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离子液体对共价连接探针的蛋白质天然态和变性态的影响:溶剂化动力学研究。

Effect of ionic liquid on the native and denatured state of a protein covalently attached to a probe: solvation dynamics study.

机构信息

Department of Physical Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.

出版信息

J Chem Phys. 2012 Aug 7;137(5):055104. doi: 10.1063/1.4739922.

Abstract

Effect of a room temperature ionic liquid (RTIL, [pmim][Br]) on the solvation dynamics of a probe covalently attached to a protein (human serum albumin (HSA)) has been studied using femtosecond up-conversion. For this study, a solvation probe, 7-diethylamino-3-(4-maleimidophenyl)-4-methylcoumarin (CPM) has been covalently attached to the lone cysteine group (cys-34) of the protein HSA. Addition of 1.5 M RTIL or 6 M GdnHCl causes a red shift of the emission maxima of CPM bound to HSA by 3 nm and 12 nm, respectively. The average solvation time 〈τ(s)〉 decreases from 650 ps (in native HSA) to 260 ps (2.5 times) in the presence of 1.5 M RTIL and to 60 ps (11 times) in the presence of 6 M GdnHCl. This is ascribed to unfolding of the protein by RTIL or GdnHCl and therefore making the probe CPM more exposed. When 1.5 M RTIL is added to the protein denatured by 6 M GdnHCl in advance, a further ~5 nm red shift along with further ~2 fold faster solvent relaxation (<τ> ~30 ps) is observed. Our previous fluorescence correlation spectroscopy study [D. K. Sasmal, T. Mondal, S. Sen Mojumdar, A. Choudhury, R. Banerjee, and K. Bhattacharyya, J. Phys. Chem. B 115, 13075 (2011)] suggests that addition of RTIL to the protein denatured by 6 M GdnHCl causes a reduction in hydrodynamic radius (r(h)). It is demonstrated that in the presence of RTIL and GdnHCl, though the protein is structurally more compact, the local environment of CPM is very different from that in the native state.

摘要

室温离子液体(RTIL,[pmim][Br])对通过共价键连接到蛋白质(人血清白蛋白(HSA))上的探针的溶剂化动力学的影响已使用飞秒上转换进行研究。在这项研究中,将溶剂化探针 7-二乙氨基-3-(4-马来酰亚胺基苯基)-4-甲基香豆素(CPM)共价连接到蛋白质 HSA 的唯一半胱氨酸基团(cys-34)上。添加 1.5 M RTIL 或 6 M GdnHCl 分别使 CPM 与 HSA 结合的发射最大值红移 3nm 和 12nm。在 1.5 M RTIL 的存在下,〈τ(s)〉的平均溶剂化时间从天然 HSA 的 650ps 降低至 260ps(约 2.5 倍),在 6 M GdnHCl 的存在下降低至 60ps(约 11 倍)。这归因于 RTIL 或 GdnHCl 使蛋白质变性,从而使探针 CPM 更加暴露。当 1.5 M RTIL 预先添加到由 6 M GdnHCl 变性的蛋白质中时,观察到进一步的5nm 红移以及进一步的2 倍更快的溶剂弛豫(<τ>~30ps)。我们之前的荧光相关光谱研究[D.K.Sasmal,T.Mondal,S.Sen Mojumdar,A.Choudhury,R.Banerjee 和 K.Bhattacharyya,J.Phys.Chem.B 115,13075(2011)]表明,向由 6 M GdnHCl 变性的蛋白质中添加 RTIL 会导致流体力学半径(r(h))降低。结果表明,尽管在 RTIL 和 GdnHCl 的存在下,蛋白质的结构更加紧凑,但 CPM 的局部环境与天然状态非常不同。

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