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滚动白细胞中微绒毛延伸和系链形成的动力学

Dynamics of Microvillus Extension and Tether Formation in Rolling Leukocytes.

作者信息

Pospieszalska Maria K, Ley Klaus

机构信息

Division of Inflammation Biology, La Jolla Institute for Allergy and Immunology, La Jolla, California, USA.

出版信息

Cell Mol Bioeng. 2009;2(2):207-217. doi: 10.1007/s12195-009-0063-9.

Abstract

P-selectin glycoprotein ligand-1 (PSGL-1) binding to P-selectin mediates leukocyte rolling under conditions of flow. In human neutrophils, a type of leukocyte belonging to the innate immune system, PSGL-1 molecules are located on the neutrophil's surface ruffles, called microvilli. Each newly formed P-selectin-PSGL-1 bond can become load bearing, imposing on its microvillus a pulling force that deforms the microvillus. Depending on the magnitude of the bond force, a microvillus can be extended, or a thin membrane cylinder (a tether) can be formed at the tip of the microvillus. Here we propose a Kelvin-Voigt viscoelastic material as an improved model for microvillus extension. Using a modified version of our Event-Tracking Model of Adhesion (ETMA), we demonstrate how P-selectin-PSGL-1 load-bearing bonds shape microvillus deformation during neutrophil rolling at low shear (wall shear rate of 50 s(-1), P-selectin site density of 150 molecules μm(-2)). We also discuss the impact of microvillus deformability on neutrophil rolling. We find that the average microvillus extension constitutes 65% of the total microvillus-tether complex extension, and that the rolling neutrophil may never fully rest. A quantitative comparison with the corresponding non-deformable microvilli case supports a concept that the ability of the microvillus to deform stabilizes cell rolling.

摘要

P-选择素糖蛋白配体-1(PSGL-1)与P-选择素的结合介导了血流条件下白细胞的滚动。在人类中性粒细胞(一种属于固有免疫系统的白细胞)中,PSGL-1分子位于中性粒细胞表面的褶皱(称为微绒毛)上。每个新形成的P-选择素-PSGL-1键都可以承受负荷,对其微绒毛施加一个使其变形的拉力。根据键力的大小,微绒毛可以被伸展,或者在微绒毛尖端可以形成一个薄的膜圆柱体(一个系链)。在这里,我们提出用开尔文-沃伊特粘弹性材料作为微绒毛伸展的改进模型。使用我们的粘附事件跟踪模型(ETMA)的修改版本,我们展示了在低剪切力(壁面剪切速率为50 s(-1),P-选择素位点密度为150个分子μm(-2))下中性粒细胞滚动过程中,P-选择素-PSGL-1承重键如何塑造微绒毛变形。我们还讨论了微绒毛可变形性对中性粒细胞滚动的影响。我们发现,微绒毛的平均伸展占微绒毛-系链复合体总伸展的65%,并且滚动的中性粒细胞可能永远不会完全静止。与相应的不可变形微绒毛情况的定量比较支持了一个概念,即微绒毛的变形能力稳定了细胞滚动。

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