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首页> 外文期刊>Biochemical and Biophysical Research Communications >Differential adenosine uptake in mixed neuronal/glial or purified glial cultures of avian retinal cells: modulation by adenosine metabolism and the ERK cascade.
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Differential adenosine uptake in mixed neuronal/glial or purified glial cultures of avian retinal cells: modulation by adenosine metabolism and the ERK cascade.

机译:禽视网膜细胞的混合神经元/神经胶质细胞或纯化的神经胶质细胞培养物中的差异腺苷摄取:通过腺苷代谢和ERK级联进行调节。

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摘要

Adenosine is an important modulator of neuronal survival and differentiation in the CNS. Our previous work showed that nucleoside transporters (NTs) are present in cultures of chick retinal cells, but little is known about the mechanisms regulating adenosine transport in these cultures. Our aim in the present work was to study the participation of the adenosine metabolism as well as the ERK pathway on adenosine uptake in different types of retinal cultures (mixed and purified glial cultures). Kinetic analysis in both cultures revealed that the uptake reached equilibrium after 30 min and presented two components. Incubation of cultures with S-(p-nitrobenzyl)-6-thioinosine (NBTI) or dipyridamole, different inhibitors of equilibrative nucleoside transporters (ENTs), produced a significant and concentration-dependent uptake reduction in both cultures. However, while dipyridamole presented similar maximal inhibitory effects in both cultures (although in different concentrations), the inhibition by NBTI was smaller in glial cultures than in mixed cultures, suggesting the presence of different transporters. Moreover, pre-incubation of [(3)H]-adenosine with adenosine deaminase (ADA) or adenosine kinase (ADK) inhibition with iodotubercidin promoted significant uptake inhibition in both cultures, indicating that the uptake is predominantly for adenosine and not inosine, and that taken up adenosine is preferentially directed to the synthesis of adenine nucleotides. In both cultures, the MEK inhibitors PD98059 or UO126, but not the inactive analog U0124, induced a significant and concentration-dependent uptake decrease. We have not observed any change in adenosine metabolism induced by MEK inhibitors, suggesting that this pathway is mediating a direct effect on NTs. Our results show the expression of different NTs in retinal cells in culture and that the activity of these transporters can be regulated by the ERK pathway or metabolic enzymes such as ADK which are then potential targets for regulation of Ado levels in normal or pathological conditions.
机译:腺苷是中枢神经系统中神经元存活和分化的重要调节剂。我们以前的工作表明,雏鸡视网膜细胞培养物中存在核苷转运蛋白(NTs),但对这些培养物中调节腺苷转运的机制知之甚少。我们在当前工作中的目的是研究在不同类型的视网膜培养物(混合和纯化的神经胶质培养物中)腺苷代谢的参与以及ERK途径对腺苷摄取的影响。在两种培养物中的动力学分析均显示,摄取在30分钟后达到平衡,并表现出两种成分。用S-(对硝基苄基)-6-硫代肌苷(NBTI)或双嘧达莫(平衡核苷转运蛋白(ENTs)的不同抑制剂)孵育培养物,在两种培养物中均产生显着且浓度依赖性的摄取减少。然而,虽然双嘧达莫在两种培养物中均表现出相似的最大抑制作用(尽管浓度不同),但胶质培养物中的NBTI抑制作用要小于混合培养物中的抑制作用,表明存在不同的转运蛋白。此外,将[(3)H]-腺苷与腺苷脱氨酶(ADA)或腺苷激酶(ADK)抑制物与碘代试管素的预孵育在两种培养物中均显着促进了显着的吸收抑制作用,表明该吸收主要是腺苷而不是肌苷。腺苷的摄取优先针对腺嘌呤核苷酸的合成。在两种培养物中,MEK抑制剂PD98059或UO126而不是非活性类似物U0124均引起显着且浓度依赖性的摄取降低。我们尚未观察到由MEK抑制剂引起的腺苷代谢的任何变化,表明该途径正在介导对NTs的直接作用。我们的结果显示了培养物中视网膜细胞中不同NTs的表达,并且这些转运蛋白的活性可以通过ERK途径或代谢酶(例如ADK)来调节,而ERK途径则可能是正常或病理条件下Ado水平调节的潜在目标。

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