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斑马鱼胚胎中囊胚中期转换后,在浅表上皮中建立短暂的背侧偏向性局部Ca2+信号传导窗口。

Establishment of a transitory dorsal-biased window of localized Ca2+ signaling in the superficial epithelium following the mid-blastula transition in zebrafish embryos.

作者信息

Ma Leung Hang, Webb Sarah E, Chan Ching Man, Zhang Jiao, Miller Andrew L

机构信息

Department of Biology, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.

出版信息

Dev Biol. 2009 Mar 1;327(1):143-57. doi: 10.1016/j.ydbio.2008.12.015. Epub 2008 Dec 24.

Abstract

Using complementary luminescent- and fluorescent-based Ca(2+) imaging techniques, we have re-examined the Ca(2+) dynamics that occur during the Blastula Period (BP) of zebrafish development. We confirm that aperiodic, localized Ca(2+) transients are generated predominately in the superficial epithelial cells (SECs). At the start of the BP, these Ca(2+) transients are distributed homogeneously throughout the entire superficial epithelium. Following the mid-blastula transition (MBT), however, their distribution becomes asymmetrical, where a significantly greater number are generated in the presumptive dorsal quadrant of the superficial epithelium. This asymmetry in Ca(2+) signaling lasts for around 60 min, after which the total number of transients generated from the entire superficial epithelium falls to less than one per minute until the end of the BP. We have thus called this asymmetry the "dorsal-biased Ca(2+) signaling window". The application of pharmacological agents indicates that the post-MBT SEC Ca(2+) transients are generated via the phosphatidylinositol (PI) signaling pathway. This suggests that the previously reported ventralizing function attributed to the homogeneously distributed PI pathway-generated SEC Ca(2+) transients is most likely to occur earlier in development, prior to the MBT.

摘要

运用基于互补发光和荧光的Ca(2+)成像技术,我们重新研究了斑马鱼发育囊胚期(BP)期间发生的Ca(2+)动态变化。我们证实,非周期性的、局部的Ca(2+)瞬变主要在表层上皮细胞(SECs)中产生。在BP开始时,这些Ca(2+)瞬变均匀分布于整个表层上皮。然而,在囊胚中期转换(MBT)之后,它们的分布变得不对称,在表层上皮的预定背侧象限中产生的数量明显更多。这种Ca(2+)信号的不对称持续约60分钟,之后从整个表层上皮产生的瞬变总数降至每分钟不到一个,直至BP结束。因此,我们将这种不对称称为“背侧偏向的Ca(2+)信号窗口”。药理学试剂的应用表明,MBT后SECs的Ca(2+)瞬变是通过磷脂酰肌醇(PI)信号通路产生的。这表明,先前报道的归因于均匀分布的PI通路产生的SECs Ca(2+)瞬变的腹侧化功能最有可能在发育早期、MBT之前发生。

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