首页> 美国卫生研究院文献>Springer Open Choice >Intracerebral Administration of S-Adenosylhomocysteine or S-Adenosylmethionine Attenuates the Increases in the Cortical Extracellular Levels of Dimethylarginines Without Affecting cGMP Level in Rats with Acute Liver Failure
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Intracerebral Administration of S-Adenosylhomocysteine or S-Adenosylmethionine Attenuates the Increases in the Cortical Extracellular Levels of Dimethylarginines Without Affecting cGMP Level in Rats with Acute Liver Failure

机译:脑内给药S-腺苷半胱氨酸或S-腺苷甲硫氨酸可减轻二甲基精氨酸皮质细胞外水平的升高而不会影响急性肝衰竭大鼠的cGMP水平。

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摘要

Alterations in brain nitric oxide (NO)/cGMP synthesis contribute to the pathogenesis of hepatic encephalopathy (HE). An increased asymmetrically dimethylated derivative of l-arginine (ADMA), an endogenous inhibitor of NO synthases, was observed in plasma of HE patients and animal models. It is not clear whether changes in brain ADMA reflect its increased local synthesis therefore affecting NO/cGMP pathway, or are a consequence of its increased peripheral blood content. We measured extracellular concentration of ADMA and symmetrically dimethylated isoform (SDMA) in the prefrontal cortex of control and thioacetamide (TAA)-induced HE rats. A contribution of locally synthesized dimethylarginines (DMAs) in their extracellular level in the brain was studied after direct infusion of the inhibitor of DMAs synthesizing enzymes (PRMTs), S-adenosylhomocysteine (AdoHcy, 2 mM), or the methyl donor, S-adenosylmethionine (AdoMet, 2 mM), via a microdialysis probe. Next, we analyzed whether locally synthesized ADMA attains physiological significance by determination of extracellular cGMP. The expression of PRMT-1 was also examined. Concentration of ADMA and SDMA, detected by positive mode electrospray LC–DMS–MS/MS, was greatly enhanced in TAA rats and was decreased (by 30 %) after AdoHcy and AdoMet infusion. TAA-induced increase (by 40 %) in cGMP was unaffected after AdoHcy administration. The expression of PRMT-1 in TAA rat brain was unaltered. The results suggest that (i) the TAA-induced increase in extracellular DMAs may result from their effective synthesis in the brain, and (ii) the excess of extracellular ADMA does not translate into changes in the extracellular cGMP concentration and implicate a minor role in brain NO/cGMP pathway control.
机译:脑一氧化氮(NO)/ cGMP合成的变化有助于肝性脑病(HE)的发病机理。在HE患者和动物模型的血浆中观察到增加的1-精氨酸(ADMA)的不对称二甲基化衍生物(ADMA)的内源性抑制剂。目前尚不清楚大脑ADMA的变化是否反映了其增加的局部合成从而影响NO / cGMP途径,还是其外周血含量增加的结果。我们在对照和硫代乙酰胺(TAA)诱导的HE大鼠的前额叶皮层中测量了ADMA和对称二甲基化亚型(SDMA)的细胞外浓度。在直接输注DMA合成酶(PRMT)抑制剂S-腺苷同型半胱氨酸(AdoHcy,2mM)或甲基供体S-腺苷甲硫氨酸后,研究了大脑中局部合成的二甲基精氨酸(DMA)在其细胞外水平中的作用。 (AdoMet,2 mM),通过微透析探针。接下来,我们通过确定细胞外cGMP来分析本地合成的ADMA是否达到生理学意义。还检查了PRMT-1的表达。通过正模式电喷雾LC–DMS–MS / MS检测到的ADMA和SDMA浓度在TAA大鼠中大大提高,并在AdoHcy和AdoMet输注后降低(降低了30%)。 AdoHcy给药后,TAA诱导的cGMP升高(40%)不受影响。 PRMT-1在TAA大鼠脑中的表达未改变。结果表明:(i)TAA诱导的细胞外DMA的增加可能是由于它们在大脑中的有效合成所致;(ii)过量的细胞外ADMA并未转化为细胞外cGMP浓度的变化,并且暗示了其在脑内的较小作用。脑NO / cGMP途径控制。

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