Jurnal Sintesis Sains Sains Terapan Analisis Laboratorium Institut Ilmu Kesehatan Bhakti Wiyata
Analysis of a-spinasterol Compounds in Trembesi Seeds (Samanea saman (jacq.) Merr) Against Inhibition of 3C-like Protease SARS-CoV-2 Through In Silico Test
Pdf

Kata Kunci

Coronavirus Disease 2019
3C-like Protease SARS-CoV-2
In Silico
Lipinski Rule of Five

Cara Mengutip

Shofi, M. (2022) “Analysis of a-spinasterol Compounds in Trembesi Seeds (Samanea saman (jacq.) Merr) Against Inhibition of 3C-like Protease SARS-CoV-2 Through In Silico Test ”, Jurnal Sintesis: Penelitian Sains, Terapan dan Analisisnya, 2(2), hlm. 74-88. doi: 10.56399/jst.v2i2.22.

Abstrak

Coronavirus Disease 2019 or known as COVID-19 is caused by the Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2). In the virus, there is 3C-like Protease which is a non-structural protein in SARS-CoV-2. These proteins are responsible for the process of translation and viral replication. alpha -spinasterol is a sterol compound in trembesi seeds (Samanea saman (jacq.) Merr) which functions to increase immunity. The purpose of this study was to determine the potential of the alpha-spinasterol compound in trembesi seeds (Samanea saman (jacq.) Merr) as an inhibitor of the 3C-like Protease SARS-CoV-2 with PDB ID: 6M2N using the in silico test. The type of research in this research is computer-based experimental research using in silico tests or molecular docking. The working procedure in this study is molecular docking by comparing the alpha-spinasterol compound in trembesi seeds (Samanea saman (jacq.) Merr) and the comparison compound lopinavir with a protein target of 3C-like Protease SARS-CoV-2 and predicting its physicochemical properties. The results of the in silico test showed that the free bond energy was -8.4 kcal/mol and smaller than the comparison compound lopinavir (-8.2 kcal/mol). The amino acid residues in alpha-spinasterol are Asn203, Gly109, Pro108, Gln107, Gln110, Pro293, and Leu202 which have similar acid residues to lopinavir on compound binding to the 3CL-like Protease from SARS-CoV-2. Meanwhile, based on the Lipinski Rule of Five law, the alpha spinasterol compound still meets the requirements if it will be used as a new drug compound so that alternative drugs can be used to replace lopinavir

https://doi.org/10.56399/jst.v2i2.22
Pdf

Referensi

Amri, I. A., Qosimah, D., & Nugroho, W. (2019). Pengantar Virologi Veteriner. Malang: Universitas Brawijaya Press.

Ariyati, M., Masyithah, N., & Ahmad, I. (2020). Penambatan Molekular Senyawa Metabolit Sekunder dari Daun Kelor sebagai Inhibitor Protease Utama dari SARS-CoV-2. In Proceeding of Mulawarman Pharmaceuticals Conferences (hal. 109–113).

Bailly, C. (2021). Medicinal Properties and Anti-inflammatory Components of Phytolacca (Shanglu). Digital Chinese Medicine, 4(3), 159–169.

Basuki, S. A., & Melinda, N. (2017). Prediksi Mekanisme Kerja Obat Terhadap Reseptornya Secara in Silico (Studi pada Antibiotika Sefotaksim). In PROSIDING Rapat Kerja Fakultas Ilmu Kesehatan (Vol. 0, hal. 89–94). Malang: Fakultas Ilmu Kesehatan Universitas Muhammadiyah Malang.

Chagas, C. M., Moss, S., & Alisaraie, L. (2018). Drug Metabolites and Their Effects on the Development of Adverse Reactions: Revisiting Lipinski’s Rule of Five. International Journal of Pharmaceutics, 549(1–2), 133–149.

Chander, S., Tang, C.-R., Al-Maqtari, H. M., Jamalis, J., Penta, A., Hadda, T. Ben, … Sankaranarayanan, M. (2017). Synthesis and Ttudy of Anti-HIV-1 RT Activity of 5-Benzoyl-4-Methyl-1,3,4,5-Tetrahydro2H-1,5-Benzodiazepin-2-One Derivatives. Bioorganic Chemistry, 72, 74–79.

Dong, S., Sun, J., Mao, Z., Wang, L., Lu, Y.-L., & Li, J. (2020). A Guideline for Homology Modeling of the Proteins from Newly Discovered Betacoronavirus, 2019 Novel Coronavirus (2019-nCoV). Journal of Medical Virology, 92(9), 1542–1548.

Forni, D., Cagliani, R., Arrigoni, F., Benvenuti, M., Mozzi, A., Pozzoli, U., … Sironi, M. (2021). Adaptation of The Endemic Coronaviruses HCoV-OC43 and HCoV-229E to The Human Host. Virus Evolution, 7(2), 1–11.

Creative Commons License

Artikel ini berlisensi Creative Commons Attribution 4.0 International License.

Hak Cipta (c) 2022 Muh. Shofi

Unduhan

Data unduhan belum tersedia.