Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, NJ 08854, USA.
Child Health Institute of New Jersey, Robert Wood Johnson Medical School, New Brunswick, NJ 08901, USA.
Development. 2023 Sep 15;150(18). doi: 10.1242/dev.201381. Epub 2023 Sep 25.
Secondary lissencephaly evolved in mice due to effects on neurogenesis and the tangential distribution of neurons. Signaling pathways that help maintain lissencephaly are still poorly understood. We show that inactivating Twist1 in the primitive meninges causes cortical folding in mice. Cell proliferation in the meninges is reduced, causing loss of arachnoid fibroblasts that express Raldh2, an enzyme required for retinoic acid synthesis. Regionalized loss of Raldh2 in the dorsolateral meninges is first detected when folding begins. The ventricular zone expands and the forebrain lengthens at this time due to expansion of apical radial glia. As the cortex expands, regionalized differences in the levels of neurogenesis are coupled with changes to the tangential distribution of neurons. Consequentially, cortical growth at and adjacent to the midline accelerates with respect to more dorsolateral regions, resulting in cortical buckling and folding. Maternal retinoic acid supplementation suppresses cortical folding by normalizing forebrain length, neurogenesis and the tangential distribution of neurons. These results suggest that Twist1 and balanced retinoic acid signaling from the meninges are required to maintain normal levels of neurogenesis and lissencephaly in mice.
次级无脑回在小鼠中由于神经发生和神经元的切向分布的影响而演变。帮助维持无脑回的信号通路仍然知之甚少。我们表明,在原始脑膜中失活 Twist1 会导致小鼠皮质折叠。脑膜中的细胞增殖减少,导致表达 Raldh2 的蛛网膜纤维母细胞丧失,Raldh2 是合成视黄酸所必需的酶。当折叠开始时,首先在背外侧脑膜中检测到 Raldh2 的区域性缺失。由于顶端放射状胶质的扩张,此时脑室区扩张,并且前脑延长。随着皮质的扩展,神经发生的区域性差异与神经元的切向分布的变化相关联。因此,中线处和中线附近的皮质生长相对于更靠外侧的区域加速,导致皮质弯曲和折叠。母体视黄酸补充通过使前脑长度、神经发生和神经元的切向分布正常化来抑制皮质折叠。这些结果表明,Twist1 和脑膜的平衡视黄酸信号对于维持小鼠正常的神经发生和无脑回是必需的。