Antibacterial Natural Peptide Fractions from Indian Ganoderma lucidum

抗菌剂 抗菌肽 化学 抗菌活性 生物化学 生物 抗氧化剂 抗生素 传统医学 多糖 微生物学 细菌 医学 遗传学
作者
Jigni Mishra,Rakhee Rajput,Kaushlesh Singh,Sanjeev Puri,Meenakshi Goyal,Anju Bansal,Kshipra Misra
出处
期刊:International Journal of Peptide Research and Therapeutics [Springer Science+Business Media]
卷期号:24 (4): 543-554 被引量:39
标识
DOI:10.1007/s10989-017-9643-z
摘要

Natural peptides are emerging as a leading alternative to conventional drugs and antibiotics, owing to their remarkable potency, better stability and less toxicity. Such peptides encompass numerous healing properties such as antimicrobial, anti-inflammatory, immunomodulatory, etc. Though plant- derived peptides have been widely studied for their therapeutic benefits, however, fungal peptides are still lesser explored. Ganoderma lucidum, a highly medicinal oriental mushroom comprises a vast array of phytoconstituents, namely flavonoids, phenolics, terpenoids, polysaccharides, proteins, glycolipids, etc and hence, is being used since several decades in traditional Chinese medicine (TCM) for its various ameliorative effects e.g. anti-inflammatory, antimicrobial, anti-proliferative and antioxidant properties. This study presents the isolation and characterization of antibacterial peptide fractions from fruiting body (GLF) and mycelium (GLM) of Indian G. lucidum. Representative amide bonds were identified in the fractions using established standard techniques. Peptide mass fingerprinting and HPLC confirmed the presence of cationic and hydrophobic amino acids in the peptide fractions which are known to be major structural features of antimicrobial peptides. Secondary structure prediction showed abundance of α-helices and random coils in GLF and GLM fractions respectively. The fractions exhibited appreciable antioxidant potential. Besides, these also possessed substantial antibacterial activity against Escherichia coli and Salmonella typhi wherein it was observed that generation of reactive oxygen species and induction of intracellular protein leakage within the bacterial cells were the possible mechanisms of inhibitory action.

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