2023
TLN1 contains a cancer-associated cassette exon that alters talin-1 mechanosensitivity
Gallego-Paez L, Edwards W, Chanduri M, Guo Y, Koorman T, Lee C, Grexa N, Derksen P, Yan J, Schwartz M, Mauer J, Goult B. TLN1 contains a cancer-associated cassette exon that alters talin-1 mechanosensitivity. Journal Of Cell Biology 2023, 222: e202209010. PMID: 36880935, PMCID: PMC9997659, DOI: 10.1083/jcb.202209010.Peer-Reviewed Original ResearchConceptsExon 17bTerminal FERM domainVinculin bindingFERM domainSwitch domainAdhesion dynamicsCassette exonsSplicing analysisAdapter proteinTLN1Single isoformIsoform switchTalin-1Amino acidsFrame insertionExonsBiochemical analysisIsoformsProteinExon 17CytoskeletonGenesMechanotransductionDomainIntegrins
2022
Fibroblasts secrete fibronectin under lamellipodia in a microtubule- and myosin II–dependent fashion
Huet-Calderwood C, Rivera-Molina F, Toomre D, Calderwood D. Fibroblasts secrete fibronectin under lamellipodia in a microtubule- and myosin II–dependent fashion. Journal Of Cell Biology 2022, 222: e202204100. PMID: 36416725, PMCID: PMC9699186, DOI: 10.1083/jcb.202204100.Peer-Reviewed Original ResearchConceptsFN secretionFocal adhesion dynamicsExtracellular matrixFocal adhesion formationSites of exocytosisLive-cell microscopyIntegrin-independent mannerCytoskeletal dynamicsFocal adhesionsAdhesion dynamicsRegulatory componentsMyosin IIIntact microtubulesCell polarizationCell adhesionIntegrin receptorsFN depositionLamellipodiaMicrotubulesFibronectinAdhesion formationNew adhesion formationFibroblastsII-dependent fashionCells
2021
IL-9 Abrogates the Metastatic Potential of Breast Cancer by Controlling Extracellular Matrix Remodeling and Cellular Contractility.
Das S, Surve V, Marathe S, Wad S, Karulkar A, Srinivasan S, Dwivedi A, Barthel S, Purwar R. IL-9 Abrogates the Metastatic Potential of Breast Cancer by Controlling Extracellular Matrix Remodeling and Cellular Contractility. The Journal Of Immunology 2021, 206: 2740-2752. PMID: 34021045, DOI: 10.4049/jimmunol.2000383.Peer-Reviewed Original ResearchConceptsControlling extracellular matrix remodelingExtracellular matrix remodelingCellular contractilityIncreased focal adhesion formationFocal adhesion dynamicsFocal adhesion formationCancer cellsThree-dimensional invasion assayMatrix remodelingInvolvement of IL-9Metastatic potential of breastMyosin L chainSuppression of invasionCervical cancer cellsActomyosin contractilityCancer cell metastasisMDA-MB-231IL-9Metastatic potentialAdhesion dynamicsActivity of IL-9Human breastReduced phosphorylationInvasion assayCD8<sup>+</sup> T cells
2019
The subcellular localization of type I p21-activated kinases is controlled by the disordered variable region and polybasic sequences
Sun X, Su VL, Calderwood DA. The subcellular localization of type I p21-activated kinases is controlled by the disordered variable region and polybasic sequences. Journal Of Biological Chemistry 2019, 294: 14319-14332. PMID: 31391252, PMCID: PMC6768646, DOI: 10.1074/jbc.ra119.007692.Peer-Reviewed Original ResearchConceptsCell-cell contactCell-cell junctionsPolybasic sequenceP21-activated kinaseSmall GTPases RacVariable regionsCell-cell boundariesPAK regulationDomain organizationCdc42 bindingAdhesion dynamicsCRIB domainGTPases RacSubcellular localizationTruncation mutantsKinase domainKinase effectorsCellular signalsExtensive similaritySequence regionsPAK1Cell adhesionCdc42PAKKinase
2018
Local Tension on Talin in Focal Adhesions Correlates with F-Actin Alignment at the Nanometer Scale
Kumar A, Anderson KL, Swift MF, Hanein D, Volkmann N, Schwartz MA. Local Tension on Talin in Focal Adhesions Correlates with F-Actin Alignment at the Nanometer Scale. Biophysical Journal 2018, 115: 1569-1579. PMID: 30274833, PMCID: PMC6372196, DOI: 10.1016/j.bpj.2018.08.045.Peer-Reviewed Original ResearchConceptsActin organizationLocal actin organizationTalin tension sensorFocal adhesion dynamicsLinear actin filamentsIndividual focal adhesionsCellular force transmissionF-actin alignmentFocal adhesionsAdhesion dynamicsCell centerVinculin localizationActin intensityActin filamentsF-actinAdhesion centersNormal physiologyTalinSame cellsAdhesion correlatesStable adhesionTension sensorQuantitative analysis of focal adhesion dynamics using photonic resonator outcoupler microscopy (PROM)
Zhuo Y, Choi J, Marin T, Yu H, Harley B, Cunningham B. Quantitative analysis of focal adhesion dynamics using photonic resonator outcoupler microscopy (PROM). Light: Science & Applications 2018, 7: 9. PMID: 29963322, PMCID: PMC6020849, DOI: 10.1038/s41377-018-0001-5.Peer-Reviewed Original ResearchFocal adhesion dynamicsFocal adhesion areaFocal adhesion formationPhotonic crystal biosensorCell surface contactFocal adhesionsReflection peak intensityAdhesion dynamicsRegulate adhesionCell membrane componentsCell-surface interactionsLabel-free modalityEvanescent fieldMembrane componentsLabel-free approachMigration speedPeak intensityCluster dimensionCell interactionsQuantitative imagingBasement membraneAdhesion areaEpithelial stem cellsPhotonsCells
2014
TRIM15 is a focal adhesion protein that regulates focal adhesion disassembly
Uchil PD, Pawliczek T, Reynolds TD, Ding S, Hinz A, Munro JB, Huang F, Floyd RW, Yang H, Hamilton WL, Bewersdorf J, Xiong Y, Calderwood DA, Mothes W. TRIM15 is a focal adhesion protein that regulates focal adhesion disassembly. Journal Of Cell Science 2014, 127: 3928-3942. PMID: 25015296, PMCID: PMC4163643, DOI: 10.1242/jcs.143537.Peer-Reviewed Original ResearchConceptsFocal adhesion proteinsFocal adhesionsCell migrationAdhesion proteinsMulti-adaptor proteinTripartite motif (TRIM) protein familyFocal adhesion dynamicsFocal adhesion turnoverFocal adhesion componentsCoiled-coil domainImpaired cell migrationII-independent mannerLD2 motifAdhesion turnoverActin cytoskeletonProtein familyAdhesion dynamicsCellular functionsDynamic turnoverMacromolecular complexesRegulatory componentsFocal contactsAdhesion componentsExtracellular matrixTRIM15
2012
FAK promotes recruitment of talin to nascent adhesions to control cell motility
Lawson C, Lim ST, Uryu S, Chen XL, Calderwood DA, Schlaepfer DD. FAK promotes recruitment of talin to nascent adhesions to control cell motility. Journal Of Cell Biology 2012, 196: 223-232. PMID: 22270917, PMCID: PMC3265949, DOI: 10.1083/jcb.201108078.Peer-Reviewed Original ResearchConceptsFocal adhesion kinaseNascent adhesionsCell motilityCell migrationRecruitment of talinCytoskeletal protein talinTension-independent mannerCytoskeletal-associated proteinDirect binding siteTalin associationProtein talinFAK recruitmentAdhesion dynamicsAdhesion kinaseFAK localizationTalinAdhesion sitesTalin cleavageIntegrin receptorsΒ1 integrinPoint mutationsNew adhesionsBinding sites
2011
Myosin II directly binds and inhibits Dbl family guanine nucleotide exchange factors
Lee C, Shin E, Hong J, Schwartz M, Kim E. Myosin II directly binds and inhibits Dbl family guanine nucleotide exchange factors. The FASEB Journal 2011, 25: 930.9-930.9. DOI: 10.1096/fasebj.25.1_supplement.930.9.Peer-Reviewed Original ResearchFocal complex formationDbl family guanineMyosin IIExchange factorFamily guanineATPase activityNonmuscle myosin IIComplex formationSpatiotemporal regulationGEF activityAdhesion dynamicsCdc42 GTPasesRho GTPasesCdc42 activationLamellipodial protrusionCell protrusionsActomyosin contractionGEFFunctional linkNIH3T3 fibroblastsCell migrationGTPasesCatalytic siteHomology modulesGuanine
2010
The Abl and Arg non‐receptor tyrosine kinases regulate different zones of stress fiber, focal adhesion, and contractile network localization in spreading fibroblasts
Peacock JG, Couch BA, Koleske AJ. The Abl and Arg non‐receptor tyrosine kinases regulate different zones of stress fiber, focal adhesion, and contractile network localization in spreading fibroblasts. Cytoskeleton 2010, 67: 666-675. PMID: 20737438, PMCID: PMC2955401, DOI: 10.1002/cm.20479.Peer-Reviewed Original ResearchConceptsCell peripheryPhosphorylated myosin light chainFocal adhesionsActomyosin contractilitySpatial regulationFocal adhesion dynamicsNon-receptor tyrosine kinaseAbl functionAdhesion dynamicsMutant cellsAbl familyFA formationStress fibersEdge protrusionMyosin light chainF-actinTyrosine kinaseRhoA activityInhibitory complexWT cellsArg functionAdhesive structuresCell migrationAdhesion elementsP120Cell adhesion: integrating cytoskeletal dynamics and cellular tension
Parsons JT, Horwitz AR, Schwartz MA. Cell adhesion: integrating cytoskeletal dynamics and cellular tension. Nature Reviews Molecular Cell Biology 2010, 11: 633-643. PMID: 20729930, PMCID: PMC2992881, DOI: 10.1038/nrm2957.Peer-Reviewed Original ResearchConceptsRho GTPasesGuanine nucleotide exchange factorsNucleotide exchange factorsGTPase-activating proteinsMyosin II activityActin-myosin contractionCytoskeletal dynamicsActin cytoskeletonCellular tensionExchange factorRho proteinsProtein TyrAdhesion dynamicsMorphogenetic processesCell rearAdhesion sizeCell frontIntegrin clusteringActin polymerizationRho activationMyosin IIDownstream signalingFeedback loopCell migrationComplex feedback loopsMyosin II directly binds and inhibits Dbl family guanine nucleotide exchange factors: a possible link to Rho family GTPases
Lee CS, Choi CK, Shin EY, Schwartz MA, Kim EG. Myosin II directly binds and inhibits Dbl family guanine nucleotide exchange factors: a possible link to Rho family GTPases. Journal Of Cell Biology 2010, 190: 663-674. PMID: 20713598, PMCID: PMC2928003, DOI: 10.1083/jcb.201003057.Peer-Reviewed Original ResearchMeSH KeywordsActomyosinAnimalsBinding Sitescdc42 GTP-Binding ProteinCell AdhesionCell MovementEnzyme ActivationGuanine Nucleotide Exchange FactorsHumansJurkat CellsMiceMyosin Type IINIH 3T3 CellsPlatelet-Derived Growth FactorProtein Bindingrac1 GTP-Binding ProteinRatsRecombinant Fusion Proteinsrho GTP-Binding ProteinsRho Guanine Nucleotide Exchange FactorsRNA, Small InterferingConceptsFocal complex formationDbl family guanineMyosin IIExchange factorFamily guanineATPase activityNonmuscle myosin IIComplex formationGEF activitySpatiotemporal regulationRho familyCdc42 GTPasesAdhesion dynamicsRho GTPasesCdc42 activationLamellipodial protrusionCell protrusionsActomyosin contractionGEFNIH3T3 fibroblastsFunctional linkCell migrationGTPasesCatalytic siteHomology modulesMeasuring mechanical tension across vinculin reveals regulation of focal adhesion dynamics
Grashoff C, Hoffman BD, Brenner MD, Zhou R, Parsons M, Yang MT, McLean MA, Sligar SG, Chen CS, Ha T, Schwartz MA. Measuring mechanical tension across vinculin reveals regulation of focal adhesion dynamics. Nature 2010, 466: 263-266. PMID: 20613844, PMCID: PMC2901888, DOI: 10.1038/nature09198.Peer-Reviewed Original ResearchConceptsFocal adhesionsFocal adhesion dynamicsMembrane cytoskeletal proteinsAdhesion dynamicsCell adhesion moleculeRegulatory mechanismsSpecific proteinsActin filamentsCell adhesionVinculinProteinMechanical tensionMechanical forcesRegulationPhysical forcesMolecular forcesAdhesionCellsVivoMechanotransductionPhysiologyNew biosensorFilamentsAbilityMigration
2009
Regulation of cell migration and morphogenesis by Abl-family kinases: emerging mechanisms and physiological contexts
Bradley WD, Koleske AJ. Regulation of cell migration and morphogenesis by Abl-family kinases: emerging mechanisms and physiological contexts. Journal Of Cell Science 2009, 122: 3441-3454. PMID: 19759284, PMCID: PMC2746129, DOI: 10.1242/jcs.039859.Peer-Reviewed Original ResearchConceptsAbl family kinasesNon-receptor tyrosine kinaseWAVE family proteinsCell-specific proteinsActivation of cortactinExtracellular cuesEpithelial morphogenesisAdhesion dynamicsCytoskeletal rearrangementsEssential regulatorPhysiological contextCell motilityActin polymerizationCytoskeletal changesPhysiological processesTyrosine kinaseGenetic studiesKinaseMorphogenesisCell contractilityCell migrationProteinComplex processImmune systemCytoskeleton
2007
The Abl-related Gene Tyrosine Kinase Acts through p190RhoGAP to Inhibit Actomyosin Contractility and Regulate Focal Adhesion Dynamics upon Adhesion to Fibronectin
Peacock JG, Miller AL, Bradley WD, Rodriguez OC, Webb DJ, Koleske AJ. The Abl-related Gene Tyrosine Kinase Acts through p190RhoGAP to Inhibit Actomyosin Contractility and Regulate Focal Adhesion Dynamics upon Adhesion to Fibronectin. Molecular Biology Of The Cell 2007, 18: 3860-3872. PMID: 17652459, PMCID: PMC1995720, DOI: 10.1091/mbc.e07-01-0075.Peer-Reviewed Original ResearchConceptsFocal adhesion dynamicsFocal adhesionsActomyosin contractilityAdhesion dynamicsActin-dependent protrusionsGene Tyrosine KinaseCell migrationCell body translocationAbl family kinasesWild-type cellsC-terminal halfDistinct functional domainsN-terminal halfF-actin stress fibersStress fiber formationInhibits cell migrationKinase inhibitsFamily kinasesCell peripheryStress fibersActin polymerizationFunctional domainsKinase activityTyrosine kinaseWT cells
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