McCubbin Andrew G, Ritchie Sian M, Swanson Sarah J, Gilroy Simon
School of Biological Sciences and Center for Reproductive Biology, Washington State University, PO Box 644236, Pullman, WA 99164, USA.
Plant J. 2004 Jul;39(2):206-18. doi: 10.1111/j.1365-313X.2004.02121.x.
In the aleurone cells of the cereal grain, gibberellic acid (GA) induces the secretion of hydrolases that mobilize endosperm reserves to fuel early seedling growth. GA is known to trigger a range of cellular responses, including increases in cytoplasmic calcium, vacuolar reserve mobilization, gene transcription, and the synthesis and secretion of hydrolases. To further define elements of the Ca2+-dependent GA response machinery, we have cloned a Ca2+-dependent protein kinase (HvCDPK1) from these cells. Although expression of an inactivated (D140N) version of this kinase did not affect GA-induced gene expression or changes in cytosolic Ca2+, it did inhibit secretion, cell vacuolation, and vacuolar acidification, all responses linked to the GA response. Additionally, recombinant wild-type HvCDPK1 activated the V-type H(+)-ATPase present in isolated aleurone vacuoles. These results suggest HvCDPK1 may mediate Ca2+-dependent events of the GA response, such as control of vacuolar function, that lie downstream of transcriptional regulation.
在谷物种子的糊粉层细胞中,赤霉素(GA)诱导水解酶的分泌,这些水解酶可动员胚乳储备以支持幼苗早期生长。已知GA会引发一系列细胞反应,包括细胞质钙增加、液泡储备动员、基因转录以及水解酶的合成与分泌。为了进一步确定Ca²⁺依赖性GA反应机制的元件,我们从这些细胞中克隆了一种Ca²⁺依赖性蛋白激酶(HvCDPK1)。尽管该激酶的失活(D140N)版本的表达不影响GA诱导的基因表达或胞质Ca²⁺的变化,但它确实抑制了分泌、细胞液泡化和液泡酸化,所有这些反应都与GA反应相关。此外,重组野生型HvCDPK1激活了分离的糊粉层液泡中存在的V型H⁺-ATP酶。这些结果表明,HvCDPK1可能介导GA反应中Ca²⁺依赖性事件,如液泡功能的控制,这些事件发生在转录调控的下游。