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Intensity-dependent effects of microwave electromagnetic fields on acetylcholinesterase activity and protein conformation in frog skeletal muscles

机译:微波电磁场对青蛙骨骼肌乙酰胆碱酯酶活性和蛋白质构象的强度依赖性影响

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Background:This study was conducted to investigate the effects of continuous microwaves (2.45 GHz) of different field intensity on acetylcholinesterase activity and protein conformation in muscle fractions from frog skeletal muscles.Material/Methods:Acetylcholinesterase activity in samples from muscle homogenate fractions exposed for 30 min to microwaves of low (10 mW/cm[sup]2[/sup]) or high (20 mW/cm[sup]2[/sup]) intensity at almost constant temperature (1.8°–2.0°C) was measured by spectrophotometry for three consecutive days after irradiation and compared with the activity in a sham-exposed fraction. Infrared spectroscopy (between 1400 cm[sup]–1[/sup]–1800 cm[sup]–1[/sup]) was performed on the lyophilised fractions using Bruker IFS 113 v.Results:A significant decrease in enzyme activity on the day of exposure (by 8.4% and 13.6% at high and low field intensity, respectively) was observed. Forty-eight hours later the decrease in enzyme activity in samples exposed to both high- and low-intensity microwaves was less than that in sham-exposed samples. Infrared spectroscopy data showed the Amide I band to be negligibly affected and the absorption maximum in the Amide II band to be significantly shifted from 1540 cm[sup]–1[/sup] (sham-exposed) to 1559 cm[sup]–1[/sup] (exposed) after irradiation.Conclusions:Exposure to microwaves results in non-thermal, intensity-dependent, prolonged modification of acetylcholinesterase activity in frog skeletal muscles traced up to 48 hrs after exposure. Infrared spectroscopy data argue for induced conformational changes in the secondary structure of muscle proteins: increased content of β-structures, random coils, and amorphous structures, which were more expressed at low field intensity.
机译:背景:本研究旨在研究不同场强的连续微波(2.45 GHz)对青蛙骨骼肌肌肉组分中乙酰胆碱酯酶活性和蛋白质构象的影响。材料/方法:暴露30次的肌肉匀浆组分中乙酰胆碱酯酶活性在几乎恒定的温度(1.8°–2.0°C)下,测量到低强度(10 mW / cm [sup] 2 [/ sup])或高强度(20 mW / cm [sup] 2 [/ sup])的微波分钟。照射后连续三天用分光光度法测定,并与假接触的级分中的活性进行比较。使用Bruker IFS 113 v对冻干的级分进行了红外光谱分析(在1400 cm [sup] -1 [/ sup] –1800 cm [sup] -1 [/ sup]之间)。结果:观察到暴露的当天(在高场强和低场强下分别降低了8.4%和13.6%)。 48小时后,暴露于高强度和低强度微波的样品中酶活性的下降均小于假接触样品中的酶活性下降。红外光谱数据表明,酰胺I谱带受到的影响可忽略不计,酰胺II谱带的最大吸收量从1540 cm [sup-1] / [sup](假暴露)明显移至1559 cm [sup-1]结论:暴露于微波会导致青蛙骨骼肌中乙酰胆碱酯酶活性的非热,强度依赖性,长时间的延长,直至暴露后48小时。红外光谱数据证明了肌肉蛋白质二级结构中诱导的构象变化:β结构,无规卷曲和无定形结构的含量增加,这些蛋白在低场强度下表达更多。

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