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多巴胺的实时分析:重组人D2长受体激活状态受调制时的拮抗剂相互作用

Real-time analysis of dopamine: antagonist interactions at recombinant human D2long receptor upon modulation of its activation state.

作者信息

Pauwels P J, Tardif S, Wurch T, Colpaert F C

机构信息

Department of Cellular and Molecular Biology, Centre de Recherche Pierre Fabre, 17, avenue Jean Moulin, 81106 Castres Cédex, France.

出版信息

Br J Pharmacol. 2001 Sep;134(1):88-97. doi: 10.1038/sj.bjp.0704243.

Abstract
  1. Antipsychotic drugs may mediate their therapeutic effects not only by preventing the binding of dopamine but also by decreasing the propensity of the dopamine receptor to assume an active R* state. Ligand-mediated activation and blockade of the recombinant human D(2long) receptor was investigated in CHO-K1 cells upon modulation of its R* state. 2. Both the Ala(371)Lys (A371K) and Thr(372)Arg (T372R) D2long receptor mutants could be activated in a ligand-dependent manner via a chimeric G(alphaq/o) protein, and more efficaciously so than with the promiscuous G(alpha15) protein. 3. Dopamine and partial agonists (E(max): lisuride >> (+)-UH 232 approximately bromerguride) displayed dissimilar Ca(2+) kinetic properties at wild-type and mutant receptors. A371K and T372R D2long receptor mutants demonstrated an attenuated and enhanced maximal response to these partial agonists, respectively. 4. Dopamine antagonists were unable to block the transient high-magnitude Ca(2+) phase at the wild-type D2long receptor upon simultaneous exposure to antagonist and dopamine, while full blockade of the low-magnitude Ca(2+) phase did occur at a later time (onset-time: haloperidol < bromerguride < (+)-butaclamol). A similar, though more efficacious, antagonist profile was also found at the A371K mutant receptor. Conversely, the blockade of the low-magnitude Ca(2+) phase was attenuated (haloperidol) or almost absent [(+)-butaclamol and bromerguride] at the T372R mutant receptor. 5. In conclusion, mutagenesis of the Ala(371) and Thr(372) positions affects in an opposite way the ligand-dependent activation and blockade of the D2long receptor. The observed attenuation of dopamine-mediated Ca(2+) signal generation with different decay-times may underlie distinct properties of the dopaminergic ligands.
摘要
  1. 抗精神病药物可能不仅通过阻止多巴胺的结合,还通过降低多巴胺受体呈现活性R状态的倾向来介导其治疗效果。在CHO - K1细胞中,当重组人D(2long)受体的R状态被调节时,研究了配体介导的该受体的激活和阻断情况。2. Ala(371)Lys (A371K)和Thr(372)Arg (T372R) D2long受体突变体均可通过嵌合G(αq/o)蛋白以配体依赖性方式被激活,且比通过混杂的G(α15)蛋白激活更有效。3. 多巴胺和部分激动剂(E(max):利苏瑞ide >> (+)-UH 232 ≈ 溴麦角环肽)在野生型和突变型受体上表现出不同的Ca(2+)动力学特性。A371K和T372R D2long受体突变体分别对这些部分激动剂表现出减弱和增强的最大反应。4. 多巴胺拮抗剂在同时暴露于拮抗剂和多巴胺时,无法阻断野生型D2long受体处短暂的高强度Ca(2+)阶段,而低强度Ca(2+)阶段的完全阻断在稍后时间确实会发生(起效时间:氟哌啶醇 < 溴麦角环肽 < (+)-布他拉莫)。在A371K突变型受体上也发现了类似但更有效的拮抗剂特征。相反,在T372R突变型受体上,低强度Ca(2+)阶段的阻断减弱(氟哌啶醇)或几乎不存在[ (+)-布他拉莫和溴麦角环肽]。5. 总之,Ala(371)和Thr(372)位点的诱变以相反的方式影响D2long受体的配体依赖性激活和阻断。观察到的多巴胺介导的具有不同衰减时间的Ca(2+)信号产生的减弱可能是多巴胺能配体不同特性的基础。

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