Xu Peipei, Zhang Rui, Zhou Zhengrong, Xu Honglin, Li Yuejia, Yang Mengge, Lin Ruifan, Wang Yingchun, Huang Xiahe, Xie Qi, Meng Wenxiang
State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Elife. 2025 May 7;14:RP105977. doi: 10.7554/eLife.105977.
The reorientation of the Golgi apparatus is crucial for cell migration and is regulated by multipolarity signals. A number of non-centrosomal microtubules anchor at the surface of the Golgi apparatus and play a vital role in the Golgi reorientation, but how the Golgi are regulated by polarity signals remains unclear. Calmodulin-regulated spectrin-associated protein 2 (CAMSAP2) is a protein that anchors microtubules to the Golgi, a cellular organelle. Our research indicates that CAMSAP2 is dynamically localized at the Golgi during its reorientation processing. Further research shows that CAMSAP2 is potentially regulated by a polarity signaling molecule called MARK2, which interacts with CAMSAP2. We used mass spectrometry to find that MARK2 phosphorylates CAMSAP2 at serine-835, which affects its interaction with the Golgi-associated protein USO1 but not with CG-NAP or CLASPs. This interaction is critical for anchoring microtubules to the Golgi during cell migration, altering microtubule polarity distribution, and aiding Golgi reorientation. Our study reveals an important signaling pathway in Golgi reorientation during cell migration, which can provide insights for research in cancer cell migration, immune response, and targeted drug development.
高尔基体的重新定向对于细胞迁移至关重要,并受多极性信号调控。许多非中心体微管锚定在高尔基体表面,在高尔基体重新定向中发挥重要作用,但高尔基体如何受极性信号调控仍不清楚。钙调蛋白调节的血影蛋白相关蛋白2(CAMSAP2)是一种将微管锚定到细胞器高尔基体上的蛋白质。我们的研究表明,CAMSAP2在高尔基体重新定向过程中动态定位于高尔基体。进一步研究表明,CAMSAP2可能受一种名为MARK2的极性信号分子调控,MARK2与CAMSAP2相互作用。我们通过质谱分析发现,MARK2使CAMSAP2的丝氨酸835位点磷酸化,这影响了它与高尔基体相关蛋白USO1的相互作用,但不影响与CG-NAP或CLASPs的相互作用。这种相互作用对于细胞迁移过程中微管锚定到高尔基体、改变微管极性分布以及协助高尔基体重新定向至关重要。我们的研究揭示了细胞迁移过程中高尔基体重新定向的一条重要信号通路,可为癌细胞迁移、免疫反应及靶向药物开发研究提供思路。