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Tryptophan Metabolism in Mosquitoes

Tryptophan Metabolism in Mosquitoes
蚊子的色氨酸代谢
批准号:
7231994
负责人:
JIANYONG LI
金额:
$25.06万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-06-01 至 2009-05-31

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中文摘要
翻译
描述(由申请方提供):蚊子传播的疾病,如疟疾;继续对人类健康产生破坏性影响。近年来,西尼罗河病毒已在世界多个地区出现,其在美国的迅速传播表明其可能在该国永久定居。为了防止蚊媒疾病的传播,迫切需要开发新的蚊子控制方法,并且彻底了解蚊子媒介的生物化学和生理学对于开发新的和创新的媒介控制策略至关重要。我们对埃及伊蚊色氨酸代谢的研究揭示了蚊子色氨酸代谢的一些独特方面。犬尿氨酸、3-羟基犬尿氨酸(3-HK)、犬尿烯酸(KA)和黄尿酸(XA)是色氨酸催化剂中的关键组分,并且由犬尿氨酸氨基转移酶(KAT)和/或3-羟基犬尿氨酸氨基转移酶(HKT)介导的犬尿氨酸至KA和3-HK至XA途径在蚊子发育期间发挥重要的生理作用。我们的数据表明,KA是维持蚊子中枢神经系统正常生理功能所必需的,3-HK到XA途径是蚊子解毒3-HK的机制,KAT和HKT的分子调节提供了一种机制,以平衡色氨酸catenin在蚊子体内的各个分支途径。蚊子的KAT和HKT与哺乳动物的KAT和HKT具有很高的序列同源性,但它们的底物特异性和动力学性质似乎与类似的哺乳动物酶有很大的不同。根据我们的研究结果,我们假设蚊子KAT和HKT都经历了实质性的功能进化,以满足其在蚊子发育过程中的特定代谢要求。本研究的目的是(1)明确KAT和HKT在蚊子中的作用,(2)了解这些蚊子转氨酶与其他物种对应酶的功能进化,(3)阐明这两种蚊子转氨酶催化功能的结构基础。埃及KAT和HKT。拟议的研究将有助于我们对蚊子色氨酸代谢的全面了解。由于KAT和HKT在蚊子发育过程中至关重要,它们可能是未来蚊子控制的潜在目标。
英文摘要
DESCRIPTION (provided by the applicant): Mosquito transmitted diseases, such as malaria; continue to have a devastating impact on human health. In recent years, the West Nile virus has emerged in several regions around the world and its rapid spread in the United States suggests its potential permanent establishment in the country. To prevent the transmission of mosquito-borne diseases, there is an urgent need for new mosquito control methods to be developed and a thorough understanding of the biochemistry and physiology of the mosquito vectors is imperative to the development of new and innovative vector control strategies. Our studies dealing with tryptophan metabolism in Aedes aegypti revealed some unique aspects of tryptophan catabolism in mosquitoes. Kynurenine, 3-hydroxykynurenine (3-HK), kynurenic acid (KA) and xanthurenic acid (XA) are the key components in the tryptophan catabolism, and kynurenine to KA and 3-HK to XA pathways, mediated by kynurenine aminotransferase (KAT) and/or 3-hydroxykynurenine transaminase (HKT), play important physiological roles in mosquitoes during development. Our data suggest that KA is essential for maintaining the normal physiological function of mosquito central nervous system, that the 3-HK to XA pathway is the mechanism by which mosquitoes detoxify 3-HK, and that the molecular regulation of KAT and HKT provides a mechanism for balancing the individual branch pathways of tryptophan catabolism in the mosquitoes. Both mosquito KAT and HKT share high sequence identity with their mammalian counterparts, but their substrate specificity and kinetic properties seem quite different from those of similar mammalian enzymes. Based on our results, we hypothesize that both mosquito KAT and HKT have undergone substantial functional evolution to meet their specific metabolic requirements in mosquitoes during development. The objectives of this proposal are (1) to clearly define the roles both KAT and HKT play in mosquitoes, (2) to understand the functional evolution of these mosquito transaminases in comparison with counterpart enzymes from other species, and (3) to elucidate the structural basis of catalytic functions for both A. aegypti KAT and HKT. The proposed studies will contribute to our overall knowledge of tryptophan metabolism in mosquitoes. Because both KAT and HKT are critical during mosquito development, they could be potential targets for future mosquito controls.
期刊论文(15)
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会议论文
Crystal structure of the Anopheles gambiae 3-hydroxykynurenine transaminase.
冈比亚按蚊 3-羟基犬尿氨酸转氨酶的晶体结构。
DOI: 10.1073/pnas.0510233103
发表时间: 2006
期刊: Proceedings of the National Academy of Sciences of the United States of America
影响因子: 11.1
作者: [Rossi,Franca, Garavaglia,Silvia, Giovenzana,GiovanniBattista, Arcà,Bruno, Li,Jianyong, Rizzi,Menico]
通讯作者: Rizzi,Menico
Kynurenic Acid Synthesis in Mouse Brain
Tryptophan Metabolism in Mosquitoes
TRYPTOPHAN METABOLISM IN MOSQUITOES
Tryptophan Metabolism in Mosquitoes
国内基金
海外基金
一碳代谢(One carbon metabolism)介导上调的 PD1/PDL1 驱动 肿瘤免疫逃逸
  • 批准号:
    2024JJ9491
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    彭罗根
  • 依托单位: