Literature DB >> 12077297

Genome expression analysis of Anopheles gambiae: responses to injury, bacterial challenge, and malaria infection.

George Dimopoulos1, George K Christophides, Stephan Meister, Jörg Schultz, Kevin P White, Carolina Barillas-Mury, Fotis C Kafatos.   

Abstract

The complex gene expression responses of Anopheles gambiae to microbial and malaria challenges, injury, and oxidative stress (in the mosquito and/or a cultured cell line) were surveyed by using cDNA microarrays constructed from an EST-clone collection. The expression profiles were broadly subdivided into induced and down-regulated gene clusters. Gram+ and Gram- bacteria and microbial elicitors up-regulated a diverse set of genes, many belonging to the immunity class, and the response to malaria partially overlapped with this response. Oxidative stress activated a distinctive set of genes, mainly implicated in oxidoreductive processes. Injury up- and down-regulated gene clusters also were distinctive, prominently implicating glycolysis-related genes and citric acid cycle/oxidative phosphorylation/redox-mitochondrial functions, respectively. Cross-comparison of in vivo and in vitro responses indicated the existence of tightly coregulated gene groups that may correspond to gene pathways.

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Year:  2002        PMID: 12077297      PMCID: PMC124381          DOI: 10.1073/pnas.092274999

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  26 in total

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Authors:  F Oduol; J Xu; O Niare; R Natarajan; K D Vernick
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  90 in total

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5.  Silencing the genes for dopa decarboxylase or dopachrome conversion enzyme reduces melanization of foreign targets in Anopheles gambiae.

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