Department of Bioscience and Biotechnology, BMIC, Konkuk University, Gwangjin-Ku, Seoul, Korea.
Proteomics. 2010 Feb;10(4):846-57. doi: 10.1002/pmic.200900542.
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 antinematodal 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.
秀丽隐杆线虫,一种自由生活的土壤线虫,是研究与人类疾病相关的各种生理问题的理想模式系统。尽管它的历史很短,但秀丽隐杆线虫蛋白质组学在多个研究领域受到了极大的关注,包括基因组注释、主要信号通路(如 TGF-β和胰岛素/IGF-1 信号通路)、RNA 干扰介导的基因靶向验证、衰老、疾病模型以及参与行为和运动的神经肽的肽组学分析。例如,对发育和衰老过程的蛋白质组全谱分析不仅提供了构建分子网络所需的基本信息,还确定了用于化学调节的重要靶蛋白。尽管秀丽隐杆线虫的身体系统和神经回路简单,但它表现出非常复杂的功能,从进食到运动。通过对各种秀丽隐杆线虫神经肽的蛋白质组学分析来研究这些功能,其中一些神经肽在预测的基因组序列中没有发现,这将开辟一个新的肽组学领域。鉴于线虫感染在植物和哺乳动物发病途径中的重要性,蛋白质组学可用于研究植物或动物-线虫发病的分子机制,并鉴定新型抗线虫药物。因此,秀丽隐杆线虫蛋白质组学与其他分子、生物和遗传技术相结合,将为系统分析这种线虫整个生命周期中的基因功能提供一个多功能的新工具包。