Sai SundarRajan Raghavan, Praveen Jayakumar, Gurpreet Singh, Pratheep Chinnappan, Chandrasekaran Prabaharan, Abinaya Kanagaraja, Meenakumari Sakthivelu, Subash C B Gopinath, Thirumananseri Kumarevel, Raman Pachaiappan
Small plant defense proteins known as nonspecific lipid transfer proteins (nsLTPs) possess diverse biological activities and promising therapeutic potential. Eleusine coracana (finger millet) is a nutrient-rich cereal crop recognized for its diverse bioactive compounds and potential health promoting properties. In this study, the proteins were extracted, dialyzed and four fractions were obtained by RP-HPLC. Further, the LC-MS/MS based peptide mass fingerprinting identified a bioactive nsLTP in the fraction 1. The pure nsLTP showed strong anti-quorum sensing activity against Pseudomonas aeruginosa and dual inhibitory activity against α-amylase and trypsin. At the minimum inhibitory concentration, the nsLTP reduced biofilm formation by 77 %, along with significant inhibition of exopolysaccharide, protease, elastase, and pyocyanin production. Confocal laser scanning microscopy confirmed biofilm disruption, while RT-qPCR analysis revealed the downregulation of quorum-sensing associated genes. Molecular docking further suggested favorable interactions of nsLTP with the quorum-sensing autoinducer 3-oxo-C12-HSL and the LasI, LasR, and LasA proteins, supporting its potential anti-quorum sensing mechanism. These results demonstrate the novelty of E. coracana derived nsLTP as a multifunctional bioactive protein with enzyme inhibitory and anti-virulence characteristics, indicating as a natural therapeutic candidate for managing P. aeruginosa infections and battling antibiotic resistance.