Basigin (murine EMMPRIN) stimulates matrix metalloproteinase production by fibroblasts

Analysis of basigin‐null mice has shown that basigin is involved in several important physiological processes including reproductive, immune, and neural activities (Igakura et al., 1998, Dev Biol 194:152–165). However, its molecular mechanism of action in these processes has not yet been established...

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Published inJournal of cellular physiology Vol. 186; no. 3; pp. 371 - 379
Main Authors Li, Rongsong, Huang, Lei, Guo, Huiming, Toole, Bryan P.
Format Journal Article
LanguageEnglish
Published New York John Wiley & Sons, Inc 01.03.2001
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Abstract Analysis of basigin‐null mice has shown that basigin is involved in several important physiological processes including reproductive, immune, and neural activities (Igakura et al., 1998, Dev Biol 194:152–165). However, its molecular mechanism of action in these processes has not yet been established. Our objective here is to determine whether basigin has functional properties similar to its apparent human tumor cell homolog, EMMPRIN, i.e., the ability to stimulate matrix metalloproteinase (MMP) production in fibroblasts (Guo et al. 1997, J Biol Chem 272:24–27). Mouse cells express two major forms of basigin that differ in their degree of glycosylation (molecular weights: 45 and 58 kDa) but, in similar fashion to human EMMPRIN, mouse tumor cells express higher levels of basigin than normal cells. We have used three different methods to show that basigin stimulates MMP expression in fibroblasts. First, recombinant basigin was partially purified from transfected CHO cells by affinity chromatography. This basigin preparation stimulates production of MMPs on addition to fibroblasts in culture. Second, co‐culture of basigin‐transfected CHO cells with fibroblasts gives rise to increased expression of MMPs as compared to control co‐cultures. Third, we employed a novel approach in which a recombinant basigin adenovirus was constructed and used to infect the target fibroblasts, so that mutual stimulation between neighboring fibroblasts would be expected to result. In this method also, basigin stimulates production of MMPs. Finally, we showed that addition of basigin or EMMPRIN antibody, respectively, to recombinant basigin or EMMPRIN adenovirus‐infected cells augments stimulation of MMP synthesis, implying that cross‐linking of basigin/EMMPRIN in the membrane enhances activity. We conclude that murine basigin and human EMMPRIN have similar MMP‐inducing activities and are functional homologs. © 2001 Wiley‐Liss, Inc.
AbstractList Analysis of basigin-null mice has shown that basigin is involved in several important physiological processes including reproductive, immune, and neural activities (Igakura et al., 1998, Dev Biol 194:152-165). However, its molecular mechanism of action in these processes has not yet been established. Our objective here is to determine whether basigin has functional properties similar to its apparent human tumor cell homolog, EMMPRIN, i.e., the ability to stimulate matrix metalloproteinase (MMP) production in fibroblasts (Guo et al. 1997, J Biol Chem 272:24-27). Mouse cells express two major forms of basigin that differ in their degree of glycosylation (molecular weights: 45 and 58 kDa) but, in similar fashion to human EMMPRIN, mouse tumor cells express higher levels of basigin than normal cells. We have used three different methods to show that basigin stimulates MMP expression in fibroblasts. First, recombinant basigin was partially purified from transfected CHO cells by affinity chromatography. This basigin preparation stimulates production of MMPs on addition to fibroblasts in culture. Second, co-culture of basigin-transfected CHO cells with fibroblasts gives rise to increased expression of MMPs as compared to control co-cultures. Third, we employed a novel approach in which a recombinant basigin adenovirus was constructed and used to infect the target fibroblasts, so that mutual stimulation between neighboring fibroblasts would be expected to result. In this method also, basigin stimulates production of MMPs. Finally, we showed that addition of basigin or EMMPRIN antibody, respectively, to recombinant basigin or EMMPRIN adenovirus-infected cells augments stimulation of MMP synthesis, implying that cross-linking of basigin/EMMPRIN in the membrane enhances activity. We conclude that murine basigin and human EMMPRIN have similar MMP-inducing activities and are functional homologs.
Analysis of basigin‐null mice has shown that basigin is involved in several important physiological processes including reproductive, immune, and neural activities (Igakura et al., 1998, Dev Biol 194:152–165). However, its molecular mechanism of action in these processes has not yet been established. Our objective here is to determine whether basigin has functional properties similar to its apparent human tumor cell homolog, EMMPRIN, i.e., the ability to stimulate matrix metalloproteinase (MMP) production in fibroblasts (Guo et al. 1997, J Biol Chem 272:24–27). Mouse cells express two major forms of basigin that differ in their degree of glycosylation (molecular weights: 45 and 58 kDa) but, in similar fashion to human EMMPRIN, mouse tumor cells express higher levels of basigin than normal cells. We have used three different methods to show that basigin stimulates MMP expression in fibroblasts. First, recombinant basigin was partially purified from transfected CHO cells by affinity chromatography. This basigin preparation stimulates production of MMPs on addition to fibroblasts in culture. Second, co‐culture of basigin‐transfected CHO cells with fibroblasts gives rise to increased expression of MMPs as compared to control co‐cultures. Third, we employed a novel approach in which a recombinant basigin adenovirus was constructed and used to infect the target fibroblasts, so that mutual stimulation between neighboring fibroblasts would be expected to result. In this method also, basigin stimulates production of MMPs. Finally, we showed that addition of basigin or EMMPRIN antibody, respectively, to recombinant basigin or EMMPRIN adenovirus‐infected cells augments stimulation of MMP synthesis, implying that cross‐linking of basigin/EMMPRIN in the membrane enhances activity. We conclude that murine basigin and human EMMPRIN have similar MMP‐inducing activities and are functional homologs. © 2001 Wiley‐Liss, Inc.
Author Guo, Huiming
Huang, Lei
Toole, Bryan P.
Li, Rongsong
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1991; 110
1989; 85
1990; 107
1997; 236
1991; 113
1992; 140
2000; 157
1982; 109
1993a; 196
1997; 272
1995; 55
1997; 45
1992; 149
1996; 122
2000; 2
1993b; 60
1996; 224
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1998; 194
1993; 120
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1987; 84
2000; 267
1991; 21
1993; 55
1993; 53
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Perlman (BIB24) 1998; 273
Igakura (BIB14) 1998; 194
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Biswas (BIB5) 1995; 55
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Igakura (BIB13) 1996; 224
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Miyauchi (BIB19) 1991; 110
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Snippet Analysis of basigin‐null mice has shown that basigin is involved in several important physiological processes including reproductive, immune, and neural...
Analysis of basigin-null mice has shown that basigin is involved in several important physiological processes including reproductive, immune, and neural...
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SubjectTerms 3T3 Cells
Animals
Antigens, CD
Antigens, Neoplasm
Antigens, Surface
Avian Proteins
Base Sequence
Basigin
Blood Proteins
Cell Line
CHO Cells
Coculture Techniques
Cricetinae
DNA Primers
Fibroblasts - enzymology
Fibroblasts - physiology
Glycosylation
Humans
Matrix Metalloproteinases - genetics
Matrix Metalloproteinases - metabolism
Membrane Glycoproteins - genetics
Membrane Glycoproteins - physiology
Mice
Molecular Sequence Data
Polymerase Chain Reaction
Recombinant Proteins - metabolism
Transfection
Tumor Cells, Cultured
Title Basigin (murine EMMPRIN) stimulates matrix metalloproteinase production by fibroblasts
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https://www.ncbi.nlm.nih.gov/pubmed/11169976
https://search.proquest.com/docview/70637760
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