Waadt Rainer, Manalansan Bianca, Rauniyar Navin, Munemasa Shintaro, Booker Matthew A, Brandt Benjamin, Waadt Christian, Nusinow Dmitri A, Kay Steve A, Kunz Hans-Henning, Schumacher Karin, DeLong Alison, Yates John R, Schroeder Julian I
Division of Biological Sciences, Cell and Developmental Biology Section, and Center for Food and Fuel for the 21st Century, University of California, San Diego, La Jolla, California 92093-0116 (R.W., B.M., S.M., B.B., H.-H.K., J.I.S.);Centre for Organismal Studies, Plant Developmental Biology, University of Heidelberg, 69120 Heidelberg, Germany (R.W., K.S.);Department of Chemical Physiology, The Scripps Research Institute, La Jolla, California 92037 (N.R., J.R.Y.);Division of Agricultural and Life Science, Graduate School of Environmental and Life Science, Okayama University, Okayama 7008530, Japan (S.M.);Department of Molecular Biology, Cell Biology, and Biochemistry, Brown University, Providence, Rhode Island 02912 (M.A.B., A.D.);Department of Biology, Donald Danforth Plant Science Center, St. Louis, Missouri 63132 (D.A.N.); andMolecular and Computational Biology Section, University of Southern California, Los Angeles, California 90089 (S.A.K.).
Division of Biological Sciences, Cell and Developmental Biology Section, and Center for Food and Fuel for the 21st Century, University of California, San Diego, La Jolla, California 92093-0116 (R.W., B.M., S.M., B.B., H.-H.K., J.I.S.);Centre for Organismal Studies, Plant Developmental Biology, University of Heidelberg, 69120 Heidelberg, Germany (R.W., K.S.);Department of Chemical Physiology, The Scripps Research Institute, La Jolla, California 92037 (N.R., J.R.Y.);Division of Agricultural and Life Science, Graduate School of Environmental and Life Science, Okayama University, Okayama 7008530, Japan (S.M.);Department of Molecular Biology, Cell Biology, and Biochemistry, Brown University, Providence, Rhode Island 02912 (M.A.B., A.D.);Department of Biology, Donald Danforth Plant Science Center, St. Louis, Missouri 63132 (D.A.N.); andMolecular and Computational Biology Section, University of Southern California, Los Angeles, California 90089 (S.A.K.)
Plant Physiol. 2015 Sep;169(1):760-79. doi: 10.1104/pp.15.00575. Epub 2015 Jul 14.
The plant hormone abscisic acid (ABA) controls growth and development and regulates plant water status through an established signaling pathway. In the presence of ABA, pyrabactin resistance/regulatory component of ABA receptor proteins inhibit type 2C protein phosphatases (PP2Cs). This, in turn, enables the activation of Sucrose Nonfermenting1-Related Protein Kinases2 (SnRK2). Open Stomata1 (OST1)/SnRK2.6/SRK2E is a major SnRK2-type protein kinase responsible for mediating ABA responses. Arabidopsis (Arabidopsis thaliana) expressing an epitope-tagged OST1 in the recessive ost1-3 mutant background was used for the copurification and identification of OST1-interacting proteins after osmotic stress and ABA treatments. These analyses, which were confirmed using bimolecular fluorescence complementation and coimmunoprecipitation, unexpectedly revealed homo- and heteromerization of OST1 with SnRK2.2, SnRK2.3, OST1, and SnRK2.8. Furthermore, several OST1-complexed proteins were identified as type 2A protein phosphatase (PP2A) subunits and as proteins involved in lipid and galactolipid metabolism. More detailed analyses suggested an interaction network between ABA-activated SnRK2-type protein kinases and several PP2A-type protein phosphatase regulatory subunits. pp2a double mutants exhibited a reduced sensitivity to ABA during seed germination and stomatal closure and an enhanced ABA sensitivity in root growth regulation. These analyses add PP2A-type protein phosphatases as another class of protein phosphatases to the interaction network of SnRK2-type protein kinases.
植物激素脱落酸(ABA)通过既定的信号通路控制生长发育并调节植物水分状况。在ABA存在的情况下,ABA受体蛋白的吡唑素抗性/调节成分会抑制2C型蛋白磷酸酶(PP2C)。这进而能够激活蔗糖非发酵相关蛋白激酶2(SnRK2)。开放气孔1(OST1)/SnRK2.6/SRK2E是一种主要的SnRK2型蛋白激酶,负责介导ABA反应。在隐性ost1-3突变体背景下表达表位标签化OST1的拟南芥(Arabidopsis thaliana)用于在渗透胁迫和ABA处理后共纯化和鉴定与OST1相互作用的蛋白。这些分析通过双分子荧光互补和免疫共沉淀得到证实,意外地揭示了OST1与SnRK2.2、SnRK2.3、OST1和SnRK2.8的同源和异源二聚化。此外,一些与OST1复合的蛋白被鉴定为2A型蛋白磷酸酶(PP2A)亚基以及参与脂质和半乳糖脂代谢的蛋白。更详细的分析表明ABA激活的SnRK2型蛋白激酶与几种PP2A型蛋白磷酸酶调节亚基之间存在相互作用网络。pp2a双突变体在种子萌发和气孔关闭过程中对ABA的敏感性降低,而在根生长调节中对ABA的敏感性增强。这些分析将PP2A型蛋白磷酸酶作为另一类蛋白磷酸酶添加到SnRK2型蛋白激酶的相互作用网络中。