DEFA1A3 DNA 基因剂量调节上尿路感染时肾脏的先天性免疫反应

IF 3.3 2区 生物学 Q1 BIOLOGY
Jorge J Canas, Samuel W Arregui, Shaobo Zhang, Taylor Knox, Christi Calvert, Vijay Saxena, Andrew L Schwaderer, David S Hains
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引用次数: 0

摘要

抗菌肽(AMPs)是一种宿主防御效应物质,对侵入性病原体具有强大的中和及免疫调节功能。AMPs α-Defensin 1-3/DEFA1A3 参与先天性免疫反应并影响各种疾病的患者预后。DEFA1A3的DNA拷贝数变异与包括尿路感染(UTI)在内的感染性疾病的严重程度和预后有关。具体来说,DNA拷贝数较低的儿童更容易患UTI。α-Defensin 1-3/DEFA1A3 拷贝数变异导致UTI易感性的作用机制仍有待探索。在本研究中,我们利用先前鉴定的人类 DEFA1A3 基因转基因敲入小鼠,剖析了 α-Defensin 1-3 基因在尿路致病性大肠杆菌(UPEC)UTI 中的剂量依赖性抗菌和免疫调节作用。我们阐明了肾脏中性粒细胞和集合管间细胞衍生的 α-Defensin 1-3/DEFA1A3 表达与 UTI 之间的关系。我们进一步描述了 α-Defensin 1-3 与其他 AMPs 之间的协同作用,这些 AMPs 可增强对 UPEC 的中和活性。总之,我们证明了 DEFA1A3 可直接抵御 UPEC,同时以基因剂量依赖的方式影响促炎性先天性免疫反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DEFA1A3 DNA gene-dosage regulates the kidney innate immune response during upper urinary tract infection.
Antimicrobial peptides (AMPs) are host defense effectors with potent neutralizing and immunomodulatory functions against invasive pathogens. The AMPs α-Defensin 1-3/DEFA1A3 participate in innate immune responses and influence patient outcomes in various diseases. DNA copy-number variations in DEFA1A3 have been associated with severity and outcomes in infectious diseases including urinary tract infections (UTIs). Specifically, children with lower DNA copy numbers were more susceptible to UTIs. The mechanism of action by which α-Defensin 1-3/DEFA1A3 copy-number variations lead to UTI susceptibility remains to be explored. In this study, we use a previously characterized transgenic knock-in of the human DEFA1A3 gene mouse to dissect α-Defensin 1-3 gene dose-dependent antimicrobial and immunomodulatory roles during uropathogenic Escherichia coli (UPEC) UTI. We elucidate the relationship between kidney neutrophil- and collecting duct intercalated cell-derived α-Defensin 1-3/DEFA1A3 expression and UTI. We further describe cooperative effects between α-Defensin 1-3 and other AMPs that potentiate the neutralizing activity against UPEC. Cumulatively, we demonstrate that DEFA1A3 directly protects against UPEC meanwhile impacting pro-inflammatory innate immune responses in a gene dosage-dependent manner.
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来源期刊
Life Science Alliance
Life Science Alliance Agricultural and Biological Sciences-Plant Science
CiteScore
5.80
自引率
2.30%
发文量
241
审稿时长
10 weeks
期刊介绍: Life Science Alliance is a global, open-access, editorially independent, and peer-reviewed journal launched by an alliance of EMBO Press, Rockefeller University Press, and Cold Spring Harbor Laboratory Press. Life Science Alliance is committed to rapid, fair, and transparent publication of valuable research from across all areas in the life sciences.
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