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首页> 外文期刊>Acta Pharmaceutica Sinica B >TIMP1 preserves the blood–brain barrier through interacting with CD63/integrin 1 complex and regulating downstream FAK/RhoA signaling
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TIMP1 preserves the blood–brain barrier through interacting with CD63/integrin 1 complex and regulating downstream FAK/RhoA signaling

机译:TIMP1通过与CD63 /整合素1复合物进行交互来保留血脑屏障,并调节下游FAK / RHOA信号传导

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Blood–brain barrier (BBB) breakdown and the associated microvascular hyperpermeability are hallmark features of several neurological disorders, including traumatic brain injury (TBI). However, there is no viable therapeutic strategy to rescue BBB function. Tissue inhibitor of metalloproteinase-1 (TIMP1) has been considered to be beneficial for vascular integrity, but the molecular mechanisms underlying the functions of TIMP1 remain elusive. Here, we report that TIMP1 executes a protective role on neuroprotective function via ameliorating BBB disruption in mice with experimental TBI. In human brain microvessel endothelial cells (HBMECs) exposed to hypoxia and inflammation injury, the recombinant TIMP1 (rTIMP1) treatment maintained integrity of junctional proteins and trans-endothelial tightness. Mechanistically, TIMP1 interacts with CD63/integrin β 1 complex and activates downstream FAK signaling, leading to attenuation of RhoA activation and F-actin depolymerization for endothelial cells structure stabilization. Notably, these effects depend on CD63/integrin β 1 complex, instead of the MMP-inhibitory function. Together, our results identified a novel MMP-independent function of TIMP1 in regulating endothelial barrier integrity. Therapeutic interventions targeting TIMP1 and its downstream signaling may be beneficial to protect BBB function following brain injury and neurological disorders.
机译:血脑屏障(BBB)崩溃和相关的微血管过度透冰性是几种神经系统疾病的标志特征,包括创伤性脑损伤(TBI)。然而,没有可行的治疗策略来拯救BBB功能。金属蛋白酶-1(TIMP1)的组织抑制剂被认为是有益的血管完整性,但蒂姆1职能下面的分子机制仍然难以捉摸。在这里,我们认为TIMP1在具有实验TBI的小鼠中通过改善BBB中断对神经保护功能进行保护作用。在暴露于缺氧和炎症损伤的人脑微血管内皮细胞(HBMECs)中,重组TIMP1(RTIPP1)处理保持了连接蛋白质的完整性和反式内皮紧度。机械地,Timp1与CD63 /整合蛋白β1复合物相互作用并激活下游FAK信号传导,导致RHOA活化和F-actin解聚的衰减对内皮细胞结构稳定的衰减。值得注意的是,这些效果取决于CD63 /整合蛋白β1复合物,而不是MMP抑制功能。我们的结果在一起确定了TIMP1的新型MMP独立功能,调节内皮屏障完整性。靶向TIMP1的治疗干预及其下游信号率可能有利于脑损伤后保护BBB功能和神经系统障碍。

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