State Key Laboratory of Animal Nutrition, College of Animal Science and Technology, China Agricultural University, Beijing, 100193, China.
National Center for International Research On Animal Gut Nutrition, College of Animal Science and Technology, Nanjing Agricultural University, Nanjing, 210095, Jiangsu, China.
Adv Exp Med Biol. 2022;1354:127-143. doi: 10.1007/978-3-030-85686-1_7.
Amino acids (AAs) not only serve as building blocks for protein synthesis in microorganisms but also play important roles in their metabolism, survival, inter-species crosstalk, and virulence. Different AAs have their distinct functions in microbes of the digestive tract and this in turn has important impacts on host nutrition and physiology. Deconjugation and re-conjugation of glycine- or taurine- conjugated bile acids in the process of their enterohepatic recycling is a good example of the bacterial adaptation to harsh gut niches, inter-kingdom cross-talk with AA metabolism, and cell signaling as the critical control point. It is also a big challenge for scientists to modulate the homeostasis of the pools of AAs and their metabolites in the digestive tract with the aim to improve nutrition and regulate AA metabolism related to anti-virulence reactions. Diversity of the metabolic pathways of AAs and their multi-functions in modulating bacterial growth and survival in the digestive tract should be taken into consideration in recommending nutrient requirements for animals. Thus, the concept of functional amino acids can guide not only microbiological studies but also nutritional and physiological investigations. Cutting edge discoveries in this research area will help to better understand the mechanisms responsible for host-microbe interactions and develop new strategies for improving the nutrition, health, and well-being of both animals and humans.
氨基酸(AAs)不仅作为微生物中蛋白质合成的构建块,而且在其代谢、生存、种间交流和毒力中发挥重要作用。不同的氨基酸在消化道微生物中有其独特的功能,这反过来又对宿主的营养和生理产生重要影响。甘氨酸或牛磺酸共轭胆汁酸在肠肝循环过程中的去共轭和再共轭是细菌适应恶劣肠道生态位、与 AA 代谢的种间交流以及细胞信号转导作为关键控制点的一个很好的例子。科学家们还面临着一个巨大的挑战,即调节消化道中氨基酸及其代谢物库的动态平衡,以改善营养并调节与抗毒力反应相关的 AA 代谢。在推荐动物的营养需求时,应考虑到 AA 代谢途径的多样性及其在调节消化道中细菌生长和生存方面的多功能性。因此,功能性氨基酸的概念不仅可以指导微生物学研究,还可以指导营养和生理学研究。该研究领域的前沿发现将有助于更好地理解宿主-微生物相互作用的机制,并为改善动物和人类的营养、健康和福祉开发新策略。