Proshlyakov D A, Ogura T, Shinzawa-Itoh K, Yoshikawa S, Kitagawa T
Graduate University for Advanced Studies, Okazaki National Research Institutes, Japan.
Biochemistry. 1996 Jan 9;35(1):76-82. doi: 10.1021/bi9511705.
A new high-performance device for Raman/absorption simultaneous determination was developed. This was combined with a newly designed microcirculating system and was successfully applied to study intermediates in the reaction of bovine oxidized cytochrome c oxidase (CcO) with hydrogen peroxide under steady state conditions at ambient temperatures. Measurements with this device made it possible to correlate directly the species defined in terms of the visible absorption characteristics with specific Raman bands. The "607 nm" form of the enzyme obtained with H2(16)O2 gave an oxygen isotope sensitive band at 804 cm-1 (769 cm-1 with H2(18)O2) in the Soret excited resonance Raman (RR) spectrum. Its frequency and isotope frequency shifts are exactly the same as those observed previously with 607 nm excitation in nonsimultaneous measurements for the 607 nm form, for which the presence of an oxoiron heme was demonstrated. The so-called " 580 nm" form of the enzyme obtained with H2(16)O2 gave the main oxygen isotope sensitive band at 785 cm-1 (750 cm-1 with H2(18)O2) but appeared to consist of multiple species. This band was assigned to the FeIV = O stretching mode of ferryloxo heme on the basis of its isotopic frequency shift. Another oxygen isotope sensitive band was found at 355 cm-1 (340 cm-1 for H2(18)O2), similar to the case of dioxygen reaction. Temporal behavior of this band did not agree with either that of the 804 cm-1 band or that of the 785 cm-1 band but seemed to grow between the two species. The RR spectra in the higher frequency region of the 607 nm and 580 nm forms excited at 427 nm were quite alike and did not support the formation of a porphyrin pi-cation radical.
开发了一种用于拉曼/吸收同时测定的新型高性能装置。该装置与新设计的微循环系统相结合,并成功应用于研究牛氧化细胞色素c氧化酶(CcO)与过氧化氢在环境温度下稳态条件下反应的中间体。使用该装置进行测量能够直接将根据可见吸收特性定义的物种与特定拉曼带相关联。用H2(16)O2获得的酶的“607 nm”形式在Soret激发共振拉曼(RR)光谱中在804 cm-1处给出了一个氧同位素敏感带(用H2(18)O2时为769 cm-1)。其频率和同位素频率位移与之前在非同时测量中对607 nm形式进行607 nm激发时观察到的完全相同,已证明该形式存在氧铁血红素。用H2(16)O2获得的酶的所谓“580 nm”形式在785 cm-1处给出了主要的氧同位素敏感带(用H2(18)O2时为750 cm-1),但似乎由多种物种组成。基于其同位素频率位移,该带被指定为高铁氧血红素的FeIV = O伸缩模式。在355 cm-1处发现了另一个氧同位素敏感带(H2(18)O2时为340 cm-1),类似于双氧反应的情况。该带的时间行为与804 cm-1带或785 cm-1带的时间行为均不一致,但似乎在这两种物种之间增长。在427 nm激发下的607 nm和580 nm形式的较高频率区域的RR光谱非常相似,不支持卟啉π-阳离子自由基的形成。