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首页> 外文期刊>Cellular Physiology and Biochemistry >Cholesterol depletion with (2-Hydroxypropyl)- β-Cyclodextrin modifies the gating of membrane electroporation-induced inward current in pituitary tumor GH _3 cells: Experimental and analytical studies
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Cholesterol depletion with (2-Hydroxypropyl)- β-Cyclodextrin modifies the gating of membrane electroporation-induced inward current in pituitary tumor GH _3 cells: Experimental and analytical studies

机译:(2-羟丙基)-β-环糊精清除胆固醇可改善垂体瘤GH _3细胞膜电穿孔诱导的内向电流门控:实验和分析研究

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The effects of (2-hydroxypropyl)- β-cyclodextrin (HPβCD), a cyclic oligomer, on membrane electroporation-induced inward current (I _(MEP)) in pituitary tumor (GH _3) cells were experimentally and analytically characterized. Depletion of membrane cholesterol by exposing cells to HPβCD (2 mM) increased the activation time constant of delayed rectifier K ~+ current. Such maneuver resulted in a significant reduction of I _(MEP) density. 2,2'-Azo-bis(2-amidinopropane) dihydrochloride (AAPH), an initiator of free radicals, increased the magnitude of I _(MEP). AAPH-stimulated I _(MEP) was not reversed by the blockers of Ca ~(2+)-activated K ~+ channels, but by LaCl _3 or MnCl _2. However, in HPβCD-treated cells, the ability of AAPH to enhance I _(MEP) was abolished. Under such maneuver, the gating charge of I MEP activation was increased by 2 fold, along with a hyperpolarized shift of the activation curve by 30 mV. No change in single-channel conductance of MEP-induced channels during cell exposure to HPβCD was demonstrated. The energy change of I _(MEP) in untreated and HPβCD-treated cells was estimated to be -17.7 and -44.8 kJ/mol, respectively, and the perturbation of free energy following HPβCD treatment was -27.1 kJ/mol. Based on an MEP model, cell exposure to HPβCD increased the edge energy of the electropore size. By use of a two barrier-one site barrier model, HPβCD treatment can increase both the peak height and well depth of the barrier profile. Taken together, depletion of membrane cholesterol by HPβCD can elevate the edge energy of pore formation, thereby decreasing the I MEP magnitude. The channel-suppressing properties during membrane cholesterol depletion with HPβCD might thus contribute to the underlying mechanisms by which such maneuver alters neuronal or neuroendocrine function.
机译:实验和分析表征了环状低聚物(2-羟丙基)-β-环糊精(HPβCD)对膜电穿孔诱导的垂体瘤(GH _3)细胞内向电流(I _(MEP))的影响。通过将细胞暴露于HPβCD(2 mM)来消耗膜胆固醇会增加延迟整流K〜+电流的激活时间常数。这种操作导致I_(MEP)密度大大降低。自由基引发剂2,2'-偶氮双(2-ami基丙烷)二盐酸盐(AAPH)增加了I_(MEP)的大小。 AAPH刺激的I _(MEP)不是被Ca〜(2+)激活的K〜+通道的阻滞剂逆转,而是被LaCl _3或MnCl _2逆转。然而,在HPβCD处理的细胞中,AAPH增强I_(MEP)的能力被消除。在这种操作下,IMEP激活的门控电荷增加了2倍,同时激活曲线超极化了30 mV。在细胞暴露于HPβCD期间,未证明MEP诱导的通道的单通道电导发生变化。未经处理和经HPβCD处理的细胞中I_(MEP)的能量变化估计分别为-17.7和-44.8 kJ / mol,HPβCD处理后的自由能扰动为-27.1 kJ / mol。基于MEP模型,细胞暴露于HPβCD会增加电孔尺寸的边缘能量。通过使用两个屏障一位置屏障模型,HPβCD处理可以增加屏障轮廓的峰高和阱深度。两者合计,HPβCD对膜胆固醇的消耗会增加孔形成的边缘能量,从而降低I MEP幅度。因此,在用HPβCD消耗膜胆固醇的过程中,通道抑制特性可能有助于这种机制改变神经元或神经内分泌功能的潜在机制。

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