Slepchenko Boris M, Semenova Irina, Zaliapin Ilya, Rodionov Vladimir
Center for Cell Analysis and Modeling, University of Connecticut Health Center, Farmington, CT 06032, USA.
J Cell Biol. 2007 Nov 19;179(4):635-41. doi: 10.1083/jcb.200705146. Epub 2007 Nov 12.
Intracellular transport of membrane organelles occurs along microtubules (MTs) and actin filaments (AFs). Although transport along each type of the cytoskeletal tracks is well characterized, the switching between the two types of transport is poorly understood because it cannot be observed directly in living cells. To gain insight into the regulation of the switching of membrane organelles between the two major transport systems, we developed a novel approach that combines live cell imaging with computational modeling. Using this approach, we measured the parameters that determine how fast membrane organelles switch back and forth between MTs and AFs (the switching rate constants) and compared these parameters during different signaling states. We show that regulation involves a major change in a single parameter: the transferring rate from AFs onto MTs. This result suggests that MT transport is the defining factor whose regulation determines the choice of the cytoskeletal tracks during the transport of membrane organelles.
膜细胞器的细胞内运输沿着微管(MTs)和肌动蛋白丝(AFs)进行。尽管沿着每种细胞骨架轨道的运输都有很好的特征描述,但两种运输类型之间的转换却了解甚少,因为无法在活细胞中直接观察到。为了深入了解膜细胞器在两种主要运输系统之间转换的调控机制,我们开发了一种将活细胞成像与计算建模相结合的新方法。使用这种方法,我们测量了决定膜细胞器在微管和肌动蛋白丝之间来回转换速度的参数(转换速率常数),并比较了不同信号状态下的这些参数。我们表明,调控涉及单个参数的重大变化:从肌动蛋白丝转移到微管上的速率。这一结果表明,微管运输是决定性因素,其调控决定了膜细胞器运输过程中细胞骨架轨道的选择。