来自不同来源的膳食蛋白质逃避宿主消化,并被肠道微生物群不同地修饰。

IF 5.4 1区 农林科学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Food & Function Pub Date : 2025-07-29 DOI:10.1039/D5FO01132A
Ayesha Awan, Alexandria Bartlett, J. Alfredo Blakeley-Ruiz, Tanner Richie, Casey M. Theriot and Manuel Kleiner
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引用次数: 0

摘要

蛋白质是一种必需的常量营养素,其来源和数量的变化已被证明会影响长期健康结果。不同来源的膳食蛋白质对健康的不同影响可能是由宿主对它们的消化率和随后对肠道微生物群的可利用性的差异所驱动的。然而,我们目前对肠道中不同来源的膳食蛋白质的命运,特别是这些来源中的成分蛋白质如何与宿主和肠道微生物群相互作用的理解是有限的。为了确定哪些膳食蛋白质被宿主有效消化,哪些蛋白质逃避宿主消化并被肠道微生物群利用,我们使用高分辨率质谱法定量了无菌和常规饲养小鼠消化前后构成不同膳食蛋白质来源的蛋白质。我们在无菌小鼠和常规小鼠的粪便样本中检测到来自所有来源的蛋白质,这表明即使是消化效率高的蛋白质来源也能进入结肠,在那里它们可以作为肠道微生物群的代谢底物。此外,我们发现,在微生物群存在的情况下,膳食蛋白质来源的特定成分蛋白质被降解的程度更大。我们发现,具有潜在影响宿主健康和生理功能的特定蛋白质在无菌或常规饲养的小鼠中富集程度不同。这些发现揭示了不同来源的膳食蛋白质在肠道中的命运存在巨大差异,这可以解释它们对健康的不同影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dietary protein from different sources escapes host digestion and is differentially modified by gut microbiota

Dietary protein from different sources escapes host digestion and is differentially modified by gut microbiota

Protein is an essential macronutrient and variations in its source and quantity have been shown to impact long-term health outcomes. Differential health impacts of dietary proteins from various sources are likely driven by differences in their digestibility by the host and subsequent availability to the intestinal microbiota. However, our current understanding regarding the fate of dietary proteins from different sources in the gut, specifically how component proteins within these sources interact with the host and the gut microbiota, is limited. To determine which dietary proteins are efficiently digested by the host, and which proteins escape host digestion and are used by the gut microbiota, we used high-resolution mass spectrometry to quantify proteins that constitute different dietary protein sources before and after digestion in germ-free and conventionally raised mice. We detected proteins from all sources in fecal samples of both germ-free and conventional mice suggesting that even protein sources with high digestive efficiency make it to the colon where they can serve as metabolic substrate for gut microbiota. Additionally, we found that specific component proteins of dietary protein sources were degraded to a greater extent in the presence of the microbiota. We found that specific proteins with functions that could potentially impact host health and physiology were differentially enriched in germ-free or conventionally raised mice. These findings reveal large differences in the fate of dietary protein from various sources in the gut which could explain some of their differential health impacts.

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来源期刊
Food & Function
Food & Function BIOCHEMISTRY & MOLECULAR BIOLOGY-FOOD SCIENCE & TECHNOLOGY
CiteScore
10.10
自引率
6.60%
发文量
957
审稿时长
1.8 months
期刊介绍: Food & Function provides a unique venue for physicists, chemists, biochemists, nutritionists and other food scientists to publish work at the interface of the chemistry, physics and biology of food. The journal focuses on food and the functions of food in relation to health.
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