Jordan E T, Marita J M, Clough R C, Vierstra R D
Department of Horticulture, University of Wisconsin, Madison 53706, USA.
Plant Physiol. 1997 Oct;115(2):693-704. doi: 10.1104/pp.115.2.693.
Phytochrome A (phyA) is a red/far-red (FR) light photoreceptor responsible for initiating numerous light-mediated plant growth and developmental responses, especially in FR light-enriched environments. We previously showed that the first 70 amino acids of the polypeptide contain at least two regions with potentially opposite functions (E.T. Jordan, J.R. Cherry, J.M. Walker, R.D. Vierstra [1996] Plant J 9: 243-257). One region is required for activity and correct apoprotein/chromophore interactions, whereas the second appears to regulate phytochrome activity. We have further resolved these functional regions by analysis of N-terminal deletion and alanine-scanning mutants of oat (Avena sativa) phyA in transgenic tobacco (Nicotiana tabacum). The results indicate that the region involved in chromophore/apoprotein interactions contains two separate segments (residues 25-33 and 50-62) also required for biological activity. The region that regulates phyA activity requires only five adjacent serines (Sers) (residues 8-12). Removal or alteration of these Sers generates a photoreceptor that increases the sensitivity of transgenic seedlings to red and FR light more than intact phyA. Taken together, these data identify three distinct regions in the N-terminal domain necessary for photoreceptor activity, and further define the Ser-rich region as an important site for phyA regulation.
光敏色素A(phyA)是一种红/远红光(FR)光感受器,负责启动众多光介导的植物生长和发育反应,尤其是在富含FR光的环境中。我们之前表明,多肽的前70个氨基酸包含至少两个具有潜在相反功能的区域(E.T.乔丹、J.R.切里、J.M.沃克、R.D.维斯特拉[1996]《植物杂志》9:243 - 257)。一个区域是活性以及正确的脱辅基蛋白/发色团相互作用所必需的,而另一个区域似乎调节光敏色素的活性。我们通过分析转基因烟草(烟草)中燕麦(燕麦)phyA的N端缺失和丙氨酸扫描突变体,进一步解析了这些功能区域。结果表明,参与发色团/脱辅基蛋白相互作用的区域包含两个也为生物活性所必需的独立片段(第25 - 33位和50 - 62位残基)。调节phyA活性的区域仅需要五个相邻的丝氨酸(Ser)(第8 - 12位残基)。去除或改变这些Ser会产生一种光感受器,与完整的phyA相比,它会使转基因幼苗对红光和FR光的敏感性增加。综上所述,这些数据确定了N端结构域中光感受器活性所必需的三个不同区域,并进一步将富含Ser的区域定义为phyA调节的重要位点。