Phannachet Kulwadee, Huang Raven H
Department of Biochemistry, School of Molecular and Cellular Biology, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, IL 61801, USA.
Nucleic Acids Res. 2004 Feb 27;32(4):1422-9. doi: 10.1093/nar/gkh287. Print 2004.
Pseudouridine 55 synthase (Psi55S) catalyzes isomerization of uridine (U) to pseudouridine (Psi) at position 55 in transfer RNA. The crystal structures of Thermotoga maritima Psi55S, and its complex with RNA, have been determined at 2.9 and 3.0 A resolutions, respectively. Structural comparisons with other families of pseudouridine synthases (PsiS) indicate that Psi55S may acquire its ability to recognize a stem-loop RNA substrate by two insertions of polypeptides into the PsiS core. The structure of apo-Psi55S reveals that these two insertions interact with each other. However, association with RNA substrate induces substantial conformational change in one of the insertions, resulting in disruption of interaction between insertions and association of both insertions with the RNA substrate. Specific interactions between two insertions, as well as between the insertions and the RNA substrate, account for the molecular basis of the conformational change.
假尿苷55合酶(Psi55S)催化转运核糖核酸(tRNA)中第55位的尿苷(U)异构化为假尿苷(Psi)。分别在2.9埃和3.0埃分辨率下测定了嗜热栖热菌Psi55S及其与RNA复合物的晶体结构。与其他假尿苷合酶(PsiS)家族的结构比较表明,Psi55S可能通过将两条多肽插入PsiS核心而获得识别茎环RNA底物的能力。脱辅基Psi55S的结构显示这两条插入序列相互作用。然而,与RNA底物的结合会导致其中一条插入序列发生显著的构象变化,从而破坏插入序列之间的相互作用,并使两条插入序列都与RNA底物结合。两条插入序列之间以及插入序列与RNA底物之间的特异性相互作用构成了构象变化的分子基础。