Theoretical Molecular Biophysics Group, Institute of Physics, N. Copernicus University, Grudziadzka 5, 87-100, Torun, Poland.
J Mol Model. 2011 Sep;17(9):2313-23. doi: 10.1007/s00894-011-1010-y. Epub 2011 Mar 29.
Contactins are modular extracellular cell matrix proteins that are present in the brain, and they are responsible for the proper development and functioning of neurons. They contain six immunoglobulin-like IgC2 domains and four fibronectin type III repeats. The interactions of contactin with other proteins are poorly understood. The mechanical properties of all IgC2 domains of human contactin 4 were studied using a steered molecular dynamics approach and CHARMM force field with an explicit TIP3P water environment on a 10-ns timescale. Force spectra of all domains were determined computationally and the nanomechanical unfolding process is described. The domains show different mechanical stabilities. The calculated maxima of the unfolding force are in the range of 900-1700 pN at a loading rate of 7 N/s. Our data indicate that critical regions of IgC2 domains 2 and 3, which are responsible for interactions with tyrosine phosphatases and are important in nervous system development, are affected by even weak mechanical stretching. Thus, tensions present in the cell may modulate cellular activities related to contactin function. The present data should facilitate the interpretation of atomic force microscope single-molecule spectra of numerous proteins with similar IgC2 motives.
联系蛋白是一种模块化的细胞外基质蛋白,存在于大脑中,负责神经元的正常发育和功能。它们包含六个免疫球蛋白样 IgC2 结构域和四个纤维连接蛋白 III 型重复序列。联系蛋白与其他蛋白质的相互作用知之甚少。使用导向分子动力学方法和 CHARMM 力场,在 10 纳秒的时间尺度上,使用显式 TIP3P 水环境,研究了人接触蛋白 4 的所有 IgC2 结构域的机械性能。通过计算确定了所有结构域的力谱,并描述了纳米机械展开过程。这些结构域表现出不同的机械稳定性。在加载速率为 7 N/s 时,计算得到的展开力最大值范围为 900-1700 pN。我们的数据表明,负责与酪氨酸磷酸酶相互作用并在神经系统发育中很重要的 IgC2 结构域 2 和 3 的关键区域受到即使是微弱机械拉伸的影响。因此,细胞中存在的张力可能会调节与接触蛋白功能相关的细胞活动。目前的数据应该有助于解释具有类似 IgC2 基序的众多蛋白质的原子力显微镜单分子光谱。