Marcus G A, Silverman N, Berger S L, Horiuchi J, Guarente L
Department of Biology, MIT, Cambridge 02139.
EMBO J. 1994 Oct 17;13(20):4807-15. doi: 10.1002/j.1460-2075.1994.tb06806.x.
A selection for yeast mutants resistant to GAL4-VP16-induced toxicity previously identified two genes, ADA2 and ADA3, which may function as adaptors for some transcriptional activation domains and thereby facilitate activation. Here we identify two new genes by the same selection, one of which is identical to GCN5. We show that gcn5 mutants share properties with ada mutants, including slow growth, temperature sensitivity and reduced activation by the VP16 and GCN4 activation domains. Double mutant studies suggest that ADA2 and GCN5 function together in a complex or pathway. Moreover, we demonstrate that GCN5 binds to ADA2 both by the two-hybrid assay in vivo and by co-immunoprecipitation in vitro. This suggests that ADA2 and GCN5 are part of a heteromeric complex that mediates transcriptional activation. Finally, we demonstrate the functional importance of the bromodomain of GCN5, a sequence found in other global transcription factors such as the SWI/SNF complex and the TATA binding protein-associated factors. This domain is not required for the interaction between GCN5 and ADA2 and thus may mediate a more general activity of transcription factors.
先前对酵母中抗GAL4-VP16诱导毒性的突变体进行筛选时,鉴定出了两个基因ADA2和ADA3,它们可能作为某些转录激活结构域的衔接蛋白,从而促进转录激活。在此,我们通过相同的筛选鉴定出两个新基因,其中一个与GCN5相同。我们发现gcn5突变体与ada突变体具有共同特性,包括生长缓慢、温度敏感性以及VP16和GCN4激活结构域介导的激活作用降低。双突变体研究表明,ADA2和GCN5在一个复合物或途径中共同发挥作用。此外,我们通过体内双杂交试验和体外共免疫沉淀证明GCN5与ADA2结合。这表明ADA2和GCN5是介导转录激活的异源复合物的一部分。最后,我们证明了GCN5的溴结构域的功能重要性,该序列存在于其他全局转录因子中,如SWI/SNF复合物和TATA结合蛋白相关因子。该结构域对于GCN5和ADA2之间的相互作用不是必需的,因此可能介导转录因子更普遍的活性。