Stoldt M, Wöhnert J, Ohlenschläger O, Görlach M, Brown L R
Abteilung Molekulare Biophysik/NMR-Spektroskopie, Institut für Molekulare Biotechnologie, Postfach 100813, 07708 Jena, Germany.
EMBO J. 1999 Nov 15;18(22):6508-21. doi: 10.1093/emboj/18.22.6508.
The structure of the complex between ribosomal protein L25 and a 37 nucleotide RNA molecule, which contains the E-loop and helix IV regions of the E-domain of Escherichia coli 5S rRNA, has been determined to an overall r.m.s. displacement of 1.08 A (backbone heavy atoms) by heteronuclear NMR spectroscopy (Protein Databank code 1d6k). The interacting molecular surfaces are bipartite for both the RNA and the protein. One side of the six-stranded beta-barrel of L25 recognizes the minor groove of the E-loop with very little change in the conformations of either the protein or the RNA and with the RNA-protein interactions occurring mainly along one strand of the E-loop duplex. This minor groove recognition module includes two parallel beta-strands of L25, a hitherto unknown RNA binding topology. Binding of the RNA also induces conversion of a flexible loop to an alpha-helix in L25, the N-terminal tip of which interacts with the widened major groove at the E-loop/helix IV junction of the RNA. The structure of the complex reveals that the E-domain RNA serves as a preformed docking partner, while the L25 protein has one preformed and one induced recognition module.
核糖体蛋白L25与一个37个核苷酸的RNA分子形成的复合物结构已通过异核核磁共振光谱法(蛋白质数据库代码1d6k)确定,其整体均方根位移为1.08 Å(主链重原子),该RNA分子包含大肠杆菌5S rRNA E结构域的E环和螺旋IV区域。RNA和蛋白质的相互作用分子表面都是二分的。L25六链β桶的一侧识别E环的小沟,蛋白质或RNA的构象变化很小,且RNA-蛋白质相互作用主要沿着E环双链体的一条链发生。这种小沟识别模块包括L25的两条平行β链,这是一种迄今未知的RNA结合拓扑结构。RNA的结合还诱导L25中一个柔性环转变为α螺旋,其N末端与RNA的E环/螺旋IV连接处变宽的大沟相互作用。复合物的结构表明,E结构域RNA作为一个预先形成的对接伴侣,而L25蛋白有一个预先形成的和一个诱导的识别模块。