Baunsgaard L, Fuglsang A T, Jahn T, Korthout H A, de Boer A H, Palmgren M G
Department of Plant Biology, Royal Veterinary and Agricultural University, Frederiksberg C, Denmark.
Plant J. 1998 Mar;13(5):661-71. doi: 10.1046/j.1365-313x.1998.00083.x.
The plasma membrane H(+)-ATPase in higher plants has been implicated in nutrient uptake, phloem loading, elongation growth and establishment of turgor. Although a C-terminal regulatory domain has been identified, little is known about the physiological factors involved in controlling the activity of the enzyme. To identify components which play a role in the regulation of the plant H(+)-ATPase, a fusicoccin responsive yeast expressing Arabidopsis plasma membrane H(+)-ATPase AHA2 was employed. By testing the fusicoccin binding activity of yeast membranes, the C-terminal regulatory domain of AHA2 was found to be part of a functional fusicoccin receptor, a component of which was the 14-3-3 protein. ATP hydrolytic activity of AHA2 expressed in yeast internal membranes was activated by all tested isoforms of the 14-3-3 protein of yeast and Arabidopsis, but only in the presence of fusicoccin, and activation was prevented by a phosphoserine peptide representing a known 14-3-3 protein binding motif in Raf-1. The results demonstrate that the 14-3-3 protein is an activator molecule of the H(+)-ATPase and provides the first evidence of a protein involved in activation of plant plasma membrane H(+)-ATPase.
高等植物中的质膜H(+) -ATP酶与养分吸收、韧皮部装载、伸长生长以及膨压的建立有关。尽管已经鉴定出一个C末端调节结构域,但对于控制该酶活性的生理因素却知之甚少。为了鉴定在植物H(+) -ATP酶调节中起作用的成分,使用了一种表达拟南芥质膜H(+) -ATP酶AHA2的对壳梭孢菌素敏感的酵母。通过测试酵母膜的壳梭孢菌素结合活性,发现AHA2的C末端调节结构域是功能性壳梭孢菌素受体的一部分,其中一个成分是14-3-3蛋白。酵母内膜中表达的AHA2的ATP水解活性被酵母和拟南芥的所有测试的14-3-3蛋白同工型激活,但仅在存在壳梭孢菌素的情况下,并且代表Raf-1中已知的14-3-3蛋白结合基序的磷酸丝氨酸肽可阻止激活。结果表明,14-3-3蛋白是H(+) -ATP酶的激活分子,并提供了参与植物质膜H(+) -ATP酶激活的蛋白质的首个证据。