Zhang Yi, Dasgupta Jhimli, Ma Runlin Z, Banks Lawrence, Thomas Miranda, Chen Xiaojiang S
Molecular and Computational Biology, University of Southern California, 1050 Childs Way, MCB201, Los Angeles, CA 90089, USA.
J Virol. 2007 Apr;81(7):3618-26. doi: 10.1128/JVI.02044-06. Epub 2007 Jan 31.
Human papillomavirus (HPV) E6 oncoprotein targets certain tumor suppressors such as MAGI-1 and SAP97/hDlg for degradation. A short peptide at the C terminus of E6 interacts specifically with the PDZ domains of these tumor suppressors, which is a property unique to high-risk HPVs that are associated with cervical cancer. The detailed recognition mechanisms between HPV E6 and PDZ proteins are unclear. To understand the specific binding of cellular PDZ substrates by HPV E6, we have solved the crystal structures of the complexes containing a peptide from HPV18 E6 bound to three PDZ domains from MAGI-1 and SAP97/Dlg. The complex crystal structures reveal novel features of PDZ peptide recognition that explain why high-risk HPV E6 can specifically target these cellular tumor suppressors for destruction. Moreover, a new peptide-binding loop on these PDZs is identified as interacting with the E6 peptide. Furthermore, we have identified an arginine residue, unique to high-risk HPV E6 but outside the canonical core PDZ recognition motif, that plays an important role in the binding of the PDZs of both MAGI-I and SAP97/Dlg, the mutation of which abolishes E6's ability to degrade the two proteins. Finally, we have identified a dimer form of MAGI-1 PDZ domain 1 in the cocrystal structure with E6 peptide, which may have functional relevance for MAGI-1 activity. In addition to its novel insights into the biochemistry of PDZ interactions, this study is important for understanding HPV-induced oncogenesis; this could provide a basis for developing antiviral and anticancer compounds.
人乳头瘤病毒(HPV)E6癌蛋白靶向某些肿瘤抑制因子,如MAGI-1和SAP97/hDlg进行降解。E6 C末端的一个短肽与这些肿瘤抑制因子的PDZ结构域特异性相互作用,这是与宫颈癌相关的高危HPV所特有的性质。HPV E6与PDZ蛋白之间的详细识别机制尚不清楚。为了了解HPV E6对细胞PDZ底物的特异性结合,我们解析了包含来自HPV18 E6的一个肽与来自MAGI-1和SAP97/Dlg的三个PDZ结构域结合的复合物的晶体结构。复合物晶体结构揭示了PDZ肽识别的新特征,解释了为什么高危HPV E6能特异性靶向这些细胞肿瘤抑制因子进行破坏。此外,在这些PDZ上鉴定出一个新的肽结合环与E6肽相互作用。此外,我们鉴定出一个精氨酸残基,它是高危HPV E6所特有的,但在典型的核心PDZ识别基序之外,在MAGI-I和SAP97/Dlg的PDZ结合中起重要作用,其突变消除了E6降解这两种蛋白的能力。最后,我们在与E6肽的共晶体结构中鉴定出MAGI-1 PDZ结构域1的二聚体形式,这可能与MAGI-1的活性具有功能相关性。除了对PDZ相互作用的生物化学有新的见解外,这项研究对于理解HPV诱导的肿瘤发生也很重要;这可为开发抗病毒和抗癌化合物提供基础。