B-MYB is an ubiquitous protein required for mammalian cell growth. In this
report we show that B-MYB transactivates its own promoter through a 120 bp
segment proximal to the transcription start site. The B-MYB-responsive elem
ent does not contain myb-binding sites and gel-shift analysis shows that SP
1, but not B-MYB, protein contained in SAOS2 cell extracts binds to the 120
bp B-myb promoter fragment. B-MYB-dependent transactivation is cooperative
ly increased in the presence of SP1, but not SP3 overexpression, When the S
P1 elements of the B-myb promoter are transferred in front of a heterologou
s promoter, an increased response to B-MYB results. In contrast, c-MYB, the
prototype member of the Myb family, is not able to activate the luciferase
construct containing the SP1 elements. With the use of an SP1-GAL4 fusion
protein, we have determined that the cooperative activation occurs through
the domain A of SP1, These observations suggest that B-MYB functions as a c
oactivator of SP1, and that diverse combinations of myb and SP1 sites may d
ictate the responsiveness of myb-target genes to the various members of the
myb family.