Amitai Gabi, Adani Rellie, Yacov Guy, Yishay Shelly, Teitlboim Shai, Tveria Liat, Limanovich Osnat, Kushnir Moshe, Meshulam Haim
Division of Medicinal Chemistry, Israel Institute for Biological Research, PO Box 19, Ness Ziona 74100, Israel.
Toxicology. 2007 Apr 20;233(1-3):187-98. doi: 10.1016/j.tox.2006.09.020. Epub 2006 Oct 13.
In order to enhance the enzymatic detoxification rate of organophosphorus (OP) nerve agents we have searched for more active variants of recombinant mammalian paraoxonase (PON1). We have previously identified three key positions in PON1 that affect OP hydrolysis: Leu69, Val346 and His115, that significantly enhance the hydrolysis of cyclosarin (GF), soman, chlorpyrifos-oxon (ChPo), O-isopropyl-O-(p-nitrophenyl)methylphosphonate (IMP-pNP) and diisopropyl fluorophosphate (DFP). GC/FPD analysis compared to residual AChE inhibition assay displayed stereoselective hydrolysis of GF, soman and IMP-pNP, indicating that wild type PON1 and its variant V346A are more active toward the less toxic P(+) optical isomer. In order to obtain new PON1 variants with reversed stereoselectivity, displaying augmented activity toward the more toxic isomer P(-) of nerve agents, we synthesized new asymmetric fluorogenic OPs (Flu-OPs). Six Flu-OPs were prepared containing either ethyl (E), cyclohexyl (C) or pinacolyl (P) alkyl radicals attached to methyl-phosphonyl (MP) moiety analogous to the structure of VX, GF and soman, respectively. The fluorescent moieties are either 3-cyano-4-methyl-7-hydroxy coumarin (MeCyC) or 1,3-dichloro-7-hydroxy-9,9-dimethyl-9H-acridin-2-one (DDAO). The kinetics of AChE and BChE inhibition by these new Flu-OPs display k(i) values 8.5x10(4) to 8.5x10(7) and 5x10(4) to 2x10(6)M(-1)min(-1), respectively. EMP-MeCyC and EMP-DDAO are the most active inhibitors of AChE whereas CMP-MeCyC and CMP-DDAO are better inhibitors of BChE than AChE, indicating accommodation of bulky cyclohexyl group inside the active site of BChE. PMP-MeCyC and PMP-DDAO are the least active inhibitors of both AChE and BChE. CMP-MeCyC and CMP-DDAO were significantly detoxified only by the five-site mutations PON1 variant L69V/S138L/S193P/N287D/V346A. Degradation kinetics of Flu-OPs measured by increase in absorbance of the released fluorogenic group was fit by a two exponential function, indicating faster hydrolysis of the less toxic optical isomer. Interestingly, wt PON1 caused only 50% degradation of racemic EMP-MeCyC, CMP-MeCyC and CMP-DDAO indicating complete hydrolysis of P(+) isomer. This remarkable stereoselectivity was used for the enzymatic separation of the P(-) isomer of CMP-MeCyC. The bimolecular rate constant k(i) for human AChE inhibition by the isolated P(-) isomer of CMP-MeCyC is five-fold larger than that of its P(+) isomer. The marked preference of wt PON1 toward P(+) stereo-isomer of CMP-MeCyC and CMP-DDAO renders their P(-) stereo-isomers suitable for the selection of new OP hydrolase variants with reversed stereoselectivity.
为提高有机磷(OP)神经毒剂的酶促解毒率,我们寻找了重组哺乳动物对氧磷酶(PON1)更具活性的变体。我们之前已确定PON1中影响OP水解的三个关键位点:Leu69、Val346和His115,它们能显著增强环沙林(GF)、梭曼、毒死蜱氧磷(ChPo)、O - 异丙基 - O - (对硝基苯基)甲基膦酸酯(IMP - pNP)和二异丙基氟磷酸酯(DFP)的水解。与残余乙酰胆碱酯酶(AChE)抑制试验相比,气相色谱/火焰光度检测(GC/FPD)分析显示了GF、梭曼和IMP - pNP的立体选择性水解,表明野生型PON1及其变体V346A对毒性较小的P(+)旋光异构体更具活性。为获得具有相反立体选择性的新PON1变体,使其对毒性更强的神经毒剂P( - )异构体表现出更高活性,我们合成了新的不对称荧光OP(Flu - OP)。制备了六种Flu - OP,并分别连接了乙基(E)、环己基(C)或频哪基(P)烷基到甲基膦酰(MP)部分,分别类似于VX、GF和梭曼的结构。荧光部分为3 - 氰基 - 4 - 甲基 - 7 - 羟基香豆素(MeCyC)或1,3 - 二氯 - 7 - 羟基 - 9,9 - 二甲基 - 9H - 吖啶 - 2 - 酮(DDAO)。这些新型Flu - OP对AChE和丁酰胆碱酯酶(BChE)的抑制动力学显示其抑制常数(k(i))值分别为8.5×10⁴至8.5×10⁷和5×10⁴至2×10⁶M⁻¹min⁻¹。EMP - MeCyC和EMP - DDAO是AChE最有效的抑制剂,而CMP - MeCyC和CMP - DDAO对BChE的抑制作用比对AChE更好,这表明环己基大基团可容纳在BChE的活性位点内。PMP - MeCyC和PMP - DDAO是AChE和BChE最无效的抑制剂。CMP - MeCyC和CMP - DDAO仅被五位点突变的PON1变体L69V/S138L/S193P/N287D/V346A显著解毒。通过释放的荧光基团吸光度增加来测量的Flu - OP降解动力学符合双指数函数,表明毒性较小的旋光异构体水解更快。有趣的是,野生型PON1仅使外消旋EMP - MeCyC、CMP - MeCyC和CMP - DDAO降解50%,表明P(+)异构体完全水解。这种显著的立体选择性被用于CMP - MeCyC的P( - )异构体的酶促分离。分离得到的CMP - MeCyC的P( - )异构体对人AChE抑制的双分子速率常数k(i)比对其P(+)异构体大五倍。野生型PON1对CMP - MeCyC和CMP - DDAO的P(+)立体异构体的明显偏好使得它们的P( - )立体异构体适合用于筛选具有相反立体选择性的新型OP水解酶变体。