The ATP synthase, isolated from Wolinella (formerly Vibrio) succinogenes could be fully incorporated into liposomes without significant cleavage of the enzyme or loss of activity. These proteoliposomes, but not the isolated enzyme, catalyzed phosphate-ATP exchange and the phosphorylation of ADP which was driven by an artificially imposed delta mu H across the liposomal membrane. Phosphorylation driven by light was catalyzed by proteoliposomes containing also bacteriorhodopsin. The three activities were similarly sensitive to protonophores or dicyclohexylcarbodiimide. This sensitivity was similar to that of the electron-transport-driven phosphorylation catalyzed by bacterial membrane vesicles. With a delta mu H value 280 mV to drive phosphorylation the turnover number of the enzyme was in the same order of magnitude as that measured in the electron-transport-driven phosphorylation catalyzed by the bacterial membrane. When the delta mu H was below 150 mV, the phosphorylation activity of the incorporated enzyme was two orders of magnitude slower, and was about as fast as light-driven phosphorylation or as the exchange reaction.

译文

从Wolinella (以前称为弧菌) 琥珀生成素中分离出的ATP合酶可以完全掺入脂质体中,而不会显着裂解酶或丧失活性。这些蛋白脂质体 (而不是分离的酶) 催化了磷酸盐-ATP交换和ADP的磷酸化,而ADP的磷酸化是由在脂质体膜上人工施加的 δ mu H驱动的。光驱动的磷酸化是由也含有细菌视紫红质的蛋白脂质体催化的。这三种活性对原蛋白或二环己基碳二亚胺敏感。这种敏感性与细菌膜囊泡催化的电子传输驱动的磷酸化相似。在280 mV驱动磷酸化的 δ μ H值的情况下,酶的周转数与在由细菌膜催化的电子传输驱动的磷酸化中测量的周转数处于相同的数量级。当 δ μ H低于150 mV时,掺入的酶的磷酸化活性慢两个数量级,并且大约与光驱动磷酸化或交换反应一样快。

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