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Analysis of PRICKLE1 in human cleft palate and mouse development demonstrates rare and common variants involved in human malformations

机译:分析人类c裂和小鼠发育中的PRICKLE1表明罕见和常见的变异与人类畸形有关

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摘要

Palate development is shaped by multiple molecular signaling pathways, including the Wnt pathway. In mice and humans, mutations in both the canonical and noncanonical arms of the Wnt pathway manifest as cleft palate, one of the most common human birth defects. Like the palate, numerous studies also link different Wnt signaling perturbations to varying degrees of limb malformation; for example, shortened limbs form in mutations of Ror2,Vangl2looptail and, in particular, Wnt5a. We recently showed the noncanonical Wnt/planar cell polarity (PCP) signaling molecule Prickle1 (Prickle like 1) also stunts limb growth in mice. We now expanded these studies to the palate and show that Prickle1 is also required for palate development, like Wnt5a and Ror2. Unlike in the limb, the Vangl2looptail mutation only aggravates palate defects caused by other mutations. We screened Filipino cleft palate patients and found PRICKLE1 variants, both common and rare, at an elevated frequency. Our results reveal that in mice and humans PRICKLE1 directs palate morphogenesis; our results also uncouple Prickle1 function from Vangl2 function. Together, these findings suggest mouse and human palate development is guided by PCP-Prickle1 signaling that is probably not downstream of Vangl2.
机译:味觉发育受多种分子信号传导途径(包括Wnt途径)的影响。在小鼠和人类中,Wnt途径的规范臂和非规范臂的突变均表现为as裂,这是人类最常见的出生缺陷之一。像上颚一样,许多研究也将不同的Wnt信号扰动与肢体畸形的程度联系起来。例如,缩短的肢体形成于Ror2,Vangl2 looptail ,尤其是Wnt5a的突变中。我们最近显示了非规范的Wnt /平面细胞极性(PCP)信号分子Prickle1(Prickle like 1)也阻碍了小鼠肢体的生长。现在,我们将这些研究扩展到味late,并显示Prickle1也需要味development发育,例如Wnt5a和Ror2。与肢体不同,Vangl2looptail突变只会加剧由其他突变引起的上颚缺损。我们筛选了菲律宾c裂患者,并发现PRICKLE1变体(常见和罕见)的发生频率较高。我们的研究结果表明,在小鼠和人类中,PRICKLE1指导味觉形态发生。我们的结果还将Prickle1函数与Vangl2函数解耦。总之,这些发现表明小鼠和人的上颚发育受PCP-Prickle1信号传导的指导,该信号可能不在Vangl2的下游。

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