Literature DB >> 25273053

Dengue envelope domain III-peptide binding analysis via tryptophan fluorescence quenching assay.

Aida Baharuddin1, Asfarina Amir Hassan, Rozana Othman, Yongtao Xu, Meilan Huang, Bimo Ario Tejo, Rohana Yusof, Noorsaadah Abdul Rahman, Shatrah Othman.   

Abstract

In the efforts to find an anti-viral treatment for dengue, a simple tryptophan fluorescence-screening assay aimed at identifying dengue domain III envelope (EIII) protein inhibitors was developed. Residue Trp391 of EIII was used as an intrinsic probe to monitor the change in fluorescence of the tryptophan residue upon binding to a peptide. The analysis was based on the electron excitation at 280 nm and fluorescence emission at 300-400 nm of EIII, followed by quenching of fluorescence in the presence of potential peptidic inhibitors coded DS36wt, DS36opt, DN58wt and DN58opt. The present study found that the fluorescence of the recombinant EIII was quenched following the binding of DS36opt, DN58wt and DN58opt in a concentration-dependent manner. Since the λmax for emission remained unchanged, the effect was not due to a change in the environment of the tryptophan side chain. In contrast, a minimal fluorescence-quenching effect of DS36wt at 20 and 40 µM suggested that the DS36wt does not have any binding ability to EIII. This was supported by a simple native-page gel retardation assay that showed a band shift of EIII domain when incubated with DS36opt, DN58wt and DN58opt but not with DS36wt. We thus developed a low-cost and convenient spectrophotometric binding assay for the analysis of EIII-peptide interactions in a drug screening application.

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Year:  2014        PMID: 25273053     DOI: 10.1248/cpb.c14-00165

Source DB:  PubMed          Journal:  Chem Pharm Bull (Tokyo)        ISSN: 0009-2363            Impact factor:   1.645


  1 in total

1.  Hit-to-Lead Short Peptides against Dengue Type 2 Envelope Protein: Computational and Experimental Investigations.

Authors:  Norburhanuddin Johari Zaidi; Adib Afandi Abdullah; Choon Han Heh; Chun-Hung Lin; Rozana Othman; Abdullah Al Hadi Ahmad Fuaad
Journal:  Molecules       Date:  2022-05-18       Impact factor: 4.927

  1 in total

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