Kausar Tasneem, Nayeem Shahid M
a Department of Chemistry , Aligarh Muslim University , Aligarh 202002 , Uttar Pradesh , India.
J Biomol Struct Dyn. 2017 Aug;35(10):2224-2234. doi: 10.1080/07391102.2016.1214083. Epub 2016 Aug 5.
BMP-2 is widely used for bone regeneration because of its ability to induce osteoblast differentiation and proliferation. The pharmaceutical application of BMP-2 as bone implant makes the studies on stability and conformational dynamics very relevant as proteins are functional only in their native three-dimensional state. Knowing the factors affecting BMP-2 structure becomes essential for designing bone implants activated by BMP-2. In order to explore the influence of temperature and hydration on protein conformation, we have performed the molecular dynamics (MD) simulations at the time scale of 100 ns with two different force fields. We have examined the dynamic behaviour of BMP-2 monomer and dimer in aqueous medium as well as in vacuum at four different temperatures (300, 350, 400 and 450 K). MD simulation of BMP-2 monomer and dimer in water and vacuum environments shows the major contribution of water in structure stabilization. Temperature of the system affects the secondary structure differently in case of monomer and dimer simulation and the dynamics also depends on the environment viz. vacuum and aqueous. Vacuum simulations show very early loss of the major secondary structure content. On the other hand, BMP-2 monomer and dimer in aqueous environment show the unfolding of α-helix with increasing temperature. This unfolded α-helix is converted into β-sheet at 400 K in monomer of BMP-2. Contrary to this, we did not observe β-sheet formation in dimer BMP-2 even at 450 K indicating that monomers are more aggregation prone entity as compared to dimers of BMP-2.
骨形态发生蛋白-2(BMP-2)因其能够诱导成骨细胞分化和增殖而被广泛用于骨再生。BMP-2作为骨植入物的药物应用使得对其稳定性和构象动力学的研究变得非常重要,因为蛋白质仅在其天然三维状态下才具有功能。了解影响BMP-2结构的因素对于设计由BMP-2激活的骨植入物至关重要。为了探究温度和水合作用对蛋白质构象的影响,我们使用两种不同的力场在100纳秒的时间尺度上进行了分子动力学(MD)模拟。我们研究了BMP-2单体和二聚体在水性介质以及在四个不同温度(300、350、400和450 K)下的真空中的动态行为。BMP-2单体和二聚体在水和真空环境中的MD模拟表明水在结构稳定中起主要作用。在单体和二聚体模拟中,系统温度对二级结构的影响不同,并且动力学也取决于环境,即真空和水性环境。真空模拟显示主要二级结构含量很早就丧失了。另一方面,水性环境中的BMP-2单体和二聚体随着温度升高显示出α-螺旋的展开。在BMP-2单体中,这种展开的α-螺旋在400 K时转变为β-折叠。与此相反,即使在450 K时,我们在二聚体BMP-2中也未观察到β-折叠的形成,这表明与BMP-2二聚体相比,单体更容易聚集。