Transcriptional repression by blimp-1 (PRDI-BF1) involves recruitment of histone deacetylase

J Yu, C Angelin-Duclos, J Greenwood… - … and cellular biology, 2000 - Am Soc Microbiol
J Yu, C Angelin-Duclos, J Greenwood, J Liao, K Calame
Molecular and cellular biology, 2000Am Soc Microbiol
B-lymphocyte-induced maturation protein (Blimp-1) is a transcriptional repressor that is
considered to be a master regulator of terminal B-cell development because it is sufficient to
trigger differentiation in the BCL 1-cell model. Transcription of the c-myc gene is repressed
by Blimp-1 during B-cell differentiation. In this study, we have explored the mechanism by
which Blimp-1 represses transcription by using Gal4-fusion protein assays and assays in
which Blimp-1 represses the natural c-mycpromoter. The results show that Blimp-1 …
Abstract
B-lymphocyte-induced maturation protein (Blimp-1) is a transcriptional repressor that is considered to be a master regulator of terminal B-cell development because it is sufficient to trigger differentiation in the BCL 1-cell model. Transcription of the c-myc gene is repressed by Blimp-1 during B-cell differentiation. In this study, we have explored the mechanism by which Blimp-1 represses transcription by using Gal4-fusion protein assays and assays in which Blimp-1 represses the natural c-mycpromoter. The results show that Blimp-1 represses the c-mycpromoter by an active mechanism that is independent of the adjacently bound activator YY1. Blimp-1 contains two regions that independently associate with histone deacetylase (HDAC) and endogenous Blimp-1 in nuclear extracts binds in vitro to the c-myc Blimp-1 site in a complex containing HDAC. The functional importance of recruiting HDAC for Blimp-1-dependent repression of c-myctranscription is supported by two experiments. First, the HDAC inhibitor tricostatin A inhibits Blimp-1-dependent repression in cotransfection assays. Second, a chromatin immunoprecipitation assay shows that expression of Blimp-1 causes deacetylation of histone H3 associated with the c-myc promoter, and this deacetylation depends on the Blimp-1 binding site in the c-myc promoter.
American Society for Microbiology