Arabidopsis HOPS subunit VPS41 carries out plant-specific roles in vacuolar transport and vegetative growth

Author:

Jiang Dong1,He Yilin2ORCID,Zhou Xiangui1ORCID,Cao Zhiran1ORCID,Pang Lei1ORCID,Zhong Sheng3ORCID,Jiang Liwen24ORCID,Li Ruixi1ORCID

Affiliation:

1. Key Laboratory of Molecular Design for Plant Cell Factory of Guangdong Higher Education Institutes, School of Life Sciences, Institute of Plant and Food Science, Southern University of Science and Technology , Shenzhen 518055, China

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

3. State Key Laboratory for Protein and Plant Gene Research, Peking-Tsinghua Center for Life Sciences at the College of Life Sciences, Peking University , Beijing 100871, China

4. CUHK Shenzhen Research Institute, The Chinese University of Hong Kong , Shenzhen 518172, China

Abstract

Abstract The homotypic fusion and protein sorting (HOPS) complex is a conserved, multi-subunit tethering complex in eukaryotic cells. In yeast and mammalian cells, the HOPS subunit vacuolar protein sorting-associated protein 41 (VPS41) is recruited to late endosomes after Ras-related protein 7 (Rab7) activation and is essential for vacuole fusion. However, whether VPS41 plays conserved roles in plants is not clear. Here, we demonstrate that in the model plant Arabidopsis (Arabidopsis thaliana), VPS41 localizes to distinct condensates in root cells in addition to its reported localization at the tonoplast. The formation of condensates does not rely on the known upstream regulators but depends on VPS41 self-interaction and is essential for vegetative growth regulation. Genetic evidence indicates that VPS41 is required for both homotypic vacuole fusion and cargo sorting from the adaptor protein complex 3, Rab5, and Golgi-independent pathways but is dispensable for the Rab7 cargo inositol transporter 1. We also show that VPS41 has HOPS-independent functions in vacuolar transport. Taken together, our findings indicate that Arabidopsis VPS41 is a unique subunit of the HOPS complex that carries out plant-specific roles in both vacuolar transport and developmental regulation.

Funder

Natural Science Foundation of China

Guangdong Innovation Research Team Fund

Shenzhen Sci-Tech Fund

Key Laboratory of Molecular Design for Plant Cell Factory of Guangdong Higher Education Institutes

Research Grants Council of Hong Kong

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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