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논문 기본 정보

자료유형
학술저널
저자정보
Cano Earl Adriane (Department of Medical Technology, Far Eastern University, City of Manila 1015, Philippines) Luis Jovito San (Department of Medical Technology, Far Eastern University, City of Manila 1015, Philippines) Perez Julia Cassandra (Department of Medical Technology, Far Eastern University, City of Manila 1015, Philippines) Priela Aleezah (Department of Medical Technology, Far Eastern University, City of Manila 1015, Philippines) Ramos Eiby Grace (Department of Medical Technology, Far Eastern University, City of Manila 1015, Philippines) Reyes Mhizzy (Department of Medical Technology, Far Eastern University, City of Manila 1015, Philippines) Rico Luis Antonio (Department of Medical Technology, Far Eastern University, City of Manila 1015, Philippines) Sabado LJ (The Graduate School, University of Santo Tomas, City of Manila 1015, Philippines)
저널정보
한국식물생명공학회 Journal of Plant Biotechnology Journal of Plant Biotechnology 제51권 제2호
발행연도
2024.6
수록면
100 - 110 (11page)
DOI
10.5010/JPB.2024.51.011.100

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Dengue fever is a viral disease caused by the dengue flavivirus, transmitted through the bites of infected mosquitoes. The endeavor to combat dengue has led many researchers to develop antiviral drugs. Several medicinal plants, containing diverse phytochemicals, exhibit potential for inhibiting pathogenic proteins and are employed in ongoing research and therapeutic advancement. This has piqued researchers’ interest in identifying potential plant- derived molecule inhibitors 』of the dengue virus Non- Structural Protein 5 (NS5) and analyzing their subsequent interactions. This study employed candidate selection and molecular docking using an in silico approach. We used the Protein Data Bank database and performed National Center for Biotechnology Information (NCBI) blastp analysis to gather and compare the best protein structures of the two NS5 serotypes. In addition, we identified ligand molecules previously reported to exhibit potential inhibitory effects against NS5 by retrieving their 3D structures from NCBI PubChem. Moreover, we utilized PyRx and PyMOL to perform molecular docking. The findings revealed a con- spicuous prevalence of interactions between the MTase domain in NS5 and phytochemical compounds, notably Kaempferol and 6-Shogaol. Based on the evidence presented in this study, we propose that investigating the NS5 protein in flavivirus is necessary for dengue fever prevention, as these proteins play a vital role in the replication of the virus. Our findings provide valuable insights beneficial for advancing research into antiviral medication. We suggest further investigation into other medicinal plants that may inhibit dengue and the additional scrutiny of Kaempferol and 6-Shogaol, the compounds that yielded significant results in this study.

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