A New Dynamin-like Protein, ADL6, is Involved in Trafficking from the Trans-Golgi Network to the Central Vacuole in Arabidopsis
Overview
Cell Biology
Affiliations
Dynamin, a high-molecular-weight GTPase, plays a critical role in vesicle formation at the plasma membrane during endocytosis in animal cells. Here we report the identification of a new dynamin homolog in Arabidopsis named Arabidopsis dynamin-like 6 (ADL6). ADL6 is quite similar to dynamin I in its structural organization: a conserved GTPase domain at the N terminus, a pleckstrin homology domain at the center, and a Pro-rich motif at the C terminus. In the cell, a majority of ADL6 is associated with membranes. Immunohistochemistry and in vivo targeting experiments revealed that ADL6 is localized to the Golgi apparatus. Expression of the dominant negative mutant ADL6[K51E] in Arabidopsis protoplasts inhibited trafficking of cargo proteins destined for the lytic vacuole and caused them to accumulate at the trans-Golgi network. In contrast, expression of ADL6[K51E] did not affect trafficking of a cargo protein, H(+)-ATPase:green fluorescent protein, destined for the plasma membrane. These results suggest that ADL6 is involved in vesicle formation for vacuolar trafficking at the trans-Golgi network but not for trafficking to the plasma membrane in plant cells.
Expression and localization of two β-carbonic anhydrases in , a single-cell C plant.
Nguyen T, Lee N, Fromling F, Meister T, Kim J, Offermann S Front Plant Sci. 2025; 15:1506375.
PMID: 39886682 PMC: 11779723. DOI: 10.3389/fpls.2024.1506375.
Kim E, Poudyal R, Lee K, Yu H, Gi E, Kim H Physiol Plant. 2022; 174(4):e13760.
PMID: 36004734 PMC: 9546280. DOI: 10.1111/ppl.13760.
An Update on the Key Factors Required for Plant Golgi Structure Maintenance.
Rui Q, Tan X, Liu F, Bao Y Front Plant Sci. 2022; 13:933283.
PMID: 35837464 PMC: 9274083. DOI: 10.3389/fpls.2022.933283.
Jeong J, Moon B, Hwang I, Lee D Plant Physiol. 2022; 190(1):238-249.
PMID: 35699510 PMC: 9434181. DOI: 10.1093/plphys/kiac291.
The seed-specific transcription factor DPBF2 modulates the fatty acid composition in seeds.
Kim I, Lee K, Park M, Kim H Plant Direct. 2022; 6(4):e395.
PMID: 35388372 PMC: 8977579. DOI: 10.1002/pld3.395.