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首页> 外文期刊>The Biochemical Journal >Calcium-calmodulin gating of a pH-insensitive isoform of connexin43 gap junctions
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Calcium-calmodulin gating of a pH-insensitive isoform of connexin43 gap junctions

机译:Connexin43间隙连接的pH不敏感同种型的钙钙调平蛋白胶片

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摘要

Intracellular protons and calcium ions are two major chemical factors that regulate connexin43 (Cx43) gap junction communication and the synergism or antagonism between pH and Ca2+ has been questioned for decades. To assess the ability of Ca2+ ions to modulate Cx43 junctional conductance (g(j)) in the absence of pH-sensitivity, patch clamp experiments were performed on Neuroblastoma-2a (N2a) cells or neonatal mouse ventricular myocytes (NMVMs) expressing either full-length Cx43 or the Cx43-M257 (Cx43K258stop) mutant protein, a carboxyl-terminus (CT) truncated version of Cx43 lacking pH-sensitivity. The addition of 1 mu M ionomycin to normal calcium saline reduced Cx43 or Cx43-M257 g(j) to zero within 15 min of perfusion. This response was prevented by Ca2+-free saline or addition of 100 nM calmodulin (CaM) inhibitory peptide to the internal pipette solution. Internal addition of a connexin50 cytoplasmic loop calmodulinbinding domain (CaMBD) mimetic peptide (200 nM) prevented the Ca2+/ionomycininduced decrease in Cx43 g(j), while 100 mu M Gap19 peptide had minimal effect. The investigation of the transjunctional voltage (V-j) gating properties of NMVM Cx43-M257 gap junctions confirmed the loss of the fast inactivation of Cx43-M257 g(j), but also noted the abolishment of the previously reported facilitated recovery of gj from inactivating potentials. We conclude that the distal CT domain of Cx43 contributes to the V-j-dependent fast inactivation and facilitated recovery of Cx43 gap junctions, but the Ca2+/CaM-dependent gating mechanism remains intact in its absence. Sequence-specific connexin CaMBD mimetic peptides act by binding Ca2+/CaM non-specifically and the Cx43 mimetic Gap19 peptide has negligible effect on this chemical gating mechanism.
机译:细胞内质子和钙离子是调节Connexin43(CX43)间隙结沟通和pH和CA2 +之间的协同作用或拮抗作用的两种主要化学因素已经质疑几十年。为了评估Ca2 +离子调节CX43的能力(G(j))在没有pH敏感性的情况下,在神经母细胞瘤-2a(n2a)细胞或新生儿小鼠心室肌细胞(nmvms)上进行蛋白钳位实验 - 长度CX43或CX43-M257(CX43K258STOP)突变蛋白,羧基末端(CT)截短的CX43缺乏pH敏感性。将1μm离子霉素加入到正常的钙盐中,将Cx43或CX43-M257g(J)在灌注的15分钟内降至0。通过Ca2 + -Free盐水或加入100nm钙调蛋白(CAM)抑制肽到内部移液管溶液的加入该响应。内部添加ConnexIn50细胞质环钙调蛋白突出结构域(CAMBD)模拟肽(200nm),防止了CX43g(J)的Ca2 + /离子霉素诱导的降低,而100μM间隙19肽的效果最小。对NMVM CX43-M257间隙交界处的转动电压(VJ)门控性能的研究证实了CX43-M257 G(J)的快速失活的丧失,而且还注意到先前报告的GJ的促进恢复免受灭活潜力的丧失。我们得出结论,CX43的远端CT结构域有助于V-J依赖性的快速失活,并促进CX43间隙连接的回收,但CA2 + / CAM依赖的门控机制在不存在下保持完整。通过结合Ca2 + /凸轮非具体地,CX43模拟性Gap19肽对该化学门控机构的效果可忽略不计的Ca2 + /凸轮肽肽肽肽肽肽肽肽的作用。

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