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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >A helix-breaking mutation in the epithelial Ca(2+) channel TRPV5 leads to reduced Ca(2+)-dependent inactivation.
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A helix-breaking mutation in the epithelial Ca(2+) channel TRPV5 leads to reduced Ca(2+)-dependent inactivation.

机译:上皮Ca(2+)通道TRPV5中的螺旋破坏突变导致减少的Ca(2+)依赖性失活。

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摘要

TRPV5, a member of transient receptor potential (TRP) superfamily of ion channels, plays a crucial role in epithelial calcium transport in the kidney. This channel has a high selectivity for Ca(2+) and is tightly regulated by intracellular Ca(2+) concentrations. Recently it was shown that the molecular basis of deafness in varitint-waddler mouse is the result of hair cell death caused by the constitutive activity of transient receptor potential mucolipin 3 (TRPML3) channel carrying a helix breaking mutation, A419P, at the intracellular proximity of the fifth transmembrane domain (TM5). This mutation significantly elevates intracellular Ca(2+) concentration and causes rapid cell death. Here we show that substituting the equivalent location in TRPV5, the M490, to proline significantly modulates Ca(2+)-dependent inactivation of TRPV5. The single channel conductance, time constant of inactivation (tau) and half maximal inhibition constant (IC(50)) of TRPV5(M490P) were increased compared to TRPV5(WT). Moreover TRPV5(M490P) showed lower Ca(2+) permeability. Out of different point mutations created to characterize the importance of M490 in Ca(2+)-dependent inactivation, only TRPV5(M490P)-expressing cells showed apoptosis and extremely altered Ca(2+)-dependent inactivation. In conclusion, the TRPV5 channel is susceptible for helix breaking mutations and the proximal intracellular region of TM5 of this channel plays an important role in Ca(2+)-dependent inactivation.
机译:TRPV5是离子通道的瞬时受体电位(TRP)超家族的成员,在肾脏上皮钙转运中起着至关重要的作用。该通道对Ca(2+)具有很高的选择性,并受到细胞内Ca(2+)浓度的严格调控。最近显示,varitint-waddler小鼠耳聋的分子基础是毛发细胞死亡的结果,毛发细胞死亡是由瞬时螺旋电位潜在的粘液素3(TRPML3)通道在细胞内附近带有螺旋断裂突变A419P的组成性活动引起的。第五跨膜结构域(TM5)。此突变显着提高细胞内Ca(2+)浓度,并导致快速细胞死亡。在这里,我们显示取代TRPV5中的等效位置M490以脯氨酸显着调节TRPV5的Ca(2+)依赖性失活。与TRPV5(WT)相比,TRPV5(M490P)的单通道电导,失活时间常数(tau)和半最大抑制常数(IC(50))有所增加。此外,TRPV5(M490P)的Ca(2+)渗透性较低。从不同的点突变创建来表征M490在依赖Ca(2+)的失活中的重要性,只有TRPV5(M490P)表达的细胞显示凋亡和极大地改变了Ca(2+)的失活。总之,TRPV5通道易受螺旋破坏突变的影响,该通道TM5的近端细胞内区域在Ca(2+)依赖性失活中起重要作用。

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