A plant-unique protein BLISTER coordinates with core retromer to modulate endosomal sorting of plasma membrane and vacuolar proteins

Author:

Li Hongbo1ORCID,Huang Ruihua1,Liao Yanglan1,Yang Shuhong1,Feng Bojin1,Qin Hongting1,Zhou Jun2ORCID,Zeng Yonglun3,Shen Jinbo4ORCID,Zhuang Xiaohong3,Jiang Liwen3,Otegui Marisa S.5,Zhang Shengchun1ORCID,Gao Caiji12ORCID

Affiliation:

1. Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, School of Life Sciences, South China Normal University, Guangzhou 510631, China

2. Ministry of Education & Guangdong Provincial Key Laboratory of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China

3. Centre for Cell & Developmental Biology and State Key Laboratory of Agrobiotechnology, School of Life Sciences, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China

4. State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou 311300, China

5. Department of Botany, Center for Quantitative Cell Imaging, University of Wisconsin-Madison, Madison, WI 53706

Abstract

The retromer is a heteromeric protein complex that localizes to endosomal membranes and drives the formation of endosomal tubules that recycle membrane protein cargoes. In plants, the retromer plays essential and canonical functions in regulating the transport of vacuolar storage proteins and the recycle of endocytosed plasma membrane proteins (PM); however, the mechanisms underlying the regulation of assembly, protein stability, and membrane recruitment of the plant retromer complex remain to be elucidated. In this study, we identify a plant-unique endosomal regulator termed BLISTER (BLI), which colocalizes and associates with the retromer complex by interacting with the retromer core subunits VPS35 and VPS29. Depletion of BLI perturbs the assembly and membrane recruitment of the retromer core VPS26-VPS35-VPS29 trimer. Consequently, depletion of BLI disrupts retromer-regulated endosomal trafficking function, including transport of soluble vacuolar proteins and recycling of endocytosed PIN-FORMED (PIN) proteins from the endosomes back to the PM. Moreover, genetic analysis in Arabidopsis thaliana mutants reveals BLI and core retromer interact genetically in the regulation of endosomal trafficking. Taken together, we identified BLI as a plant-specific endosomal regulator, which functions in retromer pathway to modulate the recycling of endocytosed PM proteins and the trafficking of soluble vacuolar cargoes.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

National Science Foundation

Fok Ying Tung Education Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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