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首页> 外文期刊>The Journal of biological chemistry >The Sulfonylurea Receptor 1 (Sur1)-Transient Receptor Potential Melastatin 4 (Trpm4) Channel
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The Sulfonylurea Receptor 1 (Sur1)-Transient Receptor Potential Melastatin 4 (Trpm4) Channel

机译:磺酰脲受体1(SUR1) - 转移受体潜水型素母素4(TRPM4)通道

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摘要

The sulfonylurea receptor 1 (Sur1)-NCCa-ATP channel plays a central role in necrotic cell death in central nervous system (CNS) injury, including ischemic stroke, and traumatic brain and spinal cord injury. Here, we show that Sur1-NCCa-ATP channels are formed by co-assembly of Sur1 and transient receptor potential melastatin 4 (Trpm4). Co-expression of Sur1 and Trpm4 yielded Sur1-Trpm4 heteromers, as shown in experiments with F?rster resonance energy transfer (FRET) and co-immunoprecipitation. Co-expression of Sur1 and Trpm4 also yielded functional Sur1-Trpm4 channels with biophysical properties of Trpm4 and pharmacological properties of Sur1. Co-assembly with Sur1 doubled the affinity of Trpm4 for calmodulin and doubled its sensitivity to intracellular calcium. Experiments with FRET and co-immunoprecipitation showed de novo appearance of Sur1-Trpm4 heteromers after spinal cord injury in rats. Our findings depart from the long-held view of an exclusive association between Sur1 and KATP channels and reveal an unexpected molecular partnership with far-ranging implications for CNS injury.
机译:磺酰脲受体1(SUR1)-NCCA-ATP频道在中枢神经系统(CNS)损伤中起着正规作用,包括缺血性卒中和创伤性脑和脊髓损伤。这里,我们表明SUR1-NCCA-ATP通道由SUR1和瞬态受体潜在素母素4(TRPM4)的共同组装形成。 SUR1和TRPM4的共表达产生SUR1-TRPM4异位,如实验所示,具有F?脊柱螺旋共振能量转移(FRET)和共免疫沉淀。 SUR1和TRPM4的共同表达还产生了功能性SUR1-TRPM4通道,具有TRPM4的生物物理性质和SUR1的药理学性质。具有SUR1的共同组装加倍TRPM4对钙调蛋白的亲和力,并将其对细胞内钙的敏感性翻番。 FRET和CO-IMMUSPRIPITIPITIP的实验显示大鼠脊髓损伤后SUR1-TRPM4异构体的Novo外观。我们的调查结果从SUR1和KATP渠道之间的独家关联进行了长期景观,并揭示了意外的分子伙伴关系,对CNS损伤的远程影响。

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