Delpire E, Lu J, England R, Dull C, Thorne T
Anesthesiology Research Division, Laboratories of Cellular & Molecular Physiology, and Center for Molecular Neuroscience, Vanderbilt University Medical Center, Nashville, Tennessee 37232, USA.
Nat Genet. 1999 Jun;22(2):192-5. doi: 10.1038/9713.
Deafness can result from a variety of gene defects. Some genes involved in the physiology of hearing encode membrane transporters that regulate the ionic composition of the fluid bathing the inner ear. The endolymph is an extracellular fluid with an atypical composition that resembles the intracellular milieu, high in K+ and low in Na+. Recent studies have emphasized the prominent role of K+ channels in endolymph secretion and mechanical transduction. Coupled electroneutral transport of Na+, K+ and Cl- is mediated by two isoforms of the Na-K-2Cl co-transporter: the absorptive isoform BSC1 (also called NKCC2, encoded by Slc12a1 in mouse) that is exclusively expressed in kidney; and BSC2/NKCC1 (encoded by Slc12a2 in mouse), the secretory isoform which has a wider pattern of expression including epithelia, muscle cells, neurons and red blood cells. These co-transporters share 57% homology at the amino acid level and are pharmacologically inhibited by loop diuretics. There is functional and histochemical evidence for the presence of the secretory isoform of the Na-K-2Cl co-transporter in gerbil, rat and rabbit inner ear. We disrupted mouse Slc12a2 and report here that Slc12a2-/- mice are deaf and exhibit classic shaker/waltzer behaviour, indicative of inner-ear defects. We localized the co-transporter to key secreting epithelia of the mouse inner ear and show that absence of functional co-transporter leads to structural damages in the inner ear consistent with a decrease in endolymph secretion.
耳聋可能由多种基因缺陷导致。一些参与听力生理过程的基因编码膜转运蛋白,这些蛋白调节内耳周围液体的离子组成。内淋巴是一种细胞外液,其成分不典型,类似于细胞内环境,钾离子含量高而钠离子含量低。最近的研究强调了钾离子通道在内淋巴分泌和机械转导中的重要作用。钠离子、钾离子和氯离子的耦合电中性转运由钠 - 钾 - 2氯共转运体的两种亚型介导:吸收性亚型BSC1(也称为NKCC2,在小鼠中由Slc12a1编码),仅在肾脏中表达;以及BSC2/NKCC1(在小鼠中由Slc12a2编码)——分泌性亚型,其表达模式更广泛,包括上皮细胞、肌肉细胞、神经元和红细胞。这些共转运体在氨基酸水平上具有57%的同源性,并且在药理学上受到袢利尿剂的抑制。在沙鼠、大鼠和兔子的内耳中,有功能和组织化学证据表明存在钠 - 钾 - 2氯共转运体的分泌性亚型。我们破坏了小鼠的Slc12a2基因,并在此报告Slc12a2基因敲除小鼠耳聋,并表现出典型的震颤/旋转行为,这表明内耳存在缺陷。我们将该共转运体定位到小鼠内耳的关键分泌上皮细胞,并表明缺乏功能性共转运体会导致内耳结构损伤,这与内淋巴分泌减少一致。