Sham Y Y, Ma B, Tsai C J, Nussinov R
Laboratory of Experimental and Computational Biology, National Cancer Institute-Frederick, Frederick, Maryland 21702, USA.
Protein Sci. 2001 Jan;10(1):135-48. doi: 10.1110/ps.33301.
We have carried out molecular dynamics simulations of the native dihydrofolate reductase from Escherichia coli and several of its folded protein fragments at standard temperature. The simulations have shown fragments 1--36, 37--88, and 89--159 to be unstable, with a C(alpha)RMSD (C(alpha) root mean squared deviation) >5 A after 3.0 nsec of simulation. The unfolding of fragment 1--36 was immediate, whereas fragments 37--88 and 89--159 gradually unfolded because of the presence of the beta-sheet core structure. In the absence of residues 1--36, the two distinct domains comprising fragment 39--159 associated with each other, resulting in a stable conformation. This conformation retained most of its native structural elements. We have further simulated fragments derived from computational protein cutting. These were also found to be unstable, with the exception of fragment 104--159. In the absence of alpha(4), the loose loop region of residues 120--127 exhibited a beta-strand-like behavior, associating itself with the beta-sheet core of the protein fragment. The current study suggests that the folding of dihydrofolate reductase involves cooperative folding of distinct domains which otherwise would have been unstable as independent folded units in solution. Finally, the critical role of residues 1--36 in allowing the two distinct domains of fragment 104--159 to fold into the final native conformation is discussed.
我们在标准温度下对来自大肠杆菌的天然二氢叶酸还原酶及其几个折叠的蛋白质片段进行了分子动力学模拟。模拟结果表明,片段1 - 36、37 - 88和89 - 159不稳定,在模拟3.0纳秒后其Cα均方根偏差(CαRMSD)>5 Å。片段1 - 36的解折叠是即时的,而片段37 - 88和89 - 159由于β - 折叠核心结构的存在而逐渐解折叠。在没有残基1 - 36的情况下,构成片段39 - 159的两个不同结构域相互关联,形成了稳定的构象。这种构象保留了其大部分天然结构元件。我们进一步模拟了通过计算蛋白质切割得到的片段。除了片段104 - 159外,这些片段也被发现是不稳定的。在没有α4的情况下,残基120 - 127的松散环区域表现出类似β - 链的行为,与蛋白质片段的β - 折叠核心结合。当前的研究表明,二氢叶酸还原酶的折叠涉及不同结构域的协同折叠,否则这些结构域作为溶液中的独立折叠单元将是不稳定的。最后,讨论了残基1 - 36在使片段104 - 159的两个不同结构域折叠成最终天然构象中的关键作用。