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心脏与灵魂/PRKCi与明眸/ Mpp5在心脏形态发生过程中调节心肌协调性和重塑。

Heart and soul/PRKCi and nagie oko/Mpp5 regulate myocardial coherence and remodeling during cardiac morphogenesis.

作者信息

Rohr Stefan, Bit-Avragim Nana, Abdelilah-Seyfried Salim

机构信息

Max Delbrück Center (MDC Strasse 10, 13125 Berlin, Germany.

出版信息

Development. 2006 Jan;133(1):107-15. doi: 10.1242/dev.02182. Epub 2005 Nov 30.

Abstract

Organ morphogenesis requires cellular shape changes and tissue rearrangements that occur in a precisely timed manner. Here, we show that zebrafish heart and soul (Has)/protein kinase C iota (PRKCi) is required tissue-autonomously within the myocardium for normal heart morphogenesis and that this function depends on its catalytic activity. In addition, we demonstrate that nagie oko (Nok) is the functional homolog of mammalian protein associated with Lin-seven 1 (Pals1)/MAGUK p55 subfamily member 5 (Mpp5), and we dissect its earlier and later functions during myocardial morphogenesis. Has/PRKCi and Nok/Mpp5 are required early for the polarized epithelial organization and coherence of myocardial cells during heart cone formation. Zygotic nok/mpp5 mutants have later myocardial defects, including an incomplete heart tube elongation corresponding with a failure of myocardial cells to correctly expand in size. Furthermore, we show that nok/mpp5 acts within myocardial cells during heart tube elongation. Together, these results demonstrate that cardiac morphogenesis depends on the polarized organization and coherence of the myocardium, and that the expansion of myocardial cell size contributes to the transformation of the heart cone into an elongated tube.

摘要

器官形态发生需要细胞形状改变和组织重排,这些过程以精确的时间顺序发生。在此,我们表明斑马鱼心脏与灵魂(Has)/蛋白激酶Cι(PRKCi)在心肌内以组织自主的方式对于正常心脏形态发生是必需的,并且该功能取决于其催化活性。此外,我们证明纳吉奥科(Nok)是与Lin-7相关蛋白1(Pals1)/膜相关鸟苷酸激酶p55亚家族成员5(Mpp5)的哺乳动物功能同源物,并且我们剖析了其在心肌形态发生过程中早期和晚期的功能。在心脏圆锥形成过程中,Has/PRKCi和Nok/Mpp5对于心肌细胞的极化上皮组织和连贯性是早期必需的。合子型nok/mpp5突变体后期存在心肌缺陷,包括心脏管伸长不完全,这与心肌细胞未能正确扩大尺寸相对应。此外,我们表明nok/mpp5在心脏管伸长过程中在心肌细胞内起作用。总之,这些结果表明心脏形态发生取决于心肌的极化组织和连贯性,并且心肌细胞大小的扩大有助于心脏圆锥转变为细长的管子。

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