衣壳
黄病毒
对称(几何)
壳体(结构)
化学
化学物理
蛋白质结构
静电学
六边形晶格
生物物理学
结晶学
物理
病毒学
生物
生物化学
凝聚态物理
几何学
病毒
材料科学
数学
复合材料
物理化学
反铁磁性
作者
Olga V. Konevtsova,Ivan Golushko,Rudolf Podgornik,S. B. Rochal
摘要
Using recent Zika virus structural data we reveal a hidden symmetry of protein order in immature and mature flavivirus shells, violating the Caspar-Klug paradigmatic model of capsid structures. We show that proteins of the outer immature shell layer exhibit trihexagonal tiling, while proteins from inner and outer layers conjointly form a double-shelled close-packed structure, based on a common triangular spherical lattice. Within the proposed structural model, we furthermore rationalize the structural organization of misassembled non-infectious subviral particles that have no inner capsid. We consider a pH-controlled structural reconstruction of the outer shell from the trimeric to the dimeric state, and demonstrate that this transition, occurring during the virus maturation, can be induced by changes in protein charges at lower pH, leading to a decrease in the electrostatic interaction free energy. This transition could also be assisted by electrostatic attraction of shell proteins to the interposed lipid membrane substrate separating the shells.
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