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首页> 外文期刊>The Journal of biological chemistry >A Novel p38 Mitogen-activated Protein Kinase/Elk-1 Transcription Factor-dependent Molecular Mechanism Underlying Abnormal Endothelial Cell Proliferation in Plexogenic Pulmonary Arterial Hypertension
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A Novel p38 Mitogen-activated Protein Kinase/Elk-1 Transcription Factor-dependent Molecular Mechanism Underlying Abnormal Endothelial Cell Proliferation in Plexogenic Pulmonary Arterial Hypertension

机译:一种新型P38丝裂型活化蛋白激酶/ ELK-1转录因子依赖性分子机制,其异常内皮细胞增殖在葡萄球菌肺动脉高血压中的异常内皮细胞增殖

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摘要

Plexiform lesions (PLs), the hallmark of plexogenic pulmonary arterial hypertension (PAH), contain phenotypically altered, proliferative endothelial cells (ECs). The molecular mechanism that contributes to EC proliferation and formation of PLs is poorly understood. We now show that a decrease in intersectin-1s (ITSN-1s) expression due to granzyme B (GrB) cleavage during inflammation associated with PAH and the high p38/Erk1/2MAPK activity ratio caused by the GrB/ITSN cleavage products lead to EC proliferation and selection of a proliferative/plexiform EC phenotype. We used human pulmonary artery ECs of PAH subjects (ECPAH), paraffin-embedded and frozen human lung tissue, and animal models of PAH in conjunction with microscopy imaging, biochemical, and molecular biology approaches to demonstrate that GrB cleaves ITSN-1s, a prosurvival protein of lung ECs, and generates two biologically active fragments, an N-terminal fragment (GrB-EHITSN) with EC proliferative potential and a C-terminal product with dominant negative effects on Ras/Erk1/2. The proliferative potential of GrB-EHITSN is mediated via sustained phosphorylation of p38MAPK and Elk-1 transcription factor and abolished by chemical inhibition of p38MAPK. Moreover, lung tissue of PAH animal models and human specimens and ECPAH express lower levels of ITSN-1s compared with controls and the GrB-EHITSN cleavage product. Moreover, GrB immunoreactivity is associated with PLs in PAH lungs. The concurrent expression of the two cleavage products results in a high p38/Erk1/2MAPK activity ratio, which is critical for EC proliferation. Our findings identify a novel GrB-EHITSN-dependent pathogenic p38MAPK/Elk-1 signaling pathway involved in the poorly understood process of PL formation in severe PAH.
机译:葡萄糖损伤(PL),葡萄糖肺动脉高压(PAH)的标志,含有表型改变的增殖性内皮细胞(ECS)。有助于EC增殖和PLS形成的分子机制很差。我们现在表明,由于GRB / ITSN切割产物引起的炎症期间,由于GRB / ITSN切割产物引起的高P38 / ERK1 / 2MAPK活性比导致EC的炎症期间,由于Granzyme B(GRB)切割而导致的间隙-1S(ITSN-1S)表达减少增殖/复合型EC表型的增殖和选择。我们使用PAH受试者(ECPAH),石蜡包埋和冷冻人肺组织的人肺动脉EC,以及与显微镜成像,生化和分子生物学方法结合PAH的动物模型,以证明GRB粘合ITSN-1S,一种冒失症肺ECS的蛋白质,并产生两个生物活性片段,具有EC增殖潜力的N-末端片段(GRB-EHITSN)和具有显性负面影响的C末端产物,具有对RAS / ERK1 / 2的显性负面影响。 GRB-EHITSN的增殖潜力通过P38MAPK和ELK-1转录因子的持续磷酸化介导,并通过P38MAPK的化学抑制废除。此外,PAH动物模型和人类标本和ECPAH的肺组织与对照组和GRB-EHITSN切割产物相比表达较低的ITSN-1。此外,GRB免疫反应性与PL在PAH肺中有关。两种切割产品的并发表达导致高p38 / ERK1 / 2MAPK活性比,这对于EC增殖至关重要。我们的研究结果识别了一种新的GRB-EHITSN依赖性致病性P38MAPK / ELK-1信号通路,参与严重PAH中的PL形成的不良过程。

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