Department of Pharmacology, Kyoto University Graduate School of Medicine, Yoshida-konoe-cho, Sakyo-ku, Kyoto, 606-8501, Japan.
Genes Cells. 2013 Oct;18(10):873-85. doi: 10.1111/gtc.12081. Epub 2013 Jul 25.
mDia is an actin nucleator and polymerization factor regulated by the small GTPase Rho and consists of three isoforms. Here, we found that mice lacking mDia1 and mDia3, two isoforms expressed in the brain, in combination (mDia-DKO mice) show impaired left-right limb coordination during locomotion and aberrant midline crossing of axons of corticospinal neurons and spinal cord interneurons. Given that mice lacking Ephrin-B3-EphA4 signaling show a similar impairment in locomotion, we examined whether mDia is involved in Ephrin-B3-EphA4 signaling for axon repulsion. In primary cultured neurons, mDia deficiency impairs growth cone collapse and axon retraction induced by chemo-repellants including EphA ligands. In mDia-DKO mice, the Ephrin-B3-expressing midline structure in the spinal cord is disrupted, and axons aberrantly cross the spinal cord midline preferentially through the region devoid of Ephrin-B3. Therefore, mDia plays multiple roles in the proper formation of the neural network in vivo.
mDia 是一种肌动蛋白成核因子和聚合因子,受小 GTP 酶 Rho 调控,由三种同工型组成。在这里,我们发现缺乏在大脑中表达的两种同工型 mDia1 和 mDia3 的小鼠(mDia-DKO 小鼠)在运动过程中表现出左右肢体协调受损,皮质脊髓神经元和脊髓中间神经元的轴突中线交叉异常。鉴于缺乏 Ephrin-B3-EphA4 信号的小鼠在运动中也表现出类似的损伤,我们研究了 mDia 是否参与 Ephrin-B3-EphA4 信号的轴突排斥。在原代培养的神经元中,mDia 缺乏会损害由包括 EphA 配体在内的趋化排斥剂诱导的生长锥塌陷和轴突回缩。在 mDia-DKO 小鼠中,脊髓中表达 Ephrin-B3 的中线结构被破坏,轴突异常穿过脊髓中线,优先穿过 Ephrin-B3 缺失的区域。因此,mDia 在体内神经网络的正常形成中发挥多种作用。