Yang Xiao-Hua, Xu Zhi-Hong, Xue Hong-Wei
National Key Laboratory of Plant Molecular Genetics, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 200032 Shanghai, China.
Plant Cell. 2005 Jan;17(1):116-31. doi: 10.1105/tpc.104.028381. Epub 2004 Dec 17.
A putative Membrane Steroid Binding Protein (designated MSBP1) was identified and functionally characterized as a negative regulator of cell elongation in Arabidopsis thaliana. The MSBP1 gene encodes a 220-amino acid protein that can bind to progesterone, 5-dihydrotestosterone, 24-epi-brassinolide (24-eBL), and stigmasterol with different affinities in vitro. Transgenic plants overexpressing MSBP1 showed short hypocotyl phenotype and increased steroid binding capacity in membrane fractions, whereas antisense MSBP1 transgenic plants showed long hypocotyl phenotypes and reduced steroid binding capacity, indicating that MSBP1 negatively regulates hypocotyl elongation. The reduced cell elongation of MSBP1-overexpressing plants was correlated with altered expression of genes involved in cell elongation, such as expansins and extensins, indicating that enhanced MSBP1 affected a regulatory pathway for cell elongation. Suppression or overexpression of MSBP1 resulted in enhanced or reduced sensitivities, respectively, to exogenous progesterone and 24-eBL, suggesting a negative role of MSBP1 in steroid signaling. Expression of MSBP1 in hypocotyls is suppressed by darkness and activated by light, suggesting that MSBP1, as a negative regulator of cell elongation, plays a role in plant photomorphogenesis. This study demonstrates the functional roles of a steroid binding protein in growth regulation in higher plants.
一种假定的膜类固醇结合蛋白(命名为MSBP1)在拟南芥中被鉴定出来,并被功能表征为细胞伸长的负调控因子。MSBP1基因编码一种220个氨基酸的蛋白质,该蛋白质在体外能以不同亲和力结合孕酮、5-二氢睾酮、24-表油菜素内酯(24-eBL)和豆甾醇。过表达MSBP1的转基因植物表现出下胚轴短的表型,且膜组分中的类固醇结合能力增加,而反义MSBP1转基因植物表现出下胚轴长的表型且类固醇结合能力降低,这表明MSBP1负调控下胚轴伸长。过表达MSBP1的植物中细胞伸长的降低与参与细胞伸长的基因(如扩张蛋白和伸展蛋白)表达的改变相关,这表明增强的MSBP1影响了细胞伸长的调控途径。MSBP1的抑制或过表达分别导致对外源孕酮和24-eBL的敏感性增强或降低,这表明MSBP1在类固醇信号传导中起负作用。MSBP1在下胚轴中的表达受黑暗抑制,受光照激活,这表明MSBP1作为细胞伸长的负调控因子,在植物光形态建成中发挥作用。这项研究证明了一种类固醇结合蛋白在高等植物生长调控中的功能作用。