Marra M, Ballio A, Battirossi P, Fogliano V, Fullone M R, Slayman C L, Aducci P
Department of Biology, University of Rome Tor Vergata, Italy.
Proc Natl Acad Sci U S A. 1995 Feb 28;92(5):1599-603. doi: 10.1073/pnas.92.5.1599.
Fusicoccin affects several physiological processes regulated by the plasma membrane H(+)-ATPase in higher plants while other organisms having P-type H(+)-ATPases (e.g., fungi) are fusicoccin-insensitive. We have previously shown that fusicoccin binding to its receptor is necessary for H(+)-ATPase stimulation and have achieved the functional reconstitution into liposomes of fusicoccin receptors and the H(+)-ATPase from maize. In this paper we show that fusicoccin sensitivity can be conferred on the H(+)-ATPase from Neurospora crassa, a fungus insensitive to fusicoccin. In fact, H+ pumping by purified H(+)-ATPase from Neurospora crassa reconstituted into liposomes containing crude or partially purified fusicoccin receptors from maize was markedly enhanced by fusicoccin. The stimulation of H+ pumping by fusicoccin is dependent upon pH, fusicoccin, and protein concentration, as was reported for the system reconstituted with both proteins from maize.
壳梭孢菌素影响高等植物中由质膜H(+) -ATP酶调节的多种生理过程,而其他具有P型H(+) -ATP酶的生物体(如真菌)对壳梭孢菌素不敏感。我们先前已经表明,壳梭孢菌素与其受体的结合是刺激H(+) -ATP酶所必需的,并且已经实现了将壳梭孢菌素受体和来自玉米的H(+) -ATP酶功能性重组到脂质体中。在本文中,我们表明对壳梭孢菌素不敏感的真菌粗糙脉孢菌的H(+) -ATP酶可以获得对壳梭孢菌素的敏感性。事实上,用含有来自玉米的粗制或部分纯化的壳梭孢菌素受体的脂质体重组的粗糙脉孢菌纯化的H(+) -ATP酶所进行的H+ 泵浦作用,被壳梭孢菌素显著增强。如用来自玉米的两种蛋白质重组的系统所报道的那样,壳梭孢菌素对H+ 泵浦的刺激作用取决于pH、壳梭孢菌素和蛋白质浓度。