Hall P F, Watanuki M, Hamkalo B A
J Biol Chem. 1979 Jan 25;254(2):547-52.
Soluble cytochrome P-450 from bovine adrenocortical mitochrondria, capable of side chain cleavage, can be incorporated into membranes prepared by dispersion of phospholipids in aqueous buffer when cholate is added to the membrane suspension. In addition, the complete protein side chain cleavae system (i.e. including the ancillary proteins adrenodoxin and adrenodoxin reductase and the substrate cholesterol) can be incorporated into such membranes so that on addition of TPNH, pregnenolone is formed. These components remain in the membrane through gel filtration (which removes almost all the cholate) and sedimentation through sucrose density gradients which separate vesicles without protein and soluble enzyme from the membrane-bound P-450 remains associated with the membrane during and following lysis of vesicles. The vesicles which do not leak [14C]glucose were seen on electron microscopy to show a mean diameter of 350 to 450 A. A number of phospholipids are capable of accomodating P-450 in this manner: mitochondrial lipid extracts, synthetic dipalmitoyl phosphatidylcholine, synthetic dipalmitoyl phosphatidylserine, and egg lecithin, separately or in various combinations. Cholesterol is not necessary for incorporation of the side chain cleavage system. Membrane-bound P-450 shows a Vmax of 28.1 nmol of pregnenolone/min/mg of protein, more than 10 times that of soluble P-450. The spectral properties of the soluble P-450 are altered to become predominantly low spin in the membrane and the enzyme is more stable at 4 degrees C than is soluble p-450.
来自牛肾上腺皮质线粒体的、能够进行侧链裂解的可溶性细胞色素P-450,当向膜悬浮液中添加胆酸盐时,可掺入通过磷脂在水性缓冲液中分散制备的膜中。此外,完整的蛋白质侧链裂解系统(即包括辅助蛋白肾上腺铁氧还蛋白和肾上腺铁氧还蛋白还原酶以及底物胆固醇)可掺入此类膜中,以便在添加TPNH时形成孕烯醇酮。通过凝胶过滤(几乎去除所有胆酸盐)以及通过蔗糖密度梯度沉降,这些组分保留在膜中,蔗糖密度梯度可将无蛋白质和可溶性酶的囊泡与膜结合的P-450分离,在囊泡裂解期间及之后,P-450仍与膜相关联。在电子显微镜下观察到不泄漏[14C]葡萄糖的囊泡平均直径为350至450埃。许多磷脂能够以这种方式容纳P-450:线粒体脂质提取物、合成二棕榈酰磷脂酰胆碱、合成二棕榈酰磷脂酰丝氨酸和卵磷脂,单独或各种组合使用。掺入侧链裂解系统不需要胆固醇。膜结合的P-450的Vmax为28.1 nmol孕烯醇酮/分钟/毫克蛋白质,是可溶性P-450的10倍以上。可溶性P-450的光谱特性发生改变,在膜中主要变为低自旋,并且该酶在4℃比可溶性P-450更稳定。