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A proteomic analysis of salivary glands of female Anopheles gambiae mosquito

机译:雌性冈比亚按蚊蚊唾液腺的蛋白质组学分析

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摘要

Understanding the development of the malaria parasite within the mosquito vector at the molecular level should provide novel targets for interrupting parasitic life cycle and subsequent transmission. Availability of the complete genomic sequence of the major African malaria vector, Anopheles gambiae, allows discovery of such targets through experimental as well as computational methods. In the female mosquito, the salivary gland tissue plays an important role in the maturation of the infective form of the malaria parasite. Therefore, we carried out a proteomic analysis of salivary glands from female An. gambiae mosquitoes. Salivary gland extracts were digested with trypsin using two complementary approaches and analyzed by LC-MS/MS. This led to identification of 69 unique proteins, 57 of which were novel. We carried out a functional annotation of all proteins identified in this study through a detailed bioinformatics analysis. Even though a number of cDNA and Edman degradation-based approaches to catalog transcripts and proteins from salivary glands of mosquitoes have been published previously, this is the first report describing the application of MS for characterization of the salivary gland proteome. Our approach should prove valuable for characterizing proteomes of parasites and vectors with sequenced genomes as well as those whose genomes are yet to be fully sequenced.
机译:在分子水平上了解蚊媒中疟原虫的发展应该为中断寄生生命周期和随后的传播提供新的目标。主要的非洲疟疾载体冈比亚按蚊的完整基因组序列的可获得性允许通过实验和计算方法发现此类靶标。在雌性蚊子中,唾液腺组织在疟原虫感染形式的成熟中起着重要作用。因此,我们对雌性An的唾液腺进行了蛋白质组学分析。冈比亚的蚊子。唾液腺提取物使用两种互补方法用胰蛋白酶消化,并通过LC-MS / MS分析。这导致鉴定出69种独特的蛋白质,其中57种是新颖的。通过详细的生物信息学分析,我们对本研究中鉴定出的所有蛋白质进行了功能注释。尽管以前已经发布了许多基于cDNA和Edman降解的方法来对蚊唾液腺的转录物和蛋白质进行分类,但这是第一份描述MS在唾液腺蛋白质组表征中的应用的报告。我们的方法应该被证明对表征具有测序基因组以及其基因组尚未完全测序的寄生虫和载体的蛋白质组非常有价值。

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