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Expression of epithelial calcium transport system in rat cochlea and vestibular labyrinth

机译:上皮钙转运系统在大鼠耳蜗和前庭迷宫中的表达

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Background The low luminal Ca2+ concentration of mammalian endolymph in the inner ear is required for normal hearing and balance. We recently reported the expression of mRNA for a Ca2+-absorptive transport system in primary cultures of semicircular canal duct (SCCD) epithelium. Results We now identify this system in native vestibular and cochlear tissues by qRT-PCR, immunoblots and confocal immunolocalization. Transcripts were found and quantified for several isoforms of epithelial calcium channels (TRPV5, TRPV6), calcium buffer proteins (calbindin-D9K, calbindin-D28K), sodium-calcium exchangers (NCX1, NCX2, NCX3) and plasma membrane Ca2+-ATPase (PMCA1, PMCA2, PMCA3, and PMCA4) in native SCCD, cochlear lateral wall (LW) and stria vascularis (SV) of adult rat as well as Ca2+ channels in neonatal SCCD. All components were expressed except TRPV6 in SV and PMCA2 in SCCD. 1,25-(OH)2vitamin D3 (VitD) significantly up-regulated transcripts of TRPV5 in SCCD, calbindin-D9K in SCCD and LW, NCX2 in LW, while PMCA4 in SCCD and PMCA3 in LW were down-regulated. The expression of TRPV5 relative to TRPV6 was in the sequence SV > Neonatal SCCD > Adult SCCD > LW > primary culture SCCD. Expression of TRPV5 protein from primary culture of SCCD did not increase significantly when cells were incubated with VitD (1.2 times control; P > 0.05). Immunolocalization showed the distribution of TRPV5 and TRPV6. TRPV5 was found near the apical membrane of strial marginal cells and both TRPV5 and TRPV6 in outer and inner sulcus cells of the cochlea and in the SCCD of the vestibular system. Conclusions These findings demonstrate for the first time the expression of a complete Ca2+ absorptive system in native cochlear and vestibular tissues. Regulation by vitamin D remains equivocal since the results support the regulation of this system at the transcript level but evidence for control of the TRPV5 channel protein was lacking.
机译:背景内耳哺乳动物内淋巴的低腔Ca 2+ 浓度是正常听力和平衡所必需的。我们最近报道了在半圆管导管(SCCD)上皮细胞原代培养物中Ca 2 + 吸收转运系统的mRNA表达。结果我们现在通过qRT-PCR,免疫印迹和共聚焦免疫定位在天然前庭和耳蜗组织中鉴定了该系统。找到了转录本,并对上皮钙通道(TRPV5,TRPV6),钙缓冲蛋白(calbindin-D9K,calbindin-D28K),钠钙交换剂(NCX1,NCX2,NCX3)和质膜Ca 2的几种同工型进行了定量。成年大鼠的天然SCCD,耳蜗侧壁(LW)和血管纹(SV)中的+ -ATPase(PMCA1,PMCA2,PMCA3和PMCA4)以及Ca 2+ 通道在新生儿SCCD中。除SV中的TRPV6和SCCD中的PMCA2外,所有组分均表达。 1,25-(OH) 2 维生素D 3 (VitD)显着上调了SCCD中TRPV5的转录本,SCCD和LW中的calbindin-D9K转录,LW中的NCX2, SCCD中的PMCA4和LW中的PMCA3下调。 TRPV5相对于TRPV6的表达顺序为SV>新生儿SCCD>成人SCCD> LW>原代培养SCCD。当细胞与VitD一起孵育时,来自SCCD原始培养的TRPV5蛋白的表达没有明显增加(对照的1.2倍; P> 0.05)。免疫定位显示TRPV5和TRPV6的分布。 TRPV5被发现在质膜​​边缘细胞的顶膜附近,并且在耳蜗的内外沟细胞和前庭系统的SCCD中都发现了TRPV5和TRPV6。结论这些发现首次证明了天然的耳蜗和前庭组织中完整的Ca 2+ 吸收系统的表达。维生素D的调节作用仍然模棱两可,因为结果支持该系统在转录水平上的调节,但缺乏控制TRPV5通道蛋白的证据。

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