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Roles of NOD1 (NLRC1) and NOD2 (NLRC2) in innate immunity and inflammatory diseases

机译:NOD1(NLRC1)和NOD2(NLRC2)在先天性免疫和炎性疾病中的作用

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摘要

NOD1 {nucleotide-binding oligomerization domain 1; NLRC [NOD-LRR (leucine-rich repeat) family with CARD (caspase recruitment domain) 1]} and NOD2 (NLRC2) are among the most prominent members of the NLR (NOD-LRR) family -proteins that contain nucleotide-binding NACHT domains and receptor-like LRR domains. With over 20 members identified in humans, NLRs represent important components of the mammalian innate immune system, serving as intracellular receptors for pathogens and for endogenous molecules elaborated by tissue injury. NOD1 and NOD2 proteins operate as microbial sensors through the recognition of specific PG (peptidoglycan) constituents of bacteria. Upon activation, these NLR family members initiate signal transduction mechanisms that include stimulation of NF-κB (nuclear factor-κB), stress kinases, IRFs (interferon regulatory factors) and autophagy. Hereditary polymorphisms in the genes encoding NOD1 and NOD2 have been associated with an increasing number of chronic inflammatory diseases. In fact, potential roles for NOD1 and NOD2 in inflammatory disorders have been revealed by investigations using a series of animal models. In the present review, we describe recent experimental findings associating NOD1 and NOD2 with various autoimmune and chronic inflammatory disorders, and we discuss prospects for development of novel therapeutics targeting these NLR family proteins.
机译:NOD1 {核苷酸结合寡聚域1; NLRC [具有CARD(胱天蛋白酶募集结构域)1的NOD-LRR(富含亮氨酸的重复序列)家族]}和NOD2(NLRC2)是NLR(NOD-LRR)家族中最突出的成员-含有核苷酸结合NACHT的蛋白质结构域和受体样LRR结构域。在人类中鉴定出20多个成员后,NLR代表了哺乳动物先天免疫系统的重要组成部分,它们是病原体和组织损伤产生的内源性分子的细胞内受体。 NOD1和NOD2蛋白通过识别细菌的特定PG(肽聚糖)成分而充当微生物传感器。激活后,这些NLR家族成员启动信号转导机制,包括刺激NF-κB(核因子-κB),应激激酶,IRF(干扰素调节因子)和自噬。编码NOD1和NOD2的基因中的遗传多态性与越来越多的慢性炎症性疾病有关。实际上,NOD1和NOD2在炎症性疾病中的潜在作用已通过使用一系列动物模型进行的调查得以揭示。在本综述中,我们描述了将NOD1和NOD2与各种自身免疫和慢性炎性疾病相关联的最新实验发现,并讨论了针对这些NLR家族蛋白的新型疗法的开发前景。

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