Kerppola T K, Curran T
Roche Institute of Molecular Biology, Nutley, New Jersey 07110.
Mol Cell Biol. 1993 Sep;13(9):5479-89. doi: 10.1128/mcb.13.9.5479-5489.1993.
We have investigated DNA bending by bZIP family proteins that can bind to the AP-1 site. DNA bending is widespread, although not universal, among members of this family. Different bZIP protein dimers induced distinct DNA bends. The DNA bend angles ranged from virtually 0 to greater than 40 degrees as measured by phasing analysis and were oriented toward both the major and the minor grooves at the center of the AP-1 site. The DNA bends induced by the various heterodimeric complexes suggested that each component of the complex induced an independent DNA bend as previously shown for Fos and Jun. The Fos-related proteins Fra1 and Fra2 bent DNA in the same orientation as Fos but induced smaller DNA bend angles. ATF2 also bent DNA toward the minor groove in heterodimers formed with Fos, Fra2, and Jun. CREB and ATF1, which favor binding to the CRE site, did not induce significant DNA bending. Zta, which is a divergent member of the bZIP family, bent DNA toward the major groove. A variety of DNA structures can therefore be induced at the AP-1 site through combinatorial interactions between different bZIP family proteins. This diversity of DNA structures may contribute to regulatory specificity among the plethora of proteins that can bind to the AP-1 site.
我们研究了能够结合AP-1位点的bZIP家族蛋白对DNA的弯曲作用。DNA弯曲在该家族成员中普遍存在,但并非所有成员都有此作用。不同的bZIP蛋白二聚体诱导出不同的DNA弯曲。通过相位分析测量,DNA弯曲角度范围实际上从0度到大于40度,并且朝向AP-1位点中心的大沟和小沟。各种异源二聚体复合物诱导的DNA弯曲表明,复合物的每个组分都诱导出独立的DNA弯曲,正如之前对Fos和Jun所显示的那样。Fos相关蛋白Fra1和Fra2使DNA弯曲的方向与Fos相同,但诱导的DNA弯曲角度较小。在与Fos、Fra2和Jun形成的异源二聚体中,ATF2也使DNA向小沟弯曲。倾向于结合CRE位点的CREB和ATF1不会诱导明显的DNA弯曲。作为bZIP家族不同成员的Zta使DNA向大沟弯曲。因此,通过不同bZIP家族蛋白之间的组合相互作用,可以在AP-1位点诱导出多种DNA结构。这种DNA结构的多样性可能有助于众多能够结合AP-1位点的蛋白质之间的调控特异性。