分离(微生物学)
计算生物学
对接(动物)
机制(生物学)
灵芝
化学
生物
立体化学
微生物学
灵芝
医学
哲学
食品科学
认识论
护理部
作者
Qian Yang,Nanwen Zhang,Huihong Zhang,Xiaolin Huang,Xixi Cai,Ying Wu,Jie Zhou,Xiaole Chen,Shaoyun Wang
标识
DOI:10.26599/fshw.2025.9250707
摘要
Ganoderma sinense is a traditional and protein-rich edible plant with outstanding immunoregulatory activity. However, the mechanism through which G. sinense protein hydrolysates and peptides exert their immunomodulatory effects is unclear. The objective of this study was to prepare and isolate immunologically active peptides from G. sinense protein hydrolysates (GSP) and to investigate their impact on the activation of macrophages. G. sinense peptides with low molecular weights ( < 1 kDa, 87.78%) markedly promoted RAW264.7 cell proliferation; increased their phagocytic capacity, nitric oxide (NO), TNF-α, IL-10, and IL-6 secretion and ROS production; and upregulated Tlr2 mRNA expression. In addition, GSP promoted NF-κB activation and translocation through the upregulation of p65 and p-p65 protein expression. Virtual molecular screening technology revealed that compared with other peptides, the SFAGNIPVNR, YGDAFIR and TVSYLPAPQR peptides derived from GSP showed stronger binding affinities. Interaction site map analysis indicated that the SFAGNIPVNR and YGDAFIR peptides formed stable hydrogen bonds with TLR2. Together, these results suggested that G. sinense peptides can serve as important ingredients in nutraceuticals or functional foods.
科研通智能强力驱动
Strongly Powered by AbleSci AI