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首页> 外文期刊>American Journal of Physiology >Heterogeneous distribution of chloride channels along the distal convoluted tubule probed by single-cell RT-PCR and patch clamp.
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Heterogeneous distribution of chloride channels along the distal convoluted tubule probed by single-cell RT-PCR and patch clamp.

机译:通过单细胞RT-PCR和膜片钳探测到的氯化物通道沿远曲小管的异质分布。

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The distal convoluted tubule (DCT) is a heterogeneous segment subdivided into early (DCT1) and late (DCT2) parts, depending on the distribution of various transport systems. We do not have an exhaustive picture of the Cl(-) channels on the basolateral side: the presence of ClC-K2 channels is generally accepted, whereas that of ClC-K1 remains controversial. We used here single-cell RT-PCR and patch clamp to probe Cl(-) channel heterogeneity in microdissected mouse DCT at the molecular and functional levels. Our findings show that 63% of the DCT cells express ClC-K2 mRNA, either alone (type 1 cells: 47 and 23% in DCT1 and DCT2, respectively), or combined with ClC-K1, mostly in DCT2 (type 2 cells: 33%), but 37% of DCT1 and DCT2 cells do not express any ClC-K. Patch-clamp experiments revealed that a Cl(-) channel, with 9-pS conductance and Cl(-) > NO(3)(-) = Br(-) anion selectivity sequence, is present in the DCT1 and DCT2 basolateral membranes (87 and 71% of the patches, respectively). This dominant channel is likely to be ClC-K2 in type 1 cells. In type 2 cells, it could be ClC-K2 and/or ClC-K1 homodimers, but also ClC-K1/ClC-K2 heterodimers, or a mixture of all combinations. A second, distinct Cl(-) channel (13% of DCT1 patches, 29% of DCT2 patches) also displayed 9-pS conductance but had a completely different anion selectivity (I(-) > NO(3)(-) > Br(-) > Cl(-)), which was not compatible with that of the ClC-Ks. This indicates that a Cl(-) channel that is unlikely to belong to the ClC family may also be involved in Cl(-) absorption in the DCT2.
机译:根据各种运输系统的分布,远曲曲小管(DCT)是一个异质部分,分为早期(DCT1)和晚期(DCT2)部分。我们在基底外侧没有详尽的Cl(-)通道图片:ClC-K2通道的存在被普遍接受,而ClC-K1的通道仍存在争议。我们在这里使用单细胞RT-PCR和膜片钳在分子和功能水平上探查微解剖小鼠DCT中的Cl(-)通道异质性。我们的发现表明,有63%的DCT细胞单独表达ClC-K2 mRNA(1型细胞:分别在DCT1和DCT2中为47%和23%),或与ClC-K1结合,主要在DCT2中表达(2型细胞: 33%),但37%的DCT1和DCT2细胞不表达任何ClC-K。膜片钳实验显示,DCT1和DCT2基底外侧膜中存在一个具有9-pS电导且Cl(-)> NO(3)(-)= Br(-)阴离子选择性序列的Cl(-)通道(分别是87和71%的补丁)。在1型细胞中,该显性通道可能是ClC-K2。在2型细胞中,它可能是ClC-K2和/或ClC-K1同二聚体,也可能是ClC-K1 / ClC-K2异二聚体,或者是所有组合的混合物。第二个独特的Cl(-)通道(13%的DCT1膜片,29%的DCT2膜片)也显示9-pS电导,但具有完全不同的阴离子选择性(I(-)> NO(3)(-)> Br (-)> Cl(-)),与ClC-K不兼容。这表明不太可能属于ClC家族的Cl(-)通道也可能与DCT2中的Cl(-)吸收有关。

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