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EUKARYOTIC PHOSPHOFRUCTOKINASE: STRUCTURE/FUNCTION

EUKARYOTIC PHOSPHOFRUCTOKINASE: STRUCTURE/FUNCTION
真核磷酸果糖激酶:结构/功能
批准号:
6931097
负责人:
TERESA RUIZ
金额:
$24.32万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-08-01 至 2009-07-31

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中文摘要
翻译
描述(由申请人提供):糖酵解和呼吸是活细胞中能量产生的主要途径。虽然多细胞生物最喜欢呼吸,但肌肉和癌细胞的行为更像单细胞生物,使用糖酵解作为其主要能量途径。糖酵解酶,特别是磷酸果糖激酶(Pfk-1)的缺陷和功能障碍导致严重的临床综合征和疾病(例如,溶血性贫血、Tauri病、非胰岛素依赖型糖尿病)。Pfk-1在糖酵解途径的调节中起关键作用,其活性受大量变构效应物控制(真核生物中约20个,细菌中2个)。由这种酶催化的反应代表了糖酵解特异性的第一个不可逆步骤。在过去的二十年里,人们一直致力于了解磷酸果糖激酶的催化和调节机制。尽管关于细菌酶的信息代表了对糖酵解途径这一步骤的理解的巨大进步,但我们对这种酶的知识对于高等生物仍然非常有限。真核生物Pfk-1不仅在大小和寡聚化状态上不同,而且它们还表现出浓度依赖性缔合-解离行为和复杂得多的调控机制。此外,真核酶的结构仍然未知,在大多数情况下,由于缺乏用于X射线分析的高质量晶体。本研究的目的是分析真核生物Pfk-1的结构。cerevisiae,S. pombe)中的不同组合的效应器和基板的存在下,通过新的技术的低温电子显微镜的单粒子和图像处理,并通过拟合X射线模型的电子显微镜结构。这些研究将为真核生物中磷酸果糖激酶的催化和调控机制的结构/功能关系提供重要的新信息。
英文摘要
DESCRIPTION (provided by applicant): Glycolysis and respiration are the main pathways for energy production in living cells. Although respiration is mostly favored by multicellular organisms, muscle and cancer cells behave more like unicellular organisms using glycolysis as their main energy pathway. Deficiencies and dysfunction of glycolytic enzymes, in particular phosphofructokinase (Pfk-1), results in severe clinical syndromes and diseases (e.g., Hemolytic anemia, Tauri's disease, non-insulin dependent diabetes mellitus). Pfk-1 plays a key role in the regulation of the glycolytic pathway and its activity is controlled by a large number of allosteric effectors (~20 in eukaryotes vs 2 in bacteria). The reaction catalyzed by this enzyme represents the first irreversible step specific for glycolysis. During the past twenty years, large efforts have been devoted to comprehend the mechanisms of catalysis and regulation of phosphofructokinase. Even though the information about the bacterial enzyme represents a great advancement in understanding this step of the glycolytic pathway, our knowledge of this enzyme is still quite limited for higher organisms. Eukaryotic Pfk-1's not only differ in size and oligomerization state, but they also exhibit a concentration dependent association-dissociation behavior and a far more complex regulatory mechanism. Moreover, the structures of the eukaryotic enzymes are still unknown, in most cases due to the lack of good quality crystals for x-ray analysis. The aim of this research is to analyze the structure of Pfk-1 from eukaryotic organisms (S. cerevisiae, S. pombe) in the presence of different combinations of effectors and substrates by novel techniques of cryo-electron microscopy of single particles and image processing, and by fitting x-ray models to the electron microscopy structures. These studies will provide significant new information regarding the structure/function relationship of the mechanism of catalysis and regulation of phosphofructokinase in eukaryotic organisms.
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EUKARYOTIC PHOSPHOFRUCTOKINASE: STRUCTURE/FUNCTION
STRUCTURE OF ORAL BACTERIAL ADHESINS
STRUCTURE OF ORAL BACTERIAL ADHESINS
STRUCTURE OF ORAL BACTERIAL ADHESINS
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