首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Relationship between dopamine-stimulated phospholipid methylation and the single-carbon folate pathway.
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Relationship between dopamine-stimulated phospholipid methylation and the single-carbon folate pathway.

机译:多巴胺刺激的磷脂甲基化与单碳叶酸途径之间的关系。

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摘要

In a previous study we demonstrated the ability of dopamine (DA) to stimulate phospholipid methylation (PLM) via a novel mechanism involving the D4 dopamine receptor (D4R) in which single-carbon folates appeared to be the primary source of methyl groups. To further understand the relationship between D4R-mediated PLM and folate metabolism, we examined the effect of several folate pathway interventions on the level of basal and DA-stimulated incorporation of [14C]-labeled formate into phospholipids in cultured SH-SY5Y neuroblastoma cells. These interventions included: (i) Overexpression of methenyltetrahydrofolate synthetase (MTHFS). (ii) Treatment with 5-formylTHF. (iii) Treatment with the MTHFS inhibitor 5-formyltetrahydrohomofolic acid (5-formylTHHF). (iv) Growth in nucleoside-free media. 31P-NMR was also used to follow DA-induced changes in cell phospholipid composition. MTHFS overexpression and 5-formylTHHF treatment, both of which lower 5-methylTHF levels, each reduced basal PLM and its stimulation by DA. In contrast, 5-formylTHF, which increases 5-methylTHF, caused a dose-dependent increase in both basal and DA-stimulated PLM. Growth in nucleoside-free media caused time-dependent changes in PLM, which were due to the absence of purine nucleosides. While basal PLM was maintained at a reduced level, DA-stimulated PLM was initially increased followed by a later decrease. Together, these findings indicate a close functional relationship between single-carbon folate metabolism and DA-stimulated PLM, consistent with a role for 5-methylTHF as the methyl donor for the D4R-mediated process.
机译:在先前的研究中,我们通过涉及D4多巴胺受体(D4R)的新机制证明了多巴胺(DA)刺激磷脂甲基化(PLM)的能力,其中单碳叶酸似乎是甲基的主要来源。为了进一步了解D4R介导的PLM与叶酸代谢之间的关系,我们检查了几种叶酸途径干预对基础的和DA刺激的[14C]标记的甲酸掺入培养的SH-SY5Y神经母细胞瘤细胞中的磷脂水平的影响。这些干预措施包括:(i)亚甲基四氢叶酸合成酶(MTHFS)的过表达。 (ii)用5-甲酰基THF处理。 (iii)用MTHFS抑制剂5-甲酰基四氢同型叶酸(5-甲酰基THHF)处理。 (iv)在无核苷的培养基中生长。 31P-NMR也用于追踪DA诱导的细胞磷脂组成的变化。 MTHFS过表达和5-甲酰基THHF处理均降低了5-甲基THF含量,均降低了基础PLM及其通过DA的刺激。相反,增加5-甲基THF的5-甲酰基THF引起基础和DA刺激的PLM的剂量依赖性增加。无核苷培养基中的生长引起PLM的时间依赖性变化,这是由于缺乏嘌呤核苷所致。在基础PLM维持在降低水平的同时,DA刺激的PLM最初开始升高,随后逐渐下降。总之,这些发现表明单碳叶酸代谢与DA刺激的PLM之间存在紧密的功能关系,这与5-甲基THF作为D4R介导的过程的甲基供体的作用一致。

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