植物和动物的细胞内先天免疫监测装置
Jonathan D G Jones1, Russell E Vance2, Jeffery L Dangl3
1Sainsbury Lab, Norwich Research Park, Colney Lane, Norwich NR4 7UH, UK. jonathan.jones@sainsbury-laboratory.ac.uk rvance@berkeley.edu dangl@email.unc.edu.
概括
植物和动物在免疫系统如何使用核酸结合域,丰富的重复蛋白 (NLR) 来检测病原体方面具有共同的原则. 这种保守的架构充当了一种多功能传感器,
科学领域:
- 免疫学
- 分子生物学
- 进化生物学
背景情况:
- 多细胞真核生物,包括植物和动物,与微生物病原体共同进化.
- 细胞内核酸结合域,富含白的重复蛋白 (NLR) 对于检测植物和动物的病原体至关重要.
- 据认为NLR域架构在植物和动物中独立演变,具有不同的检测机制.
研究的目的:
- 确定和阐述NLR依赖免疫功能的关键跨领域原则.
- 在病原体感知中提出NLRs演变和功能的统一模型.
- 探索合理设计基于NLR的新型疾病识别能力的潜力.
主要方法:
- 跨王国NLR蛋白质结构和功能的比较分析.
- 对植物和动物NLR研究的最新发现进行审查和综合.
- 作为病原体感应平台的NLR架构的理论建模.
主要成果:
- 尽管有独立的进化,但仍有保留的原则控制植物和动物中NLR介导的病原体检测.
- 该NLR架构作为一个高度灵敏,可适应的"毛发触发器"装置.
- 这种保存的架构允许集成多种微生物检测模块.
结论:
- 作为病原体传感器的NLR超级家族的保存实用性强调了免疫系统的融合进化.
- 了解这些跨领域的原理有助于合理设计新的免疫受体.
- 这种方法有助于开发新策略来对抗植物和动物疾病.
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