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首页> 外文期刊>American Journal of Physiology >Apical and basolateral uptake and intracellular fate of dopamine precursor L-dopa in LLC-PK1 cells.
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Apical and basolateral uptake and intracellular fate of dopamine precursor L-dopa in LLC-PK1 cells.

机译:LLC-PK1细胞中多巴胺前体L-多巴的顶端和基底外侧摄取以及细胞内命运。

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摘要

The present study was aimed at the uptake of L-3,4-dihydroxyphenylalanine (L-dopa) and its intracellular decarboxylation to dopamine. The accumulation of L-dopa from the apical side in cells cultured in collagen-treated plastic was found to be a saturable process with a Michaelis constant (Km) of 123 +/- 17 microM and a maximal velocity (Vmax) of 6.0 +/- 0.2 nmol.mg protein-1.6 min-1. The uptake of L-dopa applied from either the apical or basal cell borders in cells cultured in polycarbonate filters was also found to be saturable; nonlinear analysis of saturation curves for apical and basal application revealed Km values of 63.8 +/- 17.0 and 42.5 +/- 9.6 microM and Vmax values of 32.0 +/- 5.8 and 26.2 +/- 3.4 nmol.mg protein-1.6 min-1, respectively. Cell monolayers incubated with L-dopa, applied from either the apical or the basal side, in the absence of benserazide, led to the accumulation of newly formed dopamine. The intracellular accumulation of newly formed dopamine was a saturable process with apparent Km values of 20.5 +/- 8.2 and 247.3 +/- 76.8 microM when the substrate was applied from the apical and basal side, respectively. Some of the newly formed dopamine escaped to the extracellular milieu. The basal outward transfer of dopamine was five- to sevenfold of that occurring at the apical side and was uniform over a wide range of concentrations of intracellular dopamine; the apical outward transfer of the amine depended on the intracellular concentration of dopamine and was a nonsaturable process. The apical and basal outward transfers of dopamine were insensitive to cocaine (10 and 30 microM) and GBR-12909 (1 and 3 microM). The accumulation of exogenous dopamine in LLC-PK1 cells was found to be saturable; nonlinear analysis of the saturation curves revealed for the apical and basal application of dopamine a Km of 17.7 +/- 4.3 and 96.0 +/- 28.1 microM and a Vmax of 2.0 +/- 0.1 and 2.2 +/- 0.3 nmol.mg protein-1.6 min-1, respectively. However, both cocaine (10, 30, or 100 microM) and GBR-12909 (1 or 3 microM) were found not to affect the uptake of 100 microM dopamine applied from either the apical or the basal cell border. In conclusion, the data presented here show that LLC-PK1 cells are endowed with considerable aromatic L-amino acid decarboxylase (AADC) activity and transport L-dopa quite efficiently through both the apical and basal cell borders. On the other hand, our observations support the possibility of a basal-to-apical gradient of AADC activity and the possibility that LLC-PK1 cells might constitute an interesting in vitro model for the study of the renal dopaminergic physiology.
机译:本研究的目的是摄取L-3,4-二羟基苯丙氨酸(L-多巴)及其细胞内脱羧成多巴胺。发现在胶原蛋白处理过的塑料中培养的细胞中,L-多巴从根尖侧积累是一个饱和过程,其米氏常数(Km)为123 +/- 17 microM,最大速度(Vmax)为6.0 + / -0.2 nmol.mg蛋白质-1.6 min-1。还发现从聚碳酸酯滤膜中培养的细胞的根尖或基底细胞边界吸收的L-多巴是可饱和的。顶点和基础应用的饱和度曲线的非线性分析显示,Km值为63.8 +/- 17.0和42.5 +/- 9.6 microM,Vmax值为32.0 +/- 5.8和26.2 +/- 3.4 nmol.mg蛋白-1.6 min-1 , 分别。在没有苄丝肼的情况下,与L-多巴一起孵育的细胞单层从L-多巴的根尖或基底侧施用,导致新形成的多巴胺的积累。当分别从顶侧和基底侧施加底物时,新形成的多巴胺的细胞内积累是一个可饱和的过程,其表观Km值分别为20.5 +/- 8.2和247.3 +/- 76.8 microM。一些新形成的多巴胺逃逸到细胞外环境。多巴胺的基础向外转移是顶侧发生的五至七倍,并且在细胞内多巴胺的广泛浓度范围内均一。胺的顶端向外转移取决于细胞内多巴胺的浓度,并且是一个不饱和的过程。多巴胺的根尖和基端向外转移对可卡因(10和30 microM)和GBR-12909(1和3 microM)不敏感。发现外源多巴胺在LLC-PK1细胞中的积累是可饱和的。对多巴胺根尖和基础应用的饱和度曲线的非线性分析显示,Km为17.7 +/- 4.3和96.0 +/- 28.1 microM,Vmax为2.0 +/- 0.1和2.2 +/- 0.3 nmol.mg分别为1.6 min-1。然而,发现可卡因(10、30或100 microM)和GBR-12909(1或3 microM)均不影响从根尖或基底细胞边界吸收的100 microM多巴胺的摄取。总之,这里提供的数据表明LLC-PK1细胞具有相当大的芳香L-氨基酸脱羧酶(AADC)活性,并且可以非常有效地将L-多巴通过顶端和基底细胞边界转运。另一方面,我们的观察结果支持了AADC活性从基础到顶端的梯度的可能性,以及LLC-PK1细胞可能构成研究肾脏多巴胺能生理学的有趣的体外模型的可能性。

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