Espinás M L, Jiménez-García E, Vaquero A, Canudas S, Bernués J, Azorín F
Departament de Biologia Molecular i Cel.lular, Institut de Biologia Molecular de Barcelona, Centre d'Investigació i Desenvolupament, Consejo Superior de Investigaciones Científicas, Jordi Girona Salgado 18-26, 08034 Barcelona, Spain.
J Biol Chem. 1999 Jun 4;274(23):16461-9. doi: 10.1074/jbc.274.23.16461.
The Drosophila GAGA factor self-oligomerizes both in vivo and in vitro. GAGA oligomerization depends on the presence of the N-terminal POZ domain and the formation of dimers, tetramers, and oligomers of high stoichiometry is observed in vitro. GAGA oligomers bind DNA with high affinity and specificity. As a consequence of its multimeric character, the interaction of GAGA with DNA fragments carrying several GAGA binding sites is multivalent and of higher affinity than its interaction with fragments containing single short sites. A single GAGA oligomer is capable of binding adjacent GAGA binding sites spaced by as many as 20 base pairs. GAGA oligomers are functionally active, being transcriptionally competent in vitro. GAGA-dependent transcription activation depends strongly on the number of GAGA binding sites present in the promoter. The POZ domain is not necessary for in vitro transcription but, in its absence, no synergism is observed on increasing the number of binding sites contained within the promoter. These results are discussed in view of the distribution of GAGA binding sites that, most frequently, form clusters of relatively short sites spaced by small variable distances.
果蝇GAGA因子在体内和体外均能自我寡聚化。GAGA寡聚化依赖于N端POZ结构域的存在,并且在体外观察到二聚体、四聚体以及高化学计量比的寡聚体的形成。GAGA寡聚体以高亲和力和特异性结合DNA。由于其多聚体特性,GAGA与携带多个GAGA结合位点的DNA片段的相互作用是多价的,且比其与含有单个短位点的片段的相互作用具有更高的亲和力。单个GAGA寡聚体能够结合间距多达20个碱基对的相邻GAGA结合位点。GAGA寡聚体具有功能活性,在体外具有转录活性。依赖GAGA的转录激活强烈依赖于启动子中存在的GAGA结合位点的数量。POZ结构域对于体外转录不是必需的,但是在其不存在的情况下,增加启动子内所含结合位点的数量时未观察到协同作用。鉴于GAGA结合位点的分布情况(最常见的是形成由小的可变距离隔开的相对短的位点簇),对这些结果进行了讨论。