SLDP and LIPA mediate lipid droplet-plasma membrane tethering in Arabidopsis thaliana
Krawczyk, H. E.; Sun, S.; Doner, N.; Yan, Q.; Lim, M. S. S.; Scholz, P.; Niemeyer, P. W.; Schmitt, K.; Valerius, O.; Pleskot, R.; Hillmer, S.; Braus, G.; Wiermer, M.; Mullen, R. T.; Ischebeck, T.
Show abstract
Membrane contact sites (MCS) are inter-organellar connections that allow for the direct exchange of molecules, such as lipids or Ca2+ between organelles, but can also serve to tether organelles at specific locations within cells. Here we identified and characterised three proteins that form a lipid droplet (LD)-plasma membrane (PM) tethering complex in plant cells, namely LD-localised SEED LD PROTEIN (SLDP) 1 and 2 and PM-localised LD-PLASMA MEMBRANE ADAPTOR (LIPA). Using proteomics and different protein-protein interaction assays, we show that both SLDPs associate with LIPA. Disruption of either SLDP1 and 2 expression, or that of LIPA, leads to an aberrant clustering of LDs in Arabidopsis seedlings. Ectopic co-expression of one of the SLDPs with LIPA on the other hand is sufficient to reconstitute LD-PM tethering in Nicotiana tabacum pollen tubes, a cell type characterised by dynamically moving LDs in the cytosolic streaming. Further, confocal laser scanning microscopy revealed both SLDP2.1 and LIPA to be enriched at LD-PM contact sites in seedlings. These and other results suggest that SLDP and LIPA interact to form a tethering complex that anchors a subset of LDs to the PM during post-germinative seedling growth in Arabidopsis thaliana. One-sentence summarySEED LIPID DROPLET PROTEIN1 and 2 and LIPID DROPLET PLASMA MEMBRANE ADAPTOR tether lipid droplets to the plasma membrane in seedlings of Arabidopsis thaliana.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Establishment of Proximity-dependent Biotinylation Approaches in Different Plant Model Systems 97%
- Proteomic studies of the Arabidopsis TRAPP complexes reveal conserved organization and a novel plant-specific component with a role in plant development 97%
- Interplay of EXO70 and MLO proteins modulates trichome cell wall composition and powdery mildew susceptibility 97%
Similar papers in this journal
- Arabidopsis root lipid droplets are hubs for membrane homeostasis under heat stress, and triterpenoid synthesis and storage. 97%
- A land plant specific VPS13 mediates polarized vesicle trafficking in germinating pollen 97%
- Arabidopsis PROTODERMAL FACTOR2 binds lysophosphatidylcholines and transcriptionally regulates phospholipid metabolism 96%
Similar papers in this journal
- Caleosin 1 contributes to seed lipid droplet degradation by interaction with autophagy-related protein ATG8 97%
- Phosphate starvation regulates cellulose synthesis to modify root growth 97%
- Plasma membrane and cytoplasmic compartmentalization: a dynamic structural framework required for pollen tube tip growth 97%
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.