Lu Ling, Lin ChangDong, Yan ZhanJun, Wang Shu, Zhang YouHua, Wang ShiHui, Wang JunLei, Liu Cui, Chen JianFeng
From the State Key Laboratory of Cell Biology, CAS Center for Excellence in Molecular Cell Science, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China and.
The Second Affiliated Hospital of Soochow University, Suzhou 215004, China.
J Biol Chem. 2016 May 6;291(19):10363-71. doi: 10.1074/jbc.M116.717694. Epub 2016 Mar 18.
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 Mn(2+)-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.
整合素介导的滚动和牢固细胞黏附是白细胞迁移过程中的两个关键步骤。整合素α4β1在其静止状态时介导在血管细胞黏附分子-1(VCAM-1)上的滚动和牢固细胞黏附的混合状态,但仅在激活后支持牢固细胞黏附。从滚动到牢固细胞黏附的转变由整合素激活控制。Kindlin-3已被证明可与整合素β尾巴结合,并通过外向内信号传导触发整合素激活。然而,Kindlin-3在调节静止α4β1介导的细胞黏附中的作用尚未得到充分表征。在此我们证明,Kindlin-3是静止α4β1介导的牢固细胞黏附所必需的,但不是滚动黏附所必需的。敲低Kindlin-3显著降低了Kindlin-3与β1的结合,并下调了静止α4β1与可溶性VCAM-1的结合亲和力。值得注意的是,它将静止α4β1介导的牢固细胞黏附转变为在VCAM-1底物上的滚动黏附,增加了细胞滚动速度,并损害了细胞黏附的稳定性。相比之下,由Mn(2+)激活的α4β1介导的牢固细胞黏附几乎不受Kindlin-3敲低的影响。在结构上,缺乏Kindlin-3导致静止α4β1的构象更加弯曲。因此,Kindlin-3在维持静止α4β1的适当构象以介导滚动和牢固细胞黏附中起重要作用。Kindlin-3与静止α4β1的结合缺陷导致在VCAM-1上从牢固细胞黏附转变为滚动细胞黏附,这意味着它在调节整合素介导的滚动和牢固细胞黏附之间的转变中具有潜在作用。