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Vertebrate Left-Right Asymmetry: What Can Nodal Cascade Gene Expression Patterns Tell Us?

机译:脊椎动物左右不对称:节点级联基因表达模式可以告诉我们什么?

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摘要

Laterality of inner organs is a wide-spread characteristic of vertebrates and beyond. It is ultimately controlled by the left-asymmetric activation of the Nodal signaling cascade in the lateral plate mesoderm of the neurula stage embryo, which results from a cilia-driven leftward flow of extracellular fluids at the left-right organizer. This scenario is widely accepted for laterality determination in wildtype specimens. Deviations from this norm come in different flavors. At the level of organ morphogenesis, laterality may be inverted (situs inversus) or non-concordant with respect to the main body axis (situs ambiguus or heterotaxia). At the level of Nodal cascade gene activation, expression may be inverted, bilaterally induced, or absent. In a given genetic situation, patterns may be randomized or predominantly lacking laterality (absence or bilateral activation). We propose that the distributions of patterns observed may be indicative of the underlying molecular defects, with randomizations being primarily caused by defects in the flow-generating ciliary set-up, and symmetrical patterns being the result of impaired flow sensing, on the left, the right, or both sides. This prediction, the reasoning of which is detailed in this review, pinpoints functions of genes whose role in laterality determination have remained obscure.
机译:内脏器官的横向性是脊椎动物及其后广泛传播的特征。它最终由神经节期胚胎的侧板中胚层中Nodal信号级联的左非对称激活控制,这是由纤毛驱动的左向右组织器的细胞外液向左流动所致。这种情况已被广泛接受用于野生型标本的侧向测定。与该规范的差异具有不同的风格。在器官形态发生的水平上,侧向性可能相对于主体轴倒置(原位反转)或不一致(原位歧义或异位症)。在节点级联基因激活的水平上,表达可能被颠倒,双向诱导或缺失。在给定的遗传情况下,模式可能是随机的,或者主要是缺乏横向性(缺少或双向激活)。我们建议观察到的模式分布可能表明潜在的分子缺陷,其中随机化主要是由产生流的睫状体设置中的缺陷引起的,而对称模式则是流向感测受损的结果。对,或双方。这项预测的原因在本综述中进行了详细介绍,它精确地指出了在侧向性确定中仍然不清楚的基因的功能。

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