首页> 美国卫生研究院文献>Biochemical Journal >Relative sensitivity to inhibition by cimetidine and clonidine differentiates between the two types of Na(+)-H+ exchangers in cultured cells.
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Relative sensitivity to inhibition by cimetidine and clonidine differentiates between the two types of Na(+)-H+ exchangers in cultured cells.

机译:对西咪替丁和可乐定抑制的相对敏感性区分了培养细胞中两种类型的Na(+)-H +交换剂。

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摘要

Available evidence indicates that there are two types of Na(+)-H+ exchangers, type A (housekeeping type) and type B (epithelial or apical type), in mammalian cells. We have recently reported, using isolated membrane vesicles, that these two types can be differentiated by their relative sensitivities to inhibition by clonidine and cimetidine [Kulanthaivel, Leibach, Mahesh, Cragoe & Ganapathy (1990) J. Biol. Chem. 264, 1249-1252]. The present study was undertaken to determine whether this approach is also effective in cultured cells. The JAR human placental choriocarcinoma cell line and the opossum kidney (OK) cell line, when grown as confluent monolayer cultures on an impermeable plastic support, express Na(+)-H+ exchanger activity which is measurable by determining Na+ uptake into the cells from the culture medium. The JAR cell Na(+)-H+ exchanger was found to be about 100 times more sensitive to inhibition by dimethylamiloride than the OK cell Na(+)-H+ exchanger. Inhibition studies with clonidine and cimetidine were able to differentiate between these two exchangers very clearly. Cimetidine was 18 times more potent than clonidine in inhibiting the JAR cell Na(+)-H+ exchanger. In contrast, clonidine was at least 8 times more potent than cimetidine in inhibiting the Na(+)-H+ exchanger of the OK cell. The results show that the JAR cell expresses the type A Na(+)-H+ exchanger, whereas the OK cell expresses the type B Na(+)-H+ exchanger. This approach also proved to be very effective in correctly identifying the type of Na(+)-H+ exchanger in a third cell line (HeLa). It is concluded that the relative susceptibility to inhibition by clonidine and cimetidine offers an easy and efficient means of differentiating between the two types of Na(+)-H+ exchangers in cultured cells.
机译:现有证据表明,哺乳动物细胞中存在两种类型的Na(+)-H +交换剂,即A型(管家型)和B型(上皮或顶端型)。最近我们已经报道,使用分离的膜囊泡,可以通过它们对可乐定和西咪替丁抑制的相对敏感性来区分这两种类型[Kulanthaivel,Leibach,Mahesh,Cragoe&Ganapathy(1990)J.Biol.Chem。,1987。化学264,1249-1252]。进行本研究以确定该方法在培养的细胞中是否也有效。当JAR人胎盘绒毛膜癌细胞系和负鼠肾(OK)细胞系在不可渗透的塑料支持物上铺满汇合的单层培养物时,可表达Na(+)-H +交换子活性,该活性可通过确定Na +吸收从细胞中吸收的方式来测量。培养基。发现JAR细胞Na(+)-H +交换剂对二甲基阿米洛利的抑制敏感性比OK细胞Na(+)-H +交换剂高约100倍。使用可乐定和西咪替丁的抑制作用研究可以非常清楚地区分这两个交换剂。西咪替丁在抑制JAR细胞Na(+)-H +交换子方面比可乐定强18倍。相反,可乐定在抑制OK细胞的Na(+)-H +交换子方面的功效至少是西咪替丁的8倍。结果表明,JAR细胞表达A型Na(+)-H +交换子,而OK细胞表达B型Na(+)-H +交换子。该方法还被证明在正确识别第三细胞系(HeLa)中Na(+)-H +交换子的类型方面非常有效。结论是可乐定和西咪替丁抑制的相对敏感性提供了一种简便有效的方法来区分培养细胞中两种类型的Na(+)-H +交换剂。

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