Kol Nitzan, Gladnikoff Micha, Barlam David, Shneck Roni Z, Rein Alan, Rousso Itay
Department of Structural Biology, Weizmann Institute of Science, Rehovot, Israel.
Biophys J. 2006 Jul 15;91(2):767-74. doi: 10.1529/biophysj.105.079657. Epub 2006 Apr 21.
After budding from the host cell, retroviruses undergo a process of internal reorganization called maturation, which is prerequisite to infectivity. Viral maturation is accompanied by dramatic morphological changes, which are poorly understood in physical/mechanistic terms. Here, we study the mechanical properties of live mature and immature murine leukemia virus particles by indentation-type experiments conducted with an atomic force microscope tip. We find that both mature and immature particles have an elastic shell. Strikingly, the virus shell is twofold stiffer in the immature (0.68 N/m) than the mature (0.31 N/m) form. However, finite-element simulation shows that the average Young's modulus of the immature form is more than fourfold lower than that of the mature form. This finding suggests that per length unit, the protein-protein interactions in the mature shell are stronger than those in the immature shell. We also show that the mature virus shell is brittle, since it can be broken by application of large loading forces, by firm attachment to a substrate, or by repeated application of force. Our results are the first analysis of the mechanical properties of an animal virus, and demonstrate a linkage between virus morphology and mechanical properties.
从宿主细胞出芽后,逆转录病毒会经历一个称为成熟的内部重组过程,这是感染性的先决条件。病毒成熟伴随着显著的形态变化,从物理/机制角度对其了解甚少。在这里,我们通过用原子力显微镜尖端进行的压痕型实验研究活的成熟和未成熟小鼠白血病病毒颗粒的力学性质。我们发现成熟和未成熟颗粒都有一个弹性外壳。令人惊讶的是,未成熟病毒外壳(0.68 N/m)的硬度是成熟病毒外壳(0.31 N/m)的两倍。然而,有限元模拟表明,未成熟形式的平均杨氏模量比成熟形式低四倍多。这一发现表明,每单位长度,成熟外壳中的蛋白质-蛋白质相互作用比未成熟外壳中的更强。我们还表明,成熟病毒外壳是脆性的,因为通过施加较大的加载力、牢固附着在底物上或反复施加力都可以使其破裂。我们的结果是对动物病毒力学性质的首次分析,并证明了病毒形态与力学性质之间的联系。