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1 e transmembrane 4 superfamily (TM4SF) and an integrin (alpha3beta1).
2 enesis, indicating a protumorigenic role for integrin alpha3beta1.
3 also form normally in mice deficient in the integrin alpha3beta1.
4 ion of COX-2 by alpha3(IV)NC1 is mediated by integrin alpha3beta1.
5 , including the scavenger receptor MARCO and integrin alpha3beta1.
10 ptive neurons express fibronectin receptors, integrin alpha3beta1, alpha4beta1, and alpha5beta1, at h
11 cally associated with Kaposi's sarcoma, uses integrins (alpha3beta1, alphaVbeta3, and alphaVbeta5) an
12 surface receptors, such as heparan sulfate, integrins (alpha3beta1, alphaVbeta3, and alphaVbeta5), a
13 (HMVEC-d) cell surface heparan sulfate (HS), integrins alpha3beta1, alphaVbeta3, and alphaVbeta5, and
14 ed by persistent, disorganized expression of integrin alpha3beta1 and enhanced production of urinary-
20 igation of the laminin- and collagen-binding integrins alpha3beta1 and alpha2beta1 did not cause thes
24 Furthermore, laminin-5, a common ligand for integrins alpha3beta1 and alpha6beta4, was detected in t
26 Mutation within the synergy site decreased integrin alpha3beta1 binding 17-fold, and the four-Gly i
27 in binding domain led us to hypothesize that integrin alpha3beta1 binding may also be modulated by th
34 tion plays a previously unrecognized role in integrin alpha3beta1-dependent cell signaling required f
35 better substrate than LM-511 for stimulating integrin alpha3beta1-dependent collecting duct cell func
36 mental program; however, the LM types and LM/integrin alpha3beta1-dependent signaling pathways are po
37 llel changes in the expression of laminin 5, integrin alpha3beta1, E-cadherin, and the gap junctional
43 Our findings support a role for keratinocyte integrin alpha3beta1 in controlling the secretion of IL-
44 xplored the role of the prominent epithelial integrin alpha3beta1 in experimental fibrosis by generat
45 alpha1, alpha5, beta1,gamma1; and epithelial integrin alpha3beta1 in human diabetic retinopathy (DR)
46 ion, we were able to detect a new ligand for integrin alpha3beta1 in the epidermal BM, suggesting tha
49 ng that the main podocyte adhesion receptor, integrin alpha3beta1, interacts with the tetraspanin CD1
57 n, we next investigated the possibility that integrin alpha3beta1 is involved in mediating the prolif
58 ied onto ELV platform for tumor targeting as integrin alpha3beta1 is overexpressed on NSCLC cells.
62 nase activity, induced apoptosis by reducing integrin alpha3beta1 levels, activating anoikis, and blo
65 nd pulmonary fibrogenesis require epithelial integrin alpha3beta1-mediated cross-talk between TGFbeta
67 The results indicate that overexpression of integrin alpha3beta1 plays a central role in the promoti
68 further suggest a mechanistic model in which integrin alpha3beta1-promoted calcium influx stimulates
69 Previously, we established that keratinocyte integrin alpha3beta1 promotes wound angiogenesis through
70 oncogenic Ras mutation in the acquisition of integrin alpha3beta1-regulated phenotypes that promote S
72 ed ITGA3 and ITGB1 expression and subsequent integrin alpha3beta1 signaling, via c-Jun-N-terminal kin
74 correlated with an altered expression of the integrin alpha3beta1, suggesting that it plays an import
75 gesting that basal keratinocytes can utilize integrin alpha3beta1 to interact with an alternative lig
77 echanistically, we found that GATA3-mediated integrin alpha3beta1 upregulation on RORgammat(fm+) cILC
79 val of laminin-adherent cells by maintaining integrin alpha3beta1 via a kinase-independent mechanism.
81 Adhesion of epithelial cells to laminin via integrin alpha3beta1 was previously shown to activate at
83 major cellular receptors for laminin-332 are integrin alpha3beta1, which mediates rapid tumor cell mi
84 nese hamster ovary cells, the interaction of integrin alpha3beta1 with laminin 5 was sufficient to pr