Selective modulation of integrin-mediated cell migration by distinct ADAM family members

J Huang, LC Bridges, JM White - Molecular biology of the cell, 2005 - Am Soc Cell Biol
J Huang, LC Bridges, JM White
Molecular biology of the cell, 2005Am Soc Cell Biol
A disintegrin and a metalloprotease (ADAM) family members have been implicated in many
biological processes. Although it is recognized that recombinant ADAM disintegrin domains
can interact with integrins, little is known about ADAM-integrin interactions in cellular
context. Here, we tested whether ADAMs can selectively regulate integrin-mediated cell
migration. ADAMs were expressed in Chinese hamster ovary cells that express defined
integrins (α4β1, α5β1, or both), and cell migration on full-length fibronectin or on its α4β1 or …
A disintegrin and a metalloprotease (ADAM) family members have been implicated in many biological processes. Although it is recognized that recombinant ADAM disintegrin domains can interact with integrins, little is known about ADAM-integrin interactions in cellular context. Here, we tested whether ADAMs can selectively regulate integrin-mediated cell migration. ADAMs were expressed in Chinese hamster ovary cells that express defined integrins (α4β1, α5β1, or both), and cell migration on full-length fibronectin or on its α4β1 or α5β1 binding fragments was studied. We found that ADAMs inhibit integrin-mediated cell migration in patterns dictated by the integrin binding profiles of their isolated disintegrin domains. ADAM12 inhibited cell migration mediated by the α4β1 but not the α5β1 integrin. ADAM17 had the reciprocal effect; it inhibited α5β1- but not α4β1-mediated cell migration. ADAM19 and ADAM33 inhibited migration mediated by both α4β1 and α5β1 integrins. A point mutation in the ADAM12 disintegrin loop partially reduced the inhibitory effect of ADAM12 on cell migration on the α4β1 binding fragment of fibronectin, whereas mutations that block metalloprotease activity had no effect. Our results indicate that distinct ADAMs can modulate cell migration mediated by specific integrins in a pattern dictated, at least in part, by their disintegrin domains.
Am Soc Cell Biol