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高比活度UDP-[6-³H]半乳糖、UDP-N-[6-³H]乙酰半乳糖胺及其相应单糖的合成。

The synthesis of high-specific-activity UDP-[6-3H]galactose, UDP-N-[6-3H]acetylgalactosamine, and their corresponding monosaccharides.

作者信息

Hayes B K, Varki A

机构信息

Department of Medicine, UCSD Cancer Center, San Diego, La Jolla 92093.

出版信息

Anal Biochem. 1992 Feb 14;201(1):140-5. doi: 10.1016/0003-2697(92)90186-b.

DOI:10.1016/0003-2697(92)90186-b
PMID:1621952
Abstract

Tritiated uridine-5'-diphosphogalactose (UDP-[3H]Gal) has been widely used to study oligosaccharide biosynthesis and structure. It can be synthesized either chemically or enzymatically using galactose oxidase to oxidize the hydroxyl moiety at C-6 to an aldehyde (6-aldo-UDP-Gal), which is then reduced back to the alcohol with tritiated sodium borohydride. Although the enzymatic approach is simple and efficient, there are several problems associated with it. First, incomplete oxidation to the aldehyde reduces the final specific activity. Second, if the galactose oxidase is not removed from the 6-aldo-UDP-Gal prior to reduction, the resulting UDP-[6-3H]Gal can be reoxidized to 6-aldo-UDP-[6-3H]Gal. We present evidence for the occurrence of this compound in one commercially obtained preparation of UDP-[6-3H]Gal. Finally, if an excess of 6-aldo-UDP-Gal is used for good yield, it is necessary to quench the reduction with nonradioactive borohydride, again reducing the final specific activity. We have devised a rapid, inexpensive, and efficient synthesis of UDP-[6-3H]Gal that circumvents all of these problems. Galactose oxidase is used to produce 6-aldo-UDP-Gal and the completeness of this reaction is confirmed on polyethyleneimine (PEI) cellulose TLC plates. The 6-aldo-UDP-Gal is purified on silica gel 60 TLC plates. This purified compound is then reduced with tritiated sodium borohydride, with the aldehyde present in excess. Unreacted 6-aldo-UDP-Gal is then purified away from the product UDP-[6-3H]Gal by chromatography on PEI cellulose. Radiochemically pure UDP-[6-3H]Gal with a specific activity of 10 Ci/mmol was obtained using the above scheme.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

氚代尿苷-5'-二磷酸半乳糖(UDP-[³H]Gal)已被广泛用于研究寡糖的生物合成和结构。它可以通过化学方法或酶法合成,即使用半乳糖氧化酶将C-6位的羟基部分氧化为醛(6-醛基-UDP-Gal),然后用氚代硼氢化钠将其还原回醇。虽然酶法简单高效,但也存在一些问题。首先,不完全氧化为醛会降低最终的比活性。其次,如果在还原之前没有从6-醛基-UDP-Gal中除去半乳糖氧化酶,生成的UDP-[6-³H]Gal可能会被重新氧化为6-醛基-UDP-[6-³H]Gal。我们提供了在一种市售的UDP-[6-³H]Gal制剂中存在这种化合物的证据。最后,如果使用过量的6-醛基-UDP-Gal以获得高产率,则需要用非放射性硼氢化钠淬灭还原反应,这又会降低最终的比活性。我们设计了一种快速、廉价且高效的UDP-[6-³H]Gal合成方法,该方法避免了所有这些问题。使用半乳糖氧化酶生成6-醛基-UDP-Gal,并在聚乙烯亚胺(PEI)纤维素TLC板上确认该反应的完整性。6-醛基-UDP-Gal在硅胶60 TLC板上纯化。然后用氚代硼氢化钠还原这种纯化的化合物,醛过量存在。然后通过在PEI纤维素上的色谱法将未反应的6-醛基-UDP-Gal与产物UDP-[6-³H]Gal分离。使用上述方案获得了比活性为10 Ci/mmol的放射化学纯UDP-[6-³H]Gal。(摘要截断于250字)

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