Kurz Angela R M, Pruenster Monika, Rohwedder Ina, Ramadass Mahalakshmi, Schäfer Kerstin, Harrison Ute, Gouveia Gabriel, Nussbaum Claudia, Immler Roland, Wiessner Johannes R, Margraf Andreas, Lim Dae-Sik, Walzog Barbara, Dietzel Steffen, Moser Markus, Klein Christoph, Vestweber Dietmar, Haas Rainer, Catz Sergio D, Sperandio Markus
J Clin Invest. 2016 Nov 1;126(11):4125-4139. doi: 10.1172/JCI87043. Epub 2016 Oct 4.
Neutrophils need to penetrate the perivascular basement membrane for successful extravasation into inflamed tissue, but this process is incompletely understood. Recent findings have associated mammalian sterile 20-like kinase 1 (MST1) loss of function with a human primary immunodeficiency disorder, suggesting that MST1 may be involved in immune cell migration. Here, we have shown that MST1 is a critical regulator of neutrophil extravasation during inflammation. Mst1-deficient (Mst1-/-) neutrophils were unable to migrate into inflamed murine cremaster muscle venules, instead persisting between the endothelium and the basement membrane. Mst1-/- neutrophils also failed to extravasate from gastric submucosal vessels in a murine model of Helicobacter pylori infection. Mechanistically, we observed defective translocation of VLA-3, VLA-6, and neutrophil elastase from intracellular vesicles to the surface of Mst1-/- neutrophils, indicating that MST1 is required for this crucial step in neutrophil transmigration. Furthermore, we found that MST1 associates with the Rab27 effector protein synaptotagmin-like protein 1 (JFC1, encoded by Sytl1 in mice), but not Munc13-4, thereby regulating the trafficking of Rab27-positive vesicles to the cellular membrane. Together, these findings highlight a role for MST1 in vesicle trafficking and extravasation in neutrophils, providing an additional mechanistic explanation for the severe immune defect observed in patients with MST1 deficiency.
中性粒细胞需要穿透血管周围基底膜才能成功渗出到炎症组织中,但这一过程尚未完全清楚。最近的研究发现,哺乳动物 sterile 20 样激酶 1(MST1)功能丧失与一种人类原发性免疫缺陷疾病有关,这表明 MST1 可能参与免疫细胞迁移。在此,我们表明 MST1 是炎症期间中性粒细胞渗出的关键调节因子。Mst1 缺陷(Mst1-/-)的中性粒细胞无法迁移到炎症小鼠提睾肌小静脉中,而是滞留在内皮细胞和基底膜之间。在幽门螺杆菌感染的小鼠模型中,Mst1-/- 中性粒细胞也无法从胃黏膜下血管渗出。从机制上讲,我们观察到 VLA-3、VLA-6 和中性粒细胞弹性蛋白酶从细胞内囊泡向 Mst1-/- 中性粒细胞表面的转运存在缺陷,这表明 MST1 是中性粒细胞迁移这一关键步骤所必需的。此外,我们发现 MST1 与 Rab27 效应蛋白突触结合蛋白样蛋白 1(小鼠中由 Sytl1 编码的 JFC1)相关,但与 Munc13-4 无关,从而调节 Rab27 阳性囊泡向细胞膜的运输。总之,这些发现突出了 MST1 在中性粒细胞囊泡运输和渗出中的作用,为 MST1 缺陷患者中观察到的严重免疫缺陷提供了额外的机制解释。