Giri Kalyan, Maynard Ernest L
Department of Biochemistry and Molecular Biology, Uniformed Services University of the Health Sciences, Bethesda, MD 20814, USA.
Biopolymers. 2009;92(5):417-25. doi: 10.1002/bip.21209.
Virion infectivity factor (Vif) is an accessory protein encoded by HIV-1. Vif recruits a Cul5-based ubiquitin ligase that targets APOBEC3G, a host-encoded antiviral enzyme, for proteasomal degradation. The C-terminus of Vif contains a conserved His-X(5)-Cys-X(17-18)-Cys-X(3-5)-His (HCCH) motif that binds zinc and interacts with Cul5. In this study, CD spectroscopy, fluorescence spectroscopy, light scattering, and zinc binding assays were used to examine the conformational properties of HCCHp, a 42-amino acid peptide encompassing the HCCH motif. A single tryptophan residue was engineered into HCCHp to probe local structural changes induced by zinc binding. Zinc binding increased burial of the Trp residue from solvent and increased tertiary packing. The solvent 2,2,2-trifluoroethanol (TFE) induced the formation of an alpha-helical conformation of HCCHp with a midpoint of 20% (vol/vol) and inhibited zinc-induced aggregation of HCCHp. TFE titration data were sigmoidal, consistent with the cooperative nature of helix formation. Zinc binding to HCCHp in 30% TFE solutions was cooperative and weakened the TFE-induced structure. In 80% TFE solutions this cooperativity was lost, suggesting a mechanism in which monomeric and oligomeric peptide forms display different affinities for zinc. TFE weakened zinc binding to HCCHp by two orders of magnitude relative to the zinc binding affinity measured in aqueous solvent. The data suggest that HCCHp conformation and zinc binding affinity are tightly coupled. We propose that the lack of intrinsic structure in the HCCH motif may be important for Vif's function as an E3 ubiquitin ligase adaptor protein.
病毒体感染性因子(Vif)是由HIV-1编码的一种辅助蛋白。Vif招募一种基于Cul5的泛素连接酶,该酶将宿主编码的抗病毒酶载脂蛋白B mRNA编辑酶催化多肽样3G(APOBEC3G)靶向蛋白酶体降解。Vif的C末端包含一个保守的His-X(5)-Cys-X(17-18)-Cys-X(3-5)-His(HCCH)基序,该基序结合锌并与Cul5相互作用。在本研究中,利用圆二色光谱、荧光光谱、光散射和锌结合试验来检测HCCHp(一种包含HCCH基序的42个氨基酸的肽)的构象性质。在HCCHp中设计了一个单一的色氨酸残基,以探测锌结合诱导的局部结构变化。锌结合增加了色氨酸残基从溶剂中的埋藏,并增加了三级结构的堆积。溶剂2,2,2-三氟乙醇(TFE)诱导HCCHp形成α-螺旋构象,中点为20%(体积/体积),并抑制锌诱导的HCCHp聚集。TFE滴定数据呈S形,与螺旋形成的协同性质一致。在30% TFE溶液中,锌与HCCHp的结合是协同的,并削弱了TFE诱导的结构。在80% TFE溶液中,这种协同性丧失,表明一种机制,即单体和寡聚肽形式对锌表现出不同的亲和力。相对于在水性溶剂中测得的锌结合亲和力,TFE使锌与HCCHp的结合减弱了两个数量级。数据表明,HCCHp构象和锌结合亲和力紧密相关。我们提出,HCCH基序中缺乏内在结构可能对Vif作为E3泛素连接酶衔接蛋白的功能很重要。