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PYRUVATE DECARBOXYLASE STRUCTURE-FUNCTION RELATIONSHIPS

PYRUVATE DECARBOXYLASE STRUCTURE-FUNCTION RELATIONSHIPS
丙酮酸脱羧酶结构-功能关系
批准号:
3307677
负责人:
WILLIAM F FUREY
金额:
$9.8万
依托单位国家:
美国
项目类别:
财政年份:
1992
资助国家:
美国
项目状态:
已结题
起止时间:
1992-08-01 至 1996-07-31

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中文摘要
翻译
这项研究的总体目标是大幅扩展我们的 对一类酶的结构-功能关系的认识 在新陈代谢中的重要作用;α-酮酸脱羧酶。 尽管多年的研究和它们在BASIC中的广泛重要性 生物化学,目前还没有一个结构例子可用 对于任何种类的依赖于硫胺素二磷酸(TDP)的酶,以及许多 关于催化机理和结构相关的问题仍然存在 监管。我们的目标是提供有关基本 亚基(单体)和全酶(四聚体,包括TDP和Mg+2 辅因子)结构是研究最广泛的TDP依赖酶 (丙酮酸脱羧酶,PDC)。这将通过确定3D 单晶X-射线衍射法测定全酶复合体的结构 方法:研究方法。有关催化机制和调节的信息将 然后通过比较/对比原生结构和 在存在几种基于机理的抑制剂和/或 调节化合物。具体目标是:(1)确定 全酶PDC的结构使得完整的折叠(链痕迹) 可以获得;(2)完成并细化结构到2.4pha (3)探讨酶和辅因子在体内的相对作用。 催化;(4)确定所有辅因子的数量和位置, 并支持/反驳最近关于共同TDP结合的假设 在所有TDP依赖酶中的位置;(5)鉴定TDP的构象 在底物存在和不存在的情况下;(6)识别和解释 特定氨基酸影响辅因子结合和活性的作用,但是 不参与催化;(7)鉴定参与催化的残留物 底物结合,以及在调节部位的结合;(8)检查 结构在反应途径的不同阶段冻结;(9)至 将结果与相关但功能不同的 酶(转酮醇酶),一旦两个配位组都可用。
英文摘要
The overall objective of this research is to substantially extend our knowledge of structure-function relationships in a class of enzymes of fundamental importance in metabolism; the alpha-keto acid decarboxylases. Despite years of study and their widespread importance in basic biochemistry, at present there isn't a single structural example available for thiamin diphosphate (TDP) dependent enzymes of any sort, and numerous structure related questions remain regarding the catalytic mechanism and regulation. Our goal is to provide detailed information about the basic subunit (monomer) and holoenzyme (tetramer, including TDP and Mg+2 cofactors) structures for the most widely studied TDP dependent enzyme (pyruvate decarboxylase, PDC). This will be achieved by determining the 3D structure of the holoenzyme complex via single crystal x-ray diffraction methods. Information regarding the catalytic mechanism and regulation will then be obtained by comparing/contrasting the native structure with the structure in the presence of several mechanism based inhibitors and/or regulating compounds. The specific aims are: (1) to determine the structure of the holoenzyme PDC such that the complete fold (chain trace) can be obtained; (2) to complete and refine the structure to 2.4alpha resolution; (3) to probe the relative roles of the enzyme and cofactors in catalysis; (4) to determine the number of, and locations for all cofactors, and to support/disprove a recent hypothesis regarding a common TDP binding site in all TDP dependent enzymes; (5) to identify the conformation of TDP in the presence and absence of substrate; (6) to identify and explain the roles of specific amino acids affecting cofactor binding and activity, but not involved in catalysis; (7) to identify the residues involved in substrate binding, and binding at the regulatory site; (8) to examine the structure when "frozen" at various stages in the reaction pathway; (9) to compare and contrast the results with a related, but functionally distinct enzyme (transketolase) once both coordinate sets become available.
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