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蛋白质折叠状态和功能状态之间的基本联系。

Fundamental link between folding states and functional states of proteins.

机构信息

Institute of Biophysics and Physical Biochemistry, University of Regensburg, D-93040 Regensburg, Germany.

出版信息

J Am Chem Soc. 2009 Nov 25;131(46):16714-9. doi: 10.1021/ja904314q.

Abstract

Folding and function of proteins are two aspects of proteins which are usually considered as basically unrelated phenomena that are optimized by evolution independently. From the funnel model of folding/unfolding and the associated energy landscape, we infer the paradigm that the minimum number of folding intermediates is determined by the number of all functional states of a protein ("essential" folding intermediates). Here, we demonstrate the supposed fundamental link using the Ras protein complexed with the GTP analogue GppNHp that occurs in two structural states coexisting in solution. State 2 was shown earlier to represent the effector interacting state, and the function of state 1 was hitherto unknown. By (31)P NMR spectroscopy, we demonstrate that state 1 represents the conformation interacting with guanine nucleotide exchange factors (GEFs). Denaturation experiments of the protein with a chaotropic reagent show that both functional states coexist during folding and unfolding. Application of high pressure represents another perturbation of the energy landscape, leading to an increased population of the state 1 as observed by NMR spectroscopy. The specific volume difference between the two states DeltaV(12) is 17.2 +/- 0.5 mL mol(-1), indicating that state 1 represents a more open conformation of the protein. The free energies of stabilization for state 1 and state 2 at 278 K can be determined as 8.3 and 9.8 kJ mol(-1), respectively.

摘要

蛋白质的折叠和功能是蛋白质的两个方面,通常被认为是基本上不相关的现象,它们是由进化独立地优化的。从折叠/去折叠的漏斗模型和相关的能量景观中,我们推断出这样的范式,即折叠中间体的最小数量由蛋白质的所有功能状态的数量决定(“必需”的折叠中间体)。在这里,我们使用与 GppNHp 结合的 Ras 蛋白复合物来证明这种假设的基本联系,GppNHp 是在溶液中共存的两种结构状态。以前已经表明状态 2 代表效应器相互作用状态,而状态 1 的功能迄今未知。通过 (31)P NMR 光谱,我们证明状态 1 代表与鸟嘌呤核苷酸交换因子(GEFs)相互作用的构象。用变性试剂对蛋白质进行变性实验表明,在折叠和去折叠过程中都存在两种功能状态。高压的应用是对能量景观的另一种扰动,导致 NMR 光谱观察到状态 1 的种群增加。两种状态之间的比容差 DeltaV(12)为 17.2 +/- 0.5 mL mol(-1),表明状态 1 代表蛋白质的更开放构象。在 278 K 时,状态 1 和状态 2 的稳定自由能可分别确定为 8.3 和 9.8 kJ mol(-1)。

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