4.3 Article

Schwann cell lamellipodia regulate cell-cell interactions and phagocytosis

期刊

MOLECULAR AND CELLULAR NEUROSCIENCE
卷 88, 期 -, 页码 189-200

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.mcn.2018.01.001

关键词

Glia; Bacteria; Heregulin; Migration; Lamellae

资金

  1. Perry Cross Spinal Research Foundation
  2. Australian Research Council Discovery (ARC) Grant [DP0986294]
  3. ARC Discovery grant [DP150104495]
  4. Clem Jones Foundation
  5. Brain Injury Foundation scholarship
  6. Motor Accident Insurance Commission
  7. Australian Research Council [DP0986294] Funding Source: Australian Research Council

向作者/读者索取更多资源

Lamellipodia in Schwann cells (SCs) are crucial for myelination, but their other biological functions remain largely uncharacterised. Two types of lamellipodia exist in SCs: axial lamellipodia at the outermost edge of the cell processes, and radial lamellipodia appearing peripherally along the entire cell. We have previously shown that radial lamellipodia on olfactory glia (olfactory ensheathing cells; OECs) promote cell-cell adhesion, contact mediated migration and phagocytosis. Here we have investigated whether lamellipodia in SCs have similar roles. Using live-cell imaging, we show that the radial lamellipodia in SCs are highly motile, appear at multiple cellular sites and rapidly move in a wave-like manner. We found that axial and radial lamellipodia had strikingly different roles and are regulated by different intracellular pathways. Axial lamellipodia initiated interactions with other SCs and with neurons by contacting radial lamellipodia on SCs, and budding neurites/axons. Most SC-SC interactions resulted in repulsion, and, lamellipodial activity (unlike in OECs) did not promote contact-mediated migration. We show that lamellipodia are crucial for SC-mediated phagocytosis of both axonal debris and bacteria, and demonstrated that inhibition of lamellipodial activity by blocking the Rho/Rac pathways also inhibits phagocytosis. We also show that heregulin, which induces SC differentiation and maturation, alters lamellipodial behaviour but does not affect phagocytic activity. Overall, the results show that SC lamellipodia are important for cell interactions and phagocytosis.

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