Baker Keith D, Beckstead Robert B, Mangelsdorf David J, Thummel Carl S
Department of Human Genetics, University of Utah School of Medicine, Salt Lake City, Utah 84112, USA.
Genes Dev. 2007 Feb 15;21(4):450-64. doi: 10.1101/gad.1519007.
Expression of the Drosophila orphan nuclear receptor DHR78 is regulated by the steroid hormone ecdysone and is required for growth and viability during larval stages. In contrast to our understanding of its biological functions, however, relatively little is known about how DHR78 acts as a transcription factor. Here we show that DHR78 is an obligate partner for Moses (Middleman of seventy-eight signaling), a SAM (sterile alpha motif) domain-containing cofactor that requires DHR78 for its stability. Unlike other nuclear receptor cofactors, Moses has no obvious interaction domains and displays a unique binding specificity for DHR78. Moses acts as a corepressor, inhibiting DHR78 transcriptional activity independently of histone deacetylation. Consistent with their close association, DHR78 and Moses proteins are coexpressed during development and colocalize to specific genomic targets in chromatin. Moses mutants progress normally through early larval stages, like DHR78 mutants, but display an opposite overgrowth phenotype, with hypertrophy of adult tissues. Genetic interactions between DHR78 and moses result in a similar phenotype, suggesting that the relative dose of Moses and DHR78 regulates growth and prevents cancer. The tight functional association between DHR78 and Moses provides a new paradigm for understanding the molecular mechanisms by which cofactors modulate nuclear receptor signaling pathways.
果蝇孤儿核受体DHR78的表达受类固醇激素蜕皮激素调控,且在幼虫阶段的生长和存活过程中是必需的。然而,与我们对其生物学功能的了解不同,对于DHR78如何作为转录因子发挥作用,我们所知相对较少。在此我们表明,DHR78是Moses(78信号通路的中间人)的一个必需伴侣,Moses是一个含SAM(无活性α基序)结构域的辅因子,其稳定性需要DHR78。与其他核受体辅因子不同,Moses没有明显的相互作用结构域,并且对DHR78表现出独特的结合特异性。Moses作为一个共抑制因子,独立于组蛋白去乙酰化作用抑制DHR78的转录活性。与其紧密关联一致,DHR78和Moses蛋白在发育过程中共同表达,并在染色质中共定位于特定的基因组靶点。Moses突变体像DHR78突变体一样在幼虫早期阶段正常发育,但表现出相反的过度生长表型,即成年组织肥大。DHR78和moses之间的遗传相互作用导致类似的表型,这表明Moses和DHR78的相对剂量调节生长并预防癌症。DHR78和Moses之间紧密的功能关联为理解辅因子调节核受体信号通路的分子机制提供了一个新的范例。