Fabbretti Attilio, Pon Cynthia L, Hennelly Scott P, Hill Walter E, Lodmell J Stephen, Gualerzi Claudio O
Laboratory of Genetics, Department of Biology, University of Camerino, 62032 Camerino, MC, Italy.
Mol Cell. 2007 Jan 26;25(2):285-96. doi: 10.1016/j.molcel.2006.12.011.
Translation initiation factor IF3 is an essential bacterial protein, consisting of two domains (IF3C and IF3N) separated by a linker, which interferes with ribosomal subunit association, promotes codon-anticodon interaction in the P site, and ensures translation initiation fidelity. Using time-resolved chemical probing, we followed the dynamic binding path of IF3 on the 30S subunit and its release upon 30S-50S association. During binding, IF3 first contacts the platform (near G700) of the 30S subunit with the C domain and then the P-decoding region (near A790) with its N domain. At equilibrium, attained within less than a second, both sites are protected, but before reaching binding equilibrium, IF3 causes additional transient perturbations of both the platform edge and the solvent side of the subunit. Upon 30S-50S association, IF3 dissociates concomitantly with the establishment of the 30S-50S bridges, following the reverse path of its binding with the IF3N-A790 interaction being lost before the IF3C-G700 interaction.
翻译起始因子IF3是一种必需的细菌蛋白,由两个结构域(IF3C和IF3N)组成,中间由一个连接区隔开,它能干扰核糖体亚基的结合,促进P位点的密码子-反密码子相互作用,并确保翻译起始的保真度。利用时间分辨化学探测技术,我们追踪了IF3在30S亚基上的动态结合路径及其在30S-50S结合时的释放过程。在结合过程中,IF3首先通过C结构域与30S亚基的平台(靠近G700)接触,然后通过其N结构域与P解码区(靠近A790)接触。在不到一秒的时间内达到平衡时,两个位点都受到保护,但在达到结合平衡之前,IF3会对亚基的平台边缘和溶剂侧造成额外的瞬时扰动。在30S-50S结合时,IF3会随着30S-50S桥的建立而解离,其解离路径与结合路径相反,IF3N-A790相互作用在IF3C-G700相互作用之前消失。