Literature DB >> 17208189

Psidin is required in Drosophila blood cells for both phagocytic degradation and immune activation of the fat body.

Catherine A Brennan1, Joseph R Delaney, David S Schneider, Kathryn V Anderson.   

Abstract

Phagocytic blood cells are critical to innate immune defense: They internalize and destroy microbial invaders and produce signals that trigger other immune responses. Despite this central role, the in vivo contributions of phagocytosis to systemic immune activation are not well understood. Drosophila has proven a fruitful model for the investigation of evolutionarily conserved innate immune mechanisms, including NF-kappaB-dependent transcriptional induction, RNAi in antiviral responses, and phagocytosis. The phagocytes of Drosophila encounter bacterial invaders early in infection and contribute to survival of infection. Phagocytosis in flies and mammals is highly homologous: Both rely on scavenger receptors, opsonins, and actin rearrangements for engulfment; have phagosomal cysteine proteases active at low pH; and can be subverted by similar intracellular pathogens. Although the role of Drosophila phagocytes in the activation of other immune tissues has not been clear, we show that induction of the antibacterial-peptide gene Defensin in the fat body during infection requires blood-cell contributions. We identify a gene, psidin, that encodes a lysosomal protein required in the blood cells for both degradation of engulfed bacteria and activation of fat-body Defensin. These data establish a role for the phagocytic blood cells of Drosophila in detection of infection and activation of the humoral immune response.

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Year:  2007        PMID: 17208189     DOI: 10.1016/j.cub.2006.11.026

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  40 in total

Review 1.  Insect immunology and hematopoiesis.

Authors:  Julián F Hillyer
Journal:  Dev Comp Immunol       Date:  2015-12-13       Impact factor: 3.636

2.  Psidin, a conserved protein that regulates protrusion dynamics and cell migration.

Authors:  Ji Hoon Kim; Aeri Cho; Hongyan Yin; Dorothy A Schafer; Ghassan Mouneimne; Kaylene J Simpson; Kim-Vy Nguyen; Joan S Brugge; Denise J Montell
Journal:  Genes Dev       Date:  2011-03-15       Impact factor: 11.361

3.  Drosophila Rel proteins are central regulators of a robust, multi-organ immune network.

Authors:  Nina Matova; Kathryn V Anderson
Journal:  J Cell Sci       Date:  2010-02-15       Impact factor: 5.285

4.  Drosophila Psidin regulates olfactory neuron number and axon targeting through two distinct molecular mechanisms.

Authors:  Daniel Stephan; Natalia Sánchez-Soriano; Laura F Loschek; Ramona Gerhards; Susanne Gutmann; Zuzana Storchova; Andreas Prokop; Ilona C Grunwald Kadow
Journal:  J Neurosci       Date:  2012-11-14       Impact factor: 6.167

Review 5.  Drosophila as a Genetic Model for Hematopoiesis.

Authors:  Utpal Banerjee; Juliet R Girard; Lauren M Goins; Carrie M Spratford
Journal:  Genetics       Date:  2019-02       Impact factor: 4.562

Review 6.  Drosophila hematopoiesis: Markers and methods for molecular genetic analysis.

Authors:  Cory J Evans; Ting Liu; Utpal Banerjee
Journal:  Methods       Date:  2014-03-12       Impact factor: 3.608

7.  An in vivo RNA interference screen identifies gene networks controlling Drosophila melanogaster blood cell homeostasis.

Authors:  Amélie Avet-Rochex; Karène Boyer; Cédric Polesello; Vanessa Gobert; Dani Osman; Fernando Roch; Benoit Augé; Jennifer Zanet; Marc Haenlin; Lucas Waltzer
Journal:  BMC Dev Biol       Date:  2010-06-11       Impact factor: 1.978

8.  Toll-dependent antimicrobial responses in Drosophila larval fat body require Spätzle secreted by haemocytes.

Authors:  Alice K H Shia; Marcus Glittenberg; Gavin Thompson; Alexander N Weber; Jean-Marc Reichhart; Petros Ligoxygakis
Journal:  J Cell Sci       Date:  2009-11-24       Impact factor: 5.285

9.  Drosophila calcineurin promotes induction of innate immune responses.

Authors:  Pascale F Dijkers; Patrick H O'Farrell
Journal:  Curr Biol       Date:  2007-12-04       Impact factor: 10.834

10.  Genome-wide transcriptomic profiling of Anopheles gambiae hemocytes reveals pathogen-specific signatures upon bacterial challenge and Plasmodium berghei infection.

Authors:  Luke A Baton; Anne Robertson; Emma Warr; Michael R Strand; George Dimopoulos
Journal:  BMC Genomics       Date:  2009-06-05       Impact factor: 3.969

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