Crouch J J, Sakaguchi N, Lytle C, Schulte B A
Department of Pathology and Laboratory Medicine, Medical University of South Carolina, Charleston 29425, USA.
J Histochem Cytochem. 1997 Jun;45(6):773-8. doi: 10.1177/002215549704500601.
We mapped the cellular and subcellular distribution of the Na-K-Cl co-transporter (NKCC) in the adult gerbil inner ear by immunostaining with a monoclonal antibody (MAb T4) generated against human colon NKCC. Heavy immunolabeling was seen in the basolateral plasma membrane of marginal cells in the stria vascularis and dark cells in the vestibular system. Subpopulations of fibrocytes in the cochlear spiral ligament and limbus and underlying the vestibular neurosensory epithelium also stained with moderate to strong intensity, apparently along their entire plasmalemma. Because MAb T4 recognizes both the basolateral secretory (NKCC1) and the apical absorptive (NKCC2) isoforms of the co-transporter, we employed reverse transcription and the polymerase chain reaction (RT-PCR) to explore isoform diversity in inner ear tissues. Using NKCC1 and NKCC2 isoform-specific PCR primers based on mouse and human sequences, only transcripts for NKCC1 were detected in the gerbil inner ear. The presence of abundant NKCC1 in the basolateral plasmalemma of strial marginal and vestibular dark cells confirms conclusions drawn from pharmacological and physiological data. The co-expression of NKCC1 and Na,K-ATPase in highly specialized subpopulations of cochlear and vestibular fibrocytes provides further evidence for their role in recycling K+ leaked or effluxed through hair cells into perilymph back to endolymph, as postulated in current models of inner ear ion homeostasis.
我们通过用针对人结肠钠-钾-氯共转运体(NKCC)产生的单克隆抗体(单克隆抗体T4)进行免疫染色,绘制了成年沙鼠内耳中NKCC的细胞和亚细胞分布。在血管纹边缘细胞的基底外侧质膜和前庭系统的暗细胞中可见大量免疫标记。耳蜗螺旋韧带和边缘以及前庭神经感觉上皮下方的纤维细胞亚群也有中度至强强度的染色,显然沿其整个质膜。由于单克隆抗体T4识别共转运体的基底外侧分泌型(NKCC1)和顶端吸收型(NKCC2)同工型,我们采用逆转录和聚合酶链反应(RT-PCR)来探索内耳组织中的同工型多样性。使用基于小鼠和人序列的NKCC1和NKCC2同工型特异性PCR引物,在沙鼠内耳中仅检测到NKCC1的转录本。血管纹边缘和前庭暗细胞基底外侧质膜中大量NKCC1的存在证实了从药理学和生理学数据得出的结论。NKCC1和钠钾ATP酶在耳蜗和前庭纤维细胞高度特化亚群中的共表达为它们在将通过毛细胞泄漏或流出到外淋巴中的钾离子再循环回内淋巴中的作用提供了进一步证据,这正如当前内耳离子稳态模型所假设的那样。