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BK通道参与机械牵张诱导的血管平滑肌细胞分化。

Involvement of BK channel in differentiation of vascular smooth muscle cells induced by mechanical stretch.

作者信息

Wan Xue-Jiao, Zhao Hu-Cheng, Zhang Ping, Huo Bo, Shen Bao-Rong, Yan Zhi-Qiang, Qi Ying-Xin, Jiang Zong-Lai

机构信息

Institute of Mechanobiology & Medical Engineering, School of Life Sciences & Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

Lab of Biomechanics, Department of Engineering Mechanics, Tsinghua University, Beijing, China.

出版信息

Int J Biochem Cell Biol. 2015 Feb;59:21-9. doi: 10.1016/j.biocel.2014.11.011. Epub 2014 Dec 4.

Abstract

The differentiation of vascular smooth muscle cells (VSMCs), which are exposed to mechanical stretch in vivo, plays an important role in vascular remodeling during hypertension. Here, we demonstrated the mechanobiological roles of large conductance calcium and voltage-activated potassium (BK) channels in this process. In comparison with 5% stretch (physiological), 15% stretch (pathological) induced the de-differentiation of VSMCs, resulting in significantly decreased expressions of VSMC markers, i.e., α-actin, calponin and SM22. The activity of BK channels, assessed by patch clamp recording, was significantly increased by 15% stretch and was accompanied by an increased alternative splicing of BK channel α-subunit at the stress axis-regulated exons (STREX). Furthermore, transfection of whole BK or STREX-deleted BK plasmids revealed that STREX was important for BK channels to sense mechanical stretch. Using thapsigargin (TG) which induces endoplasmic reticulum (ER) stress, and xbp1-targeted siRNA transfection which blocks ER stress, the results revealed that ER stress was contribute to stretch-induced alternative splicing of STREX. Our results suggested that during hypertension, pathological stretch may induce the ER stress in VSMCs, which affects the alternative splicing and activity of BK channels, and subsequently modulates VSMC differentiation.

摘要

在体内受到机械牵张的血管平滑肌细胞(VSMC)的分化在高血压血管重塑过程中起重要作用。在此,我们证明了大电导钙和电压激活钾(BK)通道在此过程中的力学生物学作用。与5%牵张(生理状态)相比,15%牵张(病理状态)诱导VSMC去分化,导致VSMC标志物α-肌动蛋白、钙调蛋白和SM22的表达显著降低。通过膜片钳记录评估,BK通道的活性在15%牵张时显著增加,并伴随着BK通道α亚基在应力轴调节外显子(STREX)处的可变剪接增加。此外,转染完整的BK或缺失STREX的BK质粒表明,STREX对BK通道感知机械牵张很重要。使用诱导内质网(ER)应激的毒胡萝卜素(TG)和阻断ER应激的xbp1靶向siRNA转染,结果显示ER应激有助于STREX的牵张诱导可变剪接。我们的结果表明,在高血压期间,病理牵张可能诱导VSMC中的ER应激,这影响BK通道的可变剪接和活性,随后调节VSMC分化。

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