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美拉德反应中由己糖和戊糖生成赖氨酸-精氨酸交联键的途径:解析戊糖苷前体的结构

Formation pathways for lysine-arginine cross-links derived from hexoses and pentoses by Maillard processes: unraveling the structure of a pentosidine precursor.

作者信息

Biemel K M, Reihl O, Conrad J, Lederer M O

机构信息

Institut für Lebensmittelchemie (170), Universität Hohenheim, Garbenstrasse 28, D-70593 Stuttgart, Germany.

出版信息

J Biol Chem. 2001 Jun 29;276(26):23405-12. doi: 10.1074/jbc.M102035200. Epub 2001 Mar 28.

Abstract

Covalently cross-linked proteins are among the major modifications caused by the advanced Maillard reaction. So far, the chemical nature of these aggregates and their formation pathways are largely unknown. Synthesis and unequivocal structural characterization are reported for the lysine-arginine cross-links N(6)-(2-([(4S)-4-ammonio-5-oxido-5-oxopentyl]amino)-5-[(2S,3R)-2,3,4- trihydroxybutyl]-3,5-dihydro-4H-imidazol-4-ylidene)-l-lysinate (DOGDIC 12), N(6)-(2-([(4S)-4-ammonio-5-oxido-5-oxopentyl]amino)-5-[(2S)-2,3-dihydroxypropyl]-3,5-dihydro-4H-imidazol-4-ylidene)-l-lysinate (DOPDIC 13), and 6-((6S)-2-([(4S)-4-ammonio-5-oxido-5-oxopentyl] amino)-6-hydroxy-5,6,7,7a-tetrahydro-4H-imidazo[4,5-b] pyridin-4-yl)-l-norleucinate (pentosinane 10). For these compounds, as well as for glucosepane 9 and pentosidine 11, the formation pathways could be established by starting from native carbohydrates, Amadori products, and 3-deoxyosones, respectively. Pentosinane 10 was unequivocally proven to be an important precursor of pentosidine 11, which is a well established fluorescent indicator for advanced glycation processes in vivo. The Amadori products are shown to be the pivots in the formation of the various cross-links 9-13. The bicyclic structures 9-11 are directly derived from aminoketoses, whereas 12 and 13 stem from reaction with the 3-deoxyosones. All products 9-13 were identified and quantified from incubations of bovine serum albumin with the respective 3-deoxyosone or carbohydrate. From these results it seems fully justified to expect both glucosepane 9 and DOGDIC 12 to constitute important in vivo cross-links.

摘要

共价交联蛋白是晚期美拉德反应引起的主要修饰产物之一。到目前为止,这些聚集体的化学性质及其形成途径在很大程度上尚不清楚。本文报道了赖氨酸 - 精氨酸交联物N(6)-(2-([(4S)-4-氨甲酰基-5-氧化-5-氧代戊基]氨基)-5-[(2S,3R)-2,3,4-三羟基丁基]-3,5-二氢-4H-咪唑-4-亚基)-L-赖氨酸盐(DOGDIC 12)、N(6)-(2-([(4S)-4-氨甲酰基-5-氧化-5-氧代戊基]氨基)-5-[(2S)-2,3-二羟基丙基]-3,5-二氢-4H-咪唑-4-亚基)-L-赖氨酸盐(DOPDIC 13)和6-((6S)-2-([(4S)-4-氨甲酰基-5-氧化-5-氧代戊基]氨基)-6-羟基-5,6,7,7a-四氢-4H-咪唑并[4,5-b]吡啶-4-基)-L-正亮氨酸盐(戊糖素10)的合成及明确的结构表征。对于这些化合物,以及葡糖基赖氨酸9和戊糖苷11,其形成途径可分别从天然碳水化合物、阿马多里产物和3-脱氧戊糖醛酮出发得以确定。戊糖素10被明确证明是戊糖苷11的重要前体,戊糖苷11是体内晚期糖基化过程中一种成熟的荧光指示剂。阿马多里产物被证明是形成各种交联物9 - 13的关键中间体。双环结构9 - 11直接来源于氨基酮糖,而12和13则源于与3-脱氧戊糖醛酮的反应。通过牛血清白蛋白与相应的3-脱氧戊糖醛酮或碳水化合物的孵育,对所有产物9 - 13进行了鉴定和定量。从这些结果来看,预期葡糖基赖氨酸9和DOGDIC 12均构成体内重要的交联物似乎是完全合理的。

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