Wang Hongjie, Liaw Yen-Chywan, Stone Daniel, Kalyuzhniy Oleksandr, Amiraslanov Imameddin, Tuve Sebastian, Verlinde Christophe L M J, Shayakhmetov Dmitry, Stehle Thilo, Roffler Steve, Lieber André
Division of Medical Genetics, University of Washington, Box 357720, Seattle, WA 98195, USA.
J Virol. 2007 Dec;81(23):12785-92. doi: 10.1128/JVI.01732-07. Epub 2007 Sep 26.
Species B human adenoviruses (Ads) are often associated with fatal illnesses in immunocompromised individuals. Recently, species B Ads, most of which use the ubiquitously expressed complement regulatory protein CD46 as a primary attachment receptor, have gained interest for use as gene therapy vectors. In this study, we focused on species B Ad serotype 35 (Ad35), whose trimeric fiber knob domain binds to three CD46 molecules with a KD (equilibrium dissociation constant) of 15.5 nM. To study the Ad35 knob-CD46 interaction, we generated an expression library of Ad35 knobs with random mutations and screened it for CD46 binding. We identified four critical residues (Phe242, Arg279, Ser282, and Glu302) which, when mutated, ablated Ad35 knob binding to CD46 without affecting knob trimerization. The functional importance of the identified residues was validated in surface plasmon resonance and competition binding studies. To model the Ad35 knob-CD46 interaction, we resolved the Ad35 knob structure at 2-A resolution by X-ray crystallography and overlaid it onto the existing structure for Ad11-CD46 interaction. According to our model, all identified Ad35 residues are in regions that interact with CD46, whereby one CD46 molecule binds between two knob monomers. This mode of interaction might have potential consequences for CD46 signaling and intracellular trafficking of Ad35. Our findings are also fundamental for better characterization of species B Ads and design of antiviral drugs, as well as for application of species B Ads as in vivo and in vitro gene transfer vectors.
B 种人类腺病毒(Ads)通常与免疫功能低下个体的致命疾病有关。最近,B 种 Ads 因其大多数将普遍表达的补体调节蛋白 CD46 用作主要附着受体而受到关注,有望用作基因治疗载体。在本研究中,我们聚焦于 B 种 Ad 血清型 35(Ad35),其三聚体纤维钮结构域以 15.5 nM 的 KD(平衡解离常数)与三个 CD46 分子结合。为了研究 Ad35 钮与 CD46 的相互作用,我们构建了具有随机突变的 Ad35 钮表达文库,并对其进行 CD46 结合筛选。我们鉴定出四个关键残基(苯丙氨酸 242、精氨酸 279、丝氨酸 282 和谷氨酸 302),这些残基发生突变时,会消除 Ad35 钮与 CD46 的结合,而不影响钮的三聚化。在表面等离子体共振和竞争结合研究中验证了所鉴定残基的功能重要性。为了模拟 Ad35 钮与 CD46 的相互作用,我们通过 X 射线晶体学以 2 埃分辨率解析了 Ad35 钮的结构,并将其与 Ad11 - CD46 相互作用的现有结构进行叠加。根据我们的模型,所有鉴定出的 Ad35 残基都位于与 CD46 相互作用的区域,其中一个 CD46 分子结合在两个钮单体之间。这种相互作用模式可能对 CD46 信号传导和 Ad35 的细胞内运输产生潜在影响。我们的发现对于更好地表征 B 种 Ads 和设计抗病毒药物,以及将 B 种 Ads 用作体内和体外基因转移载体也具有重要意义。