Oinuma Ken-Ichi, Kumita Hideyuki, Ohta Takehiro, Konishi Kazunobu, Hashimoto Yoshiteru, Higashibata Hiroki, Kitagawa Teizo, Shiro Yoshitsugu, Kobayashi Michihiko
Institute of Applied Biochemistry and Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8572, Japan.
FEBS Lett. 2005 Feb 28;579(6):1394-8. doi: 10.1016/j.febslet.2005.01.037.
On stopped-flow analysis of aliphatic aldoxime dehydratase (OxdA), a novel hemoprotein, a spectrum derived from a reaction intermediate was detected on mixing ferrous OxdA with butyraldoxime; it gradually changed into that of ferrous OxdA with an isosbestic point at 421 nm. The spectral change on the addition of butyraldoxime to the ferrous H320A mutant showed the formation of a substrate-coordinated mutant, the absorption spectrum of which closely resembled that of the above intermediate. These observations and the resonance Raman investigation revealed that the substrate actually binds to the heme in OxdA, forming a hexa-coordinate low-spin heme.
在对一种新型血蛋白——脂肪族醛肟脱水酶(OxdA)进行停流分析时,将亚铁型OxdA与丁醛肟混合后,检测到一种来自反应中间体的光谱;它逐渐转变为亚铁型OxdA的光谱,在421nm处有一等吸收点。向亚铁型H320A突变体中添加丁醛肟后的光谱变化表明形成了一种底物配位突变体,其吸收光谱与上述中间体的吸收光谱非常相似。这些观察结果以及共振拉曼研究表明,底物实际上与OxdA中的血红素结合,形成了一种六配位的低自旋血红素。