Sanjabi Shomyseh, Williams Kevin J, Saccani Simona, Zhou Liang, Hoffmann Alexander, Ghosh Gourisankar, Gerondakis Steve, Natoli Gioacchino, Smale Stephen T
Howard Hughes Medical Institute, Department of Microbiology, Immunology, and Molecular Genetics, University of California, Los Angeles, CA 90095-1662, USA.
Genes Dev. 2005 Sep 15;19(18):2138-51. doi: 10.1101/gad.1329805.
The NF-kappaB family members p65 (RelA) and c-Rel recognize similar DNA sequences, yet the phenotypes of mutant mice suggest that these proteins regulate distinct sets of genes. Here we demonstrate that 46 unique residues within an 86-residue segment of the Rel homology region (RHR) of c-Rel are responsible for the c-Rel requirement for Il12b gene induction by lipopolysaccharide in bone marrow-derived macrophages. These same residues were responsible for the c-Rel requirement for Il12a induction in dendritic cells, and in both instances, no evidence of c-Rel-specific coactivator interactions was found. Although the residues of c-Rel and p65 that contact specific bases and the DNA backbone within nuclear factor-kappaB (NF-kappaB) recognition sequences are identical, homodimers of c-Rel and of a chimeric p65 protein containing the critical c-Rel residues bound with high affinity to a broader range of NF-kappaB recognition sequences than did wild-type p65 homodimers. These results demonstrate that the unique functions of closely related transcription factor family members can be dictated by differences in the range of DNA sequences recognized at high affinity, despite having similar binding site consensus sequences and DNA contact residues.
核因子-κB家族成员p65(RelA)和c-Rel识别相似的DNA序列,但突变小鼠的表型表明这些蛋白质调控不同的基因集。在此,我们证明c-Rel的Rel同源区域(RHR)的86个氨基酸片段中的46个独特氨基酸残基,是骨髓来源的巨噬细胞中脂多糖诱导Il12b基因所需的c-Rel所必需的。同样这些氨基酸残基也是树突状细胞中诱导Il12a所需的c-Rel所必需的,并且在这两种情况下,均未发现c-Rel特异性共激活因子相互作用的证据。尽管c-Rel和p65中与核因子-κB(NF-κB)识别序列内特定碱基和DNA主链接触的氨基酸残基相同,但与野生型p65同源二聚体相比,c-Rel同源二聚体以及含有关键c-Rel氨基酸残基的嵌合p65蛋白同源二聚体与更广泛的NF-κB识别序列高亲和力结合。这些结果表明,尽管密切相关的转录因子家族成员具有相似的结合位点共有序列和DNA接触残基,但它们的独特功能可能由高亲和力识别的DNA序列范围差异所决定。