Preassembly and independent trafficking of the exocyst complex in <i>Arabidopsis</i>

S Su Jiang (School of Life Sciences, Qilu Normal University) Z Zhendong Liu (School of Light Industry and Engineering, State Key Laboratory of Advanced Papermaking & Paper-based Materials) S Shuju Zhao (School of Life Sciences, Qilu Normal University) T Tonghui Li (School of Life Sciences, Qilu Normal University) J Juan Li C Can Bu (School of Life Sciences, Qilu Normal University) L Long Ma (School of Life Sciences, Qilu Normal University) X Xiaonan Liu (School of Life Sciences, Qilu Normal University) S Shan Gao G Guangyou Duan (School of Life Sciences, Qilu Normal University) D Dayong Cui (School of Life Sciences, Qilu Normal University) C Chun-Ming Liu (Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences) J Juan Dong (The Waksman Institute of Microbiology, Rutgers, the State University of New Jersey) J Jian Xu S Shanli Guo (Key Laboratory of National Forestry and Grassland Administration on Grassland Resources and Ecology in the Yellow River Delta, Qingdao Agricultural University) S Samantha Vernhettes (Université Paris-Saclay, INRAE, AgroParisTech, Institut Jean-Pierre Bourgin for Plant Sciences (IJPB)) S Shipeng Li (School of Life Sciences, Qilu Normal University)

Abstract

Membrane fusion, the culmination of eukaryotic membrane trafficking, is orchestrated by the exocyst complex (a conserved octamer comprising SC1 and SC2 heterotetramers) and sensitive factor attachment protein receptor (SNARE) complexes. Although trans -SNARE complex formation is essential for function, a similar trans -interaction mechanism for the exocyst remains uncertain. We employed advanced live-cell imaging combined with genetic and pharmacological techniques to dissect the spatiotemporal dynamics of exocyst subunit interactions and cargo vesicle association in Arabidopsis thaliana hypocotyl cells. Our results demonstrate that subunits from SC1 and SC2 colocalize and undergo actin-dependent transport to the plasma membrane (PM). Disruption of either SEC6 (SC1) or EXO70A1 (SC2) prevented PM association of both subcomplexes, indicating cytoplasmic preassembly of the cis -exocyst complex before PM recruitment. Critically, we found that the exocyst does not directly bind vesicles carrying cellulose synthase complexes (CSCs). Instead, exocyst subunits first migrate on CSC-negative vesicles, which then coalesce with CSC-carrying vesicles at the cell cortex via heterotypic fusion. Together, our findings reveal a parallel mechanism for exocyst assembly and cargo loading. This coordinated process may represent a broadly conserved strategy to ensure efficient membrane trafficking in eukaryotic cells.

Article Details

Volume / Issue Vol. 122, Issue 48
Published December 02, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (17)

S

Su Jiang

School of Life Sciences, Qilu Normal University

Z

Zhendong Liu

School of Light Industry and Engineering, State Key Laboratory of Advanced Papermaking & Paper-based Materials

S

Shuju Zhao

School of Life Sciences, Qilu Normal University

T

Tonghui Li

School of Life Sciences, Qilu Normal University

J

Juan Li

C

Can Bu

School of Life Sciences, Qilu Normal University

L

Long Ma

School of Life Sciences, Qilu Normal University

X

Xiaonan Liu

School of Life Sciences, Qilu Normal University

S

Shan Gao

G

Guangyou Duan

School of Life Sciences, Qilu Normal University

D

Dayong Cui

School of Life Sciences, Qilu Normal University

C

Chun-Ming Liu

Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences

J

Juan Dong

The Waksman Institute of Microbiology, Rutgers, the State University of New Jersey

J

Jian Xu

S

Shanli Guo

Key Laboratory of National Forestry and Grassland Administration on Grassland Resources and Ecology in the Yellow River Delta, Qingdao Agricultural University

S

Samantha Vernhettes

Université Paris-Saclay, INRAE, AgroParisTech, Institut Jean-Pierre Bourgin for Plant Sciences (IJPB)

S

Shipeng Li

School of Life Sciences, Qilu Normal University