Park Sanghyun, Radmer Randall J, Klein Teri E, Pande Vijay S
Department of Chemistry and Structural Biology, Stanford University, Stanford, California 94305, USA.
J Comput Chem. 2005 Nov 30;26(15):1612-6. doi: 10.1002/jcc.20301.
Recently, the importance of proline ring pucker conformations in collagen has been suggested in the context of hydroxylation of prolines. The previous molecular mechanics parameters for hydroxyproline, however, do not reproduce the correct pucker preference. We have developed a new set of parameters that reproduces the correct pucker preference. Our molecular dynamics simulations of proline and hydroxyproline monomers as well as collagen-like peptides, using the new parameters, support the theory that the role of hydroxylation in collagen is to stabilize the triple helix by adjusting to the right pucker conformation (and thus the right phi angle) in the Y position.
最近,脯氨酸环构象在胶原蛋白中的重要性已在脯氨酸羟基化的背景下被提出。然而,先前用于羟脯氨酸的分子力学参数并不能重现正确的构象偏好。我们已经开发出了一组新的参数,它能够重现正确的构象偏好。我们使用新参数对脯氨酸和羟脯氨酸单体以及类胶原蛋白肽进行的分子动力学模拟,支持了这样一种理论,即胶原蛋白中羟基化的作用是通过在Y位置调整到正确的构象(从而得到正确的φ角)来稳定三螺旋结构。