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当醌类与氨基酸相遇:化学、物理及生物学后果

When quinones meet amino acids: chemical, physical and biological consequences.

作者信息

Bittner S

机构信息

Department of Chemistry, Ben Gurion University of the Negev, Beer Sheva, Israel.

出版信息

Amino Acids. 2006 May;30(3):205-24. doi: 10.1007/s00726-005-0298-2. Epub 2006 Apr 13.

Abstract

Quinones and amino acids are usually compartmentally separated in living systems, however there are several junctions in which they meet, react and influence. It occurs mainly in wounded, cut or crushed plant material during harvest, ensiling or disintegrating cells. Diffusing polyphenols are oxidized by polyphenol oxidases (PPOs) to quinonic compounds, which associate reversibly or irreversibly with amino acids and proteins. The reaction takes place with the free nucleophilic functional groups such as sulfhydryl, amine, amide, indole and imidazole substituents. It results in imine formation, in 1,4-Michael addition via nitrogen or sulphur and in Strecker degradation forming aldehydes. The formation and activity of quinone-amino acids conjugates influences the colour, taste, and aroma of foods. Physical and physiological phenomena such as browning of foods, discoloration of plants during processing, alteration of solubility and digestibility, formation of humic substances, germicidal activity, cytotoxicity and more occur when quinones from disintegrating cells meet amino acids. The mechanisms of toxicity and the pathways by which PCBs may be activated and act as a cancer initiator include oxidation to the corresponding quinones and reaction with amino acids or peptides. Sclerotization of insect cuticle is a biochemical process involving also the reaction between quinones and amino acid derivatives.

摘要

醌类和氨基酸在生物系统中通常是分隔开的,但存在一些它们相遇、反应并相互影响的节点。这种情况主要发生在收获、青贮或细胞解体过程中受伤、切割或压碎的植物材料中。扩散的多酚被多酚氧化酶(PPO)氧化为醌类化合物,这些化合物与氨基酸和蛋白质可逆或不可逆地结合。反应发生在诸如巯基、胺基、酰胺基、吲哚基和咪唑基等游离亲核官能团上。这会导致亚胺的形成、通过氮或硫进行的1,4-迈克尔加成以及形成醛的斯特雷克降解反应。醌-氨基酸共轭物的形成和活性会影响食物的颜色、味道和香气。当解体细胞中的醌类与氨基酸相遇时,会出现诸如食物褐变、加工过程中植物变色、溶解度和消化率改变、腐殖质形成、杀菌活性、细胞毒性等物理和生理现象。多氯联苯可能被激活并作为癌症引发剂的毒性机制和途径包括氧化为相应的醌类并与氨基酸或肽反应。昆虫表皮的硬化是一个生化过程,也涉及醌类与氨基酸衍生物之间的反应。

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