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Expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxB(- )E. coli cytoplasm

BACKGROUND: Antibody-fluorophore conjugates are invaluable reagents used in contemporary molecular cell biology for imaging, cell sorting and tracking intracellular events. However they suffer in some cases from batch to batch variation, partial loss of binding and susceptibility to photo-bleaching....

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Autores principales: Markiv, Anatoliy, Beatson, Richard, Burchell, Joy, Durvasula, Ravi V, Kang, Angray S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280946/
https://www.ncbi.nlm.nih.gov/pubmed/22129156
http://dx.doi.org/10.1186/1472-6750-11-117
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author Markiv, Anatoliy
Beatson, Richard
Burchell, Joy
Durvasula, Ravi V
Kang, Angray S
author_facet Markiv, Anatoliy
Beatson, Richard
Burchell, Joy
Durvasula, Ravi V
Kang, Angray S
author_sort Markiv, Anatoliy
collection PubMed
description BACKGROUND: Antibody-fluorophore conjugates are invaluable reagents used in contemporary molecular cell biology for imaging, cell sorting and tracking intracellular events. However they suffer in some cases from batch to batch variation, partial loss of binding and susceptibility to photo-bleaching. In theory, these issues can all be addressed by using recombinant antibody fused directly to genetically encoded fluorescent reporters. However, single-chain fragment variable domains linked by long flexible linkers are themselves prone to disassociation and aggregation, and in some cases with isoelectric points incompatible with use in physiologically relevant milieu. Here we describe a general approach that permits fully functional intracellular production of a range of coloured fluorescent recombinant antibodies with optimally orientated V(H)/V(L )interfaces and isoelectric points compatible for use in physiological solutions at pH 7.4 with a binding site to fluorophore stoichiometry of 1:1. RESULTS: Here we report the design, assembly, intracellular bacterial production and purification of a panel of novel antibody fluorescent protein fusion constructs. The insertion of monomeric fluorescent protein derived from either Discosoma or Aequorea in-between the variable regions of anti-p185(HER2-ECD )antibody 4D5-8 resulted in optimal V(H)/V(L )interface interactions to create soluble coloured antibodies each with a single binding site, with isoelectric points of 6.5- 6. The fluorescent antibodies used in cell staining studies with SK-BR-3 cells retained the fluorophore properties and antibody specificity functions, whereas the conventional 4D5-8 single chain antibody with a (Gly(4)Ser)(3 )linker precipitated at physiological pH 7.4. CONCLUSIONS: This modular monomeric recombinant fluorescent antibody platform may be used to create a range of recombinant coloured antibody molecules for quantitative in situ, in vivo and ex vivo imaging, cell sorting and cell trafficking studies. Assembling the single chain antibody with monomeric fluorescent protein linker facilitates optimal variable domain pairing and alters the isoelectric point of the recombinant 4D5-8 protein conferring solubility at physiological pH 7.4. The efficient intracellular expression of these functional molecules opens up the possibility of developing an alternative approach for tagging intracellular targets with fluorescent proteins for a range of molecular cell biology imaging studies.
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spelling pubmed-32809462012-02-17 Expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxB(- )E. coli cytoplasm Markiv, Anatoliy Beatson, Richard Burchell, Joy Durvasula, Ravi V Kang, Angray S BMC Biotechnol Research Article BACKGROUND: Antibody-fluorophore conjugates are invaluable reagents used in contemporary molecular cell biology for imaging, cell sorting and tracking intracellular events. However they suffer in some cases from batch to batch variation, partial loss of binding and susceptibility to photo-bleaching. In theory, these issues can all be addressed by using recombinant antibody fused directly to genetically encoded fluorescent reporters. However, single-chain fragment variable domains linked by long flexible linkers are themselves prone to disassociation and aggregation, and in some cases with isoelectric points incompatible with use in physiologically relevant milieu. Here we describe a general approach that permits fully functional intracellular production of a range of coloured fluorescent recombinant antibodies with optimally orientated V(H)/V(L )interfaces and isoelectric points compatible for use in physiological solutions at pH 7.4 with a binding site to fluorophore stoichiometry of 1:1. RESULTS: Here we report the design, assembly, intracellular bacterial production and purification of a panel of novel antibody fluorescent protein fusion constructs. The insertion of monomeric fluorescent protein derived from either Discosoma or Aequorea in-between the variable regions of anti-p185(HER2-ECD )antibody 4D5-8 resulted in optimal V(H)/V(L )interface interactions to create soluble coloured antibodies each with a single binding site, with isoelectric points of 6.5- 6. The fluorescent antibodies used in cell staining studies with SK-BR-3 cells retained the fluorophore properties and antibody specificity functions, whereas the conventional 4D5-8 single chain antibody with a (Gly(4)Ser)(3 )linker precipitated at physiological pH 7.4. CONCLUSIONS: This modular monomeric recombinant fluorescent antibody platform may be used to create a range of recombinant coloured antibody molecules for quantitative in situ, in vivo and ex vivo imaging, cell sorting and cell trafficking studies. Assembling the single chain antibody with monomeric fluorescent protein linker facilitates optimal variable domain pairing and alters the isoelectric point of the recombinant 4D5-8 protein conferring solubility at physiological pH 7.4. The efficient intracellular expression of these functional molecules opens up the possibility of developing an alternative approach for tagging intracellular targets with fluorescent proteins for a range of molecular cell biology imaging studies. BioMed Central 2011-11-30 /pmc/articles/PMC3280946/ /pubmed/22129156 http://dx.doi.org/10.1186/1472-6750-11-117 Text en Copyright ©2011 Markiv et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Markiv, Anatoliy
Beatson, Richard
Burchell, Joy
Durvasula, Ravi V
Kang, Angray S
Expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxB(- )E. coli cytoplasm
title Expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxB(- )E. coli cytoplasm
title_full Expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxB(- )E. coli cytoplasm
title_fullStr Expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxB(- )E. coli cytoplasm
title_full_unstemmed Expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxB(- )E. coli cytoplasm
title_short Expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxB(- )E. coli cytoplasm
title_sort expression of recombinant multi-coloured fluorescent antibodies in gor (-)/trxb(- )e. coli cytoplasm
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280946/
https://www.ncbi.nlm.nih.gov/pubmed/22129156
http://dx.doi.org/10.1186/1472-6750-11-117
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