Elsevier

Gene

Volume 116, Issue 2, 15 July 1992, Pages 139-150
Gene

Mapping of a region of dengue virus type-2 glycoprotein required for binding by a neutralizing monoclonal antibody

https://doi.org/10.1016/0378-1119(92)90509-NGet rights and content

Abstract

Envelope glycoprotein E of flaviviruses is exposed at the surface of the virion, and is responsible for eliciting a neutralizing antibody (Ab) response, as well as protective immunity in the host. In this report, we describe a method for the fine mapping of a linear sequence of the E protein of dengue virus type-2 (DEN-2), recognized by a type-specific and neutralizing monoclonal Ab (mAb), 3H5. First, an Escherichia coli expression vector containing a heat-inducible λ pl promoter was used to synthesize several truncated, and near-full length E polypeptides. Reactivities of these polypeptides with polyclonal mouse hyperimmune sera, as well as the 3H5 mAb revealed the location of the 3H5-binding site to be within a region of 166 amino acids (aa) between aa 255 and 422. For fine mapping, a series of targeted deletions were made inframe within this region using the polymerase chain reaction (PCR). The hydrophilicity pattern of this region was used as a guide to systematically delete the regions encoding the various groups of surface aa residues within the context of a near-full-length E polypeptide by using PCR. The 3H5-binding site was thus precisely mapped to a region encoding 12 aa (between aa 386 and 397). A synthetic peptide containing this sequence was able to bind to the 3H5 mAb specifically, as shown by enzyme-linked immunosorbent assay. In addition, we show that rabbit Abs raised against the synthetic peptide of 12 aa were able to bind to the authentic E protein, and to neutralize DEN-2 virus in a plaque reduction assay.

Keywords

Recombinant DNA
λ pl promoter
expression in Escherichia coli
epitope mapping
PCR
deletion mutagenesis
mAb
synthetic peptide antigen

Abbreviations

A
absorbance
aa
amino acid(s)
Ap
ampicillin
bp
base pair(s)
C
capsid protein
cDNA
DNA complementary to RNA
DEN-2
dengue virus type 2
DMEM
Dulbecco's modified Eagle's medium
DOC
deoxycholate
E
envelope protein
ELISA
enzyme-linked immunosorbent assay
HI
hemagglutination-inhibition
HMAF
hyperimmune mouse ascitic fluid containing polyclonal antibodies against a mixture of DEN-2 antigens
HPLC
high-performance liquid chromatography
HSV-2
herpes simplex virus type 2
JE
Japanese encephalitis virus
kb
kilobase(s) or 1000 bp
KLH
keyhole limpet hemocyanin
LB
Luria-Bertani (medium)
M
membrane protein
mAb
monoclonal antibody
MBS
m-maleimidobenzoylsulfosuccinimide ester
m.o.i.
multiplicity of infection
NGS-C
New Guinea C strain
nt
nucleotide(s)
oligo
oligodeoxyribonucleotide
ORF
open reading frame
PBS
phosphate-buffered saline (10 mM Na phosphate,pH 7.2/150 mM NaCl)
PolIk
Klenow (large) fragment of E. coli DNA polymerase I
PCR
polymerase chain reaction
pfu
plaque forming units
PMSF
phenylmethylsulfonyl fluoride
prM
precursor to membrane protein
PRNT
plaque reduction neutralization test
RBS
ribosome binding site
SDS
sodium dodecyl sulfate
Taq
Thermus aquaticus YTI
TBE
tick-borne encephalitis
WN
West Nile virus
YF
yellow fever virus

Cited by (0)

View Abstract