Palmai Zoltan, Chaloin Laurent, Lionne Corinne, Fidy Judit, Perahia David, Balog Erika
Department of Biophysics and Radiation Biology, Faculty of Medicine, Semmelweis University, Hungary.
Proteins. 2009 Nov 1;77(2):319-29. doi: 10.1002/prot.22437.
3-Phosphogycerate kinase (PGK) is a two domain enzyme, with a binding site of the 1,3-bisphosphoglycerate on the N-domain and of the ADP on the C-domain. To transfer a phosphate group the enzyme has to undergo a hinge bending motion from open to closed conformation to bring the substrates to close proximity. Molecular dynamics simulation was used to elucidate the effect of ligand binding onto the domain motions of this enzyme. The simulation results of the apo form indicate a hinge bending motion in the ns timescale while the time period of the hinge bending motion of the complex form is clearly over the 20 ns simulation time. The apo form exhibits several hinge points that contribute to the hinge bending motion while upon binding the ligands, the hinge bending becomes strictly restrained with one dominant hinge point in the vicinity of the substrates. At the same time, ligand binding results in an enhanced correlation of internal domain motions.
3-磷酸甘油酸激酶(PGK)是一种双结构域酶,其N结构域上有1,3-二磷酸甘油酸的结合位点,C结构域上有ADP的结合位点。为了转移磷酸基团,该酶必须经历从开放构象到闭合构象的铰链弯曲运动,以使底物紧密靠近。分子动力学模拟用于阐明配体结合对该酶结构域运动的影响。无配体形式的模拟结果表明在纳秒时间尺度上存在铰链弯曲运动,而复合物形式的铰链弯曲运动周期明显超过20纳秒的模拟时间。无配体形式表现出几个有助于铰链弯曲运动的铰链点,而在结合配体后,铰链弯曲变得严格受限,在底物附近有一个主要的铰链点。同时,配体结合导致结构域内部运动的相关性增强。