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首页> 外文期刊>Biochemistry >Investigations of the active site of Saccharomyces cerevisiae dolichyl-phosphate-mannose synthase using fluorescent labeled dolichyl-phosphate derivatives.
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Investigations of the active site of Saccharomyces cerevisiae dolichyl-phosphate-mannose synthase using fluorescent labeled dolichyl-phosphate derivatives.

机译:使用荧光标记的Dolichyl磷酸衍生物对酿酒酵母酿酒酵母钙磷酸甘露糖胺合成酶的活性位点的研究。

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Dolichol-phosphate mannose (Dol-P-Man) is a key mannosyl donor for the biosynthesis of N-linked oligosaccharides as well as for O-linked oligosaccharides on yeast glycoproteins, and for the synthesis of the glycosyl-phosphatidylinositol anchor found on many cell surface glycoproteins. It is synthesized by Dol-P-Man synthase which is the only glycosyltransferase in the dolichol pathway that has been expressed as an active protein, solubilized and purified in large enough quantities for structural investigations. Earlier studies showed that the enzyme is closely associated with membranes of endoplasmic reticulum with unique lipid requirements for its maximal activity. This potential target of antibiotic therapy is now being investigated at the molecular level to establish information about the structure of the enzyme as well as determine the nature and properties of the enzyme-phospholipid interactions. In this paper, we have determined the activities of the fluorescent labeled dolichyl-phosphate derivatives as well as the intramolecular distances between amino acid residues near the active site and/or the fluorophores of the substrate derivatives using fluorescence energy resonance transfer. These results also show that the conserved consensus sequence is not required by Dol-P-Man synthase neither for the recognition of Dol-P nor for the catalytic activity.
机译:Dolichol-磷酸盐甘露糖(DOL-P人)是用于N-连接的低聚糖的生物合成的关键甘露糖基供体,以及酵母糖蛋白上的O型寡糖,以及用于在许多细胞上发现的糖基 - 磷脂酰肌醇锚的合成表面糖蛋白。它由DOL-PAM合成酶合成,所述DOL-P-MAN合酶是唯一一种含量的糖基转移酶,其已被表达为活性蛋白,以足够大量的结构调查中溶解和纯化。早期的研究表明,酶与内质网的膜密切相关,其具有最大活性的独特脂质要求。现在在分子水平上研究了这种抗生素治疗的潜在靶标,以建立有关酶结构的信息,并确定酶 - 磷脂相互作用的性质和性质。在本文中,我们已经确定了荧光标记的氯化物衍生物的活性以及使用荧光能量共振转移的活性位点附近的氨基酸残基与/或底物衍生物的荧光团之间的分子内距离。这些结果还表明,DOL-P-MAN合酶既不用于识别DOL-P也不需要保守的共有序列,也不需要催化活性。

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