Al-Haddad A, Shonn M A, Redlich B, Blocker A, Burkhardt J K, Yu H, Hammer J A, Weiss D G, Steffen W, Griffiths G, Kuznetsov S A
Institut für Zellbiologie und Biosystemtechnik, FB Biowissenschaften, Universität Rostock, D-18051 Rostock, Germany.
Mol Biol Cell. 2001 Sep;12(9):2742-55. doi: 10.1091/mbc.12.9.2742.
We established a light microscopy-based assay that reconstitutes the binding of phagosomes purified from mouse macrophages to preassembled F-actin in vitro. Both endogenous myosin Va from mouse macrophages and exogenous myosin Va from chicken brain stimulated the phagosome-F-actin interaction. Myosin Va association with phagosomes correlated with their ability to bind F-actin in an ATP-regulated manner and antibodies to myosin Va specifically blocked the ATP-sensitive phagosome binding to F-actin. The uptake and retrograde transport of phagosomes from the periphery to the center of cells in bone marrow macrophages was observed in both normal mice and mice homozygous for the dilute-lethal spontaneous mutation (myosin Va null). However, in dilute-lethal macrophages the accumulation of phagosomes in the perinuclear region occurred twofold faster than in normal macrophages. Motion analysis revealed saltatory phagosome movement with temporarily reversed direction in normal macrophages, whereas almost no reversals in direction were observed in dilute-lethal macrophages. These observations demonstrate that myosin Va mediates phagosome binding to F-actin, resulting in a delay in microtubule-dependent retrograde phagosome movement toward the cell center. We propose an "antagonistic/cooperative mechanism" to explain the saltatory phagosome movement toward the cell center in normal macrophages.
我们建立了一种基于光学显微镜的检测方法,该方法可在体外重建从小鼠巨噬细胞纯化的吞噬体与预先组装的F-肌动蛋白的结合。来自小鼠巨噬细胞的内源性肌球蛋白Va和来自鸡脑的外源性肌球蛋白Va均刺激了吞噬体与F-肌动蛋白的相互作用。肌球蛋白Va与吞噬体的结合与其以ATP调节方式结合F-肌动蛋白的能力相关,并且针对肌球蛋白Va的抗体特异性阻断了ATP敏感的吞噬体与F-肌动蛋白的结合。在正常小鼠和纯合子稀释致死自发突变(肌球蛋白Va缺失)的小鼠的骨髓巨噬细胞中均观察到吞噬体从细胞周边向细胞中心的摄取和逆行运输。然而,在稀释致死的巨噬细胞中,吞噬体在核周区域的积累速度比正常巨噬细胞快两倍。运动分析显示正常巨噬细胞中吞噬体呈跳跃式运动,方向暂时反转,而在稀释致死的巨噬细胞中几乎未观察到方向反转。这些观察结果表明,肌球蛋白Va介导吞噬体与F-肌动蛋白的结合,导致微管依赖性吞噬体向细胞中心的逆行运动延迟。我们提出一种“拮抗/合作机制”来解释正常巨噬细胞中吞噬体向细胞中心的跳跃式运动。