Septins Enable T Cell Contact Guidance via Amoeboid-Mesenchymal Switch

Septins 通过变形虫-间充质开关实现 T 细胞接触引导

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作者:Alexander S Zhovmer, Alexis Manning, Chynna Smith, Jian Wang, Xuefei Ma, Denis Tsygankov, Nikolay V Dokholyan, Alexander X Cartagena-Rivera, Rakesh K Singh, Erdem D Tabdanov

Abstract

Lymphocytes exit circulation and enter in-tissue guided migration toward sites of tissue pathologies, damage, infection, or inflammation. By continuously sensing and adapting to the guiding chemo-mechano-structural properties of the tissues, lymphocytes dynamically alternate and combine their amoeboid (non-adhesive) and mesenchymal (adhesive) migration modes. However, which mechanisms guide and balance different migration modes are largely unclear. Here we report that suppression of septins GTPase activity induces an abrupt amoeboid-to-mesenchymal transition of T cell migration mode, characterized by a distinct, highly deformable integrin-dependent immune cell contact guidance. Surprisingly, the T cell actomyosin cortex contractility becomes diminished, dispensable and antagonistic to mesenchymal-like migration mode. Instead, mesenchymal-like T cells rely on microtubule stabilization and their non-canonical dynein motor activity for high fidelity contact guidance. Our results establish septin's GTPase activity as an important on/off switch for integrin-dependent migration of T lymphocytes, enabling their dynein-driven fluid-like mesenchymal propulsion along the complex adhesion cues.

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