Stoycheva Antitsa D, Brooks Charles L, Onuchic José N
Department of Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
J Mol Biol. 2004 Jul 9;340(3):571-85. doi: 10.1016/j.jmb.2004.04.073.
We investigate the effect of structural gatekeepers on the folding of the ribosomal protein S6. Folding thermodynamics and early refolding kinetics are studied for this system utilizing computer simulations of a minimalist protein model. When gatekeepers are eliminated, the thermodynamic signature of a folding intermediate emerges, and a marked decrease in folding efficiency is observed. We explain the prerequisites that determine the "strength" of a given gatekeeper. The investigated gatekeepers are found to have distinct functions, and to guide the folding and time-dependent packing of non-overlapping secondary structure elements in the protein. Gatekeepers avoid kinetic traps during folding by favoring the formation of "productive topologies" on the way to the native state. The trends in folding rates in the presence/absence of gatekeepers observed for our minimalist model of S6 are in very good agreement with experimental data on this protein.
我们研究了结构门控蛋白对核糖体蛋白S6折叠的影响。利用一个简约蛋白质模型的计算机模拟,对该系统的折叠热力学和早期重折叠动力学进行了研究。当去除门控蛋白时,折叠中间体的热力学特征出现,并且观察到折叠效率显著降低。我们解释了决定给定门控蛋白“强度”的先决条件。研究发现,所研究的门控蛋白具有不同的功能,并指导蛋白质中不重叠二级结构元件的折叠和随时间的堆积。门控蛋白通过在通往天然状态的过程中促进“有效拓扑结构”的形成,避免折叠过程中的动力学陷阱。我们的S6简约模型在有/无门控蛋白情况下观察到的折叠速率趋势与该蛋白的实验数据非常吻合。