2020
In vitro physiological membrane‐on‐a‐chip and its application in cell and neuronal biology
Heo P, Rothman J, Pincet F. In vitro physiological membrane‐on‐a‐chip and its application in cell and neuronal biology. The FASEB Journal 2020, 34: 1-1. DOI: 10.1096/fasebj.2020.34.s1.08637.Peer-Reviewed Original ResearchNeuronal biologyTail-anchored proteinsPost-translational insertionMost biological processesAreas of biologyVesicle traffickingProtein insertionER membranePhysiological lipid compositionBiological processesMolecular mechanismsBiologyLipid compositionPhysiological membranesModel membranesMembraneInvaluable insightsCellsTraffickingProteinInsertionPatch-clamp amplifierΑ-synucleinopathiesCompositionBilayers
2019
Highly Reproducible Physiological Asymmetric Membrane with Freely Diffusing Embedded Proteins in a 3D‐Printed Microfluidic Setup
Heo P, Ramakrishnan S, Coleman J, Rothman JE, Fleury J, Pincet F. Highly Reproducible Physiological Asymmetric Membrane with Freely Diffusing Embedded Proteins in a 3D‐Printed Microfluidic Setup. Small 2019, 15: e1900725. PMID: 30977975, DOI: 10.1002/smll.201900725.Peer-Reviewed Original ResearchConceptsMost biological processesLipid leafletAreas of biologyEmbedded proteinsBiological processesRelevant lipidsProteinAsymmetric bilayersPhysiological conditionsModel membranesPlanar bilayersBilayer formation processInvaluable insightsBilayersConfocal microscopeMembraneLipidsTransmembraneBiologyLeafletsMicrofluidic setupRecapitulationSNARE machinery is optimized for ultrafast fusion
Manca F, Pincet F, Truskinovsky L, Rothman JE, Foret L, Caruel M. SNARE machinery is optimized for ultrafast fusion. Proceedings Of The National Academy Of Sciences Of The United States Of America 2019, 116: 2435-2442. PMID: 30700546, PMCID: PMC6377469, DOI: 10.1073/pnas.1820394116.Peer-Reviewed Original Research
2015
Accelerating SNARE‐Mediated Membrane Fusion by DNA–Lipid Tethers
Xu W, Wang J, Rothman J, Pincet F. Accelerating SNARE‐Mediated Membrane Fusion by DNA–Lipid Tethers. Angewandte Chemie 2015, 127: 14596-14600. DOI: 10.1002/ange.201506844.Peer-Reviewed Original ResearchDNA-lipidMembrane-distal endMembrane-proximal endArtificial tetherSNARE functionCore machinerySNARE proteinsProtein functionTarget membraneMembrane fusionBiological processesNative proteinBase pairsLipid mixingMaximum fusion rateProgrammable toolsBase-pair hybridizationProteinSnareMembraneFusionMachineryTetherNucleotidesVesicles