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Efficient and Scalable Process to Produce Novel and Highly Bioactive Purified Cytosolic Crystals from Bacillus thuringiensis

Bacillus thuringiensis (Bt) is a Gram-positive soil bacterium that is widely and safely applied in the environment as an insecticide for combatting insect pests that damage crops or are disease vectors. Dominant active ingredients made by Bt are insect-killing crystal (Cry) proteins released as crys...

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Autores principales: Chicca, Jeffrey, Cazeault, Nicholas R., Rus, Florentina, Abraham, Ambily, Garceau, Carli, Li, Hanchen, Atwa, Samar M., Flanagan, Kelly, Soto, Ernesto R., Morrison, Mary S., Gazzola, David, Hu, Yan, Liu, David R., Nielsen, Martin K., Urban, Joseph F., Ostroff, Gary R., Aroian, Raffi V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9430767/
https://www.ncbi.nlm.nih.gov/pubmed/35946940
http://dx.doi.org/10.1128/spectrum.02356-22
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author Chicca, Jeffrey
Cazeault, Nicholas R.
Rus, Florentina
Abraham, Ambily
Garceau, Carli
Li, Hanchen
Atwa, Samar M.
Flanagan, Kelly
Soto, Ernesto R.
Morrison, Mary S.
Gazzola, David
Hu, Yan
Liu, David R.
Nielsen, Martin K.
Urban, Joseph F.
Ostroff, Gary R.
Aroian, Raffi V.
author_facet Chicca, Jeffrey
Cazeault, Nicholas R.
Rus, Florentina
Abraham, Ambily
Garceau, Carli
Li, Hanchen
Atwa, Samar M.
Flanagan, Kelly
Soto, Ernesto R.
Morrison, Mary S.
Gazzola, David
Hu, Yan
Liu, David R.
Nielsen, Martin K.
Urban, Joseph F.
Ostroff, Gary R.
Aroian, Raffi V.
author_sort Chicca, Jeffrey
collection PubMed
description Bacillus thuringiensis (Bt) is a Gram-positive soil bacterium that is widely and safely applied in the environment as an insecticide for combatting insect pests that damage crops or are disease vectors. Dominant active ingredients made by Bt are insect-killing crystal (Cry) proteins released as crystalline inclusions upon bacterial sporulation. Some Bt Cry proteins, e.g., Cry5B (formally Cry5Ba1), target nematodes (roundworms) and show exceptional promise as anthelmintics (cures for parasitic nematode diseases). We have recently described inactivated bacteria with cytosolic crystal(s) (IBaCC) in which bioactive Bt Cry crystals (containing Cry5B) are fully contained within the cytosol of dead bacterial ghosts. Here, we demonstrate that these IBaCC-trapped Cry5B crystals can be liberated and purified away from cellular constituents, yielding purified cytosolic crystals (PCC). Cry5B PCC contains ~95% Cry5B protein out of the total protein content. Cry5B PCC is highly bioactive against parasitic nematode larvae and adults in vitro. Cry5B PCC is also highly active in vivo against experimental human hookworm and Ascaris infections in rodents. The process was scaled up to the 100-liter scale to produce PCC for a pilot study to treat two foals infected with the ascarid Parascaris spp. Single-dose Cry5B PCC brought the fecal egg counts of both foals to zero. These studies describe the process for the scalable production of purified Bt crystals and define a new and attractive pharmaceutical ingredient form of Bt Cry proteins. IMPORTANCE Bacillus thuringiensis crystal proteins are widely and safely used as insecticides. Recent studies have shown they also can cure gastrointestinal parasitic worm (nematode) infections when ingested. However, reproducible, scalable, and practical techniques for purifying these proteins have been lacking. Here, we address this severe limitation and present scalable and practical methods for large-scale purification of potently bioactive B. thuringiensis crystals and crystal proteins. The resultant product, called purified cytosolic crystals (PCC), is highly compatible with ingestible drug delivery and formulation. Furthermore, there are growing applications in agriculture and insect control where access to large quantities of purified crystal proteins is desirable and where these methods will find great utility.
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spelling pubmed-94307672022-09-01 Efficient and Scalable Process to Produce Novel and Highly Bioactive Purified Cytosolic Crystals from Bacillus thuringiensis Chicca, Jeffrey Cazeault, Nicholas R. Rus, Florentina Abraham, Ambily Garceau, Carli Li, Hanchen Atwa, Samar M. Flanagan, Kelly Soto, Ernesto R. Morrison, Mary S. Gazzola, David Hu, Yan Liu, David R. Nielsen, Martin K. Urban, Joseph F. Ostroff, Gary R. Aroian, Raffi V. Microbiol Spectr Research Article Bacillus thuringiensis (Bt) is a Gram-positive soil bacterium that is widely and safely applied in the environment as an insecticide for combatting insect pests that damage crops or are disease vectors. Dominant active ingredients made by Bt are insect-killing crystal (Cry) proteins released as crystalline inclusions upon bacterial sporulation. Some Bt Cry proteins, e.g., Cry5B (formally Cry5Ba1), target nematodes (roundworms) and show exceptional promise as anthelmintics (cures for parasitic nematode diseases). We have recently described inactivated bacteria with cytosolic crystal(s) (IBaCC) in which bioactive Bt Cry crystals (containing Cry5B) are fully contained within the cytosol of dead bacterial ghosts. Here, we demonstrate that these IBaCC-trapped Cry5B crystals can be liberated and purified away from cellular constituents, yielding purified cytosolic crystals (PCC). Cry5B PCC contains ~95% Cry5B protein out of the total protein content. Cry5B PCC is highly bioactive against parasitic nematode larvae and adults in vitro. Cry5B PCC is also highly active in vivo against experimental human hookworm and Ascaris infections in rodents. The process was scaled up to the 100-liter scale to produce PCC for a pilot study to treat two foals infected with the ascarid Parascaris spp. Single-dose Cry5B PCC brought the fecal egg counts of both foals to zero. These studies describe the process for the scalable production of purified Bt crystals and define a new and attractive pharmaceutical ingredient form of Bt Cry proteins. IMPORTANCE Bacillus thuringiensis crystal proteins are widely and safely used as insecticides. Recent studies have shown they also can cure gastrointestinal parasitic worm (nematode) infections when ingested. However, reproducible, scalable, and practical techniques for purifying these proteins have been lacking. Here, we address this severe limitation and present scalable and practical methods for large-scale purification of potently bioactive B. thuringiensis crystals and crystal proteins. The resultant product, called purified cytosolic crystals (PCC), is highly compatible with ingestible drug delivery and formulation. Furthermore, there are growing applications in agriculture and insect control where access to large quantities of purified crystal proteins is desirable and where these methods will find great utility. American Society for Microbiology 2022-08-10 /pmc/articles/PMC9430767/ /pubmed/35946940 http://dx.doi.org/10.1128/spectrum.02356-22 Text en Copyright © 2022 Chicca et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Chicca, Jeffrey
Cazeault, Nicholas R.
Rus, Florentina
Abraham, Ambily
Garceau, Carli
Li, Hanchen
Atwa, Samar M.
Flanagan, Kelly
Soto, Ernesto R.
Morrison, Mary S.
Gazzola, David
Hu, Yan
Liu, David R.
Nielsen, Martin K.
Urban, Joseph F.
Ostroff, Gary R.
Aroian, Raffi V.
Efficient and Scalable Process to Produce Novel and Highly Bioactive Purified Cytosolic Crystals from Bacillus thuringiensis
title Efficient and Scalable Process to Produce Novel and Highly Bioactive Purified Cytosolic Crystals from Bacillus thuringiensis
title_full Efficient and Scalable Process to Produce Novel and Highly Bioactive Purified Cytosolic Crystals from Bacillus thuringiensis
title_fullStr Efficient and Scalable Process to Produce Novel and Highly Bioactive Purified Cytosolic Crystals from Bacillus thuringiensis
title_full_unstemmed Efficient and Scalable Process to Produce Novel and Highly Bioactive Purified Cytosolic Crystals from Bacillus thuringiensis
title_short Efficient and Scalable Process to Produce Novel and Highly Bioactive Purified Cytosolic Crystals from Bacillus thuringiensis
title_sort efficient and scalable process to produce novel and highly bioactive purified cytosolic crystals from bacillus thuringiensis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9430767/
https://www.ncbi.nlm.nih.gov/pubmed/35946940
http://dx.doi.org/10.1128/spectrum.02356-22
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