Department of Chemistry and Alberta Ingenuity Centre for Carbohydrate Science, University of Alberta, Edmonton, Alberta T6G 2G2, Canada.
J Biol Chem. 2010 Apr 9;285(15):11392-401. doi: 10.1074/jbc.M109.075648. Epub 2010 Feb 17.
The leukocyte common antigen, CD45, is a critical immune regulator whose activity is modulated by cytoskeletal interactions. Components of the spectrin-ankyrin cytoskeleton have been implicated in the trafficking and signaling of CD45. We have examined the lateral mobility of CD45 in resting and activated T lymphocytes using single-particle tracking and found that the receptor has decreased mobility caused by increased cytoskeletal contacts in activated cells. Experiments with cells that have disrupted betaI spectrin interactions show decreased cytoskeletal contacts in resting cells and attenuation of receptor immobilization in activated cells. Applying two types of population analyses to single-particle tracking trajectories, we find good agreement between the diffusion coefficients obtained using either a mean squared displacement analysis or a hidden Markov model analysis. Hidden Markov model analysis also reveals the rate of association and dissociation of CD45-cytoskeleton contacts, demonstrating the importance of this analysis for measuring cytoskeleton binding events in live cells. Our findings are consistent with a model in which multiple cytoskeletal contacts, including those with spectrin and ankyrin, participate in the regulation of CD45 lateral mobility. These interactions are a major factor in CD45 immobilization in activated cells. Furthermore, cellular activation leads to CD45 immobilization by reduction of the CD45-cytoskeleton dissociation rate. Short peptides that mimic spectrin repeat domains alter the association rate of CD45 to the cytoskeleton and cause an apparent decrease in dissociation rates. We propose a model for CD45-cytoskeleton interactions and conclude that the spectrin-ankyrin-actin network is an essential determinant of immunoreceptor mobility.
白细胞共同抗原 CD45 是一种关键的免疫调节剂,其活性受细胞骨架相互作用的调节。 spectrin-ankyrin 细胞骨架的成分已被牵连到 CD45 的运输和信号转导中。我们使用单颗粒跟踪技术检查了静止和激活的 T 淋巴细胞中 CD45 的侧向流动性,发现受体的流动性降低是由于激活细胞中细胞骨架接触增加所致。用破坏了 betaI spectrin 相互作用的细胞进行的实验表明,静止细胞中的细胞骨架接触减少,激活细胞中受体固定化减弱。用两种类型的群体分析对单颗粒跟踪轨迹进行分析,我们发现使用均方根位移分析或隐马尔可夫模型分析得到的扩散系数之间有很好的一致性。隐马尔可夫模型分析还揭示了 CD45-细胞骨架接触的缔合和解离速率,证明了这种分析对于测量活细胞中细胞骨架结合事件的重要性。我们的发现与以下模型一致:多个细胞骨架接触,包括与 spectrin 和 ankyrin 的接触,参与了 CD45 侧向流动性的调节。这些相互作用是 CD45 在激活细胞中固定化的主要因素。此外,细胞活化通过降低 CD45-细胞骨架解离速率导致 CD45 固定化。模拟 spectrin 重复结构域的短肽改变了 CD45 与细胞骨架的缔合速率,并导致解离速率的表观降低。我们提出了一个 CD45-细胞骨架相互作用的模型,并得出结论,spectrin-ankyrin-actin 网络是免疫受体流动性的重要决定因素。