Bone Marrow Research Laboratories, Melbourne Health Research Directorate, c/o Royal Melbourne Hospital Post Office, Parkville, VIC 3050, Australia.
Dev Biol. 2010 Sep 15;345(2):237-45. doi: 10.1016/j.ydbio.2010.07.017. Epub 2010 Jul 21.
Primary neurulation in mammals has been defined by distinct anatomical closure sites, at the hindbrain/cervical spine (closure 1), forebrain/midbrain boundary (closure 2), and rostral end of the forebrain (closure 3). Zones of neurulation have also been characterized by morphologic differences in neural fold elevation, with non-neural ectoderm-induced formation of paired dorso-lateral hinge points (DLHP) essential for neural tube closure in the cranial and lower spinal cord regions, and notochord-induced bending at the median hinge point (MHP) sufficient for closure in the upper spinal region. Here we identify a unifying molecular basis for these observations based on the function of the non-neural ectoderm-specific Grainy head-like genes in mice. Using a gene-targeting approach we show that deletion of Grhl2 results in failed closure 3, with mutants exhibiting a split-face malformation and exencephaly, associated with failure of neuro-epithelial folding at the DLHP. Loss of Grhl3 alone defines a distinct lower spinal closure defect, also with defective DLHP formation. The two genes contribute equally to closure 2, where only Grhl gene dosage is limiting. Combined deletion of Grhl2 and Grhl3 induces severe rostral and caudal neural tube defects, but DLHP-independent closure 1 proceeds normally in the upper spinal region. These findings provide a molecular basis for non-neural ectoderm mediated formation of the DLHP that is critical for complete neuraxis closure.
哺乳动物的初级神经胚形成已被定义为具有独特的解剖学封闭部位,即后脑/颈椎(封闭 1)、前脑/中脑边界(封闭 2)和前脑的颅端(封闭 3)。神经胚形成区也具有神经褶隆起的形态学差异特征,神经外胚层诱导形成的成对背外侧铰链点(DLHP)对于颅侧和下脊髓区域神经管的闭合至关重要,而中轴诱导的弯曲在中铰链点(MHP)足以完成上脊髓区域的闭合。在这里,我们基于小鼠中非神经外胚层特异性 Grainy head-like 基因的功能,确定了这些观察结果的统一分子基础。通过基因靶向方法,我们表明 Grhl2 的缺失导致封闭 3 失败,突变体表现出面部分裂畸形和无脑畸形,与 DLHP 处神经上皮折叠失败有关。单独缺失 Grhl3 定义了一个独特的下脊髓闭合缺陷,也存在 DLHP 形成缺陷。这两个基因在封闭 2 中贡献相等,只有 Grhl 基因剂量是有限的。Grhl2 和 Grhl3 的联合缺失会导致严重的颅尾神经管缺陷,但上脊髓区域的 DLHP 独立封闭 1 正常进行。这些发现为非神经外胚层介导的 DLHP 形成提供了分子基础,这对于完整神经轴闭合至关重要。