Syringas M, Janin F, Giros B, Costentin J, Bonnet J J
UMR C.N.R.S. 6036, IFRMP 23, U.F.R. de Médecine & Pharmacie, 22 Boulevard Gambetta, 76000 Rouen, France.
Br J Pharmacol. 2001 Jun;133(3):387-94. doi: 10.1038/sj.bjp.0704097.
The ionic dependence of the [3H]-dopamine uptake was studied in transfected cells expressing the human neuronal transporter for dopamine (hDAT) or noradrenaline (hNET), and chimeric transporters resulting from the symmetrical exchange of the region from the NH2 terminal through the first two transmembrane domains (cassette I). Chimera A is formed by hDAT comprising cassette I from hNET, whereas chimera B corresponds to the reverse construct. The appearance or the intensity of a Cl(-)-independent component of transport was linked to the presence of the COOH terminal part of hNET in both monoclonal and polyclonal Ltk(-) cells (Cl(-) substituted by isethionate and NO3(-), respectively), and in transiently transfected COS-7 cells. Cassette I was also involved in the Cl(-)-dependence because the transport activity of polyclonal Ltk(-) cells expressing A was partly Cl(-)-independent and because Ltk(-) cells expressing transporters containing cassette I of hDAT displayed higher K(mCl)- values than cells expressing the reverse constructs. In monoclonal Ltk(-) cell lines, K(mNa)+ values and biphasic vs monophasic dependence upon Na(+) concentrations differentiate transporters containing cassette I of hNET from those containing cassette I of hDAT. In COS-7 cells, the exchange of cassette I produced a significant change in Hill number values. In Na(+)-dependence studies, exchange of the COOH terminal part significantly modified Hill number values in both Ltk(-) and COS-7 cells. Hill number values close to two were found for hNET and hDAT when sucrose was used as substitute for NaCl. The NH2 terminal part of the transporters bears some of the differences in the Na(+) and Cl(-)-dependence of the uptake that are observed between hDAT and hNET. Present results also support a role of the COOH terminal part in the ionic dependence.
在表达人多巴胺(hDAT)或去甲肾上腺素(hNET)神经元转运体的转染细胞以及由从NH2末端到前两个跨膜结构域(盒式结构I)区域对称交换产生的嵌合转运体中,研究了[3H] - 多巴胺摄取的离子依赖性。嵌合体A由包含来自hNET的盒式结构I的hDAT形成,而嵌合体B对应于反向构建体。在单克隆和多克隆Ltk(-)细胞(分别用羟乙基磺酸和NO3(-)替代Cl(-))以及瞬时转染的COS - 7细胞中,转运的Cl(-)非依赖性成分的出现或强度与hNET的COOH末端部分的存在有关。盒式结构I也参与了对Cl(-)的依赖性,因为表达A的多克隆Ltk(-)细胞的转运活性部分不依赖于Cl(-),并且因为表达含有hDAT盒式结构I的转运体的Ltk(-)细胞显示出比表达反向构建体的细胞更高的K(mCl)值。在单克隆Ltk(-)细胞系中,K(mNa)+值以及对Na(+)浓度的双相与单相依赖性将包含hNET盒式结构I的转运体与包含hDAT盒式结构I的转运体区分开来。在COS - 7细胞中,盒式结构I的交换导致Hill系数值发生显著变化。在Na(+)依赖性研究中,COOH末端部分的交换在Ltk(-)和COS - 7细胞中均显著改变了Hill系数值。当用蔗糖替代NaCl时,hNET和hDAT的Hill系数值接近2。转运体的NH2末端部分具有hDAT和hNET之间在摄取的Na(+)和Cl(-)依赖性方面观察到的一些差异。目前的结果也支持COOH末端部分在离子依赖性中的作用。