Wetzel C. M., McCarty R. E.
Field of Botany, Cornell University, Ithaca, New York 14853 (C.M.W.).
Plant Physiol. 1993 May;102(1):251-259. doi: 10.1104/pp.102.1.251.
A complex between chloroplast-coupling factor 1 (CF1) and subunit III of the membrane-spanning portion of the chloroplast ATP synthase (CF0), isolated as described in the accompanying paper (C.M. Wetzel and R.E. McCarty [1993] Plant Physiol 102: 241-249), has been further characterized. A comparison of the ATPase activities of CF1, CF1-subunit III, and the chloroplast ATP synthase (CF1-CF0) holoenzyme revealed that the properties of CF1-subunit III more closely resemble those of CF1-CF0 than those of CF1. In particular, the Ca2+-ATPase activity after reduction of the enzyme with dithiothreitol was much lower in CF1-subunit III and CF1-CF0 than in CF1, suggesting that the association of the inhibitory [epsilon] subunit is tightened by the presence of either CF0 or subunit III. Cold stability is a property of CF1-CF0 in thylakoid membranes. The ATPase activity of CF1 incubated in the cold in the presence of asolectin liposomes was lost more rapidly than that of either CF1-subunit III or CF1-CF0 incorporated into liposomes. Removal of the [epsilon] subunit from all three preparations resulted in marked stimulation of their ATPase activity. Although subunit III was also removed during depletion of the [epsilon] subunit, it is not known whether the two subunits interact directly. CF1 deficient in the [epsilon] subunit binds to liposomes containing either subunit III or CF0. Taken together, these results provide evidence that the association of CF1 and subunit III of CFo is specific and may play a role in enzyme regulation.
如随附论文(C.M.韦策尔和R.E.麦卡蒂[1993]《植物生理学》102:241 - 249)所述分离得到的叶绿体偶联因子1(CF1)与叶绿体ATP合酶跨膜部分的亚基III(CF0)的复合物,已得到进一步表征。对CF1、CF1 - 亚基III和叶绿体ATP合酶(CF1 - CF0)全酶的ATP酶活性进行比较发现,CF1 - 亚基III的特性与CF1 - CF0的更相似,而与CF1的不同。特别是,用二硫苏糖醇还原酶后,CF1 - 亚基III和CF1 - CF0中的Ca2 + - ATP酶活性比CF1中的低得多,这表明抑制性的ε亚基的结合因CF0或亚基III的存在而加强。冷稳定性是类囊体膜中CF1 - CF0的一个特性。在含有大豆卵磷脂脂质体的情况下于低温下孵育的CF1的ATP酶活性比掺入脂质体中的CF1 - 亚基III或CF1 - CF0的ATP酶活性丧失得更快。从所有三种制剂中去除ε亚基导致其ATP酶活性显著增加。尽管在去除ε亚基的过程中也去除了亚基III,但尚不清楚这两个亚基是否直接相互作用。缺乏ε亚基的CF1与含有亚基III或CF0的脂质体结合。综上所述,这些结果提供了证据,表明CF1与CF0的亚基III的结合是特异性的,并且可能在酶调节中起作用。