Itoh Hironori, Sasaki Akie, Ueguchi-Tanaka Miyako, Ishiyama Kanako, Kobayashi Masatomo, Hasegawa Yasuko, Minami Eiichi, Ashikari Motoyuki, Matsuoka Makoto
Bioscience and Biotechnology Center, Nagoya University, Nagoya, Aichi, 464-8601 Japan.
Plant Cell Physiol. 2005 Aug;46(8):1392-9. doi: 10.1093/pcp/pci152. Epub 2005 Jun 23.
DELLA proteins are repressors of gibberellin signaling in plants. Our previous studies have indicated that gibberellin signaling is derepressed by SCF(GID2)-mediated proteolysis of the DELLA protein, SLENDER RICE1 (SLR1), in rice. In addition, the gibberellin-dependent increase of phosphorylated SLR1 in the loss-of-function gid2 mutant suggests that the SCF(GID2)-mediated degradation of SLR1 might be initiated by gibberellin-dependent phosphorylation. To confirm the role of phosphorylation of SLR1 in its gibberellin-dependent degradation, we revealed that SLR1 is phosphorylated on an N-terminal serine residue(s) within the DELLA/TVHYNP and polyS/T/V domain. However, gibberellin-induced phosphorylation in these regions was not observed in the gid2 mutant following the constitutive expression of SLR1 under the control of the rice actin1 promoter. Treatment with gibberellin induced both the phosphorylated and non-phosphorylated forms of SLR1 with similar induction kinetics in gid2 mutant cells. Both the phosphorylated and non-phosphorylated SLR1 proteins were degraded by gibberellin treatment with a similar half-life in the rice callus cells, and both proteins interacted with recombinant glutathione S-transferase (GST)-GID2. These results demonstrate that the phosphorylation of SLR1 is independent of its degradation and is dispensable for the interaction of SLR1 with the GID2/F-box protein.
DELLA蛋白是植物中赤霉素信号传导的抑制因子。我们之前的研究表明,在水稻中,赤霉素信号通过SCF(GID2)介导的DELLA蛋白——细长水稻1(SLR1)的蛋白水解作用而解除抑制。此外,在功能缺失的gid2突变体中,依赖赤霉素的磷酸化SLR1的增加表明,SCF(GID2)介导的SLR1降解可能由依赖赤霉素的磷酸化引发。为了证实SLR1磷酸化在其依赖赤霉素的降解中的作用,我们发现SLR1在DELLA/TVHYNP和多聚S/T/V结构域内的N端丝氨酸残基上发生了磷酸化。然而,在水稻肌动蛋白1启动子控制下组成型表达SLR1后,在gid2突变体中未观察到这些区域的赤霉素诱导的磷酸化。用赤霉素处理在gid2突变体细胞中诱导出了具有相似诱导动力学的磷酸化和非磷酸化形式的SLR1。在水稻愈伤组织细胞中,磷酸化和非磷酸化的SLR1蛋白经赤霉素处理后均以相似的半衰期被降解,并且这两种蛋白都与重组谷胱甘肽S-转移酶(GST)-GID2相互作用。这些结果表明,SLR1的磷酸化与其降解无关,并且对于SLR1与GID2/F-box蛋白的相互作用是可有可无的。