Petosa Carlo, Morand Patrice, Baudin Florence, Moulin Martine, Artero Jean-Baptiste, Müller Christoph W
European Molecular Biology Laboratory, Grenoble Outstation, B.P. 181, 38042 Grenoble Cedex 9, France.
Mol Cell. 2006 Feb 17;21(4):565-72. doi: 10.1016/j.molcel.2006.01.006.
Epstein-Barr virus (EBV) causes infectious mononucleosis and is linked to several human malignancies. EBV has a biphasic infection cycle consisting of a latent and a lytic, replicative phase. The switch from latent to lytic infection is triggered by the EBV immediate-early transcription factor ZEBRA (BZLF1, Zta, Z, EB1). We present the crystal structure of ZEBRA's DNA binding domain bound to an EBV lytic gene promoter element. ZEBRA exhibits a variant of the basic-region leucine zipper (bZIP) fold in which a C-terminal moiety stabilizes the coiled coil involved in dimer formation. The structure provides insights into ZEBRA's broad target site specificity, preferential activation of specific EBV promoters in their methylated state, ability to dimerize despite lacking a leucine zipper motif, and failure to heterodimerize with cellular bZIP proteins. The structure will allow for the design of new therapeutic agents that block activation of the EBV lytic cycle.
爱泼斯坦-巴尔病毒(EBV)可引发传染性单核细胞增多症,并与多种人类恶性肿瘤相关。EBV具有双相感染周期,包括潜伏阶段和裂解复制阶段。从潜伏感染到裂解感染的转变由EBV即刻早期转录因子ZEBRA(BZLF1、Zta、Z、EB1)触发。我们展示了与EBV裂解基因启动子元件结合的ZEBRA的DNA结合结构域的晶体结构。ZEBRA呈现出碱性区域亮氨酸拉链(bZIP)折叠的变体,其中C末端部分稳定了参与二聚体形成的卷曲螺旋。该结构为深入了解ZEBRA广泛的靶位点特异性、在甲基化状态下对特定EBV启动子的优先激活、尽管缺乏亮氨酸拉链基序却能形成二聚体的能力以及无法与细胞bZIP蛋白形成异源二聚体提供了线索。该结构将有助于设计新的治疗药物,以阻断EBV裂解周期的激活。