The synthetic molecules YK51 and YK73 attenuate replication of dengue virus serotype 2

Dengue virus infection has been posing alarming economic and social burden on affected nations. It is estimated that 50-100 million dengue infections occur annually with over 2.5 billion people at risk for endemic transmission. In the effort to develop effective antiviral agents, we previously repor...

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Main Authors: Gan, C.S., Lee, Y.K., Heh, C.H., Rahman, N.A., Yusof, R., Othman, S.
Format: Article
Language:English
Published: 2017
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spelling my.uniten.dspace-34652017-10-27T00:20:10Z The synthetic molecules YK51 and YK73 attenuate replication of dengue virus serotype 2 Gan, C.S. Lee, Y.K. Heh, C.H. Rahman, N.A. Yusof, R. Othman, S. Dengue virus infection has been posing alarming economic and social burden on affected nations. It is estimated that 50-100 million dengue infections occur annually with over 2.5 billion people at risk for endemic transmission. In the effort to develop effective antiviral agents, we previously reported potential antiviral activities from selected array of natural products and compounds against dengue virus serotype 2 (DV2). In this study, we report the synthesis of two efficacious novel compounds, YK51 and YK73, and their activities against DV2 replication. Both compounds were chemically synthesised from nicotinic acid using a modified method for the synthesis of dihydropyridine. The products were tested with cell-based assays against DV2 followed by a serine protease assay. As a result, both YK51 and YK73 exhibited intriguing antiviral properties with EC50 of 3.2 and 2.4 µM, respectively. In addition, YK51 and YK73 were found to attenuate the synthesis of intracellular viral RNA and protect the switching of non-classic mechanism of protein translation. These compounds demonstrated inhibitory properties toward the activity of DV2 serine protease in a dose dependent manner. These findings demonstrate that both YK51 and YK73 serve as DV2 serine protease inhibitors that abrogate viral RNA synthesis and translation. Further investigation on these compounds to corroborate its therapeutic properties towards dengue is warranted. © 2017, Malaysian Society for Parasitology. All rights reserved. 2017-10-27T00:11:32Z 2017-10-27T00:11:32Z 2017 Article https://www.scopus.com/record/display.uri?eid=2-s2.0-85021184183&origin=resultslist&sort=plf-f&src=s&st1=+Rahman%2c+N.+A.&nlo=&nlr=&nls=&sid=cba88be019723176ddc6e75704f0f949&sot=b&sdt=cl&cluster=scoauthid%2c%2222136090800%22%2ct&sl=27&s=AUTHOR-NAME%28+Rahman%2c+N.+A.%29&relpos=3&citeCnt=0&searchTerm= en Tropical Biomedicine Volume 34, Issue 2, 2017, Pages 270-283
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language English
description Dengue virus infection has been posing alarming economic and social burden on affected nations. It is estimated that 50-100 million dengue infections occur annually with over 2.5 billion people at risk for endemic transmission. In the effort to develop effective antiviral agents, we previously reported potential antiviral activities from selected array of natural products and compounds against dengue virus serotype 2 (DV2). In this study, we report the synthesis of two efficacious novel compounds, YK51 and YK73, and their activities against DV2 replication. Both compounds were chemically synthesised from nicotinic acid using a modified method for the synthesis of dihydropyridine. The products were tested with cell-based assays against DV2 followed by a serine protease assay. As a result, both YK51 and YK73 exhibited intriguing antiviral properties with EC50 of 3.2 and 2.4 µM, respectively. In addition, YK51 and YK73 were found to attenuate the synthesis of intracellular viral RNA and protect the switching of non-classic mechanism of protein translation. These compounds demonstrated inhibitory properties toward the activity of DV2 serine protease in a dose dependent manner. These findings demonstrate that both YK51 and YK73 serve as DV2 serine protease inhibitors that abrogate viral RNA synthesis and translation. Further investigation on these compounds to corroborate its therapeutic properties towards dengue is warranted. © 2017, Malaysian Society for Parasitology. All rights reserved.
format Article
author Gan, C.S.
Lee, Y.K.
Heh, C.H.
Rahman, N.A.
Yusof, R.
Othman, S.
spellingShingle Gan, C.S.
Lee, Y.K.
Heh, C.H.
Rahman, N.A.
Yusof, R.
Othman, S.
The synthetic molecules YK51 and YK73 attenuate replication of dengue virus serotype 2
author_facet Gan, C.S.
Lee, Y.K.
Heh, C.H.
Rahman, N.A.
Yusof, R.
Othman, S.
author_sort Gan, C.S.
title The synthetic molecules YK51 and YK73 attenuate replication of dengue virus serotype 2
title_short The synthetic molecules YK51 and YK73 attenuate replication of dengue virus serotype 2
title_full The synthetic molecules YK51 and YK73 attenuate replication of dengue virus serotype 2
title_fullStr The synthetic molecules YK51 and YK73 attenuate replication of dengue virus serotype 2
title_full_unstemmed The synthetic molecules YK51 and YK73 attenuate replication of dengue virus serotype 2
title_sort synthetic molecules yk51 and yk73 attenuate replication of dengue virus serotype 2
publishDate 2017
_version_ 1644493541016076288
score 13.214268