College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, 310018, China.
The Third Affiliated Hospital of Zhejiang Chinese Medical University, Hangzhou, 310005, China.
Plant Physiol Biochem. 2024 Oct;215:108978. doi: 10.1016/j.plaphy.2024.108978. Epub 2024 Jul 27.
Lonicera japonica plays a significant role in traditional Chinese medicine and as a food source, making it a focus of studies on protein succinylation and its potential role in regulating secondary metabolism during flower development. This study aimed to clarify the regulatory mechanism of protein succinylation on phenylpropanoid-related phenotypic changes by conducting a global lysine succinylation proteomic analysis across different flowering stages. A total of 586 lysine succinylated peptides in 303 proteins were identified during early and late floral stages. Functional enrichment analysis revealed that succinylated proteins primarily participated in the tricarboxylic acid (TCA) cycle, amino acid metabolism, and secondary metabolism. The abundance of succinylated aspartate transaminase (AT), 4-coumarate-CoA ligase (4CL), and phenylalanine N-hydroxylase (CYP79A2) in phenylpropanoid metabolism varied during flower development. In vitro experiments demonstrated that succinylation increased AT activity while inhibited 4CL activity. Decreased levels of total flavonoids and phenolic acids indicated significant alterations in phenylpropanoid metabolism during later floral stages. These results suggest that succinylation of TCA cycle proteins not only influences flower development but also, together with AT-4CL-CYP79A2 co-succinylation, redirects phenylpropanoid metabolism during flower development in L. japonica.
金银花在传统中药和食品资源中扮演着重要的角色,因此成为研究蛋白质琥珀酰化及其在花发育过程中调控次生代谢物潜在作用的焦点。本研究旨在通过对不同花期进行全局赖氨酸琥珀酰化蛋白质组学分析,阐明蛋白质琥珀酰化对苯丙素类相关表型变化的调控机制。在早期和晚期花期中共鉴定到 586 个赖氨酸琥珀酰化肽和 303 个蛋白质。功能富集分析表明,琥珀酰化蛋白主要参与三羧酸(TCA)循环、氨基酸代谢和次生代谢。苯丙素代谢中琥珀酰化天冬氨酸转氨酶(AT)、4-香豆酸辅酶 A 连接酶(4CL)和苯丙氨酸羟化酶(CYP79A2)的丰度在花发育过程中发生变化。体外实验表明,琥珀酰化增加了 AT 的活性,而抑制了 4CL 的活性。总黄酮和酚酸含量的降低表明,在后期花期中苯丙素代谢发生了显著变化。这些结果表明,TCA 循环蛋白的琥珀酰化不仅影响花的发育,而且与 AT-4CL-CYP79A2 共琥珀酰化一起,在金银花花发育过程中重新定向了苯丙素代谢。