首页> 外文期刊>Frontiers in Chemistry >Identification of loop D domain amino acids in the human Aquaporin-1 channel involved in activation of the ionic conductance and inhibition by AqB011
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Identification of loop D domain amino acids in the human Aquaporin-1 channel involved in activation of the ionic conductance and inhibition by AqB011

机译:鉴定人Aquaporin-1通道中的环D结构域氨基酸,涉及离子电导的激活和被AqB011抑制

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Aquaporins are integral proteins that facilitate the transmembrane transport of water and small solutes. In addition to enabling water flux, mammalian Aquaporin-1 (AQP1) channels activated by cyclic GMP can carry non-selective monovalent cation currents, selectively blocked by arylsulfonamide compounds AqB007 (IC50 170 μM) and AqB011 (IC50 14 μM). In silico models suggested that ligand docking might involve the cytoplasmic loop D (between AQP1 transmembrane domains 4 and 5), but the predicted site of interaction remained to be tested. Work here shows that mutagenesis of two conserved arginine residues in loop D slowed the activation of the AQP1 ion conductance and impaired the sensitivity of the channel to block by AqB011. Substitution of residues in loop D with proline showed effects on ion conductance amplitude that varied with position, suggesting that the structural conformation of loop D is important for AQP1 channel gating. Human AQP1 wild type, AQP1 mutant channels with alanines substituted for two arginines (R159A+R160A), and mutants with proline substituted for single residues threonine (T157P), aspartate (D158P), arginine (R159P, R160P) or glycine (G165P) were expressed in Xenopus laevis oocytes. Conductance responses were analyzed by two-electrode voltage clamp. Optical osmotic swelling assays and confocal microscopy were used to confirm mutant and wild type AQP1-expressing oocytes were expressed in the plasma membrane. After application of membrane-permeable cGMP, R159A+R160A channels had a significantly slower rate of activation as compared with wild type, consistent with impaired gating. AQP1 R159A+R160A channels showed no significant block by AqB011 at 50 μM, in contrast to the wild type channel which was blocked effectively. T157P, D158P and R160P mutations had impaired activation compared to wild type; R159P showed no significant effect; and G165P appeared to augment the conductance amplitude. These findings provide evidence for the role of the loop D as a gating domain for AQP1 ion channels, and identify the likely site of interaction of AqB011 in the proximal loop D sequence.
机译:水通道蛋白是促进水和小溶质跨膜运输的必需蛋白。除了允许水通量外,被环状GMP激活的哺乳动物Aquaporin-1(AQP1)通道还可以携带非选择性单价阳离子电流,这些电流被芳基磺酰胺化合物AqB007(IC50 170μM)和AqB011(IC50 14μM)选择性阻断。在计算机模型中,配体对接可能涉及细胞质环D(在AQP1跨膜结构域4和5之间),但相互作用的预测位点仍有待测试。此处的工作表明,诱变环D中两个保守的精氨酸残基会减慢AQP1离子电导的激活,并削弱通道被AqB011阻断的敏感性。用脯氨酸取代环D中的残基对离子电导幅度的影响随位置而变化,这表明环D的结构构象对于AQP1通道门控非常重要。人为AQP1野生型,丙氨酸取代两个精氨酸的AQP1突变体通道(R159A + R160A),脯氨酸取代单个残基的突变体苏氨酸(T157P),天冬氨酸(D158P),精氨酸(R159P,R160P)或甘氨酸(G165P)在非洲爪蟾卵母细胞中表达。用两电极电压钳分析电导响应。使用光学渗透溶胀测定法和共聚焦显微镜来确认突变体和表达野生型AQP1的卵母细胞在质膜中表达。施用膜可渗透性cGMP后,与野生型相比,R159A + R160A通道的活化速率显着降低,这与门控受损一致。与被有效阻断的野生型通道相比,AQP1 R159A + R160A通道在50μM时未受到AqB011的显着阻断。与野生型相比,T157P,D158P和R160P突变激活受损; R159P无明显作用; G165P似乎可以增加电导幅度。这些发现为环D作为AQP1离子通道的门控结构域的作用提供了证据,并确定了近端环D序列中AqB011相互作用的可能部位。

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