染色质
衣壳
组蛋白
生物物理学
DNA
基因组
DNA缩合
腺病毒科
冷凝
细胞生物学
生物
化学
病毒
物理
病毒学
遗传学
基因
重组DNA
转染
热力学
作者
Álvaro Ortega-Esteban,Gabriela N. Condezo,Ana J. Pérez-Berná,Miguel Chillón,S. J. Flint,David Reguera,Carmen San Martı́n,Pedro Pablo
出处
期刊:ACS Nano
[American Chemical Society]
日期:2015-10-22
卷期号:9 (11): 10826-10833
被引量:86
标识
DOI:10.1021/acsnano.5b03417
摘要
Tight confinement of naked genomes within some viruses results in high internal pressure that facilitates their translocation into the host. Adenovirus, however, encodes histone-like proteins that associate with its genome resulting in a confined DNA–protein condensate (core). Cleavage of these proteins during maturation decreases core condensation and primes the virion for proper uncoating via unidentified mechanisms. Here we open individual, mature and immature adenovirus cages to directly probe the mechanics of their chromatin-like cores. We find that immature cores are more rigid than the mature ones, unveiling a mechanical signature of their condensation level. Conversely, intact mature particles demonstrate more rigidity than immature or empty ones. DNA-condensing polyamines revert the mechanics of mature capsid and cores to near-immature values. The combination of these experiments reveals the pressurization of adenovirus particles induced by maturation. We estimate a pressure of ∼30 atm by continuous elasticity, which is corroborated by modeling the adenovirus mini-chromosome as a confined compact polymer. We propose this pressurization as a mechanism that facilitates initiating the stepwise disassembly of the mature particle, enabling its escape from the endosome and final genome release at the nuclear pore.
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