Krapivinsky G, Medina I, Eng L, Krapivinsky L, Yang Y, Clapham D E
Howard Hughes Medical Institute, Children's Hospital Cardiovascular Division and Harvard Medical School, Boston, Massachusetts 02115, USA.
Neuron. 1998 May;20(5):995-1005. doi: 10.1016/s0896-6273(00)80480-8.
We have cloned a novel K+-selective, inward rectifier channel that is widely expressed in brain but is especially abundant in the Purkinje cell layer of the cerebellum and pyramidal cells of the hippocampus. It is also present in a wide array of tissues, including kidney and intestine. The channel is only 38% identical to its closest relative, Kir1.3 (Kir1-ATP-regulated inward rectifier K+ [ROMK] family) and displays none of the functional properties unique to the ROMK class. Kir7.1 has several unique features, including a very low estimated single channel conductance (approximately 50 fS), low sensitivity to block by external Ba2+ and Cs+, and no dependence of its inward rectification properties on the internal blocking particle Mg2+. The unusual pore properties of Kir7.1 seem to be explained by amino acids in the pore sequence that differ from corresponding conserved residues in all other Kir channel proteins. Replacement of one of these amino acids (Met-125) with the Arg absolutely conserved in all other Kir channels dramatically increases its single channel conductance and Ba2+ sensitivity. This channel would provide a steady background K+ current to help set the membrane potential in cells in which it is expressed. We propose that the novel channel be assigned to a new Kir subfamily, Kir7.1.
我们克隆了一种新型的钾离子选择性内向整流通道,该通道在大脑中广泛表达,但在小脑浦肯野细胞层和海马锥体细胞中尤其丰富。它也存在于包括肾脏和肠道在内的多种组织中。该通道与其最接近的亲属Kir1.3(Kir1-ATP调节内向整流钾离子通道[ROMK]家族)仅有38%的同源性,并且不具有ROMK类独特的功能特性。Kir7.1具有几个独特的特征,包括估计的单通道电导非常低(约50飞西门子)、对外部Ba2+和Cs+阻断的敏感性低,以及其内向整流特性不依赖于内部阻断颗粒Mg2+。Kir7.1不寻常的孔道特性似乎可以由孔道序列中的氨基酸来解释,这些氨基酸与所有其他Kir通道蛋白中相应的保守残基不同。将这些氨基酸之一(Met-125)替换为所有其他Kir通道中绝对保守的Arg,会显著增加其单通道电导和对Ba2+的敏感性。该通道将提供稳定的背景钾离子电流,以帮助设定其表达细胞中的膜电位。我们建议将这种新型通道归入一个新的Kir亚家族,即Kir7.1。