Nakashima R A
Department of Chemistry and Biochemistry, Texas Tech University, Lubbock 79409.
J Bioenerg Biomembr. 1989 Aug;21(4):461-70. doi: 10.1007/BF00762518.
The outer mitochondrial membrane receptor for hexokinase binding has been identified as the VDAC protein, also known as mitochondrial porin. The ability of the receptor to bind hexokinase is inhibited by pretreatment with dicyclohexylcarbodiimide (DCCD). At low concentrations, DCCD inhibits hexokinase binding by covalently labeling the VDAC protein, with no apparent effect on VDAC channel-forming activity. The stoichiometry of [14C]-DCCD labeling is consistent with one to two high-affinity DCCD-binding sites per VDAC monomer. A comparison between the sequence of yeast VDAC and a conserved sequence found at DCCD-binding sites of several membrane proteins showed two sites where the yeast VDAC amino acid sequence appears to be very similar to the conserved DCCD-binding sequence. Both of these sites are located near the C-terminal end of yeast VDAC (residues 257-265 and 275-283). These results are consistent with a model in which the C-terminal end of VDAC is involved in binding to the N-terminal end of hexokinase.
已确定与己糖激酶结合的线粒体外膜受体是电压依赖性阴离子通道(VDAC)蛋白,也称为线粒体孔蛋白。受体与己糖激酶结合的能力可通过用二环己基碳二亚胺(DCCD)预处理来抑制。在低浓度下,DCCD通过共价标记VDAC蛋白来抑制己糖激酶结合,对VDAC通道形成活性无明显影响。[14C]-DCCD标记的化学计量与每个VDAC单体有一到两个高亲和力DCCD结合位点一致。酵母VDAC序列与在几种膜蛋白的DCCD结合位点发现的保守序列之间的比较显示,酵母VDAC氨基酸序列似乎与保守的DCCD结合序列非常相似的两个位点。这两个位点都位于酵母VDAC的C末端附近(第257 - 265位和第275 - 283位残基)。这些结果与一个模型一致,即VDAC的C末端参与与己糖激酶N末端的结合。