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volume 2017 pages 1-16

Fusion to Flaviviral Leader Peptide Targets HIV-1 Reverse Transcriptase for Secretion and Reduces Its Enzymatic Activity and Ability to Induce Oxidative Stress but Has No Major Effects on Its Immunogenic Performance in DNA-Immunized Mice

Stefan Petkov 3
Olga Krotova 1, 2
Jorma Hinkula 5
Maria G. Isaguliants 2, 6, 7
Publication typeJournal Article
Publication date2017-06-22
scimago Q1
wos Q2
SJR1.076
CiteScore8.4
Impact factor3.6
ISSN23148861, 23147156
PubMed ID:  28717654
General Medicine
Immunology
Immunology and Allergy
Abstract

Reverse transcriptase (RT) is a key enzyme in viral replication and susceptibility to ART and a crucial target of immunotherapy against drug-resistant HIV-1. RT induces oxidative stress which undermines the attempts to make it immunogenic. We hypothesized that artificial secretion may reduce the stress and make RT more immunogenic. Inactivated multidrug-resistant RT (RT1.14opt-in) was N-terminally fused to the signal providing secretion of NS1 protein of TBEV (Ld) generating optimized inactivated Ld-carrying enzyme RT1.14oil. Promotion of secretion prohibited proteasomal degradation increasing the half-life and content of RT1.14oil in cells and cell culture medium, drastically reduced the residual polymerase activity, and downmodulated oxidative stress. BALB/c mice were DNA-immunized with RT1.14opt-in or parental RT1.14oil by intradermal injections with electroporation. Fluorospot and ELISA tests revealed that RT1.14opt-in and RT1.14oil induced IFN-γ/IL-2, RT1.14opt-in induced granzyme B, and RT1.14oil induced perforin production. Perforin secretion correlated with coproduction of IFN-γand IL-2 (R=0,97). Both DNA immunogens induced strong anti-RT antibody response. Ld peptide was not immunogenic. Thus, Ld-driven secretion inferred little change to RT performance in DNA immunization. Positive outcome was the abrogation of polymerase activity increasing safety of RT-based DNA vaccines. Identification of the molecular determinants of low cellular immunogenicity of RT requires further studies.

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Латанова А. А. et al. Fusion to Flaviviral Leader Peptide Targets HIV-1 Reverse Transcriptase for Secretion and Reduces Its Enzymatic Activity and Ability to Induce Oxidative Stress but Has No Major Effects on Its Immunogenic Performance in DNA-Immunized Mice // Journal of Immunology Research. 2017. Vol. 2017. pp. 1-16.
GOST all authors (up to 50) Copy
Латанова А. А., Petkov S., Kuzmenko Y. V., Kilpeläinen A., Ivanov A., Smirnova O., Krotova O., Korolev S. P., Hinkula J., Карпов В. Л., Isaguliants M. G., Starodubova E. S. Fusion to Flaviviral Leader Peptide Targets HIV-1 Reverse Transcriptase for Secretion and Reduces Its Enzymatic Activity and Ability to Induce Oxidative Stress but Has No Major Effects on Its Immunogenic Performance in DNA-Immunized Mice // Journal of Immunology Research. 2017. Vol. 2017. pp. 1-16.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1155/2017/7407136
UR - https://www.hindawi.com/journals/jir/2017/7407136/
TI - Fusion to Flaviviral Leader Peptide Targets HIV-1 Reverse Transcriptase for Secretion and Reduces Its Enzymatic Activity and Ability to Induce Oxidative Stress but Has No Major Effects on Its Immunogenic Performance in DNA-Immunized Mice
T2 - Journal of Immunology Research
AU - Латанова, А. А.
AU - Petkov, Stefan
AU - Kuzmenko, Yulia V.
AU - Kilpeläinen, Athina
AU - Ivanov, Alexander
AU - Smirnova, Olga
AU - Krotova, Olga
AU - Korolev, Sergey P.
AU - Hinkula, Jorma
AU - Карпов, В. Л.
AU - Isaguliants, Maria G.
AU - Starodubova, Elizaveta S.
PY - 2017
DA - 2017/06/22
PB - Wiley
SP - 1-16
VL - 2017
PMID - 28717654
SN - 2314-8861
SN - 2314-7156
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2017_Латанова,
author = {А. А. Латанова and Stefan Petkov and Yulia V. Kuzmenko and Athina Kilpeläinen and Alexander Ivanov and Olga Smirnova and Olga Krotova and Sergey P. Korolev and Jorma Hinkula and В. Л. Карпов and Maria G. Isaguliants and Elizaveta S. Starodubova},
title = {Fusion to Flaviviral Leader Peptide Targets HIV-1 Reverse Transcriptase for Secretion and Reduces Its Enzymatic Activity and Ability to Induce Oxidative Stress but Has No Major Effects on Its Immunogenic Performance in DNA-Immunized Mice},
journal = {Journal of Immunology Research},
year = {2017},
volume = {2017},
publisher = {Wiley},
month = {jun},
url = {https://www.hindawi.com/journals/jir/2017/7407136/},
pages = {1--16},
doi = {10.1155/2017/7407136}
}