Literature DB >> 18602477

Developing procedures for the large-scale purification of human serum butyrylcholinesterase.

Ashima Saxena1, Chunyuan Luo, Bhupendra P Doctor.   

Abstract

Human serum butyrylcholinesterase (Hu BChE) is the most viable candidate for the prophylactic treatment of organophosphate poisoning. A dose of 200 mg/70 kg is predicted to protect humans against 2x LD(50) of soman. Therefore, the aim of this study was to develop procedures for the purification of gram quantities of this enzyme from outdated human plasma or Cohn Fraction IV-4. The purification of Hu BChE was accomplished by batch adsorption on procainamide-Sepharose-CL-4B affinity gel followed by ion-exchange chromatography on a DEAE-Sepharose column. For the purification of enzyme from Cohn Fraction IV-4, it was resuspended in 25 mM sodium phosphate buffer, pH 8.0, and fat was removed by decantation, prior to batch adsorption on procainamide-Sepharose gel. In both cases, the procainamide gel was thoroughly washed with 25 mM sodium phosphate buffer, pH 8.0, containing 0.05 M NaCl, and the enzyme was eluted with the same buffer containing 0.1 M procainamide. The enzyme was dialyzed and the pH was adjusted to 4.0 before loading on the DEAE column equilibrated in sodium acetate buffer, pH 4.0. The column was thoroughly washed with 25 mM sodium phosphate buffer, pH 8.0 containing 0.05 M NaCl before elution with a gradient of 0.05-0.2M NaCl in the same buffer. The purity of the enzyme following these steps ranged from 20% to 40%. The purity of the enzyme increased to >90% by chromatography on an analytical procainamide affinity column. Results show that Cohn Fraction IV-4 is a much better source than plasma for the large-scale isolation of purified Hu BChE.

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Year:  2008        PMID: 18602477     DOI: 10.1016/j.pep.2008.05.021

Source DB:  PubMed          Journal:  Protein Expr Purif        ISSN: 1046-5928            Impact factor:   1.650


  7 in total

1.  Identification of phosphorylated butyrylcholinesterase in human plasma using immunoaffinity purification and mass spectrometry.

Authors:  Uma K Aryal; Chiann-Tso Lin; Jong-Seo Kim; Tyler H Heibeck; Jun Wang; Wei-Jun Qian; Yuehe Lin
Journal:  Anal Chim Acta       Date:  2012-02-19       Impact factor: 6.558

Review 2.  Acetylcholinesterase inhibition resulting from exposure to inhaled OP can be prevented by pretreatment with BChE in both macaques and minipigs.

Authors:  Yvonne Rosenberg; Ashima Saxena
Journal:  Neuropharmacology       Date:  2020-05-19       Impact factor: 5.250

Review 3.  Butyrylcholinesterase for protection from organophosphorus poisons: catalytic complexities and hysteretic behavior.

Authors:  Patrick Masson; Oksana Lockridge
Journal:  Arch Biochem Biophys       Date:  2009-12-11       Impact factor: 4.013

4.  Purification, characterization, and N-glycosylation of recombinant butyrylcholinesterase from transgenic rice cell suspension cultures.

Authors:  Jasmine M Corbin; Muchena J Kailemia; C Linn Cadieux; Salem Alkanaimsh; Kalimuthu Karuppanan; Raymond L Rodriguez; Carlito B Lebrilla; Douglas M Cerasoli; Karen A McDonald; Somen Nandi
Journal:  Biotechnol Bioeng       Date:  2018-02-27       Impact factor: 4.530

5.  A novel system for the efficient generation of antibodies following immunization of unique knockout mouse strains.

Authors:  Anna Hrabovska; Véronique Bernard; Eric Krejci
Journal:  PLoS One       Date:  2010-09-23       Impact factor: 3.240

6.  Purification of human butyrylcholinesterase from frozen Cohn fraction IV-4 by ion exchange and Hupresin affinity chromatography.

Authors:  Lawrence M Schopfer; Oksana Lockridge; Emilie David; Steven H Hinrichs
Journal:  PLoS One       Date:  2019-01-09       Impact factor: 3.240

7.  Sodium Ion Effect on Separation Of Butyrylcholinesterase from Plasma by Ion-Exchange Chromatography.

Authors:  A G Postoarca; M Ionescu; A Piperea-Sianu; I Sarbu; L G Hinescu
Journal:  Curr Health Sci J       Date:  2015-04-10
  7 in total

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