https://eutils.ncbi.nlm.nih.gov/entrez/eutils/efetch.fcgi?db=pubmed&id=16234326&retmode=xml&tool=Litmetric&email=readroberts32@gmail.com&api_key=61f08fa0b96a73de8c900d749fcb997acc09 162343262005121320220309
0021-9533118Pt 212005Nov01Journal of cell scienceJ Cell SciChemotaxis towards hyaluronan is dependent on CD44 expression and modulated by cell type variation in CD44-hyaluronan binding.511951285119-28The accumulation of the extracellular matrix glycosaminoglycan hyaluronan by tumours and tumour-associated stroma promotes cancer cell invasion and metastasis. Using the Dunn chamber chemotaxis assay, we demonstrate for the first time that high molecular mass hyaluronan acts as a soluble chemoattractant promoting the directional migration of MDA-MB-468 and MDA-MB-231 breast cancer cells. Moreover, chemotaxis towards hyaluronan, but not foetal bovine serum, can be abrogated following treatment of the cells with siRNA oligonucleotides to downregulate CD44 expression. These data indicate that CD44 is the principal receptor mediating this response and that CD44 expression is not a general requirement for cell migration and gradient sensing, rather it elicits a ligand-specific response. However, expression of CD44 alone is not sufficient to drive chemotaxis towards hyaluronan, as NIH-3T3 fibroblasts were unable to respond to a hyaluronan gradient even when transfected with high levels of human CD44. For NIH-3T3 cells to bind exogenous hyaluronan, it was necessary to both increase the level of receptor expression and remove a hyaluronan pericellular matrix. Together, these studies reveal a direct mechanism for promoting cell invasion into the hyaluronan-rich matrix and predict that in the complex multicellular environment in vivo, multiple mechanisms exist to regulate the ability of a cell to respond to a chemotactic hyaluronan gradient.TzircotisGeorgeGBreakthrough Breast Cancer Research Centre, Institute of Cancer Research, London SW3 6JB, UK.ThorneRick FRFIsackeClare MCMengBREAST CANCER NOW RESEARCH CENTREBCN_Breast Cancer NowUnited KingdomJournal ArticleResearch Support, Non-U.S. Gov't20051018
EnglandJ Cell Sci00524570021-95330Detergents0Hyaluronan Receptors9004-61-9Hyaluronic AcidIMAnimalsBreast NeoplasmsmetabolismpathologyCell Line, TumorChemotaxis, LeukocytephysiologyDetergentsFibroblastscytologymetabolismHumansHyaluronan ReceptorsbiosynthesisgeneticsmetabolismphysiologyHyaluronic AcidmetabolismphysiologyMembrane MicrodomainsmetabolismpathologyMiceMicroscopy, ConfocalMolecular WeightNIH 3T3 CellsProtein BindinggeneticsphysiologySolubilityTransfection
200510209020051215902005102090ppublish1623432610.1242/jcs.02629jcs.02629