Watanabe F, Tamura Y, Stupperich E, Nakano Y
Laboratory of Nutrition and Food Science, Hagoromo-gakuen College, Osaka.
J Biochem. 1993 Dec;114(6):793-9. doi: 10.1093/oxfordjournals.jbchem.a124258.
Cobalamin uptake by Euglena mitochondria is a biphasic process, consisting of energy-independent cobalamin-binding to mitochondrial membranes and energy-dependent active transport. The energy-dependent phase of cobalamin uptake is not dependent on mitochondrial respiration, but on the presence of ATP within the mitochondrial matrix. The dissociation constant of the energy-independent cobalamin-binding reaction is estimated to be 0.45 nM. Inhibition of the mitochondrial cobalamin uptake by a variety of cobalamin analogues indicates that Euglena mitochondria have an absolute requirement for the complete cobalamin molecule with an alpha-axial ligand (the cobalt-coordinated nucleotide) and an intact b-propionamide side-chain. Thus, the Euglena mitochondrial cobalamin uptake system is highly specific for the cobalamin structure. The cobalamin taken up by the Euglena mitochondria cannot be exchanged with exogenous cobalamin. All of the mitochondrial cobalamin is associated with three proteins with molecular masses of > 700,000 (16.3%), 160,000 (7.4%), and 35,000 (76.3%). They occur in the soluble fraction of mitochondria, suggesting that these cobalamin-binding proteins or cobalamin-dependent enzymes play an important role in cobalamin accumulation and metabolism within the mitochondria.
眼虫线粒体对钴胺素的摄取是一个双相过程,包括钴胺素与线粒体膜的能量非依赖性结合以及能量依赖性主动转运。钴胺素摄取的能量依赖性阶段不依赖于线粒体呼吸,而是依赖于线粒体基质中ATP的存在。能量非依赖性钴胺素结合反应的解离常数估计为0.45 nM。多种钴胺素类似物对线粒体钴胺素摄取的抑制表明,眼虫线粒体对具有α-轴向配体(钴配位核苷酸)和完整β-丙酰胺侧链的完整钴胺素分子有绝对需求。因此,眼虫线粒体钴胺素摄取系统对钴胺素结构具有高度特异性。眼虫线粒体摄取的钴胺素不能与外源性钴胺素交换。所有线粒体钴胺素都与三种分子量分别大于700,000(16.3%)、160,000(7.4%)和35,000(76.3%)的蛋白质相关联。它们存在于线粒体的可溶性部分,表明这些钴胺素结合蛋白或钴胺素依赖性酶在线粒体内钴胺素的积累和代谢中起重要作用。