Drosophila Toll is activated by Gram-positive bacteria through a circulating peptidoglycan recognition protein

被引:0
|
作者
Tatiana Michel
Jean-Marc Reichhart
Jules A. Hoffmann
Julien Royet
机构
[1] Institut de Biologie Moléculaire et Cellulaire,
[2] UPR 9022 du CNRS,undefined
来源
Nature | 2001年 / 414卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Microbial infection activates two distinct intracellular signalling cascades in the immune-responsive fat body of Drosophila1,2. Gram-positive bacteria and fungi predominantly induce the Toll signalling pathway, whereas Gram-negative bacteria activate the Imd pathway3,4. Loss-of-function mutants in either pathway reduce the resistance to corresponding infections4,5. Genetic screens have identified a range of genes involved in these intracellular signalling cascades6,7,8,9,10,11,12, but how they are activated by microbial infection is largely unknown. Activation of the transmembrane receptor Toll requires a proteolytically cleaved form of an extracellular cytokine-like polypeptide, Spätzle13, suggesting that Toll does not itself function as a bona fide recognition receptor of microbial patterns. This is in apparent contrast with the mammalian Toll-like receptors14 and raises the question of which host molecules actually recognize microbial patterns to activate Toll through Spätzle. Here we present a mutation that blocks Toll activation by Gram-positive bacteria and significantly decreases resistance to this type of infection. The mutation semmelweis (seml) inactivates the gene encoding a peptidoglycan recognition protein (PGRP-SA). Interestingly, seml does not affect Toll activation by fungal infection, indicating the existence of a distinct recognition system for fungi to activate the Toll pathway.
引用
收藏
页码:756 / 759
页数:3
相关论文
共 50 条
  • [21] A Microdomain for protein secretion in Gram-positive bacteria
    Rosch, J
    Caparon, M
    SCIENCE, 2004, 304 (5676) : 1513 - 1515
  • [22] The Drosophila immune response against Gram-negative bacteria is mediated by a peptidoglycan recognition protein
    Marie Gottar
    Vanessa Gobert
    Tatiana Michel
    Marcia Belvin
    Geoffrey Duyk
    Jules A. Hoffmann
    Dominique Ferrandon
    Julien Royet
    Nature, 2002, 416 : 640 - 644
  • [23] The Drosophila immune response against Gram-negative bacteria is mediated by a peptidoglycan recognition protein
    Gottar, M
    Gobert, V
    Michel, T
    Belvin, M
    Duyk, G
    Hoffmann, JA
    Ferrandon, D
    Royet, J
    NATURE, 2002, 416 (6881) : 640 - 644
  • [24] RAPID, QUANTITATIVE, AND SELECTIVE ESTIMATION OF RADIOACTIVELY LABELED PEPTIDOGLYCAN IN GRAM-POSITIVE BACTERIA
    BOOTHBY, D
    DANEOMOO.L
    SHOCKMAN, GD
    ANALYTICAL BIOCHEMISTRY, 1971, 44 (02) : 645 - &
  • [25] MEDI 35-Differential recognition of Gram-positive and -negative synthetic peptidoglycan fragments by Toll Like receptor 2
    Maiti, Kaustabh K.
    Asong, Jinkeng
    Wolfert, Margreet
    Miller, Douglas
    Boons, Geert-Jan
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2008, 236
  • [26] Peptidoglycan-Directed Chemical Ligation for Selective Inhibition on Gram-Positive Bacteria
    Jiang, Feng
    Cai, Chengteng
    Gao, Lei
    Su, Xinhui
    Han, Shoufa
    ACS OMEGA, 2022, : 2485 - 2490
  • [27] The Toll pathway underlies host sexual dimorphism in resistance to both Gram-negative and Gram-positive bacteria in mated Drosophila
    Duneau, David F.
    Kondolf, Hannah C.
    Im, Joo Hyun
    Ortiz, Gerardo A.
    Chow, Christopher
    Fox, Michael A.
    Eugenio, Ana T.
    Revah, J.
    Buchon, Nicolas
    Lazzaro, Brian P.
    BMC BIOLOGY, 2017, 15
  • [28] The Toll pathway underlies host sexual dimorphism in resistance to both Gram-negative and Gram-positive bacteria in mated Drosophila
    David F. Duneau
    Hannah C. Kondolf
    Joo Hyun Im
    Gerardo A. Ortiz
    Christopher Chow
    Michael A. Fox
    Ana T. Eugénio
    J. Revah
    Nicolas Buchon
    Brian P. Lazzaro
    BMC Biology, 15
  • [29] Molecular Modeling and Simulation of the Peptidoglycan Layer of Gram-Positive Bacteria Staphylococcus aureus
    Pokhrel, Rudramani
    Shakya, Rojesh
    Baral, Prabin
    Chapagain, Prem
    JOURNAL OF CHEMICAL INFORMATION AND MODELING, 2022, 62 (20) : 4955 - 4962
  • [30] Evolution of peptidoglycan biosynthesis under the selective pressure of antibiotics in Gram-positive bacteria
    Mainardi, Jean-Luc
    Villet, Regis
    Bugg, Timothy D.
    Mayer, Claudine
    Arthur, Michel
    FEMS MICROBIOLOGY REVIEWS, 2008, 32 (02) : 386 - 408