Department of Chemistry, University of Illinois, Urbana, IL 61801, USA.
Proc Natl Acad Sci U S A. 2010 Oct 12;107(41):17586-91. doi: 10.1073/pnas.1006760107. Epub 2010 Oct 4.
We combine experiment and computer simulation to show how macromolecular crowding dramatically affects the structure, function, and folding landscape of phosphoglycerate kinase (PGK). Fluorescence labeling shows that compact states of yeast PGK are populated as the amount of crowding agents (Ficoll 70) increases. Coarse-grained molecular simulations reveal three compact ensembles: C (crystal structure), CC (collapsed crystal), and Sph (spherical compact). With an adjustment for viscosity, crowded wild-type PGK and fluorescent PGK are about 15 times or more active in 200 mg/ml Ficoll than in aqueous solution. Our results suggest a previously undescribed solution to the classic problem of how the ADP and diphosphoglycerate binding sites of PGK come together to make ATP: Rather than undergoing a hinge motion, the ADP and substrate sites are already located in proximity under crowded conditions that mimic the in vivo conditions under which the enzyme actually operates. We also examine T-jump unfolding of PGK as a function of crowding experimentally. We uncover a nonmonotonic folding relaxation time vs. Ficoll concentration. Theory and modeling explain why an optimum concentration exists for fastest folding. Below the optimum, folding slows down because the unfolded state is stabilized relative to the transition state. Above the optimum, folding slows down because of increased viscosity.
我们结合实验和计算机模拟,展示了大分子拥挤如何显著影响磷酸甘油激酶(PGK)的结构、功能和折叠景观。荧光标记表明,随着拥挤剂(Ficoll 70)的增加,酵母 PGK 的紧凑状态会出现。粗粒度分子模拟揭示了三个紧凑的集合:C(晶体结构)、CC(崩溃的晶体)和 Sph(球形紧凑)。通过调整粘度,拥挤的野生型 PGK 和荧光 PGK 在 200mg/ml Ficoll 中的活性比在水溶液中高 15 倍或更高。我们的结果表明,一种以前未描述的解决方案可以解决 PGK 的 ADP 和二磷酸甘油酸结合位点如何聚集以产生 ATP 的经典问题:ADP 和底物位点不需要经历铰链运动,而是在拥挤条件下已经接近,这种拥挤条件模拟了酶实际运行的体内条件。我们还实验研究了 T-jump 对 PGK 的解折叠作用作为拥挤的函数。我们发现折叠松弛时间与 Ficoll 浓度之间存在非单调关系。理论和建模解释了为什么存在最佳浓度以实现最快折叠。低于最佳浓度时,折叠速度会减慢,因为与过渡态相比,展开状态得到稳定。高于最佳浓度时,折叠速度会减慢,因为粘度增加。