Kiyota Naoki, Shinozaki Youichi, Guo Xiaoli, Kimura Atsuko, Kawamura Kazuto, Nishijima Euido, Honda Sari, Harada Chikako, Nakazawa Toru, Namekata Kazuhiko, Harada Takayuki
Visual Research Project, Tokyo Metropolitan Institute of Medical Science, Tokyo, Japan.
Department of Ophthalmology, Tohoku University Graduate School of Medicine, Sendai, Japan.
Sci Adv. 2025 Jul 25;11(30):eadq7105. doi: 10.1126/sciadv.adq7105.
The molecular mechanisms involved in reconstructing the eye-to-brain connection and functional recovery following optic nerve damage remain unclear. This study revealed that HAUS augmin-like complex subunit 7 (HAUS7) is a molecule that binds to dedicator of cytokinesis 3 (DOCK3), a regulator of neurotrophic factor signaling and axon regeneration. We observed a distribution pattern of HAUS7 expression, suggesting that neuronal HAUS7 is transported from the cell body to the growth cone under the control of DOCK3. In addition, phosphorylation of DOCK3 at Y562 by tropomyosin receptor kinase B signaling leads to the dissociation of HAUS7, which is considered an important step for microtubule assembly. Deletion of in mice significantly reduced microtubule formation and axon regeneration following optic nerve crush (ONC). Transcriptome analysis suggested that HAUS7 levels decrease in glaucoma and after the ONC, while retinal ganglion cells actively regenerating their axons express high levels of HAUS7. In summary, HAUS7 is a binding partner of DOCK3 necessary for axon elongation.
视神经损伤后重建眼脑连接和功能恢复所涉及的分子机制仍不清楚。本研究表明,HAUS有丝分裂纺锤体微管增加样复合体亚基7(HAUS7)是一种与细胞分裂素3(DOCK3)结合的分子,DOCK3是神经营养因子信号传导和轴突再生的调节因子。我们观察到HAUS7的表达分布模式,提示神经元HAUS7在DOCK3的控制下从细胞体运输到生长锥。此外,原肌球蛋白受体激酶B信号传导使DOCK3的Y562位点磷酸化,导致HAUS7解离,这被认为是微管组装的重要步骤。在小鼠中缺失 显著减少了视神经挤压伤(ONC)后的微管形成和轴突再生。转录组分析表明,青光眼和ONC后HAUS7水平降低,而轴突积极再生的视网膜神经节细胞表达高水平的HAUS7。总之,HAUS7是轴突伸长所必需的DOCK3的结合伴侣。