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Caenorhabditis elegans proteomics comes of age

期刊

PROTEOMICS
卷 10, 期 4, 页码 846-857

出版社

WILEY
DOI: 10.1002/pmic.200900542

关键词

2-DE; Animal proteomics; C. elegans; Database; Insulin; IGF-1 pathway

资金

  1. Ministry of Health and welfare of Republic of Korea [A030003]
  2. Basic Research Program of the Korea Science & Engineering Foundation [R01-2005-000-11021-0]
  3. Forest Science & Technology Projects [S110708L0505604C]
  4. National Research Foundation of Korea
  5. Ministry of Education, Science and Technology [R31-2008-000-10086-0]
  6. National Research Foundation of Korea [R01-2005-000-11021-0] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Caenorhabditis elegans, a free-living soil nematode, is an ideal model system for studying various physiological problems relevant to human diseases. Despite its short history, C. elegans proteomics is receiving great attention in multiple research areas, including the genome annotation, major signaling pathways (e.g. TGF-beta and insulin/IGF-1 signaling), verification of RNA interference-mediated gene targeting, aging, disease models, as well as peptidomic analysis of neuropeptides involved in behavior and locomotion. For example, a proteome-wide profiling of developmental and aging processes not only provides basic information necessary for constructing a molecular network, but also identifies important target proteins for chemical modulation. Although C. elegans has a simple body system and neural circuitry, it exhibits very complicated functions ranging from feeding to locomotion. Investigation of these functions through proteomic analysis of various C. elegans neuropeptides, some of which are not found in the predicted genome sequence, would open a new field of peptidomics. Given the importance of nematode infection in plants and mammalian pathogenesis pathways, proteomics could be applied to investigate the molecular mechanisms underlying plant- or animal-nematode pathogenesis and to identify novel anti-nematodal drugs. Thus, C. elegans proteomics, in combination of other molecular, biological and genetic techniques, would provide a versatile new tool box for the systematic analysis of gene functions throughout the entire life cycle of this nematode.

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