效应器
生物
叶绿体
转运肽
蛋白质靶向
细胞生物学
转运蛋白
信号肽
细胞质
遗传学
膜蛋白
肽序列
基因
质体
膜
作者
Benjamin Pêtre,Cécile Lorrain,Diane G. O. Saunders,Joe Win,Jan Sklenář,Sébastien Duplessis,Sophien Kamoun
摘要
Parasite effector proteins target various host cell compartments to alter host processes and promote infection. How effectors cross membrane-rich interfaces to reach these compartments is a major question in effector biology. Growing evidence suggests that effectors use molecular mimicry to subvert host cell machinery for protein sorting. We recently identified chloroplast-targeted protein 1 (CTP1), a candidate effector from the poplar leaf rust fungus Melampsora larici-populina that carries a predicted transit peptide and accumulates in chloroplasts and mitochondria. Here, we show that the CTP1 transit peptide is necessary and sufficient for accumulation in the stroma of chloroplasts. CTP1 is part of a Melampsora-specific family of polymorphic secreted proteins. Two members of that family, CTP2 and CTP3, also translocate in chloroplasts in an N-terminal signal-dependent manner. CTP1, CTP2 and CTP3 are cleaved when they accumulate in chloroplasts, while they remain intact when they do not translocate into chloroplasts. Our findings reveal that fungi have evolved effector proteins that mimic plant-specific sorting signals to traffic within plant cells.
科研通智能强力驱动
Strongly Powered by AbleSci AI