Iimura Satoshi, Yagi Hiromasa, Ogasahara Kyoko, Akutsu Hideo, Noda Yasuo, Segawa Shin-ichi, Yutani Katsuhide
School of Science and Technology, Kwansei Gakuin University, Sanda, Hyogo 669-1337, Japan.
Biochemistry. 2004 Sep 21;43(37):11906-15. doi: 10.1021/bi048762k.
The refolding rate of heat-denatured cysteine-free pyrrolidone carboxyl peptidase (PCP-0SH) from Pyrococcus furiosus has been reported to be unusually slow under some conditions. To elucidate the structural basis of the unusually slow kinetics of the protein, the denaturation and refolding processes of the PCP-0SH were investigated using a real-time 2D (1)H-(15)N HSQC and CD experiments. At 2 M urea denaturation of the PCP-0SH in the acidic region, all of the native peaks in the 2D HSQC spectrum completely disappeared. The conformation of the PCP-0SH just after removal of 6 M GuHCl could be observed as a stable intermediate (D(1) state) in 2D HSQC and CD experiments, which is similar to a molten globule structure. The D(1) state of the PCP-0SH, which is the initial state of refolding, corresponded to the state at 2 M urea and seemed to be the denatured state in equilibrium with the native state under the physiological conditions. The refolding of PCP-0SH from the D(1) state to the native state could be observed to be highly cooperative without any intermediates between them, even if the refolding rate was quite slow. In the higher concentration of denaturants, PCP-0SH showed HSQC and CD spectra characteristic of completely unfolded proteins called the D(2) state. The unusually slow refolding rate was discussed as originating in the conformations in the transition state and/or the retardation of reorganization in an ensemble of nonrandom denatured structures in the D(1) state.
据报道,来自激烈热球菌的无半胱氨酸的焦谷氨酸羧肽酶(PCP-0SH)在某些条件下热变性后的复性速率异常缓慢。为了阐明该蛋白质异常缓慢动力学的结构基础,利用实时二维(1)H-(15)N HSQC和圆二色(CD)实验研究了PCP-0SH的变性和复性过程。在酸性区域2 M尿素条件下PCP-0SH变性时,二维HSQC谱中的所有天然峰完全消失。在二维HSQC和CD实验中,去除6 M盐酸胍后立即观察到的PCP-0SH构象可作为一种稳定的中间体(D(1)态),类似于熔球结构。PCP-0SH的D(1)态作为复性的初始状态,对应于2 M尿素时的状态,似乎是生理条件下与天然状态处于平衡的变性状态。即使复性速率相当缓慢,也可观察到PCP-0SH从D(1)态复性至天然态的过程具有高度协同性,其间没有任何中间体。在较高浓度变性剂中,PCP-0SH呈现出完全展开蛋白质特有的HSQC和CD谱,称为D(2)态。异常缓慢的复性速率被认为源于过渡态的构象和/或D(1)态非随机变性结构集合中重组的延迟。