77
Views
38
CrossRef citations to date
0
Altmetric
Original Research

Temperature and cholera toxin B are factors that influence formation of membrane nanotubes in RT4 and T24 urothelial cancer cell lines

, , , &
Pages 495-509 | Published online: 14 Mar 2011

References

  • GerdesHCarvalhoRIntercellular transfer mediated by tunneling nanotubesCurr Opin Cell Biol20082047047518456488
  • GürkeSBarrosoJGerdesHThe art of cellular communication: tunneling nanotubes bridge the divideHistochem Cell Biol200812953955018386044
  • ShererNMothesWCytonemes and tunneling nanotubules in cell-cell communication and viral pathogenesisTrends Cell Biol2008941442018703335
  • LokarMPerutkováSKralj-IgličVIgličAVeraničPNanotubes in urothelial cell line T24Advances in Planar Lipid Bilayers and Liposomes 10th volAmsterdam, The NetherlandsElsevier20096594
  • HurtigJChiuDDanielTOnfeltBIntercellular nanotubes: insights from imaging studies and beyondWiley Interdiscip Rev Nanomed Nanobiotech20102260276
  • GerdesHBukoreshtlievNBarrosoJTunneling nanotubes: a new route for the exchange of components between animal cellsFEBS Lett20075812194220117433307
  • DaviesDSowinskiSMembrane nanotubes: dynamic long-distance connections between animal cellsNat Rev Mol Cell Biol2008943143618431401
  • VeraničPLokarMSchuetzGDifferent types of cell-to-cell connections mediated by nanotubular structuresBiophys J2008954416442518658210
  • Kralj-IgličVHeinrichVSvetinaSŽekšBFree energy of closed membrane with anisotropic inclusionsEur Phys J B19991058
  • IgličAHägerstrandHVeraničPPlemenitašAKralj-IgličVCurvature induced accumulation of anisotropic membrane components and raft formation in cylindrical membrane protrusionsJ Theor Biol200624036837316277995
  • IgličASlivnikTKralj-IgličVElastic properties of biological membranes influenced by attached proteinsJ Biomech2007402492250017198707
  • PerutkováSKralj-IgličVFrankMIgličAMechanical stability of membrane nanotubular protrusions influenced by attachment of flexible rod-like proteinsJ Biomech2010431612161720185134
  • Kralj-IgličVIgličAHägerstrandHPeterlinPStable tubular microexovesicles of the erythrocyte membrane induced by dimeric amphiphilesPhys Rev E20006142304234
  • HolmgrenJLonnrothISvennerholmLTissue receptor for cholera exotoxin, postulated structure from studies with GM1 ganglioside and related glycolipidsInfect Immun197382082144125267
  • MerrittESarfatySvan den AkkerFL’HoirCMartialJHolWCrystal structure of cholera toxin B-pentamer bound to receptor GM1 pentasaccharideProtein Sci199431661758003954
  • WernickNChinnapenDChoJLencerWCholera toxin: an intracellular journey into the cytosol by way of the endoplasmic reticulumToxins2010231032522069586
  • AlbertsAJohnsonALewisJRaffMRobertsKWlaterPMolecular Biology of the Cell5th edNew YorkGerland Science20081255
  • HägerstrandHKralj-IgličVBobrowska-HägerstrandMIgličAMembrane skeleton detachment in spherical and cylindrical microexovesiclesBull of Math Biol1999611019103017879869
  • PeiBChenJMore ordered, convex ganglioside-enriched membrane domains: The effects of GM1 on sphingomyelin bilayers containing a low level of cholesterolJ Biochem200313457558114607985
  • VekslerAGovNSPhase transitions of the coupled membrane-cytoskeleton modify cellular shapeBiophys J2007933798381017704150
  • KabasoDShlomovitzRAuthTLewVLGovNSCurling and local shape changes of red blood cell membranes driven by cytoskeletal reorganizationBiophys J20109980881620682258
  • KabasoDGongadzeEPerutkováSMechanics and electrostatics of the interactions between osteoblasts and titanium surfaceComput Methods Biomech Biomed Engin2011 In press.
  • CaiWLubenskyTCCovariant hydrodynamics of fluid membranesPhys Rev Lett1994731186118910057646
  • HelfrichWElastic properties of lipid bilayers: theory and possible experimentsZ Naturforsch C1973286937034273690
  • RomerWBerlandLChambonVShiga toxin induces tubular membrane invaginations for its uptake into cellsNature200745067067518046403
  • EwersHRömerWSmithAEGM1structure determines SV40-induced membrane invagination and infectionNat Cell Biol201012112020023649
  • SonninoSMauriLChigornoVPrinettiAGangliosides as components of lipid membrane domainsGlycobiology20061711316973732
  • HägerstrandAMrowczynskaLSalzerUCurvature dependent lateral distribution of raft markers in the human erythrocyte membraneMol Membr Biol20062327728816785211
  • MillardTBompardGHeungMStructural basis of Filopodia formation induced by the IRSp53/MIM homology domain of human IRSp53EMBO J20052424025015635447
  • MattilaPKPykalainenASaarikangasJMissing-in-metastasis and IRSp53 deform PI(4,5)P2-rich membranes by an inverse BAR domain-like mechanismJ Cell Biol200717695396417371834
  • ScitaGConfalonieriSLappalainenPSuetsuguSIRSp53: crossing the road of membrane and actin dynamics in the formation of membrane protrusionsTrends Cell Biol200818526018215522
  • ZhaoHPykäläinenALappalainenPI-BAR domain proteins: linking actin and plasma membrane dynamicsCurr Opin Cell Biol2010231821190823
  • ScharaKJansaVŠuštarVMechanisms for the formation of membranous nanostructures in cell-to-cell communicationCell Mol Biol Lett20091463665619554268
  • LiYParkMYeSKimCKimYElevated levels of cholesterol-rich lipid rafts in cancer cells are correlated with apoptosis sensitivity induced by cholesterol-depleting agentsAm J Pathol20061681107111816565487
  • JohannesLDecaudinDProtein toxins: intracellular trafficking for targeted therapyGene Therapy2005121360136815902276
  • ZhuangLLinJLuMSolomonKFreemanMCholesterol-rich lipid rafts mediate Akt-regulated survival in prostate cancer cellsCancer Res2002622227223111956073
  • SarnataroDGrimaldiCPisantiSPlasma membrane and lysosomal localization of CB1 cannabinoid receptor are dependent on lipid rafts and regulated by anandamide in human breast cancer cellsFEBS Lett20055796343634916263116