首页> 美国卫生研究院文献>Biochemical Journal >Correlations between the functional integrity of the endoplasmic reticulum and polarized Ca2+ signalling in mouse lacrimal acinar cells: a role for inositol 1345-tetrakisphosphate.
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Correlations between the functional integrity of the endoplasmic reticulum and polarized Ca2+ signalling in mouse lacrimal acinar cells: a role for inositol 1345-tetrakisphosphate.

机译:小鼠泪腺腺泡细胞内质网的功能完整性与极化的Ca2 +信号传导之间的关系:肌醇1345-四基磷酸酯的作用。

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摘要

Ca(2+) signalling in exocrine acinar cells has been shown to be both polarized and pulsatile in all cell types tested, except acutely isolated mouse lacrimal acinar cells. Lacrimal cells are also unusual in that they display a very low sensitivity to Ins(1,4,5) P (3) (Ins P (3)) that may be enhanced by placing the cells in primary culture for 12-72 h or by intracellular infusion of a low concentration of Ins(1,3,4,5) P (4) (Ins P (4)). We have proposed previously that this atypical behaviour stemmed from vesiculation of the endoplasmic reticulum (ER) incurred during isolation of the cells and, furthermore, that time in culture or Ins P (4) increased sensitivity to Ins P (3) by increasing ER integrity [Smith, Harmer, Letcher and Irvine (2000) Biochem. J. 347, 77-82]. We have measured the half time for fluorescence recovery after photobleaching (FRAP) of a fluorescent marker (Mag-fluo 4) loaded into the ER lumen in order to determine directly the functional integrity of the ER in lacrimal cells. The half-time for FRAP was increased (indicating a reduction in the functional integrity of the ER) following exposure to anti-microtubule agents (taxol and nocodazole) known to perturb ER structure and decreased (indicating an increase in the functional integrity of the ER) by time in culture and exposure to Ins P (4). The action of Ins P (4) was particularly pronounced because it occurred under patch-clamp whole-cell conditions that were themselves found to reduce ER functional integrity. These data show that ER remodelling could be a physiological regulator of Ca(2+) signalling and indicate a role for Ins P (4) in control of this process.
机译:Ca(2+)信号在外分泌腺泡细胞已被证明是极化和脉动的所有测试的所有细胞类型中,除了急性分离的小鼠泪腺腺泡细胞。泪细胞也很不寻常,因为它们对Ins(1,4,5)P(3)(Ins P(3))表现出非常低的敏感性,可以通过将细胞置于原代培养12-72 h或通过细胞内注入低浓度的Ins(1,3,4,5)P(4)(Ins P(4))。先前我们曾提出这种非典型行为是由于细胞分离过程中发生的内质网(ER)囊泡化所致,此外,培养时间或Ins P(4)通过增加ER完整性增加了对Ins P(3)的敏感性[Smith,Harmer,Letcher and Irvine(2000)Biochem。 J. 347,77-82]。为了直接确定ER在泪细胞中的功能完整性,我们已经测量了装入ER腔的荧光标记物(Mag-fluo 4)的光漂白(FRAP)后荧光恢复的一半时间。暴露于已知会干扰ER结构的抗微管剂(紫杉醇和诺考达唑)后,FRAP的半衰期增加(表明ER的功能完整性降低),并降低(表明ER的功能完整性提高) )的培养时间并接触Ins P(4)。 Ins P(4)的作用尤为突出,因为它发生在膜片钳全细胞条件下,而后者被发现会降低ER功能的完整性。这些数据表明,ER重塑可能是Ca(2+)信号的生理调节剂,并表明Ins P(4)在此过程的控制中的作用。

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