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由细菌或原生动物寄生虫硕大利什曼原虫激发诱导的来自杜氏白蛉的一种防御素的特性分析

Characterization of a defensin from the sand fly Phlebotomus duboscqi induced by challenge with bacteria or the protozoan parasite Leishmania major.

作者信息

Boulanger Nathalie, Lowenberger Carl, Volf Petr, Ursic Raul, Sigutova Lucie, Sabatier Laurence, Svobodova Milena, Beverley Stephen M, Späth Gerald, Brun Reto, Pesson Bernard, Bulet Philippe

机构信息

INSERM U392, ULP, Faculté de Pharmacie, 67400 Illkirch, France.

出版信息

Infect Immun. 2004 Dec;72(12):7140-6. doi: 10.1128/IAI.72.12.7140-7146.2004.


DOI:10.1128/IAI.72.12.7140-7146.2004
PMID:15557638
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC529173/
Abstract

Antimicrobial peptides are major components of the innate immune response of epithelial cells. In insect vectors, these peptides may play a role in the control of gut pathogens. We have analyzed antimicrobial peptides produced by the sand fly Phlebotomus duboscqi, after challenge by injected bacteria or feeding with bacteria or the protozoan parasite Leishmania major. A new hemolymph peptide with antimicrobial activity was identified and shown to be a member of the insect defensin family. Interestingly, this defensin exhibits an antiparasitic activity against the promastigote forms of L. major, which reside normally within the sand fly midgut. P. duboscqi defensin could be induced by both hemolymph or gut infections. Defensin mRNA was induced following infection by wild-type L. major, and this induction was much less following infections with L. major knockout mutants that survive poorly in sand flies, due to specific deficiencies in abundant cell surface glycoconjugates containing phosphoglycans (including lipophosphoglycan). The ability of gut pathogens to induce gut as well as fat body expression of defensin raises the possibility that this antimicrobial peptide might play a key role in the development of parasitic infections.

摘要

抗菌肽是上皮细胞固有免疫反应的主要组成部分。在昆虫媒介中,这些肽可能在控制肠道病原体方面发挥作用。我们分析了经注射细菌、喂食细菌或原生动物寄生虫硕大利什曼原虫刺激后,白蛉杜氏白蛉产生的抗菌肽。一种具有抗菌活性的新血淋巴肽被鉴定出来,并被证明是昆虫防御素家族的一员。有趣的是,这种防御素对通常存在于白蛉中肠的硕大利什曼原虫前鞭毛体形式具有抗寄生虫活性。杜氏白蛉防御素可由血淋巴或肠道感染诱导产生。野生型硕大利什曼原虫感染后可诱导防御素mRNA表达,而由于富含磷酸聚糖(包括脂磷壁酸)的丰富细胞表面糖缀合物存在特定缺陷,在白蛉中存活较差的硕大利什曼原虫基因敲除突变体感染后,这种诱导作用要小得多。肠道病原体诱导肠道以及脂肪体中防御素表达的能力,增加了这种抗菌肽可能在寄生虫感染发展中起关键作用的可能性。

相似文献

[1]
Characterization of a defensin from the sand fly Phlebotomus duboscqi induced by challenge with bacteria or the protozoan parasite Leishmania major.

Infect Immun. 2004-12

[2]
Bacterial feeding, Leishmania infection and distinct infection routes induce differential defensin expression in Lutzomyia longipalpis.

Parasit Vectors. 2013-1-11

[3]
Pathogen-associated molecular patterns (PAMPs) derived from Leishmania and bacteria increase gene expression of antimicrobial peptides and gut surface proteins in sand flies.

Int J Parasitol. 2024-8

[4]
Leishmania major glycosylation mutants require phosphoglycans (lpg2-) but not lipophosphoglycan (lpg1-) for survival in permissive sand fly vectors.

PLoS Negl Trop Dis. 2010-1-12

[5]
Leishmania major survival in selective Phlebotomus papatasi sand fly vector requires a specific SCG-encoded lipophosphoglycan galactosylation pattern.

PLoS Pathog. 2010-11-11

[6]
Leishmania major-Phlebotomus duboscqi interactions: inhibition of anti-LPG antibodies and characterisation of two proteins with shared epitopes.

East Afr Med J. 2004-2

[7]
The effect of avian blood on Leishmania development in Phlebotomus duboscqi.

Parasit Vectors. 2013-9-2

[8]
Effects of anti-Leishmania monoclonal antibodies on the development of Leishmania major in Phlebotomus duboscqi (Diptera: Psychodidae).

East Afr Med J. 2006-2

[9]
Identification and characterization of a salivary adenosine deaminase from the sand fly Phlebotomus duboscqi, the vector of Leishmania major in sub-Saharan Africa.

J Exp Biol. 2007-3

[10]
Proteophosphoglycan confers resistance of Leishmania major to midgut digestive enzymes induced by blood feeding in vector sand flies.

Cell Microbiol. 2010-1-20

引用本文的文献

[1]
Common Bed Bugs: Non-Viable Hosts for Parasites.

Cells. 2024-12-11

[2]
Azadirachtin disrupts ecdysone signaling and alters sand fly immunity.

Parasit Vectors. 2024-12-20

[3]
-sand fly interactions: exploring the role of the immune response and potential strategies for Leishmaniasis control.

J Parasit Dis. 2024-12

[4]
Stability and suitability of housekeeping genes in phlebotomine sand flies.

Sci Rep. 2024-10-7

[5]
Blap-6, a Novel Antifungal Peptide from the Chinese Medicinal Beetle against .

Int J Mol Sci. 2024-5-14

[6]
Comparative proteomic analysis of the hemolymph and salivary glands of Rhodnius prolixus and R. colombiensis reveals candidates associated with differential lytic activity against Trypanosoma cruzi Dm28c and T. cruzi Y.

PLoS Negl Trop Dis. 2024-4

[7]
Immune Reactions of Vector Insects to Parasites and Pathogens.

Microorganisms. 2024-3-12

[8]
Interactions between Leishmania parasite and sandfly: a review.

Parasitol Res. 2023-12-6

[9]
Evidence of a conserved mammalian immunosuppression mechanism in upon infection with .

Front Immunol. 2023

[10]
Effects of host species on microbiota composition in Phlebotomus and Lutzomyia sand flies.

Parasit Vectors. 2023-8-31

本文引用的文献

[1]
Proventriculus (cardia) plays a crucial role in immunity in tsetse fly (Diptera: Glossinidiae).

Insect Biochem Mol Biol. 2003-11

[2]
Isolation and characterization of a novel insect defensin from Rhodnius prolixus, a vector of Chagas disease.

Insect Biochem Mol Biol. 2003-4

[3]
Epithelial innate immunity. A novel antimicrobial peptide with antiparasitic activity in the blood-sucking insect Stomoxys calcitrans.

J Biol Chem. 2002-12-20

[4]
Immunopeptides in the defense reactions of Glossina morsitans to bacterial and Trypanosoma brucei brucei infections.

Insect Biochem Mol Biol. 2002-4

[5]
Defensins of vertebrate animals.

Curr Opin Immunol. 2002-2

[6]
Gambicin: a novel immune responsive antimicrobial peptide from the malaria vector Anopheles gambiae.

Proc Natl Acad Sci U S A. 2001-10-23

[7]
Tsetse immune responses and trypanosome transmission: implications for the development of tsetse-based strategies to reduce trypanosomiasis.

Proc Natl Acad Sci U S A. 2001-10-23

[8]
Is lipophosphoglycan a virulence factor? A surprising diversity between Leishmania species.

Trends Parasitol. 2001-5

[9]
Secretion of microbicidal alpha-defensins by intestinal Paneth cells in response to bacteria.

Nat Immunol. 2000-8

[10]
The defensin peptide of the malaria vector mosquito Anopheles gambiae: antimicrobial activities and expression in adult mosquitoes.

Insect Biochem Mol Biol. 2001-3-1

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