Krochko JE, Abrams GD, Loewen MK, Abrams SR, Cutler AJ
Plant Biotechnology Institute, National Research Council of Canada, Saskatoon, Saskatchewan, Canada S7N 0W9.
Plant Physiol. 1998 Nov;118(3):849-60. doi: 10.1104/pp.118.3.849.
Abscisic acid (ABA) 8'-hydroxylase catalyzes the first step in the oxidative degradation of (+)-ABA. The development of a robust in vitro assay has now permitted detailed examination and characterization of this enzyme. Although several factors (buffer, cofactor, and source tissue) were critical in developing the assay, the most important of these was the identification of a tissue displaying high amounts of in vivo enzyme activity (A.J. Cutler, T.M. Squires, M.K. Loewen, J.J. Balsevich [1997] J Exp Bot 48: 1787-1795). (+)-ABA 8'-hydroxylase is an integral membrane protein that is localized to the microsomal fraction in suspension-cultured maize (Zea mays) cells. (+)-ABA metabolism requires both NADPH and molecular oxygen. NADH was not an effective cofactor, although there was substantial stimulation of activity (synergism) when it was included at rate-limiting NADPH concentrations. The metabolism of (+)-ABA was progressively inhibited at O2 concentrations less than 10% (v/v) and was very low (less than 5% of control) under N2. (+)-ABA 8'-hydroxylase activity was inhibited by tetcyclacis (50% inhibition at 10(-6) M), cytochrome c (oxidized form), and CO. The CO inhibition was reversible by light from several regions of the visible spectrum, but most efficiently by blue and amber light. These data strongly support the contention that (+)-ABA 8'-hydroxylase is a cytochrome P450 monooxygenase.
脱落酸(ABA)8'-羟化酶催化(+)-ABA氧化降解的第一步。一种强大的体外测定方法的开发,现在使得对这种酶进行详细检查和表征成为可能。尽管在开发该测定方法时,几个因素(缓冲液、辅因子和来源组织)至关重要,但其中最重要的是鉴定出一种在体内显示出大量酶活性的组织(A.J.卡特勒、T.M.斯奎尔斯、M.K.洛温、J.J.巴尔塞维奇[1997]《实验植物学杂志》48:1787-1795)。(+)-ABA 8'-羟化酶是一种整合膜蛋白,定位于悬浮培养的玉米(Zea mays)细胞的微粒体部分。(+)-ABA代谢需要NADPH和分子氧。NADH不是一种有效的辅因子,尽管当以限速NADPH浓度包含时,有显著的活性刺激(协同作用)。(+)-ABA的代谢在O2浓度低于10%(v/v)时逐渐受到抑制,在N2下非常低(小于对照的5%)。(+)-ABA 8'-羟化酶活性受到四环菌酸(10^(-6) M时50%抑制)、细胞色素c(氧化形式)和CO的抑制。CO抑制可被可见光谱几个区域的光逆转,但最有效的是蓝光和琥珀光。这些数据有力地支持了(+)-ABA 8'-羟化酶是一种细胞色素P450单加氧酶的观点。