Abstract
cAMP response element-binding protein (CREB) participates in both constitutive and cAMP-induced transcription of cAMP-responsive genes. CREB-mediated constitutive transcription requires only CREB-binding sites and a minimal promoter region (containing the TATA through start sequences), indicating that CREB interacts directly with components of the general transcription machinery. In this study, a coimmunoprecipitation assay was used to test for interaction of CREB with the general transcription factors (TF) TFIIB and TFIID and the core component of TFIID, TATA-binding protein (TBP). Human TFIIB and TBP, tagged with distinct epitopes (eTFIIB and eTBP), were expressed in and purified from Escherichia coli, and holo-eTFIID, containing eTBP, was obtained from the HeLa cell line LTR alpha 3. 35S-Labeled CREB, synthesized in vitro and incubated with eTFIIB, was coimmunoprecipitated with antibody recognizing eTFIIB, indicating that CREB specifically binds to TFIIB. 35S-CREB was coimmunoprecipitated with antibody against eTBP, but only when incubated with the holo-eTFIID complex, not with eTBP alone. TFIIB interacted with TBP, but CREB was not coprecipitated with the eTBP antibody when incubated with eTBP plus TFIIB, so CREB did not form a stable ternary complex with TFIIB and TBP. Conversely, depletion of TFIIB from the holo-TFIID preparation did not diminish the level of interaction between CREB and TFIID. Thus, CREB interacts independently with TFIIB and TFIID, but not directly with TBP. A protein kinase A phosphorylation site mutant of CREB and wild-type CREB exhibited equivalent interaction with TFIIB, indicating that this phosphorylation is not required. Consistent with the role of CREB in promoting constitutive or basal transcription, the constitutive activation domain of CREB was sufficient for interaction with both TFIIB and TFIID.
Highlights
From the Department of Cellular and Molecular Physiology and the :j:Program in Cell and Molecular Biology, Pennsylvania State University College of Medicine, Hershey, Pennsylvania 17033
Human TFIIB and TATA-binding protein (TBP), tagged with distinct epitopes, were expressed in and purified from Escherichia coli, and holo-eTFIID, containing eTBP, was obtained from the HeLa cell line LTRa3. 35S-Labeled cAMP response element-binding protein (CREB), synthesized in vitro and incubated with eTFIIB, was coimmunoprecipitated with antibody recognizing eTFIIB, indicating that CREB binds to TFIIB. 35S-CREB was coimmunoprecipitated with antibody against eTBP, but only when incubated with the holo-eTFIID complex, not with eTBP alone
A protein consisting of the CREB activation domain fused to the GAL4 DNA-binding domain (CRG) can restore both constitutive and protein kinase A (PKA)-inducible transcription to a promoter containing a GAL4 site in place of the cAMP response element, and the constitutive activity of CRG is unaffected by mutation of the PKA phosphorylation site or by inhibition of PKA activity by PKI [5, 6]
Summary
Vol 270, No 29, Issue of July 21, pp. 17488-17493, 1995 Printed in U.S.A. cAMP Response Element-binding Protein (CREB) Interacts with Transcription Factors lIB and IID*. Expression of either the constitutive or PKA-inducible CREB activities required only GAL4 sites to bind CRG ligated to a minimal promoter encompassing the TATA footprint through the transcription start site of either the phosphoenolpyruvate carboxykinase or Elb gene [5]. This result indicates that CREB need not interact with other promoter-bound regulators outside of the TATA-based initiation complex. To determin e which targets or combinations of targets would interact wit h CREB in a coimmunoprecipitation assay, we used TBP and TFIIB tagged with distinct epitope s and th e eTFIID fraction from a HeLa cell lin e (LTRa 3) expressing eTBP. We show her e that CREB interact s directly with TFIIB and TFIID, but not with TBP
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