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Transmembrane voltage potential controls embryonic eye patterning in Xenopus laevis

机译:跨膜电压电位控制非洲爪蟾的胚胎眼图

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摘要

Uncovering the molecular mechanisms of eye development is crucial for understanding the embryonic morphogenesis of complex structures, as well as for the establishment of novel biomedical approaches to address birth defects and injuries of the visual system. Here, we characterize change in transmembrane voltage potential (V mem) as a novel biophysical signal for eye induction in Xenopus laevis. During normal embryogenesis, a striking hyperpolarization demarcates a specific cluster of cells in the anterior neural field. Depolarizing the dorsal lineages in which these cells reside results in malformed eyes. Manipulating V mem of non-eye cells induces well-formed ectopic eyes that are morphologically and histologically similar to endogenous eyes. Remarkably, such ectopic eyes can be induced far outside the anterior neural field. A Ca 2+ channel-dependent pathway transduces the V mem signal and regulates patterning of eye field transcription factors. These data reveal a new, instructive role for membrane voltage during embryogenesis and demonstrate that V mem is a crucial upstream signal in eye development. Learning to control bioelectric initiators of organogenesis offers significant insight into birth defects that affect the eye and might have significant implications for regenerative approaches to ocular diseases.
机译:揭示眼睛发育的分子机制对于理解复杂结构的胚胎形态发生以及建立新的生物医学方法以解决先天缺陷和视觉系统损伤至关重要。在这里,我们将跨膜电压电位(V mem)的变化表征为非洲爪蟾眼睛诱导的新型生物物理信号。在正常的胚胎发生过程中,惊人的超极化作用界定了前神经场中特定的细胞簇。对这些细胞所在的背系进行去极化会导致畸形的眼睛。操纵非眼细胞的V mem可以诱导形态学和组织学上与内源性眼相似的异位眼。值得注意的是,这种异位眼可被诱导到远在前神经野外。 Ca 2+通道依赖性途径转导V mem信号并调节眼场转录因子的模式。这些数据揭示了胚胎发生过程中膜电压的新的指导作用,并表明V mem是眼睛发育中至关重要的上游信号。学习控制器官发生的生物电启动子,可以深入了解影响眼睛的先天缺陷,并且可能对眼部疾病的再生方法产生重大影响。

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