首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Kindlin-3 Is Essential for the Resting α4β1 Integrin-mediated Firm Cell Adhesion under Shear Flow Conditions
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Kindlin-3 Is Essential for the Resting α4β1 Integrin-mediated Firm Cell Adhesion under Shear Flow Conditions

机译:Kindlin-3对于在剪切流条件下静止的α4β1整合素介导的牢固细胞粘附至关重要

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摘要

Integrin-mediated rolling and firm cell adhesion are two critical steps in leukocyte trafficking. Integrin α4β1 mediates a mixture of rolling and firm cell adhesion on vascular cell adhesion molecule-1 (VCAM-1) when in its resting state but only supports firm cell adhesion upon activation. The transition from rolling to firm cell adhesion is controlled by integrin activation. Kindlin-3 has been shown to bind to integrin β tails and trigger integrin activation via inside-out signaling. However, the role of kindlin-3 in regulating resting α4β1-mediated cell adhesion is not well characterized. Herein we demonstrate that kindlin-3 was required for the resting α4β1-mediated firm cell adhesion but not rolling adhesion. Knockdown of kindlin-3 significantly decreased the binding of kindlin-3 to β1 and down-regulated the binding affinity of the resting α4β1 to soluble VCAM-1. Notably, it converted the resting α4β1-mediated firm cell adhesion to rolling adhesion on VCAM-1 substrates, increased cell rolling velocity, and impaired the stability of cell adhesion. By contrast, firm cell adhesion mediated by Mn2+-activated α4β1 was barely affected by knockdown of kindlin-3. Structurally, lack of kindlin-3 led to a more bent conformation of the resting α4β1. Thus, kindlin-3 plays an important role in maintaining a proper conformation of the resting α4β1 to mediate both rolling and firm cell adhesion. Defective kindlin-3 binding to the resting α4β1 leads to a transition from firm to rolling cell adhesion on VCAM-1, implying its potential role in regulating the transition between integrin-mediated rolling and firm cell adhesion.
机译:整联蛋白介导的滚动和牢固的细胞粘附是白细胞运输中的两个关键步骤。整联蛋白α4β1在静止状态下介导滚动和牢固的细胞粘附在血管细胞粘附分子-1(VCAM-1)上的混合物,但仅在激活时支持牢固的细胞粘附。从滚动到牢固的细胞粘附的转变受整联蛋白激活的控制。 Kindlin-3已显示与整联蛋白β尾部结合并通过由内而外的信号传导触发整联蛋白激活。然而,尚未很好地表征kindlin-3在调节静止的α4β1介导的细胞粘附中的作用。在这里,我们证明了kindlin-3是静止α4β1介导的牢固细胞粘附而不是滚动粘附所必需的。敲低kindlin-3会显着降低kindlin-3与β1的结合,并下调静止的α4β1与可溶性VCAM-1的结合亲和力。值得注意的是,它将静止的α4β1介导的牢固细胞粘附转变为在VCAM-1基底上的滚动粘附,增加了细胞滚动速度,并损害了细胞粘附的稳定性。相比之下,由Mn 2 + 激活的α4β1介导的牢固的细胞粘附几乎没有受到kindlin-3的抑制。在结构上,缺乏kindlin-3导致静息α4β1的结构更加弯曲。因此,kindlin-3在维持静止的α4β1的适当构型以调节滚动和牢固的细胞粘附中起重要作用。到静止的α​​4β1结合的有缺陷的kindlin-3导致VCAM-1上的细胞粘附从牢固过渡到滚动,这暗示了其在调节整联蛋白介导的滚动和牢固细胞粘附之间的过渡中的潜在作用。

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