首页> 美国卫生研究院文献>The Journal of Physiology >Phosphatidylinositol 45-bisphosphate degradation inhibits the Na+/bicarbonate cotransporter NBCe1-B and -C variants expressed in Xenopus oocytes
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Phosphatidylinositol 45-bisphosphate degradation inhibits the Na+/bicarbonate cotransporter NBCe1-B and -C variants expressed in Xenopus oocytes

机译:磷脂酰肌醇45-二磷酸酯的降解抑制非洲爪蟾卵母细胞表达的Na + /碳酸氢盐共转运蛋白NBCe1-B和-C变体

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摘要

The electrogenic Na+/bicarbonate cotransporter (NBCe1) of the Slc4 gene family is a powerful regulator of intracellular pH (pHi) and extracellular pH (pHo), and contributes to solute reabsorption and secretion in many epithelia. Using Xenopus laevis oocytes expressing NBCe1 variants, we have previously reported that the phospholipid phosphatidylinositol 4,5-bisphosphate (PIP2) directly stimulates NBCe1-A in an excised macropatch, and indirectly stimulates NBCe1-B and -C in the intact oocyte primarily through inositol 1,4,5-trisphosphate (InsP3)/Ca2+. In the current study, we used the two-electrode voltage-clamp technique alone or in combination with pH/voltage-sensitive microelectrodes or confocal fluorescence imaging of plasma membrane PIP2 to characterize the PIP2 sensitivity of NBCe1-B and -C in whole oocytes by co-expressing a voltage-sensitive phosphatase (VSP) that decreases PIP2 and bypasses the InsP3/Ca2+ pathway. An oocyte depolarization that activated VSP only transiently stimulated the NBCe1-B/C current, consistent with an initial rapid depolarization-induced NBCe1 activation, and then a subsequent slower VSP-mediated NBCe1 inhibition. Upon repolarization, the NBCe1 current decreased, and then slowly recovered with an exponential time course that paralleled PIP2 resynthesis as measured with a PIP2-sensitive fluorophore and confocal imaging. A subthreshold depolarization that minimally activated VSP caused a more sustained increase in NBCe1 current, and did not lead to an exponential current recovery following repolarization. Similar results were obtained with oocytes expressing a catalytically dead VSP mutant at all depolarized potentials. Depleting endoplasmic reticulum Ca2+ did not inhibit the NBCe1 current recovery following repolarization from VSP activation, demonstrating that changes in InsP3/Ca2+ were not responsible. This study demonstrates for the first time that depleting PIP2 per se inhibits NBCe1 activity. The data in conjunction with previous findings implicate a dual PIP2 regulatory pathway for NBCe1 involving both PIP2 itself and generated InsP3/Ca2+.
机译:Slc4基因家族的电化Na + /碳酸氢盐共转运蛋白(NBCe1)是细胞内pH(pHi)和细胞外pH(pHo)的有力调节剂,并有助于许多上皮中的溶质重吸收和分泌。使用表达NBCe1变体的非洲爪蟾卵母细胞,我们以前曾报道过磷脂磷脂酰肌醇4,5-双磷酸酯(PIP2)直接刺激被切除的大斑块中的NBCe1-A,并主要通过肌醇间接刺激完整卵母细胞中的NBCe1-B和-C 1,4,5-三磷酸(InsP3)/ Ca 2 + 。在当前的研究中,我们单独使用了两电极电压钳技术,或者结合使用了pH /电压敏感的微电极或质膜PIP2的共聚焦荧光成像技术,通过以下方法表征了整个卵母细胞中NBCe1-B和-C的PIP2敏感性:共表达一种降低PIP2并绕过InsP3 / Ca 2 + 途径的电压敏感磷酸酶(VSP)。激活VSP的卵母细胞去极化仅短暂地刺激NBCe1-B / C电流,这与最初的快速去极化诱导的NBCe1活化和随后的较慢的VSP介导的NBCe1抑制相一致。重新极化后,NBCe1电流减小,然后以与PIP2敏感的荧光团和共聚焦成像测量的PIP2重新合成相平行的指数时间过程缓慢恢复。亚阈值去极化最小程度地激活了VSP,导致NBCe1电流更持续地增加,并且在重新极化后并未导致指数电流恢复。用在所有去极化电位下表达催化死亡的VSP突变体的卵母细胞获得了相似的结果。内质网Ca 2 + 的消耗并没有抑制VSP激活后的极化后NBCe1电流的恢复,表明InsP3 / Ca 2 + 的变化不起作用。这项研究首次证明消耗PIP2本身会抑制NBCe1活性。数据与以前的发现相结合,暗示了NBCe1的双重PIP2调控途径涉及PIP2本身和产生的InsP3 / Ca 2 +

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