Moser Markus, Nieswandt Bernhard, Ussar Siegfried, Pozgajova Miroslava, Fässler Reinhard
Department of Molecular Medicine, Max Planck Institute of Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.
Nat Med. 2008 Mar;14(3):325-30. doi: 10.1038/nm1722. Epub 2008 Feb 17.
Integrin-mediated platelet adhesion and aggregation are essential for sealing injured blood vessels and preventing blood loss, and excessive platelet aggregation can initiate arterial thrombosis, causing heart attacks and stroke. To ensure that platelets aggregate only at injury sites, integrins on circulating platelets exist in a low-affinity state and shift to a high-affinity state (in a process known as integrin activation or priming) after contacting a wounded vessel. The shift is mediated through binding of the cytoskeletal protein Talin to the beta subunit cytoplasmic tail. Here we show that platelets lacking the adhesion plaque protein Kindlin-3 cannot activate integrins despite normal Talin expression. As a direct consequence, Kindlin-3 deficiency results in severe bleeding and resistance to arterial thrombosis. Mechanistically, Kindlin-3 can directly bind to regions of beta-integrin tails distinct from those of Talin and trigger integrin activation. We have therefore identified Kindlin-3 as a novel and essential element for platelet integrin activation in hemostasis and thrombosis.
整合素介导的血小板黏附和聚集对于封闭受损血管和防止失血至关重要,而过度的血小板聚集会引发动脉血栓形成,导致心脏病发作和中风。为确保血小板仅在损伤部位聚集,循环血小板上的整合素以低亲和力状态存在,并在接触受伤血管后转变为高亲和力状态(这一过程称为整合素激活或致敏)。这种转变是通过细胞骨架蛋白踝蛋白与β亚基胞质尾部的结合介导的。在此我们表明,缺乏黏着斑蛋白Kindlin-3的血小板尽管踝蛋白表达正常,但仍无法激活整合素。直接结果是,Kindlin-3缺乏导致严重出血和对动脉血栓形成的抵抗。从机制上讲,Kindlin-3可以直接结合到β整合素尾部与踝蛋白不同的区域并触发整合素激活。因此,我们已确定Kindlin-3是止血和血栓形成中血小板整合素激活的一种新的必需成分。