Cocaine addiction affects millions of people with disastrous personal and social consequences. Cocaine is one of the most reinforcing of all drugs of abuse, and even those who undergo rehabilitation and experience long periods of abstinence have more than 80% chance of relapse. Yet there is no FDA-approved treatment to decrease the likelihood of relapse in rehabilitated addicts. Recent studies, however, have demonstrated a promising potential treatment option with the help of the serum enzyme butyrylcholinesterase (BChE), which is capable of breaking down naturally occurring (-)-cocaine before the drug can influence the reward centers of the brain or affect other areas of the body. This activity of wild-type (WT) BChE, however, is relatively low. This prompted the design of variants of BChE which exhibit significantly improved catalytic activity against (-)-cocaine. Plants are a promising means to produce large amounts of these cocaine hydrolase variants of BChE, cheaply, safely with no concerns regarding human pathogens and functionally equivalent to enzymes derived from other sources. Here, in expressing cocaine-hydrolyzing mutants of BChE in Nicotiana benthamiana using the MagnICON virus-assisted transient expression system, and in reporting their initial biochemical analysis, we provide proof-of-principle that plants can express engineered BChE proteins with desired properties.

译文

可卡因成瘾影响数百万人,带来灾难性的个人和社会后果。可卡因是所有滥用药物中最强化的药物之一,即使是那些接受康复治疗并经历长时间禁欲的人也有80% 以上的复发机会。然而,没有FDA批准的治疗方法来降低康复成瘾者复发的可能性。然而,最近的研究表明,在血清酶丁酰胆碱酯酶 (BChE) 的帮助下,有前途的潜在治疗选择,该酶能够在药物影响大脑的奖励中心或影响身体的其他区域之前分解天然存在的 (-)-可卡因。然而,野生型 (WT) BChE的这种活性相对较低。这促使设计了BChE变体,该变体对 (-)-可卡因的催化活性显着提高。植物是一种有前途的手段,可以廉价,安全地生产大量的BChE可卡因水解酶变体,而无需担心人类病原体,并且功能等同于其他来源的酶。在这里,在使用MagnICON病毒辅助的瞬时表达系统表达烟草中BChE的可卡因水解突变体,并报告其初始生化分析时,我们提供了植物可以表达具有所需特性的工程化BChE蛋白的原理证明。

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