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Linker-Extended Native Cyanovirin-N Facilitates PEGylation and Potently Inhibits HIV-1 by Targeting the Glycan Ligand

Cyanovirin-N (CVN) potently inhibits human immunodeficiency virus type 1 (HIV-1) infection, but both cytotoxicity and immunogenicity have hindered the translation of this protein into a viable therapeutic. A molecular docking analysis suggested that up to 12 residues were involved in the interaction...

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Autores principales: Chen, Jia, Huang, Dane, Chen, Wei, Guo, Chaowan, Wei, Bo, Wu, Chongchao, Peng, Zhou, Fan, Jun, Hou, Zhibo, Fang, Yongsheng, Wang, Yifei, Kitazato, Kaio, Yu, Guoying, Zou, Chunbin, Qian, Chuiwen, Xiong, Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3903522/
https://www.ncbi.nlm.nih.gov/pubmed/24475123
http://dx.doi.org/10.1371/journal.pone.0086455
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author Chen, Jia
Huang, Dane
Chen, Wei
Guo, Chaowan
Wei, Bo
Wu, Chongchao
Peng, Zhou
Fan, Jun
Hou, Zhibo
Fang, Yongsheng
Wang, Yifei
Kitazato, Kaio
Yu, Guoying
Zou, Chunbin
Qian, Chuiwen
Xiong, Sheng
author_facet Chen, Jia
Huang, Dane
Chen, Wei
Guo, Chaowan
Wei, Bo
Wu, Chongchao
Peng, Zhou
Fan, Jun
Hou, Zhibo
Fang, Yongsheng
Wang, Yifei
Kitazato, Kaio
Yu, Guoying
Zou, Chunbin
Qian, Chuiwen
Xiong, Sheng
author_sort Chen, Jia
collection PubMed
description Cyanovirin-N (CVN) potently inhibits human immunodeficiency virus type 1 (HIV-1) infection, but both cytotoxicity and immunogenicity have hindered the translation of this protein into a viable therapeutic. A molecular docking analysis suggested that up to 12 residues were involved in the interaction of the reverse parallel CVN dimer with the oligosaccharide targets, among which Leu-1 was the most prominent hot spot residue. This finding provided a possible explanation for the lack of anti-HIV-1 activity observed with N-terminal PEGylated CVN. Therefore, linker-CVN (LCVN) was designed as a CVN derivative with a flexible and hydrophilic linker (Gly(4)Ser)(3) at the N-terminus. The N-terminal α-amine of LCVN was PEGylated to create 10 K PEG-aldehyde (ALD)-LCVN. LCVN and 10 K PEG-ALD-LCVN retained the specificity and affinity of CVN for high mannose N-glycans. Moreover, LCVN exhibited significant anti-HIV-1 activity with attenuated cytotoxicity in the HaCaT keratinocyte cell line and MT-4 T lymphocyte cell lines. 10 K PEG-ALD-LCVN also efficiently inactivated HIV-1 with remarkably decreased cytotoxicity and pronounced cell-to-cell fusion inhibitory activity in vitro. The linker-extended CVN and the mono-PEGylated derivative were determined to be promising candidates for the development of an anti-HIV-1 agent. This derivatization approach provided a model for the PEGylation of biologic candidates without introducing point mutations.
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spelling pubmed-39035222014-01-28 Linker-Extended Native Cyanovirin-N Facilitates PEGylation and Potently Inhibits HIV-1 by Targeting the Glycan Ligand Chen, Jia Huang, Dane Chen, Wei Guo, Chaowan Wei, Bo Wu, Chongchao Peng, Zhou Fan, Jun Hou, Zhibo Fang, Yongsheng Wang, Yifei Kitazato, Kaio Yu, Guoying Zou, Chunbin Qian, Chuiwen Xiong, Sheng PLoS One Research Article Cyanovirin-N (CVN) potently inhibits human immunodeficiency virus type 1 (HIV-1) infection, but both cytotoxicity and immunogenicity have hindered the translation of this protein into a viable therapeutic. A molecular docking analysis suggested that up to 12 residues were involved in the interaction of the reverse parallel CVN dimer with the oligosaccharide targets, among which Leu-1 was the most prominent hot spot residue. This finding provided a possible explanation for the lack of anti-HIV-1 activity observed with N-terminal PEGylated CVN. Therefore, linker-CVN (LCVN) was designed as a CVN derivative with a flexible and hydrophilic linker (Gly(4)Ser)(3) at the N-terminus. The N-terminal α-amine of LCVN was PEGylated to create 10 K PEG-aldehyde (ALD)-LCVN. LCVN and 10 K PEG-ALD-LCVN retained the specificity and affinity of CVN for high mannose N-glycans. Moreover, LCVN exhibited significant anti-HIV-1 activity with attenuated cytotoxicity in the HaCaT keratinocyte cell line and MT-4 T lymphocyte cell lines. 10 K PEG-ALD-LCVN also efficiently inactivated HIV-1 with remarkably decreased cytotoxicity and pronounced cell-to-cell fusion inhibitory activity in vitro. The linker-extended CVN and the mono-PEGylated derivative were determined to be promising candidates for the development of an anti-HIV-1 agent. This derivatization approach provided a model for the PEGylation of biologic candidates without introducing point mutations. Public Library of Science 2014-01-27 /pmc/articles/PMC3903522/ /pubmed/24475123 http://dx.doi.org/10.1371/journal.pone.0086455 Text en © 2014 Chen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chen, Jia
Huang, Dane
Chen, Wei
Guo, Chaowan
Wei, Bo
Wu, Chongchao
Peng, Zhou
Fan, Jun
Hou, Zhibo
Fang, Yongsheng
Wang, Yifei
Kitazato, Kaio
Yu, Guoying
Zou, Chunbin
Qian, Chuiwen
Xiong, Sheng
Linker-Extended Native Cyanovirin-N Facilitates PEGylation and Potently Inhibits HIV-1 by Targeting the Glycan Ligand
title Linker-Extended Native Cyanovirin-N Facilitates PEGylation and Potently Inhibits HIV-1 by Targeting the Glycan Ligand
title_full Linker-Extended Native Cyanovirin-N Facilitates PEGylation and Potently Inhibits HIV-1 by Targeting the Glycan Ligand
title_fullStr Linker-Extended Native Cyanovirin-N Facilitates PEGylation and Potently Inhibits HIV-1 by Targeting the Glycan Ligand
title_full_unstemmed Linker-Extended Native Cyanovirin-N Facilitates PEGylation and Potently Inhibits HIV-1 by Targeting the Glycan Ligand
title_short Linker-Extended Native Cyanovirin-N Facilitates PEGylation and Potently Inhibits HIV-1 by Targeting the Glycan Ligand
title_sort linker-extended native cyanovirin-n facilitates pegylation and potently inhibits hiv-1 by targeting the glycan ligand
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3903522/
https://www.ncbi.nlm.nih.gov/pubmed/24475123
http://dx.doi.org/10.1371/journal.pone.0086455
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