Progress in the development of enzyme-based nerve agent bioscavengers

被引:136
作者
Nachon, Florian [1 ]
Brazzolotto, Xavier [1 ]
Trovaslet, Marie [1 ]
Masson, Patrick [1 ,2 ,3 ]
机构
[1] Inst Rech Biomed Armees, F-38702 La Tronche, France
[2] Univ Nebraska Med Ctr, Eppley Inst, Omaha, NE 68198 USA
[3] CNRS CEA UJF, Inst Biol Struct JP Ebel, UMR 5075, F-38042 Grenoble 9, France
关键词
Organophosphate poisoning; Nerve agent; Medical countermeasures; Pretreatment; Treatment; Bioscavenger; RECOMBINANT HUMAN BUTYRYLCHOLINESTERASE; HUMAN SERUM BUTYRYLCHOLINESTERASE; HIGH-LEVEL EXPRESSION; CATALYTIC BIOSCAVENGERS; IN-VIVO; ORGANOPHOSPHORUS HYDROLASE; HUMAN ACETYLCHOLINESTERASE; HUMAN PARAOXONASE; POSTEXPOSURE THERAPY; PSEUDOMONAS-DIMINUTA;
D O I
10.1016/j.cbi.2013.06.012
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Acetylcholinesterase is the physiological target for acute toxicity of nerve agents. Attempts to protect acetylcholinesterase from phosphylation by nerve agents, is currently achieved by reversible inhibitors that transiently mask the enzyme active site. This approach either protects only peripheral acetylcholinesterase or may cause side effects. Thus, an alternative strategy consists in scavenging nerve agents in the bloodstream before they can reach acetylcholinesterase. Pre- or post-exposure administration of bioscavengers, enzymes that neutralize and detoxify organophosphorus molecules, is one of the major developments of new medical counter-measures. These enzymes act either as stoichiometric or catalytic bioscavengers. Human butyrylcholinesterase is the leading stoichiometric bioscavenger. Current efforts are devoted to its mass production with care to pharmacokinetic properties of the final product for extended lifetime. Development of specific reactivators of phosphylated butyrylcholinesterase, or variants with spontaneous reactivation activity is also envisioned for rapid in situ regeneration of the scavenger. Human paraoxonase 1 is the leading catalytic bioscavenger under development. Research efforts focus on improving its catalytic efficiency toward the most toxic isomers of nerve agents, by means of directed evolution-based strategies. Human prolidase appears to be another promising human enzyme. Other non-human efficient enzymes like bacterial phosphotriesterases or squid diisopropylfluorophosphatase are also considered though their intrinsic immunogenic properties remain challenging for use in humans. Encapsulation, PEGylation and other modifications are possible solutions to address this problem as well as that of their limited lifetime. Finally, gene therapy for in situ generation and delivery of bioscavengers is for the far future, but its proof of concept has been established. (C) 2013 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:536 / 544
页数:9
相关论文
共 116 条
[1]   Persistent and high-level expression of human liver prolidase in vivo in mice using adenovirus [J].
Aleti, Vineela ;
Reddy, Gireesh B. ;
Parikh, Kalpana ;
Arun, Peethambaran ;
Chilukuri, Nageswararao .
CHEMICO-BIOLOGICAL INTERACTIONS, 2013, 203 (01) :191-195
[2]   Hydrolysis of organophosphate compounds by mutant butyrylcholinesterase: A story of two histidines [J].
Amitay, Moshe ;
Shurki, Avital .
PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2011, 79 (02) :352-364
[3]   Gulf War illness: Effects of repeated stress and pyridostigmine treatment on blood-brain barrier permeability and cholinesterase activity in rat brain [J].
Amourette, Christine ;
Lamproglou, Ioannis ;
Barbier, Laure ;
Fauquette, William ;
Zoppe, Amelie ;
Viret, Roselyne ;
Diserbo, Michel .
BEHAVIOURAL BRAIN RESEARCH, 2009, 203 (02) :207-214
[4]  
Antonov N.S., 1994, Chemical Weapons at the Turn of Two Centuries
[5]   Estimation of the upper limit of human butyrylcholinesterase dose required for protection against organophosphates toxicity: A mathematically based toxicokinetic model [J].
Ashani, Y ;
Pistinner, S .
TOXICOLOGICAL SCIENCES, 2004, 77 (02) :358-367
[6]   Suitability of human butyrylcholinesterase as therapeutic marker and pseudo catalytic scavenger in organophosphate poisoning: A kinetic analysis [J].
Aurbek, N. ;
Thiermann, H. ;
Eyer, F. ;
Eyer, P. ;
Worek, F. .
TOXICOLOGY, 2009, 259 (03) :133-139
[7]   Detection of endoplasmic reticulum stress markers and production enhancement treatments in transgenic goats expressing recombinant human butyrylcholinesterase [J].
Baldassarre, H. ;
Deslauriers, J. ;
Neveu, N. ;
Bordignon, V. .
TRANSGENIC RESEARCH, 2011, 20 (06) :1265-1272
[8]   Protein profile and alpha-lactalbumin concentration in the milk of standard and transgenic goats expressing recombinant human butyrylcholinesterase [J].
Baldassarre, H. ;
Schirm, M. ;
Deslauriers, J. ;
Turcotte, C. ;
Bordignon, V. .
TRANSGENIC RESEARCH, 2009, 18 (04) :621-632
[9]   Differences in amino acid residues in the binding pockets dictate substrate specificities of mouse senescence marker protein-30, human paraoxonase1, and squid diisopropylfluorophosphatase [J].
Belinskaya, Tatyana ;
Pattabiraman, Nagarajan ;
diTargiani, Robert ;
Choi, Moonsuk ;
Saxena, Ashima .
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS, 2012, 1824 (05) :701-710
[10]   Catalytic Metal Ion Rearrangements Underline Promiscuity and Evolvability of a Metalloenzyme [J].
Ben-David, Moshe ;
Wieczorek, Grzegorz ;
Elias, Mikael ;
Silman, Israel ;
Sussman, Joel L. ;
Tawfik, Dan S. .
JOURNAL OF MOLECULAR BIOLOGY, 2013, 425 (06) :1028-1038