Featured Publications
Thermodynamically driven assemblies and liquid–liquid phase separations in biology
Falahati H, Haji-Akbari A. Thermodynamically driven assemblies and liquid–liquid phase separations in biology. Soft Matter 2019, 15: 1135-1154. PMID: 30672955, DOI: 10.1039/c8sm02285b.Peer-Reviewed Original ResearchConceptsPhase separationBiological self-assembly processesSelf-assembly processLiquid-liquid phase separationUnderlying physical principlesDriven AssemblyIntermolecular interactionsPhysical originBiomolecular complexesMembraneless organellesMolecular simulationsPhysicsPhysical principlesStatistical physicsSeparationThermodynamic variablesExperimental verificationAssembly processSustenance of lifeThermodynamicsBiological implicationsAssemblyComputational techniquesSubcellular structuresEnergy
2020
Optimized Vivid-derived Magnets photodimerizers for subcellular optogenetics in mammalian cells
Benedetti L, Marvin JS, Falahati H, Guillén-Samander A, Looger LL, De Camilli P. Optimized Vivid-derived Magnets photodimerizers for subcellular optogenetics in mammalian cells. ELife 2020, 9: e63230. PMID: 33174843, PMCID: PMC7735757, DOI: 10.7554/elife.63230.Peer-Reviewed Original ResearchConceptsProtein fusion partnersSmall subcellular volumesSubcellular optogeneticsOrganelle contactsHomodimerization interfaceProtein modulesMammalian cellsBiological processesPhysiological processesSubcellular organellesLow temperature preincubationSimultaneous photoactivationFusion partnerCell preincubationWhole cellsSubcellular volumesConcatemerizationSpatial controlSpatiotemporal confinementCellsNeurosporaOrganellesHeterodimersVIVIDProtein