Peng Hongzhuang, Zheng Lei, Lee Wen-Hwa, Rux John J, Rauscher Frank J
The Wistar Institute, Philadelphia, Pennsylvania 19104, USA.
Cancer Res. 2002 Jul 1;62(13):3773-81.
More than 220 Kruppel-associated box-zinc finger protein (KRAB-ZFP) genes are encoded in the human genome. KRAB-ZFPs function as transcriptionalrepressors by binding DNA through their tandem zinc finger motifs.Gene silencing is mediated by the highly conserved KRAB domain, which recruits histone deacetylase complexes, histone methylases, and heterochromatin proteins. However, little is known of the biological programs regulated by KRAB-ZFPs, in large part because of the difficulty in identifying DNA-binding sites recognized by long arrays of zinc fingers. In an attempt to identify the natural target genes for a KRAB-ZFP, we chose SZF1, a hematopoietic progenitor-restricted, KRAB-ZFP that contains only four C(2)H(2) zinc finger motifs. Using recombinant SZF1 protein and a PCR-based binding site selection strategy, we identified a 15-bp consensus DNA sequence recognized by SZF1. Remarkably, this sequence is similar to the core DNA-binding site described recently for ZBRK1, a KRAB-ZFP that binds to BRCA1 and is involved in coordinating the cellular DNA damage response. The SZF1 and ZBRK1 proteins bind to both the experimentally derived SZF1 site and the canonical ZBRK1 site. The KRAB domain from SZF1 bound directly to the KAP-1 corepressor and displayed intrinsic silencing activity. Moreover, full-length SZF1 repressed a promoter containing ZBRK1 recognition sequences. Thus, SZF1 and ZBRK1 may regulate a common set of target genes in vivo.
人类基因组中编码了220多个与Kruppel相关的盒状锌指蛋白(KRAB-ZFP)基因。KRAB-ZFP通过其串联锌指基序与DNA结合,发挥转录抑制因子的作用。基因沉默由高度保守的KRAB结构域介导,该结构域募集组蛋白去乙酰化酶复合物、组蛋白甲基化酶和异染色质蛋白。然而,对于由KRAB-ZFP调控的生物学程序知之甚少,这在很大程度上是因为难以鉴定由长串锌指识别的DNA结合位点。为了鉴定一种KRAB-ZFP的天然靶基因,我们选择了SZF1,一种仅限于造血祖细胞的KRAB-ZFP,它仅包含四个C(2)H(2)锌指基序。利用重组SZF1蛋白和基于PCR的结合位点筛选策略,我们鉴定出了一个由SZF1识别的15bp共有DNA序列。值得注意的是,该序列与最近描述的ZBRK1的核心DNA结合位点相似,ZBRK1是一种与BRCA1结合并参与协调细胞DNA损伤反应的KRAB-ZFP。SZF1和ZBRK1蛋白都能与实验得到的SZF1位点和典型的ZBRK1位点结合。SZF1的KRAB结构域直接与KAP-1共抑制因子结合,并表现出内在的沉默活性。此外,全长SZF1抑制了一个包含ZBRK1识别序列的启动子。因此,SZF1和ZBRK1可能在体内调控一组共同的靶基因。