Dasgupta Agnik, Amack Jeffrey D
Department of Cell and Developmental Biology, State University of New York, Upstate Medical University, Syracuse, NY 13210, USA.
Department of Cell and Developmental Biology, State University of New York, Upstate Medical University, Syracuse, NY 13210, USA
Philos Trans R Soc Lond B Biol Sci. 2016 Dec 19;371(1710). doi: 10.1098/rstb.2015.0410.
Understanding how left-right (LR) asymmetry is generated in vertebrate embryos is an important problem in developmental biology. In humans, a failure to align the left and right sides of cardiovascular and/or gastrointestinal systems often results in birth defects. Evidence from patients and animal models has implicated cilia in the process of left-right patterning. Here, we review the proposed functions for cilia in establishing LR asymmetry, which include creating transient leftward fluid flows in an embryonic 'left-right organizer'. These flows direct asymmetric activation of a conserved Nodal (TGFβ) signalling pathway that guides asymmetric morphogenesis of developing organs. We discuss the leading hypotheses for how cilia-generated asymmetric fluid flows are translated into asymmetric molecular signals. We also discuss emerging mechanisms that control the subcellular positioning of cilia and the cellular architecture of the left-right organizer, both of which are critical for effective cilia function during left-right patterning. Finally, using mosaic cell-labelling and time-lapse imaging in the zebrafish embryo, we provide new evidence that precursor cells maintain their relative positions as they give rise to the ciliated left-right organizer. This suggests the possibility that these cells acquire left-right positional information prior to the appearance of cilia.This article is part of the themed issue 'Provocative questions in left-right asymmetry'.
了解脊椎动物胚胎中左右不对称是如何产生的,是发育生物学中的一个重要问题。在人类中,心血管和/或胃肠道系统左右两侧未能对齐常常会导致出生缺陷。来自患者和动物模型的证据表明纤毛参与了左右模式形成过程。在这里,我们回顾了纤毛在建立左右不对称中所提出的功能,其中包括在胚胎“左右组织者”中产生短暂的向左流体流动。这些流动引导保守的Nodal(转化生长因子β)信号通路的不对称激活,该信号通路指导发育中器官的不对称形态发生。我们讨论了关于纤毛产生的不对称流体流动如何转化为不对称分子信号的主要假说。我们还讨论了控制纤毛亚细胞定位和左右组织者细胞结构的新出现机制,这两者对于左右模式形成过程中纤毛的有效功能都至关重要。最后,通过在斑马鱼胚胎中进行嵌合细胞标记和延时成像,我们提供了新的证据,即前体细胞在产生纤毛化的左右组织者时保持其相对位置。这表明这些细胞在纤毛出现之前就获得左右位置信息的可能性。本文是“左右不对称中的挑战性问题”主题特刊的一部分。