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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >MgATP may depress de novo neuronal nuclear PAF generation by promoting the formation of alkylacylglycerophosphate, an inhibitor of alkylglycerophosphate acetyltransferase
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MgATP may depress de novo neuronal nuclear PAF generation by promoting the formation of alkylacylglycerophosphate, an inhibitor of alkylglycerophosphate acetyltransferase

机译:MgATP可能通过促进烷基甘油磷酸乙酰基转移酶抑制剂烷基酰基甘油磷酸的形成而抑制从头神经元核PAF的产生

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MgATP substantially inhibited 1-alkyl-sn-glycero-3-phosphate (AGP0 acetyltransferase found in neuronal nuclei. Other nucleotides and the ATP analogue AMP-PNP did not show a comparable inhibition. MgATP inhibition decreased in the presence of bovine serum albumin or the fatty acyl CoA synthetase inhibitor, Triacsin C. MgATP inhibition increased when nuclei were preincubated in 50 mM Tris-HCl (pH 7.4)/l mM MgCl_2 at 37 ℃, and preincubations elevated levels of nuclear free fatty acid. Exogenous free fatty acid, added to the acetylation incubations, increased the inhibition seen in the presence of MgATP. Oleyl CoA, in the absence of MgATP, also inhibited AGP acetylation. These results suggested that MgATP supported the conversion of nuclear free fatty acids to fatty acyl CoA. Fatty acyl CoA may directly inhibit nuclear AGP acetyltransferase, but inhibition brought about by MgATP was competitive for the AGP substrate, suggesting an inhibitor close in structure to AGP. 1-Hexadecyl-2-arachidonoyl-sn-glycero-3-phosphate was identified as a competitive inhibitor for AGP in the acetylation reaction. Neuronal nuclei can convert AGP to 1-alkyl-2-acyl-2n-glycero-3-phosphate (AAcylGP), a reaction dependent upon MgATP and the presence of acetyl CoA or free CoA. This nuclear acylation was increased by free fatty acid addition and was seen using oleoyl CoA in the absence of MgATP. Nuclear AAcylGP formation was inhibited by bovine serum albumin and by Triacsin C. Thus, nuclear AGP acetyltransferase may be regulated by AGP acyltransferase activity and the availability of MgATP, a nucleotide that is rapidly lost during brain ischemia.
机译:MgATP基本上抑制了神经元核中发现的1-烷基-sn-甘油-3-磷酸(AGP0乙酰基转移酶)。其他核苷酸和ATP类似物AMP-PNP均没有类似的抑制作用。当在37 mC的50 mM Tris-HCl(pH 7.4)/ l mM MgCl_2中预孵育细胞核时,MgATP的抑制作用增强,并且核内游离脂肪酸的水平升高,加入外源性游离脂肪酸,增加了脂肪酸酰基CoA合成酶抑制剂TriacsinC。对乙酰化反应的孵育,增加了在MgATP存在下的抑制作用; Oleyl CoA在不存在MgATP的情况下,也抑制了AGP乙酰化作用;这些结果表明MgATP支持将核游离脂肪酸转化为脂肪酰基CoA。可能直接抑制核AGP乙酰基转移酶,但MgATP引起的抑制作用对AGP底物具有竞争性,表明该抑制剂的结构与AGP接近。1-十六烷基-2-花生四烯壬基-sn-甘油-3-磷酸酯被认为是乙酰化反应中AGP的竞争性抑制剂。神经核可以将AGP转化为1-烷基-2-酰基-2n-甘油-3-磷酸酯(AAcylGP),该反应取决于M​​gATP和乙酰基辅酶A或游离辅酶A的存在。游离脂肪酸的添加增加了这种核酰化作用,并且在不存在MgATP的情况下使用油酰辅酶A可以观察到。牛血清白蛋白和Triacsin C抑制核AAcylGP的形成。因此,核AGP乙酰基转移酶可能受AGP酰基转移酶活性和MgATP的可用性调节,MgATP是在脑缺血过程中迅速丢失的核苷酸。

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