Dipeptidyl Peptidase IV Inhibitory Peptides from Chickpea Proteins (Cicer arietinum L.): Pharmacokinetics, Molecular Interactions, and Multi-Bioactivities

Author:

Mora-Melgem José Antonio1,Arámburo-Gálvez Jesús Gilberto1ORCID,Cárdenas-Torres Feliznando Isidro1ORCID,Gonzalez-Santamaria Jhonatan12ORCID,Ramírez-Torres Giovanni Isaí13,Arvizu-Flores Aldo Alejandro4ORCID,Figueroa-Salcido Oscar Gerardo15ORCID,Ontiveros Noé6ORCID

Affiliation:

1. Nutrition Sciences Postgraduate Program, Faculty of Nutrition Sciences, Autonomous University of Sinaloa, Culiacan 80010, Mexico

2. Faculty of Health and Sports Sciences, University Foundation of the Andean Area, Pereira 66001, Colombia

3. Faculty of Physical Education and Sports, Autonomous University of Sinaloa, Culiacan 80013, Mexico

4. Postgraduate Program in Health Sciences, Faculty of Biological and Health Sciences, University of Sonora, Hermosillo 83000, Mexico

5. Integral Postgraduate Program in Biotechnology, Faculty of Chemical and Biological Sciences, Autonomous University of Sinaloa, Ciudad Universitaria, Culiacan 80010, Mexico

6. Clinical and Research Laboratory (LACIUS, CN), Department of Chemical, Biological, and Agricultural Sciences (DCQBA), Faculty of Biological and Health Sciences, University of Sonora, Navojoa 85880, Mexico

Abstract

Chickpea (Cicer arietinum L.) peptides can inhibit dipeptidyl peptidase IV (DPP-IV), an important type 2 diabetes mellitus therapeutic target. The molecular interactions between the inhibitory peptides and the active site of DPP-IV have not been thoroughly examined, nor have their pharmacokinetic properties. Therefore, the predictions of legumin- and provicilin-derived DPP-IV inhibitory peptides, their molecular interactions with the active site of DPP-IV, and their pharmacokinetic properties were carried out. Ninety-two unique DPP-IV inhibitory peptides were identified. Papain and trypsin were the enzymes with the highest AE (0.0927) and lowest BE (6.8625 × 10−7) values, respectively. Peptide binding energy values ranged from −5.2 to −7.9 kcal/mol. HIS-PHE was the most potent DPP-IV inhibitory peptide and interacts with residues of the active sites S1 (TYR662) and S2 (GLU205/ARG125 (hydrogen bonds: <3.0 Å)), S2 (GLU205/GLU206 (electrostatic interactions: <3.0 Å)), and S2′ pocket (PHE357 (hydrophobic interaction: 4.36 Å)). Most peptides showed optimal absorption (76.09%), bioavailability (89.13%), and were non-toxic (97.8%) stable for gastrointestinal digestion (73.9%). Some peptides (60.86%) could also inhibit ACE-I. Chickpea is a source of non-toxic and bioavailable DPP-IV-inhibitory peptides with dual bioactivity. Studies addressing the potential of chickpea peptides as therapeutic or adjunct agents for treating type 2 diabetes are warranted.

Publisher

MDPI AG

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

Reference46 articles.

1. Type 2 Diabetes;Chatterjee;Lancet,2017

2. Magliano, D.J., and Boyko, E.J. (2021). IDF Diabetes Atlas 10th Edition Scientific Committee. IDF Diabetes Atlas, International Diabetes Federation. [10th ed.].

3. Kasina, S.V.S.K., and Baradhi, K.M. (2019). Dipeptidyl Peptidase IV (DPP IV) Inhibitors, StatPearls Publishing.

4. Type 2 Diabetes Medication Review;Sterrett;Am. J. Med. Sci.,2016

5. An in Silico Model to Predict the Potential of Dietary Proteins as Sources of Dipeptidyl Peptidase IV (DPP-IV) Inhibitory Peptides;Nongonierma;Food Chem.,2014

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