Golgi‐associated retrograde protein (GARP) complex recruits retromer to trans‐Golgi network for FgKex2 and FgSnc1 recycling, necessary for the development and pathogenicity of Fusarium graminearum
逆转体
内体
细胞生物学
高尔基体
生物
生物发生
转运蛋白
细胞内
生物化学
基因
内质网
作者
Y. F. Long,Xin Chen,Jia Chen,Haoran Zhang,Ying Lin,Shu‐Yuan Cheng,Neng Pu,Xuandong Zhou,Renzhi Sheng,Yakubu Saddeeq Abubakar,Huawei Zheng,Yingzi Yun,Guodong Lu,Zonghua Wang,Wenhui Zheng
Summary In eukaryotes, the retromer complex plays a crucial role in the sorting and retrograde transport of cargo proteins from endosomes to the trans ‐Golgi network (TGN). Despite its importance, the molecular details of this intracellular transport process remain unclear. Here, we have identified a Golgi‐associated retrograde protein (GARP) complex as a mediator of vesicle transport that facilitates the recruitment of the retromer complex to the TGN to exert its functions. The GARP complex is mainly localized in the TGN where it interacts with the retromer complex. This interaction is evolutionarily conserved across species. Furthermore, we identified FgKex2 and FgSnc1 as cargo proteins in the GARP/retromer‐mediated recycling pathway. Loss of GARP or retromer results in a complete missorting of FgKex2 and FgSnc1 into the vacuolar degradation pathway, which affects the growth, development, biogenesis of toxisomes and pathogenicity of Fusarium graminearum . In summary, we demonstrate for the first time that GARP promotes the recruitment of retromer from endosomes to the TGN, thereby establishing a GARP/retromer transport pathway that coordinates the recycling of cargo proteins FgKex2 and FgSnc1. This process is essential for maintaining sustained growth and development and significantly contributes to the pathogenicity of F. graminearum .