乙酰化
蛋白质亚单位
泛素连接酶
乙酰转移酶
核糖核蛋白
生物
泛素
细胞生物学
组蛋白
组蛋白乙酰转移酶
组蛋白脱乙酰基酶2
核糖核酸酶P
组蛋白脱乙酰基酶
调节器
生物化学
化学
HDAC4型
蛋白酶体
免疫
小核核糖核蛋白
组蛋白乙酰转移酶
功能(生物学)
组蛋白H3
转录调控
RNA干扰
分子生物学
植物免疫
组蛋白H2A
DNA连接酶
作者
Qin Feng,Zhengyin Xu,Hui Tao,Wei Li,Zeyun Hao,Xiaoman You,Maria Bellizzi,Yuese Ning,Guo-Liang Wang
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2026-03-21
卷期号:200 (4)
被引量:1
标识
DOI:10.1093/plphys/kiag157
摘要
RNase P primarily functions in the 5' maturation of tRNAs. However, several protein subunits of the ribonucleoprotein complex perform noncanonical functions in animals, and recent studies suggest similar functions in plant immunity against viral and fungal pathogens. In rice (Oryza sativa), RNase P subunit 30 (OsRpp30) positively regulates immunity and interacts with the histone deacetylase OsHDT701, a known negative regulator of defense against Magnaporthe oryzae. However, the mechanisms controlling OsRpp30 protein turnover remain unclear. In this study, we identified OsHAG704, a histone acetyltransferase, that acetylates and stabilizes OsRpp30, although OsHAG704-mediated acetylation was not required for OsRpp30 stabilization. Overexpression of OsHAG704 enhanced hydrogen peroxide (H2O2) accumulation and conferred increased resistance to M. oryzae. Additionally, we identified OsBPM2, a BTB/POZ domain-containing E3 ubiquitin ligase, which also interacts with OsRpp30 and promotes its stability, leading to similar enhancements in H2O2 levels and disease resistance. Although OsHAG704 did not physically interact with OsBPM2, both proteins competitively bound to OsRpp30, resulting in mutual interference between their respective regulatory pathways. Together, our findings identify 2 distinct positive regulators of OsRpp30 stability and immunity, highlighting a coordinated mechanism involving HAT- and E3 ligase-mediated stabilization in rice defense against M. oryzae.
科研通智能强力驱动
Strongly Powered by AbleSci AI