Haworth R A, Komai H, Green D E, Vail W J
Institute for Enzyme Research, University of Wisconsin, Madison, Wisconsin 53706, USA.
J Bioenerg Biomembr. 1977 Apr;9(2):151-70. doi: 10.1007/BF00743278.
Electron microscopic evidence is presented for the extensive association of protein subunits into ribbons within the mitochondrial inner membrane. The mitochondrial cristae can be rearranged to a narrow tubular form which exhibits ribbon structure and is fully functional; the morphology of particles derived from sub-mitochondrial electron transport particles by treatment with lysolecithin suggests that the backbone of the ribbon is provided by the cytochrome-free tripartite unit (headpiece, stalk, basepiece) in linear repeat. These results are inconsistent with any single model of the inner membrane previously proposed, but are best understood in terms of a model which combines the concept of an ordered protein continuum with the concept of a fluid lipid bilayer. Further, it is concluded that the "headpiece out" morphology of the tripartite unit represents a viable conformation of the endergonic transducing unit.
本文提供了电子显微镜证据,证明线粒体内膜中的蛋白质亚基广泛缔合形成条带。线粒体嵴可重排为呈条带结构且功能完全正常的狭窄管状形式;用溶血卵磷脂处理亚线粒体电子传递颗粒得到的颗粒形态表明,条带的主干由线性重复排列的无细胞色素三方单元(头部、柄部、基部)提供。这些结果与之前提出的任何单一内膜模型均不一致,但结合有序蛋白质连续体概念和流体脂质双层概念的模型能最好地解释这些结果。此外,得出的结论是,三方单元的“头部向外”形态代表了吸能转导单元的一种可行构象。