首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Anopheles gambiae pilot gene discovery project: Identification of mosquito innate immunity genes from expressed sequence tags generated from immune-competent cell lines
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Anopheles gambiae pilot gene discovery project: Identification of mosquito innate immunity genes from expressed sequence tags generated from immune-competent cell lines

机译:冈比亚按蚊先导基因发现项目:从具有免疫能力的细胞系产生的表达序列标签中识别蚊子固有免疫基因

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摘要

Together with AIDS and tuberculosis, malaria is at the top of the list of devastating infectious diseases. However, molecular genetic studies of its major vector, Anopheles gambiae, are still quite limited. We have conducted a pilot gene discovery project to accelerate progress in the molecular analysis of vector biology. with emphasis on the mosquito's antimalarial immune defense. A total of 5,92S expressed sequence tags were determined from normalized cDNA libraries derived from immune-responsive he- mocyte-like cell lines. The 3,242 expressed sequence tag-containing cDNA clones were grouped into 2.380 clone clusters, potentially representing unique genes. Of these, 1,118 showed similarities to known genes from other organisms, but only 27 were identical to previously known mosquito genes. We identified 38 candidate genes, based on sequence similarity, that may be implicated in immune reactions including antimalarial defense; 19 of these were shown experimentally to be inducible by bacterial challenge. lending support to their proposed involvement in mosquito immunity.
机译:与艾滋病和结核病一起,疟疾在毁灭性传染病中名列前茅。然而,对其主要载体冈比亚按蚊的分子遗传学研究仍然十分有限。我们已经进行了一项试验性基因发现项目,以加快载体生物学分子分析的进展。重点介绍蚊子的抗疟疾免疫防御能力。从源自免疫应答血细胞样细胞系的归一化cDNA文库中确定了总共5,92S表达的序列标签。将包含3,242个表达序列标签的cDNA克隆分组为2.380个克隆簇,可能代表独特的基因。其中,1,118个与其他生物的已知基因相似,但只有27个与先前已知的蚊子基因相同。基于序列相似性,我们鉴定了38个候选基因,这些基因可能与包括抗疟疾防御在内的免疫反应有关。实验中显示其中19种可通过细菌攻击诱导。支持他们提议参与蚊子免疫。

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