Ben-nun-Shaul Orly, Bronfeld Hagit, Reshef Dan, Schueler-Furman Ora, Oppenheim Ariella
Department of Hematology, Hebrew University-Hadassah Medical School, Jerusalem, Israel.
J Mol Biol. 2009 Mar 13;386(5):1382-91. doi: 10.1016/j.jmb.2008.11.034. Epub 2008 Nov 27.
The simian virus 40 (SV40) outer shell is composed of 72 pentamers of VP1. The core of the VP1 monomer is a beta-barrel with jelly-roll topology and extending N- and C-terminal arms. A pentapeptide hinge, KNPYP, tethers the C-arm to the VP1 beta-barrel core. The five C-arms that extend from each pentamer insert into the neighbouring pentamers, tying them together through different types of interactions. In the mature virion, this element adopts either of six conformations according to their location in the capsid. We found that the hinge is conserved among 16 members of the Polyomaviridae, attesting to its importance in capsid assembly and/or structure. We have used site-directed mutagenesis to gain an understanding into the structural requirements of this element: Y299 was changed to A, F, and T, and P300 to A and G. The mutants showed reduction in viability to varying degrees. Unexpectedly, assembly was reduced only to a small extent. However, the data showed that the mutants were highly unstable. The largest effect was observed for mutations of P300, indicating a role of the proline in the virion structure. P300G was more unstable than P300A, indicating a requirement for rigidity of the pentapeptide hinge. Y299T and Y299A were more defective in viability than Y299F, highlighting the importance of an aromatic ring at this position. Structural inspection showed that this aromatic ring contacts C-arms of neighbouring pentamers. Computational modelling predicted loss of stability of the Y mutants in concordance with the experimental results. This study provides insights into the structural details of the pentapeptide hinge that are responsible for capsid stability.
猴病毒40(SV40)的外壳由72个VP1五聚体组成。VP1单体的核心是一个具有果冻卷拓扑结构的β桶,并延伸出N端和C端臂。一个五肽铰链KNPYP将C端臂连接到VP1β桶核心。从每个五聚体延伸出的五个C端臂插入相邻的五聚体中,通过不同类型的相互作用将它们连接在一起。在成熟的病毒粒子中,这个元件根据其在衣壳中的位置采用六种构象中的一种。我们发现,该铰链在多瘤病毒科的16个成员中是保守的,这证明了它在衣壳组装和/或结构中的重要性。我们使用定点诱变来了解这个元件的结构要求:将Y299分别突变为A、F和T,将P300突变为A和G。突变体的活力在不同程度上有所降低。出乎意料的是,组装仅在小程度上减少。然而,数据表明突变体非常不稳定。对P300突变的影响最大,表明脯氨酸在病毒粒子结构中的作用。P300G比P300A更不稳定,表明五肽铰链需要刚性。Y299T和Y299A在活力方面比Y299F更有缺陷,突出了该位置芳香环的重要性。结构检查表明,这个芳香环与相邻五聚体的C端臂接触。计算模型预测Y突变体的稳定性丧失与实验结果一致。这项研究提供了对负责衣壳稳定性的五肽铰链结构细节的见解。