Department of Biological Chemistry, Weizmann Institute of Science, Rehovot 76100, Israel.
Cell. 2012 Apr 13;149(2):262-73. doi: 10.1016/j.cell.2012.03.016.
The folding of natural biopolymers into unique three-dimensional structures that determine their function is remarkable considering the vast number of alternative states and requires a large gap in the energy of the functional state compared to the many alternatives. This Perspective explores the implications of this energy gap for computing the structures of naturally occurring biopolymers, designing proteins with new structures and functions, and optimally integrating experiment and computation in these endeavors. Possible parallels between the generation of functional molecules in computational design and natural evolution are highlighted.
考虑到大量的替代状态,天然生物聚合物折叠成决定其功能的独特三维结构是非常了不起的,这需要功能状态的能量与许多替代状态相比有很大的差距。本文探讨了这一能量差距对计算天然生物聚合物结构、设计具有新结构和功能的蛋白质以及在这些努力中最佳地整合实验和计算的意义。强调了在计算设计和自然进化中生成功能分子之间的可能相似性。