Insights into the Functions of M-T Hook Structure in HIV Fusion Inhibitor Using Molecular Modeling
Author:
Funder
Chinese Natural Science Foundation project
Publisher
Elsevier BV
Subject
Computational Mathematics,Organic Chemistry,Biochemistry,Structural Biology
Reference33 articles.
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2. Improvement of HIV fusion inhibitor C34 efficacy by membrane anchoring and enhanced exposure;Augusto;J. Antimicrob. Chemother.,2014
3. Discovery of critical residues for viral entry and inhibition through structural insight of HIV-1 fusion inhibitor CP 621-652;Chong;J. Biol. Chem.,2012
4. Short-peptide fusion inhibitors with high potency against wild-type and enfuvirtide-resistant HIV-1;Chong;FASEB J.,2013
5. The M-T hook structure is critical for design of HIV-1 fusion inhibitors;Chong;J. Biol. Chem.,2012
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1. Synthesis, Biophysical Characterization, and Anti-HIV-1 Fusion Activity of DNA Quadruplex-based Inhibitors with Dipeptide MT Hook Conjugation;Current HIV Research;2021-08-30
2. HIV-1 Entry Inhibitors: A Review of Experimental and Computational Studies;Chemistry & Biodiversity;2018-09-21
3. Insights into structure and function of 30S Ribosomal Protein S2 (30S2) in Chlamydophila pneumoniae: A potent target of pneumonia;Computational Biology and Chemistry;2017-02
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