{"title":"A nonsecretory antimicrobial peptide mediates inflammatory organ damage in Drosophila renal tubules.","authors":"Ayano Oi, Natsuki Shinoda, Shun Nagashima, Masayuki Miura, Fumiaki Obata","doi":"10.1016/j.celrep.2024.115082","DOIUrl":null,"url":null,"abstract":"<p><p>An excessive immune response damages organs, yet its molecular mechanism is incompletely understood. Here, we screened a factor mediating organ damage upon genetic activation of the innate immune pathway using Drosophila renal tubules. We found that an antimicrobial peptide, Attacin-D (AttD), causes organ damage upon immune deficiency (Imd) pathway activation in the Malpighian tubules. Loss of AttD function suppresses most of the pathological phenotypes induced by Imd activation, such as cell death, bloating of the whole animal, and mortality, without compromising the immune activation. AttD is required for the immune-induced damage specifically in the Malpighian tubules and not the midgut. Unlike other antimicrobial peptides, AttD lacks a signal peptide and stays inside tubular cells, potentially damaging the tubular cells via aggregation and oligomerization. Suppression of AttD almost completely attenuates the pathology caused by a gut-tumor-induced immune activation. Our study elucidates the mechanistic effector of immune-induced organ damage.</p>","PeriodicalId":9798,"journal":{"name":"Cell reports","volume":" ","pages":"115082"},"PeriodicalIF":7.5000,"publicationDate":"2025-01-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Cell reports","FirstCategoryId":"99","ListUrlMain":"https://doi.org/10.1016/j.celrep.2024.115082","RegionNum":1,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"2024/12/23 0:00:00","PubModel":"Epub","JCR":"Q1","JCRName":"CELL BIOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
An excessive immune response damages organs, yet its molecular mechanism is incompletely understood. Here, we screened a factor mediating organ damage upon genetic activation of the innate immune pathway using Drosophila renal tubules. We found that an antimicrobial peptide, Attacin-D (AttD), causes organ damage upon immune deficiency (Imd) pathway activation in the Malpighian tubules. Loss of AttD function suppresses most of the pathological phenotypes induced by Imd activation, such as cell death, bloating of the whole animal, and mortality, without compromising the immune activation. AttD is required for the immune-induced damage specifically in the Malpighian tubules and not the midgut. Unlike other antimicrobial peptides, AttD lacks a signal peptide and stays inside tubular cells, potentially damaging the tubular cells via aggregation and oligomerization. Suppression of AttD almost completely attenuates the pathology caused by a gut-tumor-induced immune activation. Our study elucidates the mechanistic effector of immune-induced organ damage.
过度的免疫反应损害器官,但其分子机制尚不完全清楚。在这里,我们使用果蝇肾小管筛选了一种介导先天免疫途径遗传激活的器官损伤因子。我们发现一种抗菌肽,atacin - d (AttD),在马尔比氏小管免疫缺陷(Imd)途径激活时引起器官损伤。atd功能的丧失抑制了Imd激活引起的大多数病理表型,如细胞死亡、整个动物的肿胀和死亡,而不影响免疫激活。atd是免疫诱导损伤所必需的,特别是在马尔比氏小管中,而不是在中肠中。与其他抗菌肽不同,AttD缺乏信号肽并停留在小管细胞内,通过聚集和寡聚化潜在地破坏小管细胞。抑制AttD几乎完全减弱了由肠道肿瘤诱导的免疫激活引起的病理。我们的研究阐明了免疫诱导的器官损伤的机制效应。
期刊介绍:
Cell Reports publishes high-quality research across the life sciences and focuses on new biological insight as its primary criterion for publication. The journal offers three primary article types: Reports, which are shorter single-point articles, research articles, which are longer and provide deeper mechanistic insights, and resources, which highlight significant technical advances or major informational datasets that contribute to biological advances. Reviews covering recent literature in emerging and active fields are also accepted.
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