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KCNQ3 K+ 电流表达的孔决定因素。

Pore determinants of KCNQ3 K+ current expression.

机构信息

Department of Physiology, University of Texas Health Science Center at San Antonio, San Antonio, Texas, USA.

出版信息

Biophys J. 2012 Jun 6;102(11):2489-98. doi: 10.1016/j.bpj.2012.04.018. Epub 2012 Jun 5.

Abstract

KCNQ3 homomeric channels yield very small macroscopic currents compared with other KCNQ channels or KCNQ2/3 heteromers. Two disparate regions of the channels--the C-terminus and the pore region--have been implicated in governing KCNQ current amplitudes. We previously showed that the C-terminus plays a secondary role compared with the pore region. Here, we confirm the critical role of the pore region in determining KCNQ3 currents. We find that mutations at the 312 position in the pore helix of KCNQ3 (I312E, I312K, and I312R) dramatically decreased KCNQ3 homomeric currents as well as heteromeric KCNQ2/3 currents. Evidence that these mutants were expressed in the heteromers includes shifted TEA sensitivity compared with KCNQ2 homomers. To test for differential membrane protein expression, we performed total internal reflection fluorescence imaging, which revealed only small differences that do not underlie the differences in macroscopic currents. To determine whether this mechanism generalizes to other KCNQ channels, we tested the effects of analogous mutations at the conserved I273 position in KCNQ2, with similar results. Finally, we performed homology modeling of the pore region of wild-type and mutant KCNQ3 channels to investigate the putative structural mechanism mediating these results. The modeling suggests that the lack of current in I312E, I312K, and I312R KCNQ3 channels is due to pore helix-selectivity filter interactions that lock the selectivity filter in a nonconductive conformation.

摘要

与其他 KCNQ 通道或 KCNQ2/3 异源二聚体相比,KCNQ3 同源通道产生的宏观电流非常小。通道的两个不同区域——C 端和孔区——被认为参与调节 KCNQ 电流幅度。我们之前表明,与孔区相比,C 端起次要作用。在这里,我们证实了孔区在确定 KCNQ3 电流中的关键作用。我们发现 KCNQ3 孔螺旋 312 位的突变(I312E、I312K 和 I312R)显著降低了 KCNQ3 同源和 KCNQ2/3 异源二聚体电流。这些突变体在异源二聚体中表达的证据包括与 KCNQ2 同源体相比 TEA 敏感性的变化。为了测试膜蛋白表达的差异,我们进行了全内反射荧光成像,结果仅显示出微小的差异,而这些差异并不是宏观电流差异的基础。为了确定这种机制是否适用于其他 KCNQ 通道,我们测试了在 KCNQ2 中保守的 I273 位置的类似突变的影响,结果相似。最后,我们对野生型和突变型 KCNQ3 通道的孔区进行同源建模,以研究介导这些结果的潜在结构机制。建模表明,I312E、I312K 和 I312R KCNQ3 通道中没有电流是由于孔螺旋-选择性过滤器相互作用,将选择性过滤器锁定在非传导构象中。

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Pore determinants of KCNQ3 K+ current expression.KCNQ3 K+ 电流表达的孔决定因素。
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