Walther B, Ghersi-Egea J F, Minn A, Siest G
Arch Biochem Biophys. 1987 May 1;254(2):592-6. doi: 10.1016/0003-9861(87)90142-1.
The cytochrome P-450-dependent cholesterol side chain cleavage system of the brain has been studied using nonsynaptic mitochondria as the source of enzymatic activity. The system has been found to bind cholesterol and 11-deoxycorticosterone, producing type I difference spectra, whereas the binding of pregnenolone induced a reverse type I difference spectrum. Inhibitors of cytochrome P-450-linked monooxygenase activities produced type II spectra. The formation of labeled pregnenolone after incubation of brain mitochondria with [4-14C]cholesterol has been obtained, and this formation was inhibited by glutethimide, a specific inhibitor of cytochrome P-450scc. The functional significance of this enzymatic activity is discussed.
已使用非突触线粒体作为酶活性来源,对大脑中细胞色素P - 450依赖性胆固醇侧链裂解系统进行了研究。已发现该系统能结合胆固醇和11 - 脱氧皮质酮,产生I型差示光谱,而孕烯醇酮的结合则诱导出反向I型差示光谱。细胞色素P - 450连接的单加氧酶活性抑制剂产生II型光谱。大脑线粒体与[4 - 14C]胆固醇孵育后,已获得标记孕烯醇酮的形成,且这种形成受到细胞色素P - 450scc的特异性抑制剂格鲁米特的抑制。讨论了这种酶活性的功能意义。