tu相似。此外,MM1309的开关I和II区域参与结构域间相互作用,而不是核苷酸结合。基于目前MM1309结构与EF-Tu·GMPPNP·氨酰基-tRNA三元复合物结构的比较,MM1309上氨酰基部分的假定结合口袋太小,无法容纳吡咯赖氨酰部分。水解保护试验表明,MM1309结合半胱氨酰(Cys)-tRNA(Cys)并保护氨酰基键免受非酶水解。因此,我们提出MM1309要么作为一种保护半胱氨酸部分不被氧化的守护蛋白,要么作为Cys-tRNA(Cys)的替代翻译因子发挥作用。