Cambridge Centre for Brain Repair, Department of Clinical Neurosciences, University of Cambridge, Cambridge CB2 0PY, United Kingdom.
J Neurosci. 2010 Mar 24;30(12):4246-55. doi: 10.1523/JNEUROSCI.3351-09.2010.
Schwann cells are a promising candidate for bridging spinal cord injuries and remyelinating axons. However, grafted Schwann cells show little intermingling with host astrocytes and therefore limited migration from transplant sites. This leads to the formation of a sharp border between host astrocytes and Schwann cells, which results in axons stalling at the graft-host interface and failing to exit the graft. We investigated the possibility that Eph/ephrin interactions are involved in the segregation of Schwann cells and astrocytes and in limiting Schwann cell migration. Using reverse transcription-PCR, we have characterized the ephrin and Eph profile in cultured Schwann cells and astrocytes, showing that astrocytes produce all the ephrinAs and Schwann cells produce the receptors EphA2, EphA4, and EphA7. Several ephrinAs inhibit Schwann cell migration on laminin, with ephrinA5 being the most effective. Blocking the EphA receptors with excess EphA4-Fc increases Schwann cell migration on astrocytes and improves Schwann-astrocyte intermingling. We show that the action of ephrinA5 on Schwann cells is mediated via VAV2. Both clustered ephrinA5 and astrocyte contact increases the phosphorylation of VAV2 in Schwann cells. Knockdown of VAV2 abrogates the inhibitory effect of clustered ephrinA5 on migration and increases the ability of Schwann cells to migrate on astrocytes. In addition, we found a role for ephrinA5 in inhibiting Schwann cell integrin signaling and function. Overall, we suggest that Eph/ephrin interactions inhibit Schwann cell migration and intermingling with astrocytes via VAV signaling affecting integrin function.
施万细胞是桥接脊髓损伤和髓鞘再生轴突的有前途的候选者。然而,移植的施万细胞与宿主星形胶质细胞很少混合,因此从移植部位的迁移有限。这导致宿主星形胶质细胞和施万细胞之间形成鲜明的边界,导致轴突在移植物-宿主界面处停滞并未能离开移植物。我们研究了 Eph/ephrin 相互作用是否参与施万细胞和星形胶质细胞的隔离以及限制施万细胞迁移的可能性。通过逆转录-PCR,我们已经描述了培养的施万细胞和星形胶质细胞中的 Eph/ephrin 谱,表明星形胶质细胞产生所有的 EphrinAs,而施万细胞产生受体 EphA2、EphA4 和 EphA7。几种 EphrinAs 抑制施万细胞在层粘连蛋白上的迁移,其中 EphrinA5 最有效。用过量的 EphA4-Fc 阻断 EphA 受体可增加施万细胞在星形胶质细胞上的迁移并改善施万细胞与星形胶质细胞的混合。我们表明 EphrinA5 对施万细胞的作用是通过 VAV2 介导的。簇集的 EphrinA5 和星形胶质细胞接触均可增加施万细胞中 VAV2 的磷酸化。VAV2 的敲低可消除 EphrinA5 对迁移的抑制作用,并增加施万细胞在星形胶质细胞上的迁移能力。此外,我们发现 EphrinA5 在抑制施万细胞整合素信号传导和功能方面发挥作用。总体而言,我们认为 Eph/ephrin 相互作用通过影响整合素功能的 VAV 信号传导抑制施万细胞迁移和与星形胶质细胞的混合。