Hetrick Byron, Lee Kristin, Joseph Simpson
Department of Chemistry and Biochemistry, University of California, San Diego, 9500 Gilman Drive, La Jolla, California 92093-0314, USA.
Biochemistry. 2009 Dec 1;48(47):11178-84. doi: 10.1021/bi901577d.
Recognition of stop codons by class I release factors is a fundamental step in the termination phase of protein synthesis. Since premature termination is costly to the cell, release factors have to efficiently discriminate between stop and sense codons. To understand the mechanism of discrimination between stop and sense codons, we developed a new, pre-steady state kinetic assay to monitor the interaction of RF1 with the ribosome. Our results show that RF1 associates with similar association rate constants with ribosomes programmed with stop or sense codons. However, dissociation of RF1 from sense codons is as much as 3 orders of magnitude faster than from stop codons. Interestingly, the affinity of RF1 for ribosomes programmed with different sense codons does not correlate with the defects in peptide release. Thus, discrimination against sense codons is achieved with both an increase in the dissociation rates and a decrease in the rate of peptide release. These results suggest that sense codons inhibit conformational changes necessary for RF1 to stably bind to the ribosome and catalyze peptide release.
I类释放因子对终止密码子的识别是蛋白质合成终止阶段的一个基本步骤。由于过早终止对细胞来说成本高昂,释放因子必须有效地区分终止密码子和有义密码子。为了理解区分终止密码子和有义密码子的机制,我们开发了一种新的、稳态前动力学测定法来监测RF1与核糖体的相互作用。我们的结果表明,RF1与用终止密码子或有义密码子编程的核糖体以相似的结合速率常数结合。然而,RF1从有义密码子上解离的速度比从终止密码子上解离的速度快多达3个数量级。有趣的是,RF1对用不同有义密码子编程的核糖体的亲和力与肽释放缺陷无关。因此,通过增加解离速率和降低肽释放速率来实现对有义密码子的区分。这些结果表明,有义密码子抑制了RF1稳定结合到核糖体并催化肽释放所必需的构象变化。