Prediction Potential Chlorogenic Acid As Inhibitor Ace (In Silico Study)

Yohanes Bare, Dewi Ratih Tirto Sari, Yoga Tribakti Rachmad, Sri Sulistyaningsih Natalia Daeng Tiring, Apriani Herni Rophi, Fitra Arya Dwi Nugraha

Abstract


One of the derivatives of flavonoid explored is chlorogenic acid. Chlorogenic acid has antioxidant and anti-inflammatory activity. Hypertension has support for Angiotensin converting enzyme (ACE) which has a role in regulating the renin-angiotensin system. Hypertension therapy is carried out in inhibit ACE pathway. This study aims to analyze and assess the potential of chlorogenic acid as an anti-hypertensive material by inhibiting the work of ACE. The method used is in silico. Chlorogenic acid ligand was obtained from PubChem while ACE was obtained from RCSB. Interaction of ligand and protein using HEX 8.0.0. Analysis and visualization of the results of interactions using Discovery Study Version 4.1. The results showed an interaction between ligand and protein, namely interactions that occur between chlorogenic acid and sixteen amino acid residues. This interaction produces energy of -292.5cal / mol. This interaction approved the ACE block in the AT-I transformation towards AT-II. Chlorogenic acid has potential as an anti-hypertension material.


Keywords


ACE; Anti Hypertension; Chlorogenic Acid; In Silico

References


Actis-Goretta, L., Ottaviani, J.I., Fraga, C.G., 2006. Inhibition of Angiotensin Converting Enzyme Activity by Flavanol-Rich Foods. J. Agric. Food Chem. 54, 229–234. https://doi.org/10.1021/jf052263o

Bare, Y., Fatchiyah, F., 2018. Profil Protein pada Organ Tikus (Rattus norvegicus) Model Diabetes Melitus Tipe 2 (DMT2). Biota 11, 1–12. https://doi.org/10.20414/jb.v11i1.95

Bare, Y., Krisnamurti, G.C., Elizabeth, A., Tribakti, Y., Sari, D.R.T., 2019. The potential role of caffeic acid in coffee as cyclooxygenase-2 (COX-2) inhibitor: in silico study 4. https://doi.org/10.33263/BRIAC95.424427

Bare, Y., Marhendra, A., Sasase, T., Fatchiyah, F., 2018. Differential Expression of IL-10 Gene and Protein in Target Tissues of Rattus Norvegicus Strain Wistar Model Type 2 Diabetes Mellitus (T2DM). Acta Inform. Medica 26, 87. https://doi.org/10.5455/aim.2018.26.87-92

Bhullar, K.S., Lassalle-Claux, G., Touaibia, M., Rupasinghe, H.P.V., 2014. Antihypertensive effect of caffeic acid and its analogs through dual renin–angiotensin–aldosterone system inhibition. Eur. J. Pharmacol. 730, 125–132. https://doi.org/10.1016/j.ejphar.2014.02.038

Chiou, S.-Y., Sung, J.-M., Huang, P.-W., Lin, S.-D., 2017. Antioxidant, Antidiabetic, and Antihypertensive Properties of Echinacea purpurea Flower Extract and Caffeic Acid Derivatives Using In Vitro Models. J. Med. Food 20, 171–179. https://doi.org/10.1089/jmf.2016.3790

Darewicz, M., Dziuba, B., Minkiewicz, P., Dziuba, J., 2011. The Preventive Potential of Milk and Colostrum Proteins and Protein Fragments. Food Rev. Int. 27, 357–388. https://doi.org/10.1080/87559129.2011.563396

Erdmann, K., Cheung, B.W.Y., Schröder, H., 2008. The possible roles of food-derived bioactive peptides in reducing the risk of cardiovascular disease. J. Nutr. Biochem. 19, 643–654. https://doi.org/10.1016/j.jnutbio.2007.11.010

Hardjono, S., 2013. Sintesis dan Uji Aktivitas Antikanker Senyawa 1-(2-KLOROBENZOILOKSI) Urea dan 1-(4-KLOROBENZOILOKSI) Urea 6.

Iwaniak, A., Minkiewicz, P., Darewicz, M., 2014. Food-Originating ACE Inhibitors, Including Antihypertensive Peptides, as Preventive Food Components in Blood Pressure Reduction: Food peptides reducing blood pressure…. Compr. Rev. Food Sci. Food Saf. 13, 114–134. https://doi.org/10.1111/1541-4337.12051

Jensen, F., 2007. Introduction to Computional Chemistry, 2nd Ed. Odense, Denmark.

Mentari, C.I., Sudarmi, S., Harun, F.R., 2018. Pemeriksaan Flavonoid dan Polifenol serta Uji Aktivitas Antioksidan Teh Daun Sirsak Kemasan (Annona Muricata Linn.) dengan Metode Dpph. Talenta Conf. Ser. Trop. Med. TM 1, 277–283. https://doi.org/10.32734/tm.v1i1.76

Oboh, G., Akinyemi, A.J., Osanyinlusi, F.R., Ademiluyi, A.O., Boligon, A.A., Athayde, M.L., 2014. Phenolic compounds from sandpaper (ficus exasperata) leaf inhibits angiotensin 1 converting enzyme in high cholesterol diet fed rats. J. Ethnopharmacol. 157, 119–125. https://doi.org/10.1016/j.jep.2014.09.029

Ouwerkerk, W., Voors, A.A., Anker, S.D., Cleland, J.G., Dickstein, K., Filippatos, G., van der Harst, P., Hillege, H.L., Lang, C.C., ter Maaten, J.M., Ng, L.L., Ponikowski, P., Samani, N.J., van Veldhuisen, D.J., Zannad, F., Metra, M., Zwinderman, A.H., 2017. Determinants and clinical outcome of uptitration of ACE-inhibitors and beta-blockers in patients with heart failure: a prospective European study. Eur. Heart J. 38, 1883–1890. https://doi.org/10.1093/eurheartj/ehx026

Tarigan, A.R., Lubis, Z., Syarifah, S., 2018. Pengaruh Pengetahuan, Sikap Dan Dukungan Keluarga Terhadap Diet Hipertensi Di Desa Hulu Kecamatan Pancur Batu Tahun 2016. J. Kesehat. 11, 9–17. https://doi.org/10.24252/kesehatan.v11i1.5107

Yun, N., Kang, J.-W., Lee, S.-M., 2012. Protective effects of chlorogenic acid against ischemia/reperfusion injury in rat liver: molecular evidence of its antioxidant and anti-inflammatory properties. J. Nutr. Biochem. 23, 1249–1255. https://doi.org/10.1016/j.jnutbio.2011.06.018




DOI: https://doi.org/10.24036/0201932105856-0-00

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