Networked proteins redundantly interact with VAP27 and RABG3 to regulate membrane tethering at the vacuole and beyond
Kaiser, S.; Mehlhorn, D.; Ramirez Miranda, P.; Ries, F.; Sommer, F.; Schroda, M.; Schumacher, K.; Willmund, F.; Grefen, C.; Scheuring, D.
Show abstract
Biological processes in eukaryotes depend on the spatio-temporal compartmentalization of their cells. Integrity and positioning of organelles on the other hand rely on the organization of the actin cytoskeleton. Previously, it has been shown that changes of the plants largest organelle, the vacuole, depend on a functional actin organization. The connection between actin filaments and the vacuole is established by the family of Networked (NET) 4 proteins and, consequently, altering NET4 abundance impacts vacuolar morphology. However, the precise regulatory mechanism is unknown and gene deletions of NET4 did not result in a global growth phenotype. Here, we show that NET4 functions redundantly with NET3, interacting with RABG3-GTPases at the vacuole to allow for homotypic fusion or, alternatively, the generation of endoplasmic reticulum (ER) - vacuole contact sites. We found that ER-resident NET3 is able to interact with RABG3 residing at the tonoplast and that NET4 interacts with the contact site protein VAP27-1 at the ER. Generation of net3 net4 triple mutants by CRSIPR-guided mutagenesis helped us to overcome functional redundancy, resulting in impaired plant growth and development. Our results demonstrate how diversification of NET genes led to functional redundancy between different family members to create cellular plasticity of vascular plants. We hypothesize that establishment of a direct ER-vacuole connection enables direct lipid and protein transfer which is especially important in young and fast-growing cells. Availability of lipids would facilitate rapidly expanding vacuoles, which are the basis for high cell elongation rates and eventually fast plant growth.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Ectopic assembly of an auxin efflux control machinery shifts developmental trajectories 97%
- Constitutive activation of leucine-rich repeat receptor kinase signaling pathways by BAK1-interacting receptor-like kinase 3 chimera 97%
- Proteomic studies of the Arabidopsis TRAPP complexes reveal conserved organization and a novel plant-specific component with a role in plant development 97%
Similar papers in this journal
- The Arabidopsis SAC9 Enzyme is enriched in a cortical population of early endosomes and restricts PI(4,5)P2 at the Plasma Membrane 98%
- Unbiased proteomic and forward genetic screens reveal that mechanosensitive ion channel MSL10 functions at ER-plasma membrane contact sites in Arabidopsis thaliana 98%
- The Arabidopsis V-ATPase is localized to the TGN/EE via a seed plant specific motif and acts in a partially redundant manner with the tonoplast enzyme 97%
Similar papers in this journal
- Regulation of adaptive growth decisions via phosphorylation of the TRAPPII complex in Arabidopsis 97%
- Lipid anchoring and electrostatic interactions target the phospholipase NOT-LIKE-DAD to pollen endo-plasma membrane 96%
- Plant autophagosomes mature into amphisomes prior to their delivery to the central vacuole 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.