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TRIC-B通道在肺泡上皮细胞钙处理及围产期肺成熟中的重要作用。

Essential role of the TRIC-B channel in Ca2+ handling of alveolar epithelial cells and in perinatal lung maturation.

作者信息

Yamazaki Daiju, Komazaki Shinji, Nakanishi Hiroki, Mishima Aya, Nishi Miyuki, Yazawa Masayuki, Yamazaki Tetsuo, Taguchi Ryo, Takeshima Hiroshi

机构信息

Department of Biological Chemistry, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Development. 2009 Jul;136(14):2355-61. doi: 10.1242/dev.036798. Epub 2009 Jun 10.

Abstract

TRIC channels function as monovalent cation-specific channels that mediate counter ion movements coupled with ryanodine receptor-mediated Ca(2+) release from intracellular stores in muscle cells. Mammalian tissues differentially contain two TRIC channel subtypes: TRIC-A is abundantly expressed in excitable cells, whereas TRIC-B is ubiquitously expressed throughout tissues. Here, we report the physiological role of TRIC-B channels in mouse perinatal development. TRIC-B-knockout neonates were cyanotic owing to respiratory failure and died shortly after birth. In the mutant neonates, the deflated lungs exhibited severe histological defects, and alveolar type II epithelial cells displayed ultrastructural abnormalities. The metabolic conversion of glycogen into phospholipids was severely interrupted in the mutant type II cells, and surfactant phospholipids secreted into the alveolar space were insufficient in the mutant neonates. Moreover, the mutant type II cells were compromised for Ca(2+) release mediated by inositol-trisphosphate receptors, despite Ca(2+) overloading in intracellular stores. Our results indicate that TRIC-B channels take an active part in Ca(2+) signalling to establish specialised functions in type II cells and are thus essential for perinatal lung maturation.

摘要

TRIC通道作为单价阳离子特异性通道发挥作用,介导与肌肉细胞中细胞内钙库释放钙离子(Ca(2+))偶联的反离子运动,而钙离子的释放由雷诺丁受体介导。哺乳动物组织中差异表达两种TRIC通道亚型:TRIC - A在可兴奋细胞中大量表达,而TRIC - B在所有组织中普遍表达。在此,我们报道TRIC - B通道在小鼠围产期发育中的生理作用。TRIC - B基因敲除的新生小鼠因呼吸衰竭而发绀,出生后不久死亡。在突变新生小鼠中,萎陷的肺表现出严重的组织学缺陷,II型肺泡上皮细胞显示出超微结构异常。在突变的II型细胞中,糖原向磷脂的代谢转化严重受阻,突变新生小鼠分泌到肺泡腔中的表面活性物质磷脂不足。此外,尽管细胞内钙库中钙离子过载,但突变的II型细胞中由肌醇三磷酸受体介导的钙离子释放受损。我们的结果表明,TRIC - B通道积极参与钙离子信号传导,以在II型细胞中建立特定功能,因此对于围产期肺成熟至关重要。

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