首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Diversity of Innate Immune Recognition Mechanism for Bacterial Polymeric meso-Diaminopimelic Acid-type Peptidoglycan in Insects
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Diversity of Innate Immune Recognition Mechanism for Bacterial Polymeric meso-Diaminopimelic Acid-type Peptidoglycan in Insects

机译:细菌中细菌内消旋-二氨基庚二酸型肽聚糖固有免疫识别机制的多样性

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摘要

In Drosophila, the synthesis of antimicrobial peptides in response to microbial infections is under the control of the Toll and immune deficiency (Imd) signaling pathway. The Toll signaling pathway responds mainly to the lysine-type peptidoglycan of Gram-positive bacteria and fungal β-1,3-glucan, whereas the Imd pathway responds to the meso-diaminopimelic acid (DAP)-type peptidoglycan of Gram-negative bacteria and certain Gram-positive bacilli. Recently we determined the activation mechanism of a Toll signaling pathway biochemically using a large beetle, Tenebrio molitor. However, DAP-type peptidoglycan recognition mechanism and its signaling pathway are still unclear in the fly and beetle. Here, we show that polymeric DAP-type peptidoglycan, but not its monomeric form, formed a complex with Tenebrio peptidoglycan recognition protein-SA, and this complex activated the three-step proteolytic cascade to produce processed Spätzle, a Toll receptor ligand, and induced Drosophila defensin-like antimicrobial peptide in Tenebrio larvae similarly to polymeric lysine-type peptidoglycan. Monomeric DAP-type peptidoglycan induced Drosophila diptericin-like antimicrobial peptide in Tenebrio hemocytes. In addition, both polymeric and monomeric DAP-type peptidoglycans induced expression of Tenebrio peptidoglycan recognition protein-SC2, which is DAP-type peptidoglycan-selective N-acetylmuramyl-l-alanine amidase that functions as a DAP-type peptidoglycan scavenger, appearing to function as a negative regulator of the DAP-type peptidoglycan signaling by cleaving DAP-type peptidoglycan in Tenebrio larvae. Taken together, these results demonstrate that molecular recognition mechanism for polymeric DAP-type peptidoglycan is different between Tenebrio larvae and Drosophila adults, providing biochemical evidences of biological diversity of innate immune responses in insects.
机译:在果蝇中,响应微生物感染的抗菌肽的合成受Toll和免疫缺陷(Imd)信号通路的控制。 Toll信号通​​路主要对革兰氏阳性细菌的赖氨酸型肽聚糖和真菌β-1,3-葡聚糖有反应,而Imd通路对革兰氏阴性细菌的中二氨基庚二酸(DAP)型肽聚糖和某些革兰氏阳性杆菌。最近,我们使用大甲虫Tenebrio molitor生化确定了Toll信号通​​路的激活机制。但是,DAP型肽聚糖识别机制及其信号传导途径在果蝇和甲虫中仍不清楚。在这里,我们显示了聚合的DAP型肽聚糖,而不是其单体形式,与黄粉虫肽聚糖识别蛋白-SA形成了复合物,并且该复合物激活了三步蛋白水解级联反应,以产生加工过的Spätzle,Toll受体配体并诱导黄粉虫幼虫中的果蝇防御素样抗菌肽类似于聚合赖氨酸型肽聚糖。单体DAP型肽聚糖在黄粉虫血细胞中诱导果蝇Depticicin样抗菌肽。此外,聚合和单体DAP型肽聚糖均诱导黄粉虫肽聚糖识别蛋白SC2的表达,该蛋白是DAP型肽聚糖选择性N-乙酰村酰胺-1-丙氨酸酰胺酶,起DAP型肽聚糖清除剂的作用。通过在黄粉虫幼虫中裂解DAP型肽聚糖来作为DAP型肽聚糖信号的负调节剂。综上所述,这些结果表明,黄粉虫幼虫和果蝇成虫之间的聚合DAP型肽聚糖的分子识别机制是不同的,这为昆虫固有免疫反应的生物多样性提供了生化证据。

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