Saban Susan D, Nepomuceno Ronald R, Gritton Lance D, Nemerow Glen R, Stewart Phoebe L
Department of Molecular Physiology and Biophysics, Center for Structural Biology, Vanderbilt University Medical Center, Nashville, TN 37232, USA.
J Mol Biol. 2005 Jun 10;349(3):526-37. doi: 10.1016/j.jmb.2005.04.034.
We report a sub-nanometer resolution cryo-electron microscopy (cryoEM) structural analysis of an adenoviral vector, Ad35F, comprised of an adenovirus type 5 (Ad5) capsid pseudo-typed with an Ad35 fiber. This vector transduces human hematopoietic cells via association of its fiber protein with CD46, a member of the complement regulatory protein family. Major advances in data acquisition and image processing allowed a significant improvement in resolution compared to earlier structures. Analysis of the cryoEM density was enhanced by docking the crystal structures of both the hexon and penton base capsid proteins. CryoEM density was observed for hexon residues missing from the crystal structure that include hypervariable regions and the epitope of a neutralizing monoclonal antibody. Within the penton base, density was observed for the integrin-binding RGD loop missing from the crystal structure and for the flexible beta ribbon of the variable loop on the side of the penton base. The Ad35 fiber is flexible, consistent with the sequence insert in the third beta-spiral repeat. On the inner capsid surface density is revealed at the base of the hexons and below the penton base. A revised model is presented for protein IX within the virion. Well-defined density was assigned to a conserved domain in the N terminus of protein IX required for incorporation into the virion. For the C-terminal domain of protein IX two alternate conformations are proposed, either binding on the capsid surface or extending away from the capsid. This model is consistent with the tolerance of the C terminus for inserted ligands and its potential use in vector retargeting. This structural study increases our knowledge of Ad capsid assembly, antibody neutralization mechanisms, and may aid further improvements in gene delivery to important human cell types.
我们报告了一种腺病毒载体Ad35F的亚纳米分辨率冷冻电子显微镜(cryoEM)结构分析,该载体由用Ad35纤维假型化的5型腺病毒(Ad5)衣壳组成。该载体通过其纤维蛋白与补体调节蛋白家族成员CD46的结合来转导人类造血细胞。与早期结构相比,数据采集和图像处理方面的重大进展使分辨率有了显著提高。通过对接六邻体和五邻体基部衣壳蛋白的晶体结构,增强了对冷冻电镜密度的分析。在六邻体晶体结构中缺失的残基(包括高变区和一种中和单克隆抗体的表位)处观察到了冷冻电镜密度。在五邻体基部内,观察到了晶体结构中缺失的整合素结合RGD环以及五邻体基部一侧可变环的柔性β带的密度。Ad35纤维是柔性的,这与第三个β螺旋重复序列中的序列插入一致。在内衣壳表面,在六邻体基部和五邻体基部下方发现了密度。提出了病毒粒子内蛋白质IX的修订模型。明确的密度被赋予了病毒粒子整合所需的蛋白质IX N端的保守结构域。对于蛋白质IX的C端结构域,提出了两种交替构象,要么结合在衣壳表面,要么从衣壳延伸出去。该模型与C端对插入配体的耐受性及其在载体重新靶向中的潜在用途一致。这项结构研究增加了我们对腺病毒衣壳组装、抗体中和机制的了解,并可能有助于进一步改进向重要人类细胞类型的基因递送。