Wong C W, Privalsky M L
Section of Microbiology, Division of Biological Sciences, University of California, Davis, California 95616, USA.
J Biol Chem. 1998 Oct 16;273(42):27695-702. doi: 10.1074/jbc.273.42.27695.
Many transcription factors function by repressing gene transcription. For a variety of these transcription factors the ability to physically recruit auxiliary proteins, denoted corepressors, is crucial for the ability to silence gene expression. We and others have previously implicated the SMRT corepressor in the actions of the PLZF transcription factor and in the function of its oncogenic derivative, PLZF-retinoic acid receptor (RARalpha), in promyelocytic leukemia. We report here that PLZF, and a structurally similar transcriptional repressor, BCL-6, can interact with a variety of corepressor proteins in addition to SMRT, including the mSin3A protein and (for PLZF) histone deacetylase-1. Unexpectedly, these additional interactions with corepressor components are nonequivalent for these otherwise similar oncoproteins, suggesting that transcriptional repression by BCL-6 and by PLZF may differ in mechanism. Furthermore, we demonstrate that the oncogenic PLZF-RARalpha chimera lacks several important corepressor interaction sites that are present in the native PLZF protein. Thus the t(11;17) translocation that creates the PLZF-RARalpha chimera generates an oncoprotein with potentially novel regulatory properties distinct from those of either parental protein. Our results demonstrate that otherwise similar transcription factors can differ notably in their interactions with the corepressor machinery.
许多转录因子通过抑制基因转录发挥作用。对于多种此类转录因子而言,物理招募辅助蛋白(即共抑制因子)的能力对于沉默基因表达的能力至关重要。我们和其他人之前已经表明,SMRT共抑制因子参与早幼粒细胞白血病中PLZF转录因子的作用及其致癌衍生物PLZF-视黄酸受体(RARα)的功能。我们在此报告,PLZF以及结构相似的转录抑制因子BCL-6,除了SMRT之外,还可以与多种共抑制因子蛋白相互作用,包括mSin3A蛋白和(对于PLZF而言)组蛋白脱乙酰基酶-1。出乎意料的是,这些与共抑制因子成分的额外相互作用对于这些在其他方面相似的癌蛋白而言并不等同,这表明BCL-6和PLZF的转录抑制机制可能不同。此外,我们证明致癌性PLZF-RARα嵌合体缺乏天然PLZF蛋白中存在的几个重要的共抑制因子相互作用位点。因此,产生PLZF-RARα嵌合体的t(11;17)易位产生了一种具有潜在新调控特性的癌蛋白,不同于任何一种亲本蛋白。我们的结果表明,在其他方面相似的转录因子在与共抑制因子机制的相互作用上可能存在显著差异。