Paech C, Friend A, Singer T P
Biochem J. 1982 May 1;203(2):477-81. doi: 10.1042/bj2030477.
A simplified procedure for the isolation of NADH dehydrogenase from the inner membrane of ox heart mitochondria is presented which permits relatively rapid preparation of the enzyme in a more stable form than that afforded by published methods. The protein thus isolated displays more than eight different subunits in gel electrophoresis under denaturing conditions, three of which are also present in the "low-molecular-weight form' of the enzyme prepared under more drastic conditions. Complex I contains several subunits, mostly of low molecular weight, not seen in soluble purified NADH dehydrogenase. It is suggested that some of these may be 'binding peptides' necessary in linking NADH dehydrogenase to ubiquinone reduction, analogously to the role of small peptides in linking succinate dehydrogenase to ubiquinone. The dehydrogenase isolated by the rapid method contains equimolar amounts of non-haem iron and labile sulphur, but on further manipulation non-haem iron (but no labile sulphur) is lost, resulting in ratios of S/Fe in excess of unity, as previously reported for preparations isolated by longer procedures.
本文介绍了一种从牛心线粒体内膜中分离NADH脱氢酶的简化方法,该方法能够以比已发表方法更稳定的形式相对快速地制备该酶。在变性条件下进行凝胶电泳时,如此分离得到的蛋白质显示出八种以上不同的亚基,其中三种亚基也存在于在更剧烈条件下制备的该酶的“低分子量形式”中。复合体I包含几个亚基,大多数分子量较低,这些亚基在可溶性纯化的NADH脱氢酶中未见。有人认为,其中一些可能是将NADH脱氢酶与泛醌还原相连接所必需的“结合肽”,类似于小肽在将琥珀酸脱氢酶与泛醌相连接中的作用。通过快速方法分离得到的脱氢酶含有等摩尔量的非血红素铁和不稳定硫,但在进一步处理后,非血红素铁(但无不稳定硫)会丢失,导致S/Fe比值超过1,这与先前报道的通过较长程序分离得到的制剂情况相同。