Newman Joseph A, Cooper Christopher D O, Aitkenhead Hazel, Gileadi Opher
From the Structural Genomics Consortium, University of Oxford, Oxford OX3 7DQ, United Kingdom.
From the Structural Genomics Consortium, University of Oxford, Oxford OX3 7DQ, United Kingdom
J Biol Chem. 2015 Mar 27;290(13):8539-49. doi: 10.1074/jbc.M114.619270. Epub 2015 Feb 10.
Ets-2, like its closely related homologue Ets-1, is a member of the Ets family of DNA binding transcription factors. Both proteins are subject to multiple levels of regulation of their DNA binding and transactivation properties. One such regulatory mechanism is the presence of an autoinhibitory module, which in Ets-1 allosterically inhibits the DNA binding activity. This inhibition can be relieved by interaction with protein partners or cooperative binding to closely separated Ets binding sites in a palindromic arrangement. In this study we describe the 2.5 Å resolution crystal structure of a DNA complex of the Ets-2 Ets domain. The Ets domain crystallized with two distinct species in the asymmetric unit, which closely resemble the autoinhibited and DNA bound forms of Ets-1. This discovery prompted us to re-evaluate the current model for the autoinhibitory mechanism and the structural basis for cooperative DNA binding. In contrast to Ets-1, in which the autoinhibition is caused by a combination of allosteric and steric mechanisms, we were unable to find clear evidence for the allosteric mechanism in Ets-2. We also demonstrated two possibly distinct types of cooperative binding to substrates with Ets binding motifs separated by four and six base pairs and suggest possible molecular mechanisms for this behavior.
Ets-2与其密切相关的同源物Ets-1一样,是DNA结合转录因子Ets家族的成员。这两种蛋白质在其DNA结合和反式激活特性方面都受到多层次的调控。一种这样的调控机制是存在一个自抑制模块,在Ets-1中,该模块通过变构抑制DNA结合活性。这种抑制可以通过与蛋白质伴侣相互作用或与呈回文排列的紧密间隔的Ets结合位点协同结合来解除。在本研究中,我们描述了Ets-2 Ets结构域的DNA复合物的2.5埃分辨率晶体结构。Ets结构域在不对称单元中与两种不同的物种结晶,它们与Ets-1的自抑制形式和DNA结合形式非常相似。这一发现促使我们重新评估当前的自抑制机制模型以及协同DNA结合的结构基础。与Ets-1不同,Ets-1的自抑制是由变构和空间机制共同引起的,而我们在Ets-2中未能找到变构机制的明确证据。我们还证明了与具有由四个和六个碱基对分隔的Ets结合基序的底物的两种可能不同类型的协同结合,并提出了这种行为的可能分子机制。