Interaction of plant polyphenols with salivary proteins.

A. Bennick
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引用次数: 429

Abstract

Tannins are polyphenols that occur widespread in plant-based food. They are considered to be part of the plant defense system against environmental stressors. Tannins have a number of effects on animals, including growth-rate depression and inhibition of digestive enzymes. Tannins also have an effect on humans: They are, for example, the cause of byssinosis, a condition that is due to exposure to airborne tannin. Their biological effect is related to the great efficiency by which tannins precipitate proteins, an interaction that occurs by hydrophobic forces and hydrogen bonding. Two groups of salivary proteins, proline-rich proteins and histatins, are highly effective precipitators of tannin, and there is evidence that at least proline-rich proteins act as a first line of defense against tannins, perhaps by precipitating tannins in food and preventing their absorption from the alimentary canal. Proline plays an important role in the interaction of proline-rich proteins with tannins. In contrast, it is primarily basic residues that are responsible for the binding of histatins to tannin. The high concentration of tannin-binding proteins in human saliva may be related to the fruit and vegetable diet of human ancestors.
植物多酚与唾液蛋白的相互作用。
单宁是一种多酚,广泛存在于植物性食物中。它们被认为是植物抵御环境压力的防御系统的一部分。单宁对动物有许多影响,包括抑制生长速度和抑制消化酶。单宁对人体也有影响:例如,单宁是引起脓毒症的原因,这是由于暴露于空气中的单宁所致。它们的生物效应与单宁沉淀蛋白质的巨大效率有关,这是一种通过疏水力和氢键发生的相互作用。两组唾液蛋白质,富含脯氨酸的蛋白质和组抑素,是单宁的高效沉淀剂,有证据表明,至少富含脯氨酸的蛋白质是对抗单宁的第一道防线,可能是通过沉淀食物中的单宁,防止它们被消化道吸收。脯氨酸在富含脯氨酸的蛋白质与单宁的相互作用中起着重要作用。相反,主要是碱性残基负责组蛋白与单宁的结合。唾液中高浓度的单宁结合蛋白可能与人类祖先的水果和蔬菜饮食有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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