首页> 美国卫生研究院文献>Metal-Based Drugs >Down-Regulation of Porcine Heart Diaphorase Reactivity byTrimanganese Hexakis(35-Diisopropylsalicylate) Mn3(35-DIPS)6 andDown-Regulation of Nitric Oxide Synthase Reactivity by Mn3(35-DIPS)6 and Cu(II)2(35-DIPS)4
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Down-Regulation of Porcine Heart Diaphorase Reactivity byTrimanganese Hexakis(35-Diisopropylsalicylate) Mn3(35-DIPS)6 andDown-Regulation of Nitric Oxide Synthase Reactivity by Mn3(35-DIPS)6 and Cu(II)2(35-DIPS)4

机译:下调猪心脏心肌酶的反应性。三锰六方(35-二异丙基水杨酸酯)Mn3(35-DIPS)6和Mn3(35-DIPS)6下调一氧化氮合酶反应性 和Cu(II)2(35-DIPS)4

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摘要

Purposes of this work were to examine the plausible down-regulation of porcine heart diaphorase (PHD) enzyme reactivity and nitric oxide synthase (NOS) enzyme reactivity by trimanganese hexakis(3,5-diisopropylsalicylate), [Mn3(3,5-DIPS)6] as well as dicopper tetrakis(3,5- diisopropylsalicylate, [Cu(II)2(3,5-DIPS)4] as a mechanistic accounting for their pharmacological activities.Porcine heart disease was found to oxidize 114 μM reduced nicotinamide-adenine- dinucleotide-′3-phosphate (NADPH) with a corresponding reduction of an equivalent concentration of 2,6-dichlorophenolindophenol (DCPIP). As reported for Cu(II)2 (3,5-DIPS)4, addition of Mn3(3,5-DIPS)6 to this reaction mixture decreased the reduction of DCPIP without significantly affecting the oxidation of NADPH. The concentration of Mn3(3,5-DIPS)6 that produced a 50% decrease in DCPIP reduction (IC50) was found to be 5μM. Mechanistically, this inhibition of DCPIP reduction with ongoing NADPH oxidation by PHD was found to be due to the ability of Mn3(3,5-DIPS)6 to serve as a catalytic electron acceptor for reduced PHD as had been reported for Cu(II)2(3,5-DIPS)4. This catalytic decrease in reduction of DCPIP by Mn3(3,5-DIPS)6 was enhanced by the presence of a large concentration of DCPIP and decreased by the presence of a large concentration of NADPH, consistent with what had been observed for the activity of Cu(II)2(3,5-DIPS)4Oxidation of NADPH by PHD in the presence of Mn3(3,5-DIPS)6 and the absence of DCPIP was linearly related to the concentration of added Mn3(3,5-DIPS)6 through the concentration range of 2.4 μM to 38μM with a 50% recovery of NADPH oxidation by PHD at a concentration of 6 μM Mn3(3,5-DIPS)6Conversion of [3H] L-Arginine to [3H] L-Citrulline by purified rat brain nitric oxide synthase (NOS) was decreased in a concentrated related fashion with the addition of Mn3(3,5-DIPS)6 as well as Cu(II)2(3,5-DIPS)4 which is an extention of results reported earlier for Cu(II)2(3,5-DIPS)4. The concentration of these two compounds required to produce a 50% decrease in L-Citrulline synthesis by NOS, which may be due to down-regulation of NOS, were 0.1 mM and 8μM respectively, consistent with the relative potencies of these two complexes in preventing the reduction of Cytochrome c by NOS.It is concluded that Mn3(3,5-DIPS)6, as has been reported for Cu(II)2 (3,5-DIPS)4 , serves as an electron acceptor in down-regulating PHD and both of these complexes down-regulate rat brain NOS reactivity. A decrease in NO synthesis in animal models of seizure and radiation injury may account for the anticonvulsant, radioprotectant, and radiorecovery activities of Mn3(3,5-DIPS)6 and Cu(II)2(3,5-DIPS)4.
机译:这项工作的目的是检查猪心脏心肌黄递酶(PHD)酶反应性和一氧化氮合酶(3,5-二异丙基水杨酸酯),[Mn3(3,5-DIPS)的一氧化氮合酶(NOS)酶反应性的可能下调。 6]以及四铜双(3,5-二异丙基水杨酸酯,[Cu(II)2(3,5-DIPS)4]作为其药理活性的机理)。发现猪心脏病会氧化114μM还原烟酰胺-腺嘌呤-二核苷酸-'sup> 3 -磷酸酯(NADPH),相应降低了当量浓度的2,6-二氯苯酚吲哚酚(DCPIP)。据报道,对于Cu(II)2(3,5-DIPS )4,向该反应混合物中添加Mn3(3,5-DIPS)6减少了DCPIP的还原,而不会显着影响NADPH的氧化; Mn3(3,5-DIPS)6的浓度降低了50%。发现DCPIP降低(IC50)为5μM。据发现,PHD的氧化是由于Mn3(3,5-DIPS)6充当还原PHD的催化电子受体的能力,正如Cu(II)2(3,5-DIPS)4报道的那样。 Mn3(3,5-DIPS) 6 对DCPIP还原的催化降低在高浓度DCPIP的存在下得到增强,而在高浓度NADPH的存在下被降低,这与在Mn 3 存在下,通过PHD对Cu(II) 2 (3,5-DIPS) 4 氧化NADPH的活性进行了观察sub>(3,5-DIPS) 6 和DCPIP的缺失与添加的Mn 3 (3,5-DIPS) 6的浓度呈线性关系 在2.4μM的浓度范围内 至38μM 在浓度为6μMMn 3 (3,5-DIPS) 6 [ 3 H] L-精氨酸转化为[ 3 H] L-瓜氨酸 纯化的大鼠脑中一氧化氮合酶(NOS)的浓度与添加的浓度有关 Mn 3 (3,5-DIPS) 6 以及Cu(II) 2 (3,5-DIPS) 4 这是先前报道的Cu(II) 2 (3,5-DIPS) 4 结果的扩展。浓度 这两种化合物中,NOS会使L-瓜氨酸合成减少50%所需,这可能是由于 下调NOS,分别为0.1 mM和8μM 分别与这两种复合物的相对效力在防止减少 结论是Mn 3 (3,5-DIPS) 6 ,如Cu(II) 2 (3,5-DIPS) 4 ,在下调PHD中起电子受体的作用,这两种复合物都下调大鼠 大脑NOS反应性。癫痫和辐射损伤动物模型中NO合成的减少可能是造成 3 (3,5-DIPS) 6 的抗惊厥,放射防护和放射修复活性 和Cu(II) 2 (3,5-DIPS) 4

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