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E3 泛素连接酶 SINA1 和 SINA2 与蛋白激酶 CIPK20 结合,调节 RGL2a 的稳定性,RGL2a 是花色素苷生物合成的正调控因子。

The E3 ubiquitin ligases SINA1 and SINA2 integrate with the protein kinase CIPK20 to regulate the stability of RGL2a, a positive regulator of anthocyanin biosynthesis.

机构信息

CAS Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden, Hubei Hongshan Laboratory, The Innovative Academy of Seed Design of Chinese Academy of Sciences, Wuhan, 430074, China.

College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, 271018, Shandong, China.

出版信息

New Phytol. 2023 Aug;239(4):1332-1352. doi: 10.1111/nph.18997. Epub 2023 May 26.

Abstract

Although DELLA protein destabilization mediated by post-translational modifications is essential for gibberellin (GA) signal transduction and GA-regulated anthocyanin biosynthesis, the related mechanisms remain largely unknown. In this study, we report the ubiquitination and phosphorylation of an apple DELLA protein MdRGL2a in response to GA signaling and its regulatory role in anthocyanin biosynthesis. MdRGL2a could interact with MdWRKY75 to enhance the MdWRKY75-activated transcription of anthocyanin activator MdMYB1 and interfere with the interaction between anthocyanin repressor MdMYB308 and MdbHLH3 or MdbHLH33, thereby promoting anthocyanin accumulation. A protein kinase MdCIPK20 was found to phosphorylate and protect MdRGL2a from degradation, and it was essential for MdRGL2a-promoting anthocyanin accumulation. However, MdRGL2a and MdCIPK20 were ubiquitinated and degraded by E3 ubiquitin ligases MdSINA1 and MdSINA2, respectively, both of which were activated in the presence of GA. Our results display the integration of SINA1/2 with CIPK20 to dynamically regulate GA signaling and will be helpful toward understanding the mechanism of GA signal transduction and GA-inhibited anthocyanin biosynthesis. The discovery of extensive interactions between DELLA and SINA and CIPK proteins in apple will provide reference for the study of ubiquitination and phosphorylation of DELLA proteins in other species.

摘要

虽然 DELLA 蛋白通过翻译后修饰的不稳定性对赤霉素(GA)信号转导和 GA 调控的花色素苷生物合成至关重要,但相关机制在很大程度上仍不清楚。在本研究中,我们报告了苹果 DELLA 蛋白 MdRGL2a 的泛素化和磷酸化对 GA 信号的反应及其在花色素苷生物合成中的调节作用。MdRGL2a 可以与 MdWRKY75 相互作用,增强 MdWRKY75 激活的花色素苷激活因子 MdMYB1 的转录,并干扰花色素苷抑制因子 MdMYB308 与 MdbHLH3 或 MdbHLH33 的相互作用,从而促进花色素苷的积累。发现蛋白激酶 MdCIPK20 磷酸化并保护 MdRGL2a 免受降解,这对 MdRGL2a 促进花色素苷积累是必不可少的。然而,MdRGL2a 和 MdCIPK20 分别被 E3 泛素连接酶 MdSINA1 和 MdSINA2 泛素化和降解,这两种酶在 GA 存在的情况下被激活。我们的结果显示 SINA1/2 与 CIPK20 的整合动态调节 GA 信号,并将有助于理解 GA 信号转导和 GA 抑制花色素苷生物合成的机制。苹果中 DELLA 与 SINA 和 CIPK 蛋白之间广泛相互作用的发现将为其他物种中 DELLA 蛋白泛素化和磷酸化的研究提供参考。

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