Gabant Guillaume, Auxilien Sylvie, Tuszynska Irina, Locard Marie, Gajda Michal J, Chaussinand Guylaine, Fernandez Bernard, Dedieu Alain, Grosjean Henri, Golinelli-Pimpaneau Béatrice, Bujnicki Janusz M, Armengaud Jean
CEA VALRHO, DSV-DIEP-SBTN, Service de Biochimie post-génomique & Toxicologie Nucléaire, F-30207 Bagnols-sur-Cèze, France.
Nucleic Acids Res. 2006 May 10;34(9):2483-94. doi: 10.1093/nar/gkl145. Print 2006.
The tRNA:m2(2)G10 methyltransferase of Pyrococus abyssi (PAB1283, a member of COG1041) catalyzes the N2,N2-dimethylation of guanosine at position 10 in tRNA. Boundaries of its THUMP (THioUridine synthases, RNA Methyltransferases and Pseudo-uridine synthases)--containing N-terminal domain [1-152] and C-terminal catalytic domain [157-329] were assessed by trypsin limited proteolysis. An inter-domain flexible region of at least six residues was revealed. The N-terminal domain was then produced as a standalone protein (THUMPalpha) and further characterized. This autonomously folded unit exhibits very low affinity for tRNA. Using protein fold-recognition (FR) methods, we identified the similarity between THUMPalpha and a putative RNA-recognition module observed in the crystal structure of another THUMP-containing protein (ThiI thiolase of Bacillus anthracis). A comparative model of THUMPalpha structure was generated, which fulfills experimentally defined restraints, i.e. chemical modification of surface exposed residues assessed by mass spectrometry, and identification of an intramolecular disulfide bridge. A model of the whole PAB1283 enzyme docked onto its tRNA(Asp) substrate suggests that the THUMP module specifically takes support on the co-axially stacked helices of T-arm and acceptor stem of tRNA and, together with the catalytic domain, screw-clamp structured tRNA. We propose that this mode of interactions may be common to other THUMP-containing enzymes that specifically modify nucleotides in the 3D-core of tRNA.
嗜热栖热菌的tRNA:m2(2)G10甲基转移酶(PAB1283,COG1041家族成员)催化tRNA中第10位鸟苷的N2,N2-二甲基化。通过胰蛋白酶有限水解评估了其含THUMP(硫代尿苷合成酶、RNA甲基转移酶和假尿苷合成酶)的N端结构域[1-152]和C端催化结构域[157-329]的边界。揭示了至少六个残基的结构域间柔性区域。然后将N端结构域作为独立蛋白(THUMPalpha)进行表达并进一步表征。这个自主折叠的单元对tRNA的亲和力非常低。使用蛋白质折叠识别(FR)方法,我们确定了THUMPalpha与在另一种含THUMP蛋白(炭疽芽孢杆菌的硫解酶ThiI)晶体结构中观察到的推定RNA识别模块之间的相似性。生成了THUMPalpha结构的比较模型,该模型满足实验确定的限制条件,即通过质谱评估表面暴露残基的化学修饰以及鉴定分子内二硫键。将整个PAB1283酶对接至其tRNA(Asp)底物的模型表明,THUMP模块特别依赖于tRNA的T臂和受体茎的共轴堆积螺旋,并与催化结构域一起形成螺旋夹结构的tRNA。我们提出,这种相互作用模式可能是其他特异性修饰tRNA三维核心中核苷酸的含THUMP酶所共有的特征。