Bryant Patrick, Zheng Qingxia, Pumiglia Kevin
Center for Cell Biology and Cancer Research, Albany Medical College, 47 New Scotland Ave., Albany, NY 12208, USA.
Mol Cell Biol. 2006 Jun;26(11):4201-13. doi: 10.1128/MCB.01612-05.
Endothelial cell proliferation is a critical step in angiogenesis and requires a coordinated response to soluble growth factors and the extracellular matrix. As focal adhesion kinase (FAK) integrates signals from both adhesion events and growth factor stimulation, we investigated its role in endothelial cell proliferation. Expression of a dominant-negative FAK protein, FAK-related nonkinase (FRNK), impaired phosphorylation of FAK and blocked DNA synthesis in response to multiple angiogenic stimuli. These results coincided with elevated cyclin-dependent kinase inhibitors (CDKIs) p21/Cip and p27/Kip, as a consequence of impaired degradation. FRNK inhibited the expression of Skp2, an F-box protein that targets CDKIs, by inhibiting mitogen-induced mRNA. The FAK-regulated degradation of p27/Kip was Skp2 dependent, while levels of p21/Cip were regulated independent of Skp2. Skp2 is required for endothelial cell proliferation as a consequence of degrading p27. Finally, knockdown of both p21 and p27 in FRNK-expressing cells completely restored mitogen-induced endothelial cell proliferation. These data demonstrate a critical role for FAK in the regulation of CDKIs through two independent mechanisms: Skp2 dependent and Skp2 independent. They also provide important insights into the requirement of focal adhesion kinase for normal vascular development and reveal novel regulatory control points for angiogenesis.
内皮细胞增殖是血管生成中的关键步骤,需要对可溶性生长因子和细胞外基质作出协调反应。由于粘着斑激酶(FAK)整合了来自粘着事件和生长因子刺激的信号,我们研究了其在内皮细胞增殖中的作用。显性负性FAK蛋白——FAK相关非激酶(FRNK)的表达,损害了FAK的磷酸化,并阻断了对多种血管生成刺激的DNA合成。这些结果与细胞周期蛋白依赖性激酶抑制剂(CDKIs)p21/Cip和p27/Kip的升高相吻合,这是降解受损的结果。FRNK通过抑制丝裂原诱导的mRNA来抑制Skp2的表达,Skp2是一种靶向CDKIs的F盒蛋白。FAK调节的p27/Kip降解依赖于Skp2,而p21/Cip的水平则独立于Skp2进行调节。由于降解p27,Skp2是内皮细胞增殖所必需的。最后,在表达FRNK的细胞中敲低p21和p27完全恢复了丝裂原诱导的内皮细胞增殖。这些数据证明了FAK在通过两种独立机制调节CDKIs中的关键作用:Skp2依赖性和Skp2非依赖性。它们还为粘着斑激酶对正常血管发育的需求提供了重要见解,并揭示了血管生成的新调控点。