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Shear stress-induced mechanotransduction protein deregulation and vasculopathy in a mouse model of progeria

机译:早衰小鼠模型中的剪应力诱导的机械转导蛋白失调和血管病变

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Introduction A mouse model of progeria derived by insertion of the human mutant LMNA gene (mLMNA), producing mutant lamin A, shows loss of smooth muscle cells in the media of the ascending aorta. We hypothesized that high shear stress, in the presence of mutant lamin A, induces this vasculopathy and tried to define the molecular and cellular basis for aortic vasculopathy. Methods Ascending and descending aortas from wild type (WT) and mLMNA+ mice were compared using proteomics, Western blots, PCR and immunostaining. To determine whether high fluidic shear stress, known to occur in the ascending aorta, contributed to the vasculopathy, we exposed descending aortas of mLMNA+ mice, with no apparent vasculopathy, to 75 dynes/cm2 shear stress for 30 minutes using a microfluidic system. Results When the mice were one year of age, expression of several mechanotransduction proteins in the ascending aorta, including vimentin, decreased in mLMNA+ mice but no decrease occurred in the descending aorta. High fluidic shear stress produced a significant reduction in vimentin of mLMNA+ mice but not in similarly treated WT mice. Conclusions The occurrence of mutant lamin A and high shear stress correlate with a reduction in the level of mechanotransduction proteins in smooth muscle cells of the media. Reduction of these proteins may contribute over time to development of vasculopathy in the ascending aorta in progeria syndrome.
机译:简介通过插入人类突变体LMNA基因(mLMNA)(产生突变体层粘蛋白A)而衍生的早衰小鼠模型显示,升主动脉中的平滑肌细胞丢失。我们假设突变型层粘蛋白A的存在下高剪切应力诱导了这种血管病变,并试图确定主动脉血管病变的分子和细胞基础。方法采用蛋白质组学,Western blots,PCR和免疫染色技术比较野生型和mLMNA + 小鼠的升主动脉和降主动脉。为了确定已知在升主动脉中发生的高流体剪切应力是否有助于血管病变,我们将无明显血管病变的mLMNA + 小鼠降主动脉暴露于75达因/厘米使用微流体系统2剪应力30分钟。结果小鼠1岁时,mLMNA + 小鼠升主动脉中几种机械转导蛋白的表达,包括波形蛋白降低,而降主动脉中无降低。高流体剪切应力使mLMNA + 小鼠的波形蛋白显着降低,但在相似处理的WT小鼠中却没有。结论突变型核纤层蛋白A和高剪切应力的出现与介质平滑肌细胞机械转导蛋白水平的降低有关。随着时间的流逝,这些蛋白质的减少可能有助于早衰综合征中升主动脉的血管病变。

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