The purpose of this study was to explore the functional role of the cy
toplasmic domain of the alpha subunit of the alpha5/beta1 integrin, a
fibronectin receptor. Mutant CHO cells that express very low levels of
endogenous hamster alpha5 subunit (CHO clone B2) were transfected wit
h an expression vector containing full-length or truncated human alpha
5 cDNAs to form chimeric human alpha5/hamster beta1 integrins. Three t
ransfectants were examined: B2a27 expresses a full-length human alpha5
subunit with 27 amino acids in the cytoplasmic domain; B2a10 expresse
s an alpha5 with a 17-amino acid cytoplasmic truncation; B2a1 expresse
s an alpha5 with a 26-amino acid truncation. Levels of alpha5/beta1 su
rface expression in B2a27 and B2a10 cells were similar to that in wild
type CHO cells. The expression of alpha5/beta1 in B2a1 cells was less
, amounting to 15-20% of WT levels, despite message levels that were t
hree to five times greater than those of B2a27. The transfectants were
used to examine the role of the alpha5 cytoplasmic domain in cell adh
esion, cell motility, cytoskeletal organization, and integrin-mediated
tyrosine phosphorylation. The adhesion characteristics of B2a27 and B
2a10 cells on fibronectin substrata were similar to each other and to
wild type CHO cells. B2a1 cells displayed slight reductions in the str
ength and rate of adhesion to fibronectin. Cell motility in the presen
ce of fibronectin was similar for B2a27, B2a10, and wild type CHO cell
s, while the B2a1 cells were substantially less motile. Comparable deg
rees of cell spreading and extensive organization of actin filaments w
ere observed for B2a27, B2a10, and wild type CHO cells on fibronectin
substrata. The B2a1 cells spread to a lesser degree, and some organiza
tion of actin was observed; the untransfected B2 cells remained round
on fibronectin substrata and showed no actin reorganization. Since the
reduced motility and cell spreading observed in the B2a1 cells might
be due either to reduced surface expression of alpha5/beta1 or to the
truncation in the alpha5 cytoplasmic domain, we used flow cytometric c
ell sorting to select populations of B2a1 and B2a27 cells expressing s
imilar levels of cell surface alpha5. The deficits in spreading and mo
tility were present in B2a1 cells expressing high levels of alpha5. Th
us the region of the alpha5 cytoplasmic domain adjacent to the membran
e seems to play an important role in cytoskeletal organization and cel
l motility. We also examined whether alpha subunit truncation would af
fect integrin-mediated tyrosine phosphorylation. When B2a27 cells inte
racted with fibronectin substrata, increased tyrosine phosphorylation
was observed in proteins of approximately 125 kD. A similar pattern of
phosphorylation was observed in wild type CHO, B2a10, and B2a1 cells,
but not in B2 cells. Thus, the alpha5 cytoplasmic domain does not see
m to be essential for integrin-mediated tyrosine phosphorylation of in
tracellular proteins.