病毒之间的沟通指导了溶解-溶解性决策
Zohar Erez1, Ida Steinberger-Levy1,2, Maya Shamir1
1Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 7610001, Israel.
Nature
|January 19, 2017
概括
菌体使用一种新信号系统协调感染周期. 这种任意系统允许菌体评估以前的感染,并决定复制或进入休眠状态.
科学领域:
- 微生物学
- 病毒学
- 分子生物学
背景情况:
- 温和病毒或菌体表现出双重感染策略:溶解周期 (复制和宿主溶解) 和溶解周期 (宿主内休眠).
- 这些周期之间的决定对菌体生存和种群动态至关重要.
研究的目的:
- 调查SPbeta组菌体协调它们的溶解-溶解决定的机制.
- 确定这种通信系统所涉及的分子组件.
主要方法:
- 在Bacillus细胞感染期间的菌体与宿主相互作用的分析.
- 参与信号传递的菌体基因和产物的识别和特征.
- 评估特定基因 (aimP, aimR, aimX) 在通信系统中的作用.
主要成果:
- SPbeta菌体利用一个小分子通信系统,称为"论"系统,以协调溶解-溶解生成决策.
- 通过感染菌体产生和释放六种氨基酸,向随后的感染发出信号.
- 当通信度高时,菌体的溶解率更高,这表明密度取决于决策.
- 不同的菌体编码不同的变体,建立菌体特定的通信代码.
- 该系统由三个基因编码:aimP (生成),aimR (受体) 和aimX (负调节器).
结论:
- 通过估计最近感染的频率,该系统允许后代菌体与前代菌体"通信".
- 这种沟通机制使得菌体能够优化其感染策略,根据环境线索在溶性复制或溶性休眠之间进行选择.
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