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关于普拉迪米星BMY - 28864与甘露糖衍生物相互作用的光谱研究。

Spectroscopic studies on the interaction of pradimicin BMY-28864 with mannose derivatives.

作者信息

Fujikawa K, Tsukamoto Y, Oki T, Lee Y C

机构信息

Department of Biology, The Johns Hopkins University, 3400 N. Charles Street, Baltimore, MD 21218, USA.

出版信息

Glycobiology. 1998 Apr;8(4):407-14. doi: 10.1093/glycob/8.4.407.

Abstract

Pradimicin BMY-28864 (Pm) is an antibiotic effective against yeasts and fungi, and is known to bind mannose in the presence of Ca2+. We examined spectroscopically the mode of interactions among Pm, Ca2+, and glycosides of mannose and mannose oligosaccharides (Manalpha1-OMe, Manalpha1-2Manalpha1-OMe, Manalpha1-3Manalpha1-OMe, Manalpha1-4Manalpha1-OMe, Manalpha1-6Manalpha1-OMe, Manalpha1-6(Manalpha1-3)Manalpha1-OMe, and Man9GlcNAc2-Asn, a high mannose type N-linked oligosaccharide). All the mannosides interacted with Pm in the presence of Ca2+ and caused absorbance changes. The absorbance changes occurred nonlinearly with respect to the carbohydrate concentration and do not follow a simple binding isotherm equation, suggesting a unique multistep interaction mode. The concentrations that induced half the maximum absorbance change were approximately 10 mM for the mono- and di-mannosides and around 1.5 mM for the trimannoside and Man9GlcNAc2-Asn. Methyl alpha-D-glucopyranoside, methyl alpha-D-galactopyranoside, lactose, and myo-inositol did not affect the absorbance of Pm up to 50 mM. Ca2+ alone also influenced the absorbance of Pm. The absorbance between 200 and 700 nm decreased hypochromically when Ca2+ was added. The concentration that gave half the maximum absorbance decrease caused by Ca2+was around 15 microM. Our results suggest that two Pm molecules bind one C a2+, and each Pm binds two mannosyl residues.

摘要

普拉地米星BMY - 28864(Pm)是一种对酵母和真菌有效的抗生素,已知在Ca2 +存在的情况下能与甘露糖结合。我们通过光谱法研究了Pm、Ca2 +以及甘露糖和甘露糖寡糖的糖苷(Manα1 - OMe、Manα1 - 2Manα1 - OMe、Manα1 - 3Manα1 - OMe、Manα1 - 4Manα1 - OMe、Manα1 - 6Manα1 - OMe、Manα1 - 6(Manα1 - 3)Manα1 - OMe以及Man9GlcNAc2 - Asn,一种高甘露糖型N - 连接寡糖)之间的相互作用模式。所有的甘露糖苷在Ca2 +存在的情况下都与Pm相互作用并引起吸光度变化。吸光度变化相对于碳水化合物浓度呈非线性,且不遵循简单的结合等温线方程,这表明存在一种独特的多步相互作用模式。诱导最大吸光度变化一半的浓度,对于单甘露糖苷和二甘露糖苷约为10 mM,对于三甘露糖苷和Man9GlcNAc2 - Asn约为1.5 mM。α - D - 吡喃葡萄糖苷甲酯、α - D - 吡喃半乳糖苷甲酯、乳糖和肌醇在浓度高达50 mM时不影响Pm的吸光度。单独的Ca2 +也会影响Pm的吸光度。当加入Ca2 +时,200至700 nm之间的吸光度会发生减色变化。导致由Ca2 +引起的最大吸光度降低一半的浓度约为15 μM。我们的结果表明,两个Pm分子结合一个Ca2 +,且每个Pm结合两个甘露糖基残基。

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