Nugraha Roni, Kurniawan Fahmi, Abdullah Asadatun, Lopata Andreas L, Ruethers Thimo
Department of Aquatic Product Technology, Faculty of Fisheries and Marine Science, IPB University, Dramaga 16680, Indonesia.
Tropical Futures Institute, James Cook University, Singapore 387380, Singapore.
Foods. 2024 Aug 19;13(16):2594. doi: 10.3390/foods13162594.
Integrated bioinformatics tools have created more efficient and robust methods to overcome in vitro challenges and have been widely utilized for the investigation of food proteins and the generation of peptide sequences. This study aimed to analyze the physicochemical properties and bioactivities of novel peptides derived from hydrolyzed milkfish () protein sequences and to discover their potential angiotensin-converting enzyme (ACE)- and dipeptidyl peptidase-4 (DPPIV)-inhibitory activities using machine learning-based tools, including BIOPEP-UWM, PeptideRanker, and the molecular docking software HADDOCK 2.4. Nine and three peptides were predicted to have ACE- and DPPIV-inhibitory activities, respectively. The DPPIV-inhibitory peptides were predicted to inhibit the compound with no known specific mode. Meanwhile, two tetrapeptides (MVWH and PPPS) were predicted to possess a competitive mode of ACE inhibition by directly binding to the tetra-coordinated Zn ion. Among all nine discovered ACE-inhibitory peptides, only the PPPS peptide satisfied the drug-likeness analysis requirements with no violations of the Lipinski rule of five and should be further investigated in vitro.
综合生物信息学工具创造了更高效、更强大的方法来克服体外挑战,并已广泛用于食品蛋白质研究和肽序列生成。本研究旨在分析源自遮目鱼水解蛋白序列的新型肽的理化性质和生物活性,并使用基于机器学习的工具,包括BIOPEP-UWM、PeptideRanker和分子对接软件HADDOCK 2.4,发现它们潜在的血管紧张素转换酶(ACE)和二肽基肽酶-4(DPPIV)抑制活性。分别预测有9种和3种肽具有ACE和DPPIV抑制活性。预测DPPIV抑制肽可抑制该化合物,但无已知的特定模式。同时,预测两种四肽(MVWH和PPPS)通过直接结合四配位锌离子具有竞争性ACE抑制模式。在所有发现的9种ACE抑制肽中,只有PPPS肽满足类药分析要求,未违反Lipinski五规则,应在体外进一步研究。