Zheng Xunhai, Pedersen Lars C, Gabel Scott A, Mueller Geoffrey A, DeRose Eugene F, London Robert E
Genome Integrity and Structural Biology Laboratory, National Institute of Environmental health Sciences, NIH, Research Triangle Park, NC 27709, USA.
Genome Integrity and Structural Biology Laboratory, National Institute of Environmental health Sciences, NIH, Research Triangle Park, NC 27709, USA
Nucleic Acids Res. 2016 Feb 29;44(4):1776-88. doi: 10.1093/nar/gkv1538. Epub 2016 Jan 14.
Formation of the mature HIV-1 reverse transcriptase (RT) p66/p51 heterodimer requires subunit-specific processing of the p66/p66' homodimer precursor. Since the ribonuclease H (RH) domain contains an occult cleavage site located near its center, cleavage must occur either prior to folding or subsequent to unfolding. Recent NMR studies have identified a slow, subunit-specific RH domain unfolding process proposed to result from a residue tug-of-war between the polymerase and RH domains on the functionally inactive, p66' subunit. Here, we describe a structural comparison of the isolated RH domain with a domain swapped RH dimer that reveals several intrinsically destabilizing characteristics of the isolated domain that facilitate excursions of Tyr427 from its binding pocket and separation of helices B and D. These studies provide independent support for the subunit-selective RH domain unfolding pathway in which instability of the Tyr427 binding pocket facilitates its release followed by domain transfer, acting as a trigger for further RH domain destabilization and subsequent unfolding. As further support for this pathway, NMR studies demonstrate that addition of an RH active site-directed isoquinolone ligand retards the subunit-selective RH' domain unfolding behavior of the p66/p66' homodimer. This study demonstrates the feasibility of directly targeting RT maturation with therapeutics.
成熟的HIV-1逆转录酶(RT)p66/p51异二聚体的形成需要对p66/p66'同二聚体前体进行亚基特异性加工。由于核糖核酸酶H(RH)结构域在其中心附近含有一个隐藏的切割位点,切割必须在折叠之前或展开之后发生。最近的核磁共振研究确定了一个缓慢的、亚基特异性的RH结构域展开过程,该过程被认为是由于功能失活的p66'亚基上的聚合酶结构域和RH结构域之间的残基拔河所致。在这里,我们描述了分离的RH结构域与结构域交换的RH二聚体的结构比较,揭示了分离结构域的几个内在不稳定特征,这些特征促进了Tyr427从其结合口袋中逸出以及B螺旋和D螺旋的分离。这些研究为亚基选择性的RH结构域展开途径提供了独立的支持,其中Tyr427结合口袋的不稳定性促进了其释放,随后是结构域转移,作为进一步RH结构域不稳定和随后展开的触发因素。作为对该途径的进一步支持,核磁共振研究表明,添加RH活性位点导向的异喹诺酮配体可延缓p66/p66'同二聚体的亚基选择性RH'结构域展开行为。这项研究证明了用治疗药物直接靶向RT成熟的可行性。