The AP 3 β adaptin mediates the biogenesis and function of lytic vacuoles in Arabidopsis

Feraru E, Paciorek T, Feraru M, Zwiewka M, De Groodt R, De Rycke R, Kleine Vehn J, Friml J. 2010. The AP 3 β adaptin mediates the biogenesis and function of lytic vacuoles in Arabidopsis. Plant Cell. 22(8), 2812–2824.

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Journal Article | Published
Author
Feraru, Elena; Paciorek, Tomasz; Feraru, Mugurel I; Zwiewka, Marta; De Groodt, Ruth; De Rycke, Riet M; Kleine-Vehn, Jürgen; Friml, JiríISTA
Abstract
Plant vacuoles are essential multifunctional organelles largely distinct from similar organelles in other eukaryotes. Embryo protein storage vacuoles and the lytic vacuoles that perform a general degradation function are the best characterized, but little is known about the biogenesis and transition between these vacuolar types. Here, we designed a fluorescent marker- based forward genetic screen in Arabidopsis thaliana and identified a protein affected trafficking2 (pat2) mutant, whose lytic vacuoles display altered morphology and accumulation of proteins. Unlike other mutants affecting the vacuole, pat2 is specifically defective in the biogenesis, identity, and function of lytic vacuoles but shows normal sorting of proteins to storage vacuoles. PAT2 encodes a putative β-subunit of adaptor protein complex 3 (AP-3) that can partially complement the corresponding yeast mutant. Manipulations of the putative AP-3 β adaptin functions suggest a plant-specific role for the evolutionarily conserved AP-3 β in mediating lytic vacuole performance and transition of storage into the lytic vacuoles independently of the main prevacuolar compartment-based trafficking route.
Publishing Year
Date Published
2010-08-01
Journal Title
Plant Cell
Publisher
American Society of Plant Biologists
Volume
22
Issue
8
Page
2812 - 2824
IST-REx-ID

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Feraru E, Paciorek T, Feraru M, et al. The AP 3 β adaptin mediates the biogenesis and function of lytic vacuoles in Arabidopsis. Plant Cell. 2010;22(8):2812-2824. doi:10.1105/tpc.110.075424
Feraru, E., Paciorek, T., Feraru, M., Zwiewka, M., De Groodt, R., De Rycke, R., … Friml, J. (2010). The AP 3 β adaptin mediates the biogenesis and function of lytic vacuoles in Arabidopsis. Plant Cell. American Society of Plant Biologists. https://doi.org/10.1105/tpc.110.075424
Feraru, Elena, Tomasz Paciorek, Mugurel Feraru, Marta Zwiewka, Ruth De Groodt, Riet De Rycke, Jürgen Kleine Vehn, and Jiří Friml. “The AP 3 β Adaptin Mediates the Biogenesis and Function of Lytic Vacuoles in Arabidopsis.” Plant Cell. American Society of Plant Biologists, 2010. https://doi.org/10.1105/tpc.110.075424.
E. Feraru et al., “The AP 3 β adaptin mediates the biogenesis and function of lytic vacuoles in Arabidopsis,” Plant Cell, vol. 22, no. 8. American Society of Plant Biologists, pp. 2812–2824, 2010.
Feraru E, Paciorek T, Feraru M, Zwiewka M, De Groodt R, De Rycke R, Kleine Vehn J, Friml J. 2010. The AP 3 β adaptin mediates the biogenesis and function of lytic vacuoles in Arabidopsis. Plant Cell. 22(8), 2812–2824.
Feraru, Elena, et al. “The AP 3 β Adaptin Mediates the Biogenesis and Function of Lytic Vacuoles in Arabidopsis.” Plant Cell, vol. 22, no. 8, American Society of Plant Biologists, 2010, pp. 2812–24, doi:10.1105/tpc.110.075424.

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