ENTAMEBA HISTOLYTICA ADH2--A NEW TARGET FOR ANTI-AMEBIC THERAPY
ENTAMEBA HISTOLYTICA ADH2--A NEW TARGET FOR ANTI-AMEBIC THERAPY
批准号:
6235345
负责人:
SAMUEL L. STANLEY
金额:
$9.83万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-05-01 至 1998-04-30
关键词:
Entamoeba histolytica Giardia SCID mouse X ray crystallography alcohol dehydrogenase aldehyde dehydrogenases antiprotozoal agents chemical kinetics computer simulation drug design /synthesis /production enzyme activity enzyme inhibitors enzyme mechanism gene expression microorganism disease chemotherapy molecular cloning nonhuman therapy evaluation nucleic acid sequence protein structure function
中文摘要
溶组织内阿米巴是阿米巴痢疾和阿米巴肝的病原体
脓肿是寄生虫病的第三大死因
国际吧 入侵E.溶组织菌感染用药物治疗
甲硝唑,但担心甲硝唑的诱变作用,
以及在许多生物体中甲硝唑耐药性的发展,
已经推动了对治疗阿米巴病的替代药物的研究。 E
histolytica缺乏线粒体,并从发酵中获得能量,
葡萄糖转化为CO2、乙酸盐和乙醇。 这种糖酵解途径是一种
抗阿米巴化疗的有吸引力的目标,因为它是必不可少的,
寄生虫的存在,它似乎利用几种酶缺乏从
大多数其他真核生物。 最近,我们分离出了天然蛋白质,
并克隆了编码该途径中关键酶的基因,
NAD依赖性醇脱氢酶/乙酰辅酶A还原酶
乙酰辅酶A转化为乙醛和乙醛转化为乙醇。
这种酶,我们命名为E。溶组织醇脱氢酶
2(EhADH 2),具有独特的结构,既含有乙醇脱氢酶
(ADH)和醛脱氢酶(ALDH)结构域,并且没有任何
已知真核生物酶中的同源物。 的关键位置,
阿米巴糖酵解途径中的EhADH 2酶及其基础
与人类ADH和ALDH酶的差异,似乎使其成为理想的
作为化疗靶点。 该提案的目的是确定具体的
EhADH 2酶的抑制剂。 我们将通过研究
EhADH 2酶的结构和功能在分子水平上学习
关于这类新的酶,并提供必要的数据库,
EhADH 2分子抑制剂的合理设计。 在同一
同时,我们将开发一种分析系统,使我们能够迅速,
简单且廉价地筛选具有EhADH 2抑制活性化合物。
通过这种筛选和分子模拟鉴定的抑制剂,
测定其对E.溶组织菌生长和毒力。
能够选择性抑制EhADH 2酶的化合物可以
代表了一类新的有效对抗某些厌氧微生物的药物,
原生动物和一些厌氧细菌。
英文摘要
Entamoeba histolytica, the agent of amebic dysentery and amebic liver
abscess, is the third leading cause of death from parasitic diseases
worldwide. Invasive E. histolytica infection is treated with the drug
metronidazole, but concerns about the mutagenic effects of metronidazole,
and the development of metronidazole resistance in a number of organisms,
has fueled a search for alternative agents to treat amebiasis. E
histolytica lack mitochondria, and obtain energy from the fermentation of
glucose to CO2, acetate and ethanol. This glycolytic pathway is an
attractive target for anti-amebic chemotherapy because it is essential for
parasite existence, and it appears to utilize several enzymes lacking from
most other eukaryotic organisms. Recently, we isolated the native protein,
and cloned the gene encoding a key enzyme in this pathway, a bifunctional
NAD-dependent alcohol dehydrogenase/acetyl-coA reductase responsible for
the conversion of acetyl-coA to acetaldehyde and acetaldehyde to ethanol.
This enzyme, which we have designated E. histolytica alcohol dehydrogenase
2 (EhADH2), has a unique structure containing both alcohol dehydrogenase
(ADH) and aldehyde dehydrogenase (ALDH) domains, and does not have any
homologues among known eukaryotic enzymes. The critical position of the
EhADH2 enzyme in the amebic glycolytic pathway, and its fundamental
differences from human ADH and ALDH enzymes, appear to make it an ideal
target for chemotherapy. The goal of this proposal is to identify specific
inhibitors of the EhADH2 enzyme. We will accomplish this by studying the
structure and function of the EhADH2 enzyme at the molecular level to learn
about this new class of enzymes, and to provide the data base necessary for
the rational design of inhibitors of the EhADH2 molecule. At the same
time, we will develop an assay system which will allow us to rapidly,
simply, and inexpensively screen compounds for EhADH2 inhibitory activity.
Inhibitors identified by this screen, and by molecular modeling, will then
be assayed for their effects on E. histolytica growth and virulence.
Compounds capable of selectively inhibiting the EhADH2 enzyme could
represent a new class of agents effective against certain anaerobic
protozoa and some anaerobic bacteria.
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Structure-Function of Entamoeba Alcohol Dehydrogenase 2
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ENTAMEBA HISTOLYTICA ADH2--A NEW TARGET FOR ANTI-AMEBIC THERAPY
-
批准号:6099926
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