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儿茶酚胺以非阳离子形式跨嗜铬粒细胞膜转运的化学证据。

Chemical evidence that catecholamines are transported across the chromaffin granule membrane as noncationic species.

作者信息

Ramu A, Levine M, Pollard H

出版信息

Proc Natl Acad Sci U S A. 1983 Apr;80(8):2107-11. doi: 10.1073/pnas.80.8.2107.

Abstract

Catecholamines are transported into chromaffin granules by a Mg2+/ATP-driven process under conditions in which the substrate exists primarily as a positively charged or neutral species. In order to distinguish between these two states, we studied the transport properties of a permanently charged quaternary analogue of epinephrine, (R,S)-dimethylepinephrine. We found that this compound was a classical competitive inhibitor of (R)-[3H]norepinephrine uptake, with a Ki of 3.8 mM for the racemic form, or 1.9 mM for the R form. However, the [3H]dimethylepinephrine was not transported at all into granules. Our control for steric hindrance as an explanation for deficient translocation was analysis of the transport properties of isoproterenol, a secondary catecholamine with an isopropyl group around the amine residue. (R)-Isoproterenol was an effective competitive inhibitor of (R)-[3H]norepinephrine transport, with a Ki of 91 microM. In contrast to dimethylepinephrine, (R,S)-[3H]isoproterenol was clearly translocated across the granule membrane, with a Km of 123 microM, or 61.5 microM for the R isomer. Thus, the positive charge on dimethylepinephrine and not the size of the amine moiety appeared to be responsible for the lack of translocation. We interpret these data to indicate that, although the positively charged species can interact with the transport site, an uncharged species is the one actually transported.

摘要

在底物主要以带正电荷或中性形式存在的条件下,儿茶酚胺通过Mg2+/ATP驱动的过程被转运到嗜铬颗粒中。为了区分这两种状态,我们研究了肾上腺素的一种永久带电的季铵类似物(R,S)-二甲基肾上腺素的转运特性。我们发现该化合物是(R)-[3H]去甲肾上腺素摄取的经典竞争性抑制剂,外消旋体的Ki为3.8 mM,R型为1.9 mM。然而,[3H]二甲基肾上腺素根本不被转运到颗粒中。作为对转运不足的空间位阻解释的对照,我们分析了异丙肾上腺素的转运特性,异丙肾上腺素是一种仲儿茶酚胺,胺残基周围有一个异丙基。(R)-异丙肾上腺素是(R)-[3H]去甲肾上腺素转运的有效竞争性抑制剂,Ki为91 microM。与二甲基肾上腺素相反,(R,S)-[3H]异丙肾上腺素明显地跨颗粒膜转运,Km为123 microM,R异构体为61.5 microM。因此,二甲基肾上腺素上的正电荷而非胺部分的大小似乎是转运缺乏的原因。我们解释这些数据表明,尽管带正电荷的物质可以与转运位点相互作用,但不带电荷的物质才是实际被转运的物质。

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