Scinovex
article Open Access

Discovery of cyanovirin-N, a novel human immunodeficiency virus-inactivating protein that binds viral surface envelope glycoprotein gp120: potential applications to microbicide development

Antimicrobial Agents and Chemotherapy · 1997 · Vol. 41(7) · pp. 1521–1530
Michael R. BoydKirk R. GustafsonJames B. McMahonRobert H. ShoemakerBarry R. O’KeefeToshiyuki MoriRobert J. GulakowskiLin WuMaria I RiveraCarolyn M. LaurençotMichael J. CurrensJohn H. CardellinaRobert W. BuckheitPeter L. NaraLewis K. PannellRaymond C. SowderLouis E. Henderson

Abstract

We have isolated and sequenced a novel 11-kDa virucidal protein, named cyanovirin-N (CV-N), from cultures of the cyanobacterium (blue-green alga) Nostoc ellipsosporum. We also have produced CV-N recombinantly by expression of a corresponding DNA sequence in Escherichia coli. Low nanomolar concentrations of either natural or recombinant CV-N irreversibly inactivate diverse laboratory strains and primary isolates of human immunodeficiency virus (HIV) type 1 as well as strains of HIV type 2 and simian immunodeficiency virus. In addition, CV-N aborts cell-to-cell fusion and transmission of HIV-1 infection. Continuous, 2-day exposures of uninfected CEM-SS cells or peripheral blood lymphocytes to high concentrations (e.g., 9,000 nM) of CV-N were not lethal to these representative host cell types. The antiviral activity of CV-N is due, at least in part, to unique, high-affinity interactions of CV-N with the viral surface envelope glycoprotein gp120. The biological activity of CV-N is highly resistant to physicochemical denaturation, further enhancing its potential as an anti-HIV microbicide.

HIV Research and TreatmentMosquito-borne diseases and controlHIV/AIDS drug development and treatmentBiologyVirologySimian immunodeficiency virusGlycoproteinViral envelopeMicrobicideRecombinant DNAVirusEscherichia coliMicrobiology

MeSH terms

Acquired Immunodeficiency SyndromeAmino Acid SequenceBacterial ProteinsBase SequenceCarrier ProteinsCell FusionCell SurvivalEnzyme-Linked Immunosorbent AssayHumansMolecular Sequence DataMolecular WeightProtein BindingRecombinant ProteinsUltrafiltrationHIV Envelope Protein gp120

Funding

  • University of Alabama at Birmingham
  • National Cancer Institute
Citations
612
FWCI
1.64
field-weighted impact
References
72
Percentile
85%
vs. same field & year
Citations per year
Cited by
Biologically Active Metabolites Synthesized by Microalgae
BioMed Research International · 2015 · 463 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Discovery of cyanovirin-N, a novel human immunodeficiency virus-inactivating protein that binds viral surface envelope glycoprotein gp120: potential applications to microbicide development · Scinovex