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Semisynthetic analogues of PSC-RANTES, a potent anti-HIV protein
- Source :
- Bioconjugate Chemistry, Vol. 19, No 2 (2008) pp. 480-9
- Publication Year :
- 2008
-
Abstract
- New HIV prevention methods are needed, and among those currently being explored are "microbicides", substances applied topically to prevent HIV acquisition during sexual intercourse. The chemokine analogue PSC-RANTES (N(alpha)(n-nonanoyl)-des-Ser(1)-[ L-thioprolyl(2), L-cyclohexylglycyl(3)]-RANTES(4-68)) is a highly potent HIV entry inhibitor which has shown promising efficacy in its initial evaluation as a candidate microbicide. However, a way must be found to produce the molecule by cheaper means than total chemical synthesis. Since the only noncoded structures are located at the N-terminus, a possible solution would be to produce a protein fragment representing all but the N-terminal region using low-cost recombinant production methods and then to attach, site specifically, a short synthetic fragment containing the noncoded N-terminal structures. Here, we describe the evaluation of a range of different conjugation chemistries in order to identify those with potential for development as economical routes to production of a PSC-RANTES analogue with antiviral activity as close as possible to that of the parent protein. The strategies tested involved linkage through oxime, hydrazone/hydrazide, and Psi[CH2-NH] bonds, as well as through a peptide bond obtained either by a thiazolidine rearrangement or by direct alpha-amino acylation of a protein fragment in which 4 of the 5 lysine residues of the native sequence were replaced by arginine (the fifth lysine is essential for activity). Where conjugation involved replacement of one or more residues with a linker moiety, the point in the main chain at which the linker was introduced was varied. The resulting panel of 22 PSC-RANTES analogues was evaluated for anti-HIV activity in an entry inhibition assay. The [Arg (25,45,56,57)] PSC-RANTES analogue has comparable potency to PSC-RANTES, and one of the oxime linked analogues, 4L-57, has potency only 5-fold lower, with scope for improvement. Both represent promising leads for development as microbicide compounds that could be produced at low cost via semisynthesis.
- Subjects :
- Spectrometry, Mass, Electrospray Ionization
Stereochemistry
HIV Fusion Inhibitors/pharmacology
Thiazolidine
Biomedical Engineering
Pharmaceutical Science
Bioengineering
Hydrazide
Chemical synthesis
chemistry.chemical_compound
HIV Fusion Inhibitors
Microbicide
medicine
Peptide bond
Humans
Chromatography High Pressure Liquid
ddc:610
ddc:576
Chemokine CCL5
Chromatography, High Pressure Liquid
Pharmacology
Chemistry
Organic Chemistry
Combinatorial chemistry
Semisynthesis
Entry inhibitor
Hela Cells
Chemokine CCL5/chemistry/pharmacology
Spectrometry Mass Electrospray Ionization
Linker
Biotechnology
medicine.drug
HeLa Cells
Subjects
Details
- ISSN :
- 10431802
- Volume :
- 19
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Bioconjugate chemistry
- Accession number :
- edsair.doi.dedup.....f8f15b473b473e5326acae38063ec2b0