Albrecht-von-Haller-Institut für Pflanzenwissenschaften, Georg-August-Universität Göttingen, Julia-Lermontowa-Weg 3, D-37077, Göttingen, Germany.
Department of Botany, University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.
New Phytol. 2019 Mar;221(4):1906-1918. doi: 10.1111/nph.15496. Epub 2018 Oct 25.
TGACG-BINDING FACTORs (TGAs) control the developmental or defense-related processes. In Arabidopsis thaliana, the functions of at least TGA2 and PERIANTHIA (PAN) can be repressed by interacting with CC-type glutaredoxins, which have the potential to control the redox state of target proteins. As TGA1 can be redox modulated in planta, we analyzed whether some of the 21 CC-type glutaredoxins (ROXYs) encoded in the Arabidopsis genome can influence TGA1 activity in planta and whether the redox active cysteines of TGA1 are functionally important. We show that the tga1 tga4 mutant and plants ectopically expressing ROXY8 or ROXY9 are impaired in hyponastic growth. As expression of ROXY8 and ROXY9 is activated upon transfer of plants from hyponasty-inducing low light to normal light, they might interfere with the growth-promoting function of TGA1/TGA4 to facilitate reversal of hyponastic growth. The redox-sensitive cysteines of TGA1 are not required for induction or reversal of hyponastic growth. TGA1 and TGA4 interact with ROXYs 8, 9, 18, and 19/GRX480, but ectopically expressed ROXY18 and ROXY19/GRX480 do not interfere with hyponastic growth. Our results therefore demonstrate functional specificities of individual ROXYs for distinct TGAs despite promiscuous protein-protein interactions and point to different repression mechanisms, depending on the TGA/ROXY combination.
TGACG 结合因子(TGAs)控制发育或防御相关过程。在拟南芥中,至少 TGA2 和 PERIANTHIA(PAN)的功能可以通过与 CC 型谷氧还蛋白相互作用而受到抑制,CC 型谷氧还蛋白具有控制靶蛋白氧化还原状态的潜力。由于 TGA1 可以在体内进行氧化还原调节,我们分析了拟南芥基因组中编码的 21 种 CC 型谷氧还蛋白(ROXYs)中的一些是否可以影响 TGA1 在体内的活性,以及 TGA1 的氧化还原活性半胱氨酸是否具有功能重要性。我们表明,tga1 tga4 突变体和异位表达 ROXY8 或 ROXY9 的植物在偏下生长中受到损害。由于 ROXY8 和 ROXY9 的表达在将植物从诱导偏下生长的低光转移到正常光时被激活,它们可能会干扰 TGA1/TGA4 的促生长功能,以促进偏下生长的逆转。TGA1 的氧化还原敏感半胱氨酸对于偏下生长的诱导或逆转不是必需的。TGA1 和 TGA4 与 ROXYs 8、9、18 和 19/GRX480 相互作用,但异位表达的 ROXY18 和 ROXY19/GRX480 不会干扰偏下生长。因此,我们的结果表明,尽管存在混杂的蛋白质-蛋白质相互作用,但个别 ROXYs 对不同的 TGAs 具有功能特异性,并指出了不同的抑制机制,具体取决于 TGA/ROXY 组合。