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首页> 外文期刊>Macromolecular symposia >Modeling Ca-polyanion crosslinking in secretory networks. Assessment of charge density and bond affinity in polyanionic secretory networks
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Modeling Ca-polyanion crosslinking in secretory networks. Assessment of charge density and bond affinity in polyanionic secretory networks

机译:在分泌网络中模拟Ca-聚阴离子交联。聚阴离子分泌网络中电荷密度和键亲和力的评估

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Materials released by secretory cells are stored inside intracellular membrane-bound vesicles. These moieties are not freely diffusible in the vesicle but remain immobilized in a Ca2+-crosslinked condensed-phase polyanionic polymer matrix. During exocytosis a Na+/Ca2+ ion exchange process triggers a volume phase transition resulting in massive swelling and release of the materials to the extracellular space. Here we formulate a simple model to assess Ca2+-ion binding from the swelling kinetics of polymer networks. We found the diffusivity of the networks (D) exhibits a power-law dependency on the Ca2+ concentration where D proportional to [Ca2+] (-2/3). The model yields an estimate of charge density and ionic affinity of the polymer chains. Studies of post-exocytic swelling kinetics in airway mucin granules, mast cell granules and granules from the microalga (Phaeocystis globosa) were used to validate predictions from our model. These results suggest that independent of the cell type, from animal to plant cells, a single polyelectrolyte interaction mechanism appear to be responsible for product release in exocytosis.
机译:分泌细胞释放的物质储存在细胞内膜结合的囊泡中。这些部分在囊泡中不能自由扩散,而是保持固定在Ca2 +交联的缩合相聚阴离子聚合物基质中。在胞吐过程中,Na + / Ca2 +离子交换过程触发了体积相变,从而导致物质大量膨胀并释放到细胞外空间。在这里,我们制定了一个简单的模型,以从聚合物网络的溶胀动力学评估Ca2 +离子的结合。我们发现网络的扩散性(D)对Ca2 +浓度表现出幂律依赖性,其中D与[Ca2 +](-2/3)成比例。该模型可以估算出聚合物链的电荷密度和离子亲和力。对气道粘蛋白颗粒,肥大细胞颗粒和微藻颗粒(Phaeocystis globosa)中的胞外膨胀后动力学的研究被用于验证我们模型的预测。这些结果表明,与细胞类型无关,从动物细胞到植物细胞,单一的聚电解质相互作用机制似乎是胞吐作用中产物释放的原因。

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