Dalton S, Treisman R
Transcription Laboratory, Imperial Cancer Research Fund, London, England.
Cell. 1992 Feb 7;68(3):597-612. doi: 10.1016/0092-8674(92)90194-h.
We used a yeast genetic screen to isolate cDNAs that encode a protein, SRF accessory protein-1 (SAP-1), that is recruited to the c-fos serum response element (SRE) as part of a ternary complex that includes serum response factor (SRF). SAP-1 requires DNA-bound SRF for ternary complex formation and makes extensive DNA contacts to the 5' side of SRF, but does not bind DNA autonomously. Ternary complex formation by SAP-1 requires only the DNA-binding domain of SRF, which can be replaced by that of the related yeast protein MCM1. We isolated cDNAs encoding two forms of SAP-1 protein, SAP-1a and SAP-1b, which differ at their C termini. Both SAP-1 proteins contain three regions of striking homology with the elk-1 protein, including an N-terminal ets domain. Ternary complex formation by SAP-1 requires both the ets domain and a second conserved region 50 amino acids to its C-terminal side. SAP-1 has similar DNA binding properties to the previously characterized HeLa cell protein p62/TCF.
我们利用酵母基因筛选技术分离出了编码一种蛋白质的cDNA,该蛋白质为血清反应因子辅助蛋白-1(SAP-1),它作为包含血清反应因子(SRF)的三元复合物的一部分被招募至c-fos血清反应元件(SRE)。SAP-1形成三元复合物需要与结合在DNA上的SRF相互作用,并且与SRF的5'端有广泛的DNA接触,但它自身不能自主结合DNA。SAP-1形成三元复合物仅需要SRF的DNA结合结构域,该结构域可被相关酵母蛋白MCM1的DNA结合结构域所取代。我们分离出了编码两种形式SAP-1蛋白(SAP-1a和SAP-1b)的cDNA,它们在C末端有所不同。两种SAP-1蛋白均包含与elk-1蛋白具有显著同源性的三个区域,包括一个N末端ets结构域。SAP-1形成三元复合物既需要ets结构域,也需要其C末端一侧50个氨基酸处的第二个保守区域。SAP-1具有与先前鉴定的HeLa细胞蛋白p62/TCF相似的DNA结合特性。