Zoological Institute, Christian-Albrechts-University Kiel, Kiel, Germany.
Mol Biol Evol. 2011 May;28(5):1687-702. doi: 10.1093/molbev/msq349. Epub 2010 Dec 23.
Distinguishing self from nonself and the onset of defense effector mechanisms upon recognition of pathogens are essential for the survival of all life forms in the animal kingdom. The family of nucleotide -binding and oligomeriszation domain-like receptors (NLRs) was first identified in vertebrates and comprises a group of pivotal sensor protein of the innate immune system for microbial cell wall components or danger signals. Here, we provide first evidence that early diverging metazoans have large and complex NLR repertoires. The cnidarian NACHT/NB-ARC genes include novel combinations of domains, and the number of one specific type (NB-ARC and tetratricopeptide repeat containing) in Hydra is particularly large. We characterize the transcript structure and expression patterns of a selected HyNLR, HyNLR type 1 and describe putative interaction partners. In a heterologous expression system, we show induced proximity recruitment of an effector caspase (HyDD-Caspase) to the HyNLR type 1 protein upon oligomerization indicating a potential role of caspase activation downstream of NLR activation in Hydra. These results add substantially to our understanding of the ancestral innate immune repertoire as well as providing the first insights into putative cytoplasmic defense mechanisms at the base of animal evolution.
区分自我和非我以及在识别病原体时启动防御效应机制对于动物王国中所有生命形式的生存都是至关重要的。核苷酸结合和寡聚结构域样受体 (NLR) 家族最初在脊椎动物中被发现,是微生物细胞壁成分或危险信号的固有免疫系统的关键传感器蛋白组。在这里,我们首次提供证据表明,早期分化的后生动物具有庞大而复杂的 NLR 库。刺胞动物的 NACHT/NB-ARC 基因包括结构域的新组合,并且水螅中一种特定类型(NB-ARC 和四肽重复结构域)的数量特别大。我们对选定的 HyNLR、HyNLR 类型 1 进行了转录结构和表达模式的表征,并描述了可能的相互作用伙伴。在异源表达系统中,我们显示了效应半胱天冬酶(HyDD-Caspase)在寡聚化后被募集到 HyNLR 类型 1 蛋白,这表明在水螅中,NLR 激活下游的半胱天冬酶激活可能具有潜在作用。这些结果极大地增加了我们对祖先固有免疫库的理解,并提供了动物进化基础上潜在的细胞质防御机制的第一见解。