Chiba K, Ikai A, Kawamura-Konishi Y, Kihara H
Laboratory of Biodynamics, Faculty of Bioscience and Biotechnology, Tokyo Institute of Technology, Kanagawa, Japan.
Proteins. 1994 Jun;19(2):110-9. doi: 10.1002/prot.340190204.
The refolding kinetics of horse cyanometmyoglobin induced by concentration jump of urea was investigated by five optical probe stopped-flow methods: absorption at 422 nm, tryptophyl fluorescence at around 340 nm, circular dichroism (CD) at 222 nm, CD at 260 nm, and CD at 422 nm. In the refolding process, we detected three phases with rate constants of > 1 x 10(2) s-1, (4.5-9.3) s-1, and (2-5) x 10(-3) s-1. In the fastest phase, a substantial amount of secondary structure (approximately 40%) is formed within the dead time of the CD stopped-flow apparatus (10.7 ms). The kinetic intermediate populated in the fastest phase is shown to capture a hemindicyanide, suggesting that a "heme pocket precursor" recognized by hemindicyanide must be constructed within the dead time. In the middle phase, most of secondary and tertiary structures, especially around the captured hemindicyanide, have been constructed. In the slowest phase, we detected a minor structural rearrangement accompanying the ligand-exchange reaction in the fifth coordination of ferric iron. We present a possible model for the refolding process of myoglobin in the presence of the heme group.
422nm处的吸光度、340nm左右的色氨酸荧光、222nm处的圆二色性(CD)、260nm处的CD以及422nm处的CD。在重折叠过程中,我们检测到三个阶段,其速率常数分别为>1×10² s⁻¹、(4.5 - 9.3)s⁻¹和(2 - 5)×10⁻³ s⁻¹。在最快的阶段,大量的二级结构(约40%)在CD停流装置的死时间(10.7ms)内形成。在最快阶段出现的动力学中间体被证明捕获了一个半氰化血红素,这表明在死时间内必须构建一个被半氰化血红素识别的“血红素口袋前体”。在中间阶段,大部分二级和三级结构,特别是在捕获的半氰化血红素周围,已经构建完成。在最慢的阶段,我们检测到在铁离子的第五配位中伴随配体交换反应的一个微小的结构重排。我们提出了一个在血红素基团存在下肌红蛋白重折叠过程的可能模型。