Kumar Ashutosh, Srivastava Sudha, Hosur Ramakrishna V
Department of Chemical Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai 400 005, India.
J Mol Biol. 2007 Apr 13;367(5):1480-93. doi: 10.1016/j.jmb.2007.01.035. Epub 2007 Jan 20.
Characterizing the low energy excited states in the energy landscape of a protein is one of the exciting and demanding problems in structural biology at the present time. These describe the adaptability of the protein structure to external perturbations. In this context, we used here non-linear dependence of amide proton chemical shifts on temperature to identify residues accessing alternative conformations in SUMO-1 in the native state as well as in the near-native states created by sub-denaturing concentrations of urea. The number of residues accessing alternative conformations increases and the profiles of curved temperature dependence also change with increasing urea concentration. In every case these alternative conformations lie within 2 kcal/mol from the ground state, and are separated from it by low energy barriers. The residues that access alternative conformations span the length of the protein chain but are located at particular regions on the protein structure. These include many of the loops, beta2 and beta5 strands, and some edges of the helices. We observed that some of the regions of the protein structure that exhibit such fluctuations coincide with the protein's binding surfaces with different substrate like GTPase effector domain (GED) of dynamin, SUMO binding motifs (SBM), E1 (activating enzyme, SAE1/SAE2) and E2 (conjugating enzyme, UBC9) enzymes of sumoylation machinery, reported earlier. We speculate that this would have significant implications for the binding of diversity of targets by SUMO-1 for the variety of functions it is involved in.
表征蛋白质能量景观中的低能激发态是当前结构生物学中一个令人兴奋且具有挑战性的问题。这些激发态描述了蛋白质结构对外部扰动的适应性。在此背景下,我们利用酰胺质子化学位移对温度的非线性依赖性,来识别天然状态下以及由亚变性浓度尿素产生的近天然状态下,SUMO-1中可进入替代构象的残基。随着尿素浓度的增加,可进入替代构象的残基数量增加,并且曲线温度依赖性的图谱也发生变化。在每种情况下,这些替代构象都位于距基态2千卡/摩尔以内,并且与基态之间由低能垒隔开。可进入替代构象的残基贯穿蛋白质链的长度,但位于蛋白质结构的特定区域。这些区域包括许多环、β2和β5链以及螺旋的一些边缘。我们观察到,蛋白质结构中表现出这种波动的一些区域,与蛋白质与不同底物的结合表面重合,如先前报道的发动蛋白的GTPase效应结构域(GED)、SUMO结合基序(SBM)、SUMO化机制的E1(激活酶,SAE1/SAE2)和E2(缀合酶,UBC9)酶。我们推测,这对于SUMO-1结合多种靶标以实现其参与的各种功能具有重要意义。