Physiological Functions of the COPI Complex in Higher Plants
SCIE
SCOPUS
- Title
- Physiological Functions of the COPI Complex in Higher Plants
- Authors
- Ahn, HK; Kang, YW; Lim, HM; Hwang, I; Pai, HS
- Date Issued
- 2015-10
- Publisher
- 한국분자세포생물학회
- Abstract
- COPI vesicles are essential to the retrograde transport of proteins in the early secretory pathway. The COPI coatomer complex consists of seven subunits, termed alpha-, beta-, beta'-, gamma-, delta-, epsilon-, and zeta-COP, in yeast and mammals. Plant genomes have homologs of these subunits, but the essentiality of their cellular functions has hampered the functional characterization of the subunit genes in plants. Here we have employed virus-induced gene silencing (VIGS) and dexamethasone (DEX)-inducible RNAI of the COPI subunit genes to study the in vivo functions of the COPI coatomer complex in plants. The beta'-, gamma-, and delta-COP subunits localized to the Golgi as GFP-fusion proteins and interacted with each other in the Golgi. Silencing of beta'-, gamma-, and delta-COP by VIGS resulted in growth arrest and acute plant death in Nicotiana benthamiana, with the affected leaf cells exhibiting morphological markers of programmed cell death. Depletion of the COPI subunits resulted in disruption of the Golgi structure and accumulation of autolysosome-like structures in earlier stages of gene silencing. In tobacco BY-2 cells, DEX-inducible RNAi of beta'-COP caused aberrant cell plate formation during cytokinesis. Collectively, these results suggest that COPI vesicles are essential to plant growth and survival by maintaining the Golgi apparatus and modulating cell plate formation.
- URI
- https://oasis.postech.ac.kr/handle/2014.oak/35678
- DOI
- 10.14348/MOLCELLS.2015.0115
- ISSN
- 1016-8478
- Article Type
- Article
- Citation
- Molecules and Cells, vol. 38, no. 10, page. 866 - 875, 2015-10
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