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Junb regulates arterial contraction capacity cellular contractility and motility via its target Myl9 in mice

机译:Junb通过其靶标Myl9调节小鼠的动脉收缩能力细胞收缩性和运动性

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摘要

Cellular contractility and, thus, the ability to alter cell shape are prerequisites for a number of important biological processes such as cytokinesis, movement, differentiation, and substrate adherence. The contractile capacity of vascular smooth muscle cells (VSMCs) is pivotal for the regulation of vascular tone and thus blood pressure and flow. Here, we report that conditional ablation of the transcriptional regulator Junb results in impaired arterial contractility in vivo and in vitro. This was exemplified by resistance of Junb-deficient mice to DOCA-salt–induced volume-dependent hypertension as well as by a decreased contractile capacity of isolated arteries. Detailed analyses of Junb-deficient VSMCs, mouse embryonic fibroblasts, and endothelial cells revealed a general failure in stress fiber formation and impaired cellular motility. Concomitantly, we identified myosin regulatory light chain 9 (Myl9), which is critically involved in actomyosin contractility and stress fiber assembly, as a Junb target. Consistent with these findings, reexpression of either Junb or Myl9 in Junb-deficient cells restored stress fiber formation, cellular motility, and contractile capacity. Our data establish a molecular link between the activator protein–1 transcription factor subunit Junb and actomyosin-based cellular motility as well as cellular and vascular contractility by governing Myl9 transcription.
机译:细胞收缩力以及因此改变细胞形状的能力是许多重要生物学过程(例如胞质分裂,运动,分化和底物粘附)的先决条件。血管平滑肌细胞(VSMC)的收缩能力对于调节血管张力并因此调节血压和流量至关重要。在这里,我们报道转录调节剂Junb的条件消融导致体内和体外的动脉收缩能力受损。这可以通过Junb缺陷小鼠对DOCA盐诱导的体积依赖性高血压的抵抗以及离体动脉的收缩能力降低来证明。对Junb缺陷型VSMC,小鼠胚胎成纤维细胞和内皮细胞的详细分析显示,应力纤维形成普遍受损,细胞运动受损。同时,我们将肌球蛋白调节性轻链9(Myl9)确定为Junb靶标,该轻链9参与了肌动球蛋白的收缩性和应力纤维的组装。与这些发现一致,Junb缺陷细胞中Junb或Myl9的重新表达恢复了应激纤维的形成,细胞运动性和收缩能力。我们的数据通过控制Myl9转录,在激活蛋白1转录因子亚基Junb与基于肌动球蛋白的细胞运动以及细胞和血管收缩之间建立了分子联系。

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