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首页> 外文期刊>Immunology: An Official Journal of the British Society for Immunology >Dissecting innate immunity by germline mutagenesis.
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Dissecting innate immunity by germline mutagenesis.

机译:通过种系诱变解剖先天免疫。

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摘要

The innate arm of our immune system is the first line of defence against infections. In addition, it is believed to drive adaptive immune responses, which help fight pathogens and provide long-term memory. As such, the innate immune system is instrumental for protection against pathogens that would otherwise destroy their host. Although our understanding of the innate immune components involved in pathogen sensing and fighting is improving, it is still limited. This is particularly exemplified by increased documentation of innate immune deficiencies in humans that often result in high and recurrent susceptibility to infections or even death, without the genetic cause being evident. To provide further insight into the mechanisms by which pathogen sensing and eradication occur, several strategies can be used. The current review focuses on the forward genetic approaches that have been used to dissect innate immunity in the fruit fly and the mouse. For both animal models, forward genetics has been instrumental in the deciphering of innate immunity and has greatly improved our understanding of how we respond to invading pathogens.
机译:免疫系统的先天性是抵抗感染的第一道防线。另外,据信可以驱动适应性免疫反应,这有助于抵抗病原体并提供长期记忆。因此,先天免疫系统对于预防原本会破坏其宿主的病原体具有重要作用。尽管我们对病原体感测和战斗中涉及的先天免疫成分的理解正在改善,但仍然有限。这在增加的人类先天性免疫缺陷的文献中得到了特别的证明,这些缺陷经常导致对感染甚至死亡的高度反复感染,而遗传原因不明显。为了进一步了解病原体感测和根除的机制,可以使用几种策略。目前的审查集中在正向遗传方法已被用来解剖在果蝇和小鼠的先天免疫。对于这两种动物模型,正向遗传学都有助于先天免疫的破译,并极大地增进了我们对入侵病原体反应的理解。

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