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Negatively charged phospholipids accelerate the membrane fusion activity of the plant-specific insert domain of an aspartic protease
- Source :
- The Journal of Biological Chemistry
- Publication Year :
- 2021
- Publisher :
- American Society for Biochemistry and Molecular Biology, 2021.
-
Abstract
- Various plants use antimicrobial proteins/peptides as a means to resist phytopathogens. In the potato, Solanum tuberosum, the plant-specific insert (PSI) domain of an aspartic protease performs this role by disrupting phytopathogen plasma membranes. However, the mechanism by which PSI selects target membranes has not been elucidated. Here, we studied PSI-induced membrane fusion, focusing on the effects of lipid composition on fusion efficiency. Membrane fusion by the PSI involves an intermediate state whereby adjacent liposomes share their bilayers. We found that increasing the concentration of negatively charged phosphatidylserine (PS) phospholipids substantially accelerated PSI-mediated membrane fusion. NMR data demonstrated that PS did not affect the binding between the PSI and liposomes, but had seminal effects on the dynamics of PSI interaction with liposomes. In PS-free liposomes, the PSI underwent significant motion, which was suppressed on PS-contained liposomes. Molecular dynamics simulations showed that the PSI binds to PS-containing membranes with a dominant angle ranging from -31° to 30°, with respect to the bilayer, and is also present closer to the membrane surfaces. In contrast, PSI is mobile and exhibits multiple topological states on the surface of PS-free membranes. Taken together, our data suggested that PS lipids limit the motion of the anchored PSI, bringing it closer to the membrane surface and efficiently bridging different liposomes to accelerate fusion. As most phytopathogens have a higher content of negatively charged lipids as compared to host cells, these results indicate that the PSI selectively targets negatively charged lipids, which likely represents a way of distinguishing the pathogen from the host.
- Subjects :
- plant-specific insert
Aspartic Acid Proteases
SAPLIPs, saposin-like proteins
PSI, plant-specific insert
Phosphatidylserines
PE, phosphatidylethanolamine
Biochemistry
Membrane Fusion
chemistry.chemical_compound
PC, phosphatidylcholine
NMR spectroscopy
Protein Domains
Molecular Biology
Phospholipids
AP, aspartic proteases
Solanum tuberosum
DLS, dynamic light scattering
Liposome
Fusion
molecular dynamic simulation
Bilayer
Cell Membrane
Lipid bilayer fusion
Cell Biology
Nuclear magnetic resonance spectroscopy
Phosphatidylserine
HSQC, heteronuclear single quantum coherence
PS, phosphatidylserine
Membrane
membrane fusion mechanism
chemistry
Liposomes
Biophysics
Membrane Fusion Activity
Research Article
Subjects
Details
- Language :
- English
- ISSN :
- 1083351X and 00219258
- Volume :
- 298
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- The Journal of Biological Chemistry
- Accession number :
- edsair.doi.dedup.....afdc673f2aea71c3b62d0262cd37eaef