Proteomic characterization of isolated Arabidopsis clathrin-coated vesicles reveals evolutionarily conserved and plant-specific components

Author:

Dahhan Dana A1ORCID,Reynolds Gregory D1ORCID,Cárdenas Jessica J1ORCID,Eeckhout Dominique23ORCID,Johnson Alexander4ORCID,Yperman Klaas23ORCID,Kaufmann Walter A4ORCID,Vang Nou1,Yan Xu5ORCID,Hwang Inhwan6ORCID,Heese Antje7ORCID,De Jaeger Geert23ORCID,Friml Jiří4ORCID,Van Damme Daniël23ORCID,Pan Jianwei5ORCID,Bednarek Sebastian Y1ORCID

Affiliation:

1. Department of Biochemistry, University of Wisconsin-Madison , Madison, Wisconsin 53706, USA

2. Department of Plant Biotechnology and Bioinformatics, Ghent University , Ghent 9052, Belgium

3. VIB Center for Plant Systems Biology , Ghent 9052, Belgium

4. Institute of Science and Technology (IST Austria) , Klosterneuburg 3400, Austria

5. College Life Sciences, Lanzhou University , Lanzhou 730000, China

6. Department of Life Sciences, Pohang University of Science & Technology , Pohang 37673, Korea

7. Division of Biochemistry, Interdisciplinary Plant Group, University of Missouri-Columbia , Columbia, Missouri 65211, USA

Abstract

Abstract In eukaryotes, clathrin-coated vesicles (CCVs) facilitate the internalization of material from the cell surface as well as the movement of cargo in post-Golgi trafficking pathways. This diversity of functions is partially provided by multiple monomeric and multimeric clathrin adaptor complexes that provide compartment and cargo selectivity. The adaptor-protein assembly polypeptide-1 (AP-1) complex operates as part of the secretory pathway at the trans-Golgi network (TGN), while the AP-2 complex and the TPLATE complex jointly operate at the plasma membrane to execute clathrin-mediated endocytosis. Key to our further understanding of clathrin-mediated trafficking in plants will be the comprehensive identification and characterization of the network of evolutionarily conserved and plant-specific core and accessory machinery involved in the formation and targeting of CCVs. To facilitate these studies, we have analyzed the proteome of enriched TGN/early endosome-derived and endocytic CCVs isolated from dividing and expanding suspension-cultured Arabidopsis (Arabidopsis thaliana) cells. Tandem mass spectrometry analysis results were validated by differential chemical labeling experiments to identify proteins co-enriching with CCVs. Proteins enriched in CCVs included previously characterized CCV components and cargos such as the vacuolar sorting receptors in addition to conserved and plant-specific components whose function in clathrin-mediated trafficking has not been previously defined. Notably, in addition to AP-1 and AP-2, all subunits of the AP-4 complex, but not AP-3 or AP-5, were found to be in high abundance in the CCV proteome. The association of AP-4 with suspension-cultured Arabidopsis CCVs is further supported via additional biochemical data.

Funder

National Science Foundation

Vilas Associate Award (University of Wisconsin, Madison, Graduate School

National Natural Science Foundation of China

National Research Foundation of Korea

Scientific Service Units (SSU) of Institute of Science and Technology Austria through resources provided by the Electron Microscopy Facility

Austrian Science Fund

National Science Foundation (NSF IOS

European Research Council T-Rex Project

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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