INSERM U823, Institut Albert Bonniot, Grenoble F-38042, France.
J Cell Biol. 2013 Aug 5;202(3):545-61. doi: 10.1083/jcb.201303044.
The endothelial CCM complex regulates blood vessel stability and permeability. Loss-of-function mutations in CCM genes are responsible for human cerebral cavernous malformations (CCMs), which are characterized by clusters of hemorrhagic dilated capillaries composed of endothelium lacking mural cells and altered sub-endothelial extracellular matrix (ECM). Association of the CCM1/2 complex with ICAP-1, an inhibitor of β1 integrin, prompted us to investigate whether the CCM complex interferes with integrin signaling. We demonstrate that CCM1/2 loss resulted in ICAP-1 destabilization, which increased β1 integrin activation and led to increased RhoA-dependent contractility. The resulting abnormal distribution of forces led to aberrant ECM remodeling around lesions of CCM1- and CCM2-deficient mice. ICAP-1-deficient vessels displayed similar defects. We demonstrate that a positive feedback loop between the aberrant ECM and internal cellular tension led to decreased endothelial barrier function. Our data support that up-regulation of β1 integrin activation participates in the progression of CCM lesions by destabilizing intercellular junctions through increased cell contractility and aberrant ECM remodeling.
内皮细胞 CCM 复合物调节血管稳定性和通透性。CCM 基因的功能丧失突变导致人类脑海绵状血管畸形(CCMs),其特征是由缺乏壁细胞的内皮细胞和改变的亚内皮细胞细胞外基质(ECM)组成的出血性扩张毛细血管簇。CCM1/2 复合物与 ICAP-1 的关联,ICAP-1 是 β1 整合素的抑制剂,促使我们研究 CCM 复合物是否干扰整合素信号。我们证明 CCM1/2 的缺失导致 ICAP-1 的不稳定性,从而增加 β1 整合素的激活,并导致 RhoA 依赖性收缩增加。由此产生的力异常分布导致 CCM1 和 CCM2 缺陷小鼠病变周围 ECM 的异常重塑。ICAP-1 缺陷血管显示出类似的缺陷。我们证明,异常 ECM 和细胞内张力之间的正反馈循环导致内皮细胞屏障功能下降。我们的数据支持这样的观点,即通过增加细胞收缩和异常 ECM 重塑,β1 整合素激活的上调通过破坏细胞间连接参与 CCM 病变的进展。