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Influence of the extracellular matrix and integrins on volume-sensitive osmolyte anion channels in C2C12 myoblasts

机译:细胞外基质和整合素对C2C12成肌细胞中体积敏感的渗透电解质阴离子通道的影响

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摘要

The purpose of this study was to determine whether extracellular matrix (ECM) composition through integrin receptors modulated the volume-sensitive osmolyte anion channels (VSOACs) in skeletal muscle-derived C2C12 cells. Cl− currents were recorded in whole cell voltage-clamped cells grown on laminin (LM), fibronectin (FN), or in the absence of a defined ECM (NM). Basal membrane currents recorded in isotonic media (300 mosmol/kg) were larger in cells grown on FN (3.8-fold at +100 mV) or LM (8.8-fold at +100 mV) when compared with NM. VSOAC currents activated by cell exposure to hypotonic solution were larger in cells grown on LM (1.72-fold at +100 mV) or FN (1.75-fold at +100 mV) compared with NM. Additionally, the kinetics of VSOAC activation was ≈27% quicker on FN and LM. These currents were tamoxifen sensitive, displayed outward rectification, reversed at the equilibrium potential of Cl− and inactivated at potentials >+60 mV. Specific knockdown of β1-integrin by short hairpin RNA interference strongly inhibited the VSOAC Cl− currents in cells plated on FN. In conclusion, ECM composition and integrins profoundly influence the biophysical properties and mechanisms of onset of VSOACs.
机译:这项研究的目的是确定整合素受体的细胞外基质(ECM)成分是否调节了骨骼肌衍生的C2C12细胞中体积敏感的渗透压阴离子通道(VSOAC)。在层粘连蛋白(LM),纤连蛋白(FN)或缺乏明确的ECM(NM)的情况下,在全细胞电压钳制的细胞中记录Cl-电流。与NM相比,在等渗介质中记录的基底膜电流(300 mosmol / kg)在FN(+100 mV时为3.8倍)或LM(+100 mV时为8.8倍)上生长的细胞中更大。与NM相比,在LM(+100 mV时为1.72倍)或FN(+100 mV时为1.75倍)上生长的细胞中,通过暴露于低渗溶液的细胞激活的VSOAC电流更大。另外,在FN和LM上,VSOAC活化的动力学快约27%。这些电流对他莫昔芬敏感,表现出向外的整流作用,在Cl-的平衡电势下反转,而在> +60 mV的电势下失活。 β1-整联蛋白通过短发夹RNA干扰的特异性敲低强烈抑制了FN平板细胞中的VSOAC Cl-电流。总之,ECM的组成和整合素会深刻影响VSOAC的生物物理特性和发病机理。

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