Schultz D C, Friedman J R, Rauscher F J
The Wistar Institute, Philadelphia, Pennsylvania 19104, USA.
Genes Dev. 2001 Feb 15;15(4):428-43. doi: 10.1101/gad.869501.
Macromolecular complexes containing histone deacetylase and ATPase activities regulate chromatin dynamics and are vitally responsible for transcriptional gene silencing in eukaryotes. The mechanisms that target these assemblies to specific loci are not as well understood. We show that the corepressor KAP-1, via its PHD (plant homeodomain) and bromodomain, links the superfamily of Krüppel associated box (KRAB) zinc finger proteins (ZFP) to the NuRD complex. We demonstrate that the tandem PHD finger and bromodomain of KAP-1, an arrangement often found in cofactor proteins but functionally ill-defined, form a cooperative unit that is required for transcriptional repression. Substitution of highly related PHD fingers or bromodomains failed to restore repression activity, suggesting high specificity in their cooperative function. Moreover, single amino acid substitutions in either the bromodomain or PHD finger, including ones that mimic disease-causing mutations in the hATRX PHD finger, abolish repression. A search for effectors of this repression function yielded a novel isoform of the Mi-2alpha protein, an integral component of the NuRD complex. Endogenous KAP-1 is associated with Mi-2alpha and other components of NuRD, and KAP-1-mediated silencing requires association with NuRD and HDAC activity. These data suggest the KRAB-ZFP superfamily of repressors functions to target the histone deacetylase and chromatin remodeling activities of the NuRD complex to specific gene promoters in vivo.
含有组蛋白去乙酰化酶和ATP酶活性的大分子复合物调节染色质动力学,对真核生物中的转录基因沉默起着至关重要的作用。将这些组装体靶向特定基因座的机制尚未完全清楚。我们发现,共抑制因子KAP-1通过其植物同源结构域(PHD)和溴结构域,将Krüppel相关盒(KRAB)锌指蛋白(ZFP)超家族与NuRD复合物联系起来。我们证明,KAP-1的串联PHD指和溴结构域(这种排列在辅助因子蛋白中经常出现,但功能尚不明确)形成了一个转录抑制所需的协同单元。用高度相关的PHD指或溴结构域进行替换无法恢复抑制活性,这表明它们的协同功能具有高度特异性。此外,溴结构域或PHD指中的单个氨基酸替换,包括那些模拟hATRX PHD指中致病突变的替换,都会消除抑制作用。对这种抑制功能的效应物进行搜索,得到了一种新的Mi-2α蛋白异构体,它是NuRD复合物的一个组成部分。内源性KAP-1与Mi-2α及NuRD的其他成分相关,KAP-1介导的沉默需要与NuRD结合并具有HDAC活性。这些数据表明,KRAB-ZFP抑制因子超家族在体内发挥作用,将NuRD复合物的组蛋白去乙酰化酶和染色质重塑活性靶向特定基因启动子。