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致病性酵母白色念珠菌产生的天冬氨酸蛋白酶使人类阳离子抗菌肽LL-37的抗真菌和免疫调节特性失活。

Inactivation of the antifungal and immunomodulatory properties of human cathelicidin LL-37 by aspartic proteases produced by the pathogenic yeast Candida albicans.

作者信息

Rapala-Kozik Maria, Bochenska Oliwia, Zawrotniak Marcin, Wolak Natalia, Trebacz Grzegorz, Gogol Mariusz, Ostrowska Dominika, Aoki Wataru, Ueda Mitsuyoshi, Kozik Andrzej

机构信息

Department of Analytical Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University in Krakow, Krakow, Poland

Department of Analytical Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University in Krakow, Krakow, Poland.

出版信息

Infect Immun. 2015 Jun;83(6):2518-30. doi: 10.1128/IAI.00023-15. Epub 2015 Apr 6.

DOI:10.1128/IAI.00023-15
PMID:25847962
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4432748/
Abstract

Constant cross talk between Candida albicans yeast cells and their human host determines the outcome of fungal colonization and, eventually, the progress of infectious disease (candidiasis). An effective weapon used by C. albicans to cope with the host defense system is the release of 10 distinct secreted aspartic proteases (SAPs). Here, we validate a hypothesis that neutrophils and epithelial cells use the antimicrobial peptide LL-37 to inactivate C. albicans at sites of candidal infection and that C. albicans uses SAPs to effectively degrade LL-37. LL-37 is cleaved into multiple products by SAP1 to -4, SAP8, and SAP9, and this proteolytic processing is correlated with the gradual decrease in the antifungal activity of LL-37. Moreover, a major intermediate of LL-37 cleavage-the LL-25 peptide-is antifungal but devoid of the immunomodulatory properties of LL-37. In contrast to LL-37, LL-25 did not affect the generation of reactive oxygen species by neutrophils upon treatment with phorbol esters. Stimulating neutrophils with LL-25 (rather than LL-37) significantly decreased calcium flux and interleukin-8 production, resulting in lower chemotactic activity of the peptide against neutrophils, which may decrease the recruitment of neutrophils to infection foci. LL-25 also lost the function of LL-37 as an inhibitor of neutrophil apoptosis, thereby reducing the life span of these defense cells. This study indicates that C. albicans can effectively use aspartic proteases to destroy the antimicrobial and immunomodulatory properties of LL-37, thus enabling the pathogen to survive and propagate.

摘要

白色念珠菌酵母细胞与其人类宿主之间持续的相互作用决定了真菌定植的结果,并最终决定了传染病(念珠菌病)的进展。白色念珠菌应对宿主防御系统的一种有效武器是释放10种不同的分泌天冬氨酸蛋白酶(SAPs)。在此,我们验证了一个假设,即中性粒细胞和上皮细胞利用抗菌肽LL-37在念珠菌感染部位使白色念珠菌失活,而白色念珠菌利用SAPs有效降解LL-37。LL-37被SAP1至-4、SAP8和SAP9切割成多种产物,这种蛋白水解过程与LL-37抗真菌活性的逐渐降低相关。此外,LL-37切割的一个主要中间体——LL-25肽具有抗真菌作用,但缺乏LL-37的免疫调节特性。与LL-37不同,LL-25在用佛波酯处理后不影响中性粒细胞活性氧的产生。用LL-25(而非LL-37)刺激中性粒细胞显著降低了钙通量和白细胞介素-8的产生,导致该肽对中性粒细胞的趋化活性降低,这可能会减少中性粒细胞向感染灶的募集。LL-25还失去了LL-37作为中性粒细胞凋亡抑制剂的功能,从而缩短了这些防御细胞的寿命。这项研究表明,白色念珠菌可以有效地利用天冬氨酸蛋白酶破坏LL-37的抗菌和免疫调节特性,从而使病原体得以存活和繁殖。

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本文引用的文献

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Microevolution of Candida albicans in macrophages restores filamentation in a nonfilamentous mutant.白色念珠菌在巨噬细胞中的微进化可恢复非丝状突变体中的丝状化。
PLoS Genet. 2014 Dec 4;10(12):e1004824. doi: 10.1371/journal.pgen.1004824. eCollection 2014 Dec.
2
Responses of Candida albicans to the human antimicrobial peptide LL-37.白色念珠菌对人抗菌肽LL-37的反应。
J Microbiol. 2014 Jul;52(7):581-9. doi: 10.1007/s12275-014-3630-2. Epub 2014 May 30.
3
A virtual infection model quantifies innate effector mechanisms and Candida albicans immune escape in human blood.一种虚拟感染模型可量化人体血液中的先天性效应机制和白色念珠菌的免疫逃逸。
PLoS Comput Biol. 2014 Feb 20;10(2):e1003479. doi: 10.1371/journal.pcbi.1003479. eCollection 2014 Feb.
4
Fungicidal mechanisms of cathelicidins LL-37 and CATH-2 revealed by live-cell imaging.通过活细胞成像揭示的抗菌肽LL-37和CATH-2的杀菌机制
Antimicrob Agents Chemother. 2014;58(4):2240-8. doi: 10.1128/AAC.01670-13. Epub 2014 Feb 3.
5
Little peptide, big effects: the role of LL-37 in inflammation and autoimmune disease.小肽,大作用:LL-37 在炎症和自身免疫性疾病中的作用。
J Immunol. 2013 Nov 15;191(10):4895-901. doi: 10.4049/jimmunol.1302005.
6
Human cathelicidin LL-37-derived peptide IG-19 confers protection in a murine model of collagen-induced arthritis.人源杀菌肽 LL-37 的衍生肽 IG-19 通过在胶原诱导性关节炎的小鼠模型中发挥作用而提供保护。
Mol Immunol. 2014 Feb;57(2):86-92. doi: 10.1016/j.molimm.2013.08.011. Epub 2013 Oct 1.
7
LL-37 in periodontal health and disease and its susceptibility to degradation by proteinases present in gingival crevicular fluid.牙周健康和疾病中的 LL-37 及其对龈沟液中蛋白酶降解的易感性。
J Clin Periodontol. 2013 Oct;40(10):933-41. doi: 10.1111/jcpe.12141. Epub 2013 Aug 18.
8
The Human Cathelicidin Antimicrobial Peptide LL-37 as a Potential Treatment for Polymicrobial Infected Wounds.人源杀菌肽 LL-37 作为一种潜在的多微生物感染伤口治疗方法。
Front Immunol. 2013 Jul 3;4:143. doi: 10.3389/fimmu.2013.00143. eCollection 2013.
9
Diverse novel functions of neutrophils in immunity, inflammation, and beyond.中性粒细胞在免疫、炎症及其他方面的多样化新功能。
J Exp Med. 2013 Jul 1;210(7):1283-99. doi: 10.1084/jem.20122220.
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Thriving within the host: Candida spp. interactions with phagocytic cells.在宿主中茁壮成长:念珠菌属与吞噬细胞的相互作用。
Med Microbiol Immunol. 2013 Jun;202(3):183-95. doi: 10.1007/s00430-013-0288-z. Epub 2013 Jan 25.