Enoch H G, Fleming P J, Strittmatter P
J Biol Chem. 1977 Aug 25;252(16):5656-60.
NADH-cytochrome b5 reductase readily binds to preformed phospholipid vesicles either below or above the phase transition temperature of the lipid and in the absence of detergents. The isolated vesicles are free of unbound reductase, and the lipid is present as small, closed bilayers (250 to 400 A in diameter) as indicated by gel filtration, density gradient centrifugation, and internal volume measurements with [3H]glucose. The order of substrate specificity of the bound reductase is: ferricyanide = cytochrome b5 bound to reductase vesicles (100%) greater than cytochrome b5 heme peptide (13%) greater than unbound cytochrome b5 (4.5%) greater than cytochrome b5 vesicles (0.1%). This indicates that a specific orientation of cytochrome b5 and reductase in the bilayer is required for optimal interaction. Protein transfer occurs between reductase vesicles and cytochrome b5 vesicles. The transfer is time-dependent (40 to 70% complete in 2 h), does not involve vesicle fusion, is most rapid at the phase transition temperature of the phospholipid, and appears to require a fluid bilayer.
NADH - 细胞色素b5还原酶在脂质的相变温度以下或以上且不存在去污剂的情况下,很容易与预先形成的磷脂囊泡结合。通过凝胶过滤、密度梯度离心以及用[3H]葡萄糖进行的内部体积测量表明,分离出的囊泡不含未结合的还原酶,脂质以小的封闭双层形式存在(直径为250至400埃)。结合的还原酶的底物特异性顺序为:铁氰化物 = 结合到还原酶囊泡上的细胞色素b5(100%)大于细胞色素b5血红素肽(13%)大于未结合的细胞色素b5(4.5%)大于细胞色素b5囊泡(0.1%)。这表明双层中细胞色素b5和还原酶的特定取向是实现最佳相互作用所必需的。蛋白质在还原酶囊泡和细胞色素b5囊泡之间发生转移。这种转移是时间依赖性的(2小时内完成40%至70%),不涉及囊泡融合,在磷脂的相变温度下最快,并且似乎需要一个流动性的双层。