Feng Li, PhD
Research Scientist in Cell BiologyCards
Appointments
Contact Info
About
Titles
Research Scientist in Cell Biology
Appointments
Cell Biology
Research ScientistPrimary
Other Departments & Organizations
Education & Training
- PhD
- University of California at Santa Barbara (2005)
- BS
- Peking University (1997)
Research
Overview
Synaptic vesicle fusion is an ultrafast and highly synchronized process. In the prefusion stage, vesicles are docked and primed at the presynaptic terminal, probably through some tethering factors and the initial association of the v- and t-SNAREs, and form a ready-to-release pool. Upon the entry of calcium, the SNAREs further zipper up to induce bilayer merging, and neurotransmitters are then released from the vesicles to synaptic cleft in sub-millisecond. How this fusion achieves ultrafast kinetics and synchronicity is poorly understood. It likely involves the collaborative efforts of several proteins such as Syntaxin, SNAP25, VAMP2, Synaptotagmin, Complexin, and probably Munc18, alpha-SNAP, NSF, too. To unravel the molecular basis of this process, it requires a thorough understanding of the role of each protein as well as their interplay.
ORCID
0000-0003-3533-0184
Research at a Glance
Yale Co-Authors
Publications Timeline
Frederic Pincet, PhD
Jeff Coleman, PhD
James E Rothman, PhD
Shyam Krishnakumar, PhD
Karin Reinisch, PhD
Venkat Kalyana Sundaram, PhD
Publications
2025
Direct Manipulation of Biphoton Generation From the non‐Hermitian Nature of Light‐matter Interaction
Li K, Cai Y, Yan J, Feng Z, Liu F, Zhang L, Li F, Zhang Y. Direct Manipulation of Biphoton Generation From the non‐Hermitian Nature of Light‐matter Interaction. Laser & Photonics Review 2025 DOI: 10.1002/lpor.202402149.Peer-Reviewed Original ResearchConceptsBiphoton generationNon-Hermitian characteristicsNon-Hermitian interactionNon-Hermitian natureLight-matter interactionNon-Hermitian featuresBiphoton correlationAtomic coherenceQuantum entanglementQuantum technologiesUnprecedentedly wide rangeBiphotonEntanglementTransition boundaryTransitionCoherenceUnprecedentedlyRegimeRabiesInteractionGeneration processLow‐Divergence Wave‐Chaotic Microlasers From Fiber‐Hybridized Colloidal Quantum Dots
Ren Y, Zou S, Li K, Wu Y, Ding Y, Li F, Liu S, Wang Y. Low‐Divergence Wave‐Chaotic Microlasers From Fiber‐Hybridized Colloidal Quantum Dots. Laser & Photonics Review 2025 DOI: 10.1002/lpor.202402136.Peer-Reviewed Original ResearchConceptsQD lasersColloidal quantum dotsQuantum dotsLow divergenceQD gain mediumFar-field distributionHigh Q factorCoherent emissionResonator symmetryPhotonic circuitsComprehensive numerical simulationsHybrid resonanceGain mediumFiber hybridizationLaser designSpectral tunabilityResonant modesOutgoing lightFiber platformSolution-processedQ-factorOutput angleNumerical simulationsResonanceCurved boundaries
2024
Highly Efficient and Linearly Polarized Light Emission of Micro-LED Integrated with Double-Functional Meta-Grating
Wang X, Tian Z, Pei S, Xu C, Sun Q, Zhang J, Wei J, Li F, Yun F. Highly Efficient and Linearly Polarized Light Emission of Micro-LED Integrated with Double-Functional Meta-Grating. Nano Letters 2024, 25: 236-243. PMID: 39692869, DOI: 10.1021/acs.nanolett.4c04914.Peer-Reviewed Original ResearchConceptsExtinction ratioMeta-gratingAverage polarization extinction ratioMicro-light-emitting diodesLow-cost optoelectronic devicesBlue micro-LEDPolarization extinction ratioMicro-LEDsDegree of polarizationEffects of mode selectionLinearly polarized light emissionPolarization degreeLuminous efficiencyReflector designLight-emitting diodesOptical communicationEnergy recyclingMode selectionOptoelectronic devicesHigh efficiencyQuantitative single-molecule analysis of assembly and Ca2+-dependent disassembly of synaptotagmin oligomers on lipid bilayers
Li F, Coleman J, Redondo-Morata L, Kalyana Sundaram R, Stroeva E, Rothman J, Pincet F. Quantitative single-molecule analysis of assembly and Ca2+-dependent disassembly of synaptotagmin oligomers on lipid bilayers. Communications Biology 2024, 7: 1608. PMID: 39627539, PMCID: PMC11615320, DOI: 10.1038/s42003-024-07317-9.Peer-Reviewed Original ResearchMeSH Keywords and ConceptsConceptsSyt-1Lipid bilayerRing-like oligomersCa2+-evoked releaseSynaptotagmin-1Single-molecule imaging methodsSynaptic vesiclesBiochemical evidencePhysiological requirementsOligomerizationAnalysis of assembliesBilayerOligomersCa2+LipidAssemblyCa2Classes of oligomersMutationsVesiclesDisassemblyEvoked releaseDouble-Layer Metasurface Integrated with Micro-LED for Naked-Eye 3D Display
Sun Q, Tian Z, Xu C, Yu A, Li F, Yun F. Double-Layer Metasurface Integrated with Micro-LED for Naked-Eye 3D Display. Nanomaterials 2024, 14: 1624. PMID: 39452961, PMCID: PMC11510304, DOI: 10.3390/nano14201624.Peer-Reviewed Original ResearchConceptsMicro-LED displayMicro-LEDsFinite-difference time-domain methodTime-domain methodLow crosstalkSimulation resultsNumerical simulationsDouble-layerNon-coherentDeflectionMetasurface filmsConceptual stageLuminous efficiencyIntrinsic emission propertiesEmission propertiesDeflection efficiencyMultiple deflectionsPixel densitySimulationAngleLarge-angleNaked-eye 3D displayDisplay systemViewing angleEfficiencyDual Orthogonally Polarized Lasing Assisted by Imaginary Fermi Arcs in Organic Microcavities
Long T, Ren J, Li P, Yun F, Malpuech G, Solnyshkov D, Fu H, Li F, Liao Q. Dual Orthogonally Polarized Lasing Assisted by Imaginary Fermi Arcs in Organic Microcavities. Physical Review Letters 2024, 133: 123802. PMID: 39373430, DOI: 10.1103/physrevlett.133.123802.Peer-Reviewed Original ResearchConceptsFermi arcsPhotonic spin-orbit couplingNon-Hermitian opticsSpin-orbit couplingTopological photonicsPolarization-dependent lossOrganic microcavityPolarization controlSingle crystalsOrganic microlasersMicrocavityControl of micro-Organic single crystalsSimultaneous generationCouplingEigenstatesFermiPhotonsNanolasersMicrolasersNanophotonicsOpticsPolarizationArcCrystalTailoring chaotic motion of microcavity photons in ray and wave dynamics by tuning the curvature of space
Lin W, Ding Y, Wang Y, Li P, Zhang Y, Yun F, Li F. Tailoring chaotic motion of microcavity photons in ray and wave dynamics by tuning the curvature of space. Science China Physics, Mechanics & Astronomy 2024, 67: 274214. DOI: 10.1007/s11433-024-2380-6.Peer-Reviewed Original ResearchConceptsSpace curvatureCurved spaceCurved space-timeCurvature of spaceCavity photonsMicrocavity photonsPhoton dynamicsOrbital motionRay dynamicsQuantum mechanicsSpace-timePhase diagramWave naturePeriodic orbitsChaotic trajectoriesChaotic motionChaotic modesPhotonsWave dynamicsOptical simulationFast diffusionHusimiWaveWavepacketMicrocavityMulti-Dimensional Fusion of Spectral and Polarimetric Images Followed by Pseudo-Color Algorithm Integration and Mapping in HSI Space
Guo F, Zhu J, Huang L, Li F, Zhang N, Deng J, Li H, Zhang X, Zhao Y, Jiang H, Hou X. Multi-Dimensional Fusion of Spectral and Polarimetric Images Followed by Pseudo-Color Algorithm Integration and Mapping in HSI Space. Remote Sensing 2024, 16: 1119. DOI: 10.3390/rs16071119.Peer-Reviewed Original ResearchConceptsConsistent with human visionHuman visual perceptionMulti-dimensional dataMulti-dimensional featuresSensing detectionRemote sensing detectionFused imageFusion algorithmEdge featuresHSI spaceObject detailsHuman visionObject surfaceAlgorithm integrationInformation entropyTarget recognitionAverage gradientPrincipal component analysisProcess dataAlgorithmDatasetExperimental resultsFourier transform imaging spectropolarimeterVisual displayVisual perceptionSingle-Mode Control and Individual Nanoparticle Detection in the Ultraviolet Region Based on Boron Nitride Microdisk with Whispering Gallery Mode
Li J, Li Q, Chen R, Zhang Q, Fang W, Liu K, Li F, Yun F. Single-Mode Control and Individual Nanoparticle Detection in the Ultraviolet Region Based on Boron Nitride Microdisk with Whispering Gallery Mode. Nanomaterials 2024, 14: 501. PMID: 38535649, PMCID: PMC10975174, DOI: 10.3390/nano14060501.Peer-Reviewed Original ResearchConceptsWhispering gallery modesMicrodisk cavitiesOptical microcavitiesGallery modesBoron nitrideResonant modesUltraviolet regionLight-matter interactionSingle-mode outputNonlinear opticsSingle-modeUltraviolet bandMicrodiskUltraviolet spectraSingle-mode controlMicrocavitiesPrecision sensitivityResonanceNanoparticle detectionBoronMicroresonatorsModeAbsorption propertiesTime-domain (FDTD) methodFinite-difference time-domain (FDTD) methodTunable chiral spin–spin interactions in a spin-mechanical hybrid system: application to causal-effect simulation
Li B, Li X, Zhao X, Zhang Y, Wang H, Li F. Tunable chiral spin–spin interactions in a spin-mechanical hybrid system: application to causal-effect simulation. New Journal Of Physics 2024, 26: 023029. DOI: 10.1088/1367-2630/ad24a1.Peer-Reviewed Original ResearchConceptsSpin-spin interactionsSu-Schrieffer-Heeger modelCoupled quantum systemsHybrid quantum devicesQuantum information processingSpin–spin coupling interactionsSpin-spin couplingChiral symmetrySpin qubitsQuantum systemsQuantum simulationSpin-phononQuantum devicesMechanical latticeChiral interactionsCorrelation functionManipulating voltageCoupling interactionInformation processingOn-chipQubitsHamiltonianSpinSublatticeSymmetry