Cargando…

Use of Mutated Self-Cleaving 2A Peptides as a Molecular Rheostat to Direct Simultaneous Formation of Membrane and Secreted Anti-HIV Immunoglobulins

In nature, B cells produce surface immunoglobulin and secreted antibody from the same immunoglobulin gene via alternative splicing of the pre-messenger RNA. Here we present a novel system for genetically programming B cells to direct the simultaneous formation of membrane-bound and secreted immunogl...

Descripción completa

Detalles Bibliográficos
Autores principales: Yu, Kenneth K., Aguilar, Kiefer, Tsai, Jonathan, Galimidi, Rachel, Gnanapragasam, Priyanthi, Yang, Lili, Baltimore, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3508920/
https://www.ncbi.nlm.nih.gov/pubmed/23209743
http://dx.doi.org/10.1371/journal.pone.0050438
_version_ 1782251254799400960
author Yu, Kenneth K.
Aguilar, Kiefer
Tsai, Jonathan
Galimidi, Rachel
Gnanapragasam, Priyanthi
Yang, Lili
Baltimore, David
author_facet Yu, Kenneth K.
Aguilar, Kiefer
Tsai, Jonathan
Galimidi, Rachel
Gnanapragasam, Priyanthi
Yang, Lili
Baltimore, David
author_sort Yu, Kenneth K.
collection PubMed
description In nature, B cells produce surface immunoglobulin and secreted antibody from the same immunoglobulin gene via alternative splicing of the pre-messenger RNA. Here we present a novel system for genetically programming B cells to direct the simultaneous formation of membrane-bound and secreted immunoglobulins that we term a “Molecular Rheostat”, based on the use of mutated “self-cleaving” 2A peptides. The Molecular Rheostat is designed so that the ratio of secreted to membrane-bound immunoglobulins can be controlled by selecting appropriate mutations in the 2A peptide. Lentiviral transgenesis of Molecular Rheostat constructs into B cell lines enables the simultaneous expression of functional b12-based IgM-like BCRs that signal to the cells and mediate the secretion of b12 IgG broadly neutralizing antibodies that can bind and neutralize HIV-1 pseudovirus. We show that these b12-based Molecular Rheostat constructs promote the maturation of EU12 B cells in an in vitro model of B lymphopoiesis. The Molecular Rheostat offers a novel tool for genetically manipulating B cell specificity for B-cell based gene therapy.
format Online
Article
Text
id pubmed-3508920
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35089202012-12-03 Use of Mutated Self-Cleaving 2A Peptides as a Molecular Rheostat to Direct Simultaneous Formation of Membrane and Secreted Anti-HIV Immunoglobulins Yu, Kenneth K. Aguilar, Kiefer Tsai, Jonathan Galimidi, Rachel Gnanapragasam, Priyanthi Yang, Lili Baltimore, David PLoS One Research Article In nature, B cells produce surface immunoglobulin and secreted antibody from the same immunoglobulin gene via alternative splicing of the pre-messenger RNA. Here we present a novel system for genetically programming B cells to direct the simultaneous formation of membrane-bound and secreted immunoglobulins that we term a “Molecular Rheostat”, based on the use of mutated “self-cleaving” 2A peptides. The Molecular Rheostat is designed so that the ratio of secreted to membrane-bound immunoglobulins can be controlled by selecting appropriate mutations in the 2A peptide. Lentiviral transgenesis of Molecular Rheostat constructs into B cell lines enables the simultaneous expression of functional b12-based IgM-like BCRs that signal to the cells and mediate the secretion of b12 IgG broadly neutralizing antibodies that can bind and neutralize HIV-1 pseudovirus. We show that these b12-based Molecular Rheostat constructs promote the maturation of EU12 B cells in an in vitro model of B lymphopoiesis. The Molecular Rheostat offers a novel tool for genetically manipulating B cell specificity for B-cell based gene therapy. Public Library of Science 2012-11-28 /pmc/articles/PMC3508920/ /pubmed/23209743 http://dx.doi.org/10.1371/journal.pone.0050438 Text en © 2012 Yu 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
Yu, Kenneth K.
Aguilar, Kiefer
Tsai, Jonathan
Galimidi, Rachel
Gnanapragasam, Priyanthi
Yang, Lili
Baltimore, David
Use of Mutated Self-Cleaving 2A Peptides as a Molecular Rheostat to Direct Simultaneous Formation of Membrane and Secreted Anti-HIV Immunoglobulins
title Use of Mutated Self-Cleaving 2A Peptides as a Molecular Rheostat to Direct Simultaneous Formation of Membrane and Secreted Anti-HIV Immunoglobulins
title_full Use of Mutated Self-Cleaving 2A Peptides as a Molecular Rheostat to Direct Simultaneous Formation of Membrane and Secreted Anti-HIV Immunoglobulins
title_fullStr Use of Mutated Self-Cleaving 2A Peptides as a Molecular Rheostat to Direct Simultaneous Formation of Membrane and Secreted Anti-HIV Immunoglobulins
title_full_unstemmed Use of Mutated Self-Cleaving 2A Peptides as a Molecular Rheostat to Direct Simultaneous Formation of Membrane and Secreted Anti-HIV Immunoglobulins
title_short Use of Mutated Self-Cleaving 2A Peptides as a Molecular Rheostat to Direct Simultaneous Formation of Membrane and Secreted Anti-HIV Immunoglobulins
title_sort use of mutated self-cleaving 2a peptides as a molecular rheostat to direct simultaneous formation of membrane and secreted anti-hiv immunoglobulins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3508920/
https://www.ncbi.nlm.nih.gov/pubmed/23209743
http://dx.doi.org/10.1371/journal.pone.0050438
work_keys_str_mv AT yukennethk useofmutatedselfcleaving2apeptidesasamolecularrheostattodirectsimultaneousformationofmembraneandsecretedantihivimmunoglobulins
AT aguilarkiefer useofmutatedselfcleaving2apeptidesasamolecularrheostattodirectsimultaneousformationofmembraneandsecretedantihivimmunoglobulins
AT tsaijonathan useofmutatedselfcleaving2apeptidesasamolecularrheostattodirectsimultaneousformationofmembraneandsecretedantihivimmunoglobulins
AT galimidirachel useofmutatedselfcleaving2apeptidesasamolecularrheostattodirectsimultaneousformationofmembraneandsecretedantihivimmunoglobulins
AT gnanapragasampriyanthi useofmutatedselfcleaving2apeptidesasamolecularrheostattodirectsimultaneousformationofmembraneandsecretedantihivimmunoglobulins
AT yanglili useofmutatedselfcleaving2apeptidesasamolecularrheostattodirectsimultaneousformationofmembraneandsecretedantihivimmunoglobulins
AT baltimoredavid useofmutatedselfcleaving2apeptidesasamolecularrheostattodirectsimultaneousformationofmembraneandsecretedantihivimmunoglobulins