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DH31/CGRP 肠内分泌肽触发肠道收缩,有利于排除机会性细菌。

The DH31/CGRP enteroendocrine peptide triggers intestinal contractions favoring the elimination of opportunistic bacteria.

机构信息

Université Côte d'Azur, CNRS, INRA, ISA, France.

Faculty of Sciences III and Azm Center for Research in Biotechnology and its Applications, LBA3B, EDST, Lebanese University, Tripoli, Lebanon.

出版信息

PLoS Pathog. 2018 Sep 4;14(9):e1007279. doi: 10.1371/journal.ppat.1007279. eCollection 2018 Sep.

Abstract

The digestive tract is the first organ affected by the ingestion of foodborne bacteria. While commensal bacteria become resident, opportunistic or virulent bacteria are eliminated from the gut by the local innate immune system. Here we characterize a new mechanism of defense, independent of the immune system, in Drosophila melanogaster. We observed strong contractions of longitudinal visceral muscle fibers for the first 2 hours following bacterial ingestion. We showed that these visceral muscle contractions are induced by immune reactive oxygen species (ROS) that accumulate in the lumen and depend on the ROS-sensing TRPA1 receptor. We then demonstrate that both ROS and TRPA1 are required in a subset of anterior enteroendocrine cells for the release of the DH31 neuropeptide which activates its receptor in the neighboring visceral muscles. The resulting contractions of the visceral muscles favors quick expulsion of the bacteria, limiting their presence in the gut. Our results unveil a precocious mechanism of defense against ingested opportunistic bacteria, whether they are Gram-positive like Bacillus thuringiensis or Gram-negative like Erwinia carotovora carotovora. Finally, we found that the human homolog of DH31, CGRP, has a conserved function in Drosophila.

摘要

消化道是受食源性病原体影响的第一个器官。虽然共生菌成为常驻菌,但机会性或毒性菌会被局部先天免疫系统从肠道中清除。在这里,我们在黑腹果蝇中描述了一种新的防御机制,该机制不依赖于免疫系统。我们观察到在细菌摄入后的前 2 小时内,纵向内脏肌纤维发生强烈收缩。我们表明,这些内脏肌收缩是由免疫活性氧 (ROS) 诱导的,ROS 在肠道腔中积累并依赖于 ROS 感应型 TRPA1 受体。然后,我们证明 ROS 和 TRPA1 都在前肠内分泌细胞的一个亚群中被需要,以释放 DH31 神经肽,该神经肽激活其在邻近内脏肌中的受体。由此产生的内脏肌收缩有利于快速排出细菌,从而减少其在肠道中的存在。我们的研究结果揭示了一种针对摄入的机会性病原体的早期防御机制,无论它们是革兰氏阳性的如苏云金芽孢杆菌还是革兰氏阴性的如胡萝卜软腐果胶杆菌。最后,我们发现 DH31 的人类同源物 CGRP 在果蝇中具有保守功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4d8/6138423/7c4e3dae9e36/ppat.1007279.g001.jpg

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