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Molecular Dissection of Purinergic P2X Receptor Channels

机译:嘌呤能P2X受体通道的分子解剖

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The P2X receptors (P2XRs) are a family of ATP-gated channels expressed in the plasma membrane of numerous excitable and nonexcitable cells and play important roles in control of cellular functions, such as neurotransmission, hormone secretion, transcriptional regulation, and protein synthesis. P2XRs are homomeric or heteromeric proteins, formed by assembly of at least three of seven subunits named P2X_1-P2X_7. All subunits possess intracellular Nand C-termini, two transmembrane domains, and a relatively large extracellular ligand-binding loop. ATP binds to still an unidentified extracellular domain, leading to a sequence of conformational transitions between closed, open, and desensitized states. Removal of extracellular ATP leads to deactivation and resensitization of receptors. Activated P2XRs generate inward currents caused by Na~+ and Ca~(2+) influx through the pore of channels, and thus mediate membrane depolarization and facilitation of voltage-gated calcium entry in excitable cells. No crystal structures are available for P2XRs and these receptors have no obvious similarity to other ion channels or ATP binding proteins, which limits the progress in understanding the relationship between molecular structure and conformational transitions of receptor in the presence of agonist and after its washout. We summarize here the alternative approaches in studies on molecular properties of P2XRs, including heteromerization, chimerization, mutagenesis, and biochemical studies.
机译:P2X受体(P2xR)是在许多易激发和不纯洁的细胞的质膜中表达的ATP门控通道系列,并在控制细胞功能中起重要作用,例如神经递血,激素分泌,转录调节和蛋白质合成。 P2XR是通过组装七个亚亚基的组装形成的均匀或异络蛋白,其名为P2X_1-P2X_7的七个亚基。所有亚基具有细胞内NAND C-末端,两个跨膜结构域和相对大的细胞外配体结合环。 ATP与仍然是未识别的细胞外结构域,导致闭合,开放和脱敏状态之间的一致转换序列。去除细胞外ATP导致受体的失活和恢复。活化的P2xrs通过通道的孔产生由Na〜+和Ca〜(2+)流入的向内电流,因此在激发细胞中介导膜去极化和促进电压门控钙入口的促进。对于P2XRs没有晶体结构,这些受体与其他离子通道或ATP结合蛋白没有明显的相似性,这限制了了解在激动剂存在下和其冲洗后的受体的分子结构与受体的构象转变之间的关系。在这里总结了P2XRS分子特性研究的替代方法,包括异统化,嵌合,诱变和生物化学研究。

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