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Processing of X-ray diffraction data collected in oscillation mode.振荡模式下收集的X射线衍射数据的处理。
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Prevention and reversal by cocaine esterase of cocaine-induced cardiovascular effects in rats.可卡因酯酶预防和逆转大鼠可卡因引起的心血管效应。
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Cocaine esterase prevents cocaine-induced toxicity and the ongoing intravenous self-administration of cocaine in rats.可卡因酯酶可预防大鼠体内可卡因诱导的毒性以及持续的静脉注射可卡因自我给药行为。
J Pharmacol Exp Ther. 2009 Nov;331(2):445-55. doi: 10.1124/jpet.108.150029. Epub 2009 Aug 26.
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A bacterial cocaine esterase protects against cocaine-induced epileptogenic activity and lethality.一种细菌可卡因酯酶可预防可卡因诱导的致痫活性和致死性。
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Thermostable variants of cocaine esterase for long-time protection against cocaine toxicity.用于长期预防可卡因毒性的可卡因酯酶热稳定变体。
Mol Pharmacol. 2009 Feb;75(2):318-23. doi: 10.1124/mol.108.049486. Epub 2008 Nov 5.
6
Effects of the monoamine uptake inhibitors RTI-112 and RTI-113 on cocaine- and food-maintained responding in rhesus monkeys.单胺摄取抑制剂RTI - 112和RTI - 113对恒河猴可卡因维持反应和食物维持反应的影响。
Pharmacol Biochem Behav. 2009 Jan;91(3):333-8. doi: 10.1016/j.pbb.2008.08.002. Epub 2008 Aug 8.
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Most efficient cocaine hydrolase designed by virtual screening of transition states.通过过渡态虚拟筛选设计的最有效的可卡因水解酶。
J Am Chem Soc. 2008 Sep 10;130(36):12148-55. doi: 10.1021/ja803646t. Epub 2008 Aug 19.
8
An albumin-butyrylcholinesterase for cocaine toxicity and addiction: catalytic and pharmacokinetic properties.一种用于可卡因毒性和成瘾的白蛋白-丁酰胆碱酯酶:催化和药代动力学特性。
Chem Biol Interact. 2008 Sep 25;175(1-3):83-7. doi: 10.1016/j.cbi.2008.04.024. Epub 2008 May 1.
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A cocaine hydrolase engineered from human butyrylcholinesterase selectively blocks cocaine toxicity and reinstatement of drug seeking in rats.一种由人丁酰胆碱酯酶改造而来的可卡因水解酶可选择性地阻断可卡因毒性,并抑制大鼠复吸觅药行为。
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10
Dual dopamine/serotonin releasers as potential medications for stimulant and alcohol addictions.双重多巴胺/血清素释放剂作为治疗兴奋剂和酒精成瘾的潜在药物。
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一种热稳定性的细菌可卡因酯酶形式:治疗可卡因滥用的潜在治疗剂。

A thermally stable form of bacterial cocaine esterase: a potential therapeutic agent for treatment of cocaine abuse.

机构信息

Department of Pharmacology, University of Michigan Medical School, 1301 Medical Sciences Research Building III, 1150 W Medical Center Drive, Ann Arbor, MI 48109-0600, USA.

出版信息

Mol Pharmacol. 2010 Apr;77(4):593-600. doi: 10.1124/mol.109.060806. Epub 2010 Jan 19.

DOI:10.1124/mol.109.060806
PMID:20086035
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2845945/
Abstract

Rhodococcal cocaine esterase (CocE) is an attractive potential treatment for both cocaine overdose and cocaine addiction. CocE directly degrades cocaine into inactive products, whereas traditional small-molecule approaches require blockade of the inhibitory action of cocaine on a diverse array of monoamine transporters and ion channels. The usefulness of wild-type (wt) cocaine esterase is hampered by its inactivation at 37 degrees C. Herein, we characterize the most thermostable form of this enzyme to date, CocE-L169K/G173Q. In vitro kinetic analyses reveal that CocE-L169K/G173Q displays a half-life of 2.9 days at 37 degrees C, which represents a 340-fold improvement over wt and is 15-fold greater than previously reported mutants. Crystallographic analyses of CocE-L169K/G173Q, determined at 1.6-A resolution, suggest that stabilization involves enhanced domain-domain interactions involving van der Waals interactions and hydrogen bonding. In vivo rodent studies reveal that intravenous pretreatment with CocE-L169K/G173Q in mice provides protection from cocaine-induced lethality for longer time periods before cocaine administration than wt CocE. Furthermore, intravenous administration (pretreatment) of CocE-L169K/G173Q prevents self-administration of cocaine in a time-dependent manner. Termination of the in vivo effects of CoCE seems to be dependent on, but not proportional to, its clearance from plasma as its half-life is approximately 2.3 h and similar to that of wt CocE (2.2 h). Taken together these data suggest that CocE-L169K/G173Q possesses many of the properties of a biological therapeutic for treating cocaine abuse but requires additional development to improve its serum half-life.

摘要

罗地考林可卡因酯酶(CocE)是治疗可卡因过量和可卡因成瘾的一种有吸引力的潜在治疗方法。CocE 可直接将可卡因降解为非活性产物,而传统的小分子方法需要阻断可卡因对多种单胺转运体和离子通道的抑制作用。野生型(wt)可卡因酯酶的用途受到其在 37°C 时失活的限制。本文描述了迄今为止该酶最耐热的形式 CocE-L169K/G173Q。体外动力学分析表明,CocE-L169K/G173Q 在 37°C 时的半衰期为 2.9 天,比 wt 提高了 340 倍,比之前报道的突变体提高了 15 倍。CocE-L169K/G173Q 的晶体结构分析,分辨率为 1.6-A,表明稳定性涉及增强的结构域间相互作用,涉及范德华相互作用和氢键。体内啮齿动物研究表明,在给予可卡因之前,静脉内预先给予 CocE-L169K/G173Q 的小鼠比 wt CocE 能更长时间地抵抗可卡因诱导的致死作用。此外,静脉内给予(预处理)CocE-L169K/G173Q 以时间依赖性方式防止可卡因的自我给药。CoCE 体内作用的终止似乎依赖于但其从血浆中的清除率,但不成比例,因为其半衰期约为 2.3 h,与 wt CocE(2.2 h)相似。这些数据表明,CocE-L169K/G173Q 具有许多治疗可卡因滥用的生物学治疗特性,但需要进一步开发以提高其血清半衰期。