Phosphorylation of the v-erbA protein is required for its function as an oncogene.
Open Access
- 1 October 1990
- journal article
- research article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 4 (10) , 1663-1676
- https://doi.org/10.1101/gad.4.10.1663
Abstract
The v-erbA oncogene of avian erythroblastosis virus (AEV) encodes a ligand-independent mutated version of the chicken c-erbA alpha-encoded thyroid hormone receptor. The v-erbA gene product, a 75-kD gag/v-erbA fusion protein, is phosphorylated on Ser-16/17 of its v-erbA-encoded domain, and phosphorylation at this site is increased in vivo after activation of either the PKA or PKC signal transduction pathways. To test the hypothesis that phosphorylation of Ser-16/17 regulates gag/v-erbA protein function, mutant proteins in which Ser-16/17 had been changed to alanine or threonine residues were analyzed for their ability to inhibit erythroid differentiation of ts v-erbB or ts v-sea-transformed erythroblasts at nonpermissive temperature. Conversion of Ser-16/17 into alanine, although not affecting nuclear localization or DNA binding of the gag/erbA protein, prevented phosphorylation of the v-erbA-encoded domain of the protein both in unstimulated cells or after stimulation by PKA and PKC activators. The nonphosphorylatable AA-gag/v-erbA protein proved unable to inhibit temperature-induced differentiation of ts v-erbB and ts v-sea-transformed erythroblasts and to block expression of the erythrocyte-specific genes band 3 and carbonic anhydrase II. Back mutation of these alanine residues to serine resulted in the recovery of both normal phosphorylation levels and wild-type biological activity. In contrast, substitution of Ser-16/17 for threonine, which preserved phosphorylation in unstimulated cells but not PKA- and PKC-enhanced phosphorylation, resulted in a partially active gag/v-erbA protein. These results, together with the fact that the protein kinase inhibitor H7 resulted in both a dose-dependent inhibition of gag/v-erbA protein phosphorylation and the induction of terminal differentiation of AEV-transformed erythroblasts show that phosphorylation of gag/v-erbA protein is required for full biological activity. These results support the hypothesis that phosphorylation of the gag/v-erbA protein is important for transcriptional repression of at least some of its target genes in erythroid cells.This publication has 64 references indexed in Scilit:
- Repression of transcription mediated at a thyroid hormone response element by the v-erb-A oncogene productNature, 1989
- Alternative splicing generates messages encoding rat c-erbA proteins that do not bind thyroid hormone.Proceedings of the National Academy of Sciences, 1988
- Thyroid hormone receptor α isoforms generated by alternative splicing differentially activate myosin HC gene transcriptionNature, 1988
- A novel steroid thyroid hormone receptor-related gene inappropriately expressed in human hepatocellular carcinomaNature, 1987
- A human retinoic acid receptor which belongs to the family of nuclear receptorsNature, 1987
- Control of erythroid differentiation: Possible role of the transferrin cycleCell, 1986
- v-erbA cooperates with sarcoma oncogenes in leukemic cell transformationCell, 1986
- 1-(5-isoquinol inesulfonyl)-2-methylpiperazine (H-7) is a selective inhibitor of protein kinase c in rabbit plateletsBiochemical and Biophysical Research Communications, 1984
- Stimulation of 3T3 cells induces transcription of the c-fos proto-oncogeneNature, 1984
- Transforming capacities of avian erythroblastosis virus mutants deleted in the erbA or erbB oncogenesCell, 1983