首页> 外文期刊>EMBO Journal >Specificity of GlcNAc-PI de-N-acetylase of GPI biosynthesis and synthesis of parasite-specific suicide substrate inhibitors.
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Specificity of GlcNAc-PI de-N-acetylase of GPI biosynthesis and synthesis of parasite-specific suicide substrate inhibitors.

机译:特异性GlcNAc-PI de-N-acetylase谷歌价格指数parasite-specific的生物合成和合成自杀衬底抑制剂。

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摘要

The substrate specificities of Trypanosoma brucei and human (HeLa) GlcNAc-PI de-N-acetylases were determined using 24 substrate analogues. The results show the following. (i) The de-N-acetylases show little specificity for the lipid moiety of GlcNAc-PI. (ii) The 3'-OH group of the GlcNAc residue is essential for substrate recognition whereas the 6'-OH group is dispensable and the 4'-OH, while not required for recognition, cannot be epimerized or substituted. (iii) The parasite enzyme can act on analogues containing betaGlcNAc or aromatic N-acyl groups, whereas the human enzyme cannot. (iv) Three GlcNR-PI analogues are de-N-acetylase inhibitors, one of which is a suicide inhibitor. (v) The suicide inhibitor most likely forms a carbamate or thiocarbamate ester to an active site hydroxy-amino acid or Cys or residue such that inhibition is reversed by certain nucleophiles. These and previous results were used to design two potent (IC50 = 8 nM) parasite-specific suicide substrate inhibitors. These are potential lead compounds for the development of anti-protozoan parasite drugs.
机译:锥虫属的底物特异性brucei和人类(海拉)GlcNAc-PI de-N-acetylases决定使用24底物类似物。结果显示如下。de-N-acetylases显示小的特异性脂质GlcNAc-PI的一部分。GlcNAc残渣对衬底至关重要识别而6 ' -哦组可有可无的和4 ' -哦,而不是必需的识别,不能epimerized或替换。(3)寄生虫酶可以作用于类似物包含betaGlcNAc或芳香n -组,而人类的酶不能。GlcNR-PI de-N-acetylase抑制剂类似物,这是一个自杀抑制剂之一。自杀抑制剂最有可能形成氨基甲酸酯或硫代氨基甲酸酯酯活性部位hydroxy-amino酸或半胱氨酸或残留物抑制由某些逆转的亲核试剂。这些和以前的结果被用来设计两个强有力的parasite-specific (IC50 = 8海里)自杀衬底抑制剂。铅化合物的发展anti-protozoan寄生虫的药物。

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