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Structures, Mechanisms, and Biogenesis of Amine Oxidases

Structures, Mechanisms, and Biogenesis of Amine Oxidases
胺氧化酶的结构、机制和生物发生
批准号:
7196174
负责人:
DAVID M. DOOLEY
金额:
$33.5万
依托单位国家:
美国
项目类别:
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-07-01 至 2010-08-31

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中文摘要
翻译
描述(由申请人提供):含铜胺氧化酶和赖氨酰氧化酶在自然界中广泛分布,并参与生物伯胺的代谢、结缔组织的成熟和许多其他生理过程。人血管粘附蛋白(hVAP-1)是一种胺氧化酶,其氧化酶活性直接参与细胞粘附。在哺乳动物中已经识别出多种“赖氨酰氧化酶样”(LOXL)蛋白,并且这些蛋白可以替代赖氨酰氧化酶,但也可以在多种细胞过程中发挥作用,包括分化、增殖和运动。最近发现的生物胺和几种药物化合物可能被胺氧化酶代谢或抑制胺氧化酶。一个多学科的方法,强调光谱学,动力学,定点突变,晶体学提出了阐明化学和生物学原理,定义关键的结构-功能关系的胺氧化酶和赖氨酰氧化酶。一个主要目标是确定关键胺氧化酶,包括赖氨酰氧化酶,和胺氧化酶和赖氨酰氧化酶复合物与抑制剂和底物类似物的结构。其他主要目标是定义活性位点结构,催化机制,和底物特异性和选择性抑制胺氧化酶,包括hVAP-1和LOXL的分子基础。还提出了旨在解决TPQ和LTQ生物成因中突出的机制问题的实验。此外,一个相关的酶,半乳糖氧化酶的结构和生物发生,将被检查。结合结构和机械数据将允许详细了解这些重要酶的结构和功能。
英文摘要
DESCRIPTION (provided by applicant): Copper-containing amine oxidases and lysyl oxidases are widely distributed in nature and are involved in the metabolism of biogenic primary amines, in the maturation of connective tissue, and numerous other physiological processes. The human vascular adhesion protein (hVAP-1) is an amine oxidase, and its oxidase activity is directly involved in cellular adhesion. Multiple "lysyl oxidase like" (LOXL) proteins have been recognized in mammals, and these proteins may substitute for lysyl oxidase, but may also have roles in multiple cellular processes, including differentiation, proliferation, and motility. It appears that recently recognized biogenic amines and several pharmaceutical compounds may be metabolized by or inhibit amine oxidases. A multidisciplinary approach emphasizing spectroscopy, kinetics, site directed mutagenesis, and crystallography is proposed to elucidate the chemical and biological principles that define key structure- function relationships in amine oxidases and lysyl oxidases. A major goal is to determine the structures of key amine oxidases, including a lysyl oxidase, and of amine oxidase and lysyl oxidase complexes with inhibitors and substrate analogues. Other major goals are to define the active-site structures, catalytic mechanisms, and the molecular bases for substrate specificity and selective inhibition in amine oxidases, including hVAP-1 and LOXLs. Experiments designed to resolve outstanding mechanistic questions in the biogenesis of TPQ and LTQ are also proposed. In addition, the structure and biogenesis of a related enzyme, galactose oxidase, will be examined. Combining structural and mechanistic data will permit a detailed understanding of the structure and function of these important enzymes to be developed.
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Structures, Mechanisms, and Biogenesis of Amine Oxidases
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