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首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >Kinetic characteristics of acetylcholinesterase and structural-functional state of rat erythrocyte membranes at moderate hypothermia
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Kinetic characteristics of acetylcholinesterase and structural-functional state of rat erythrocyte membranes at moderate hypothermia

机译:中等体温过低大鼠红细胞膜的乙酰胆碱酯酶和结构函数状态的动力学特征

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AbstractArtificial hypothermic state of homeothermic animals contributes to the stimulation of free radical processes in red blood cells. In order to understand what are the consequences of oxidative damage of erythrocyte membrane, we examined the dependence of the kinetic characteristics of integral membrane enzyme acetylcholinesterase (AChE) and structural and functional state of the membrane on the duration of mild hypothermia. For this purpose we reduced body temperature of adult Wistar rats by external cooling to 30°C (short-term moderate hypothermia) and then prolonged hypothermia up to 1.5 and 3 h. A short-term hypothermia was followed with an increase inVmaxand a decrease inKm, promoting an increase in the catalysis effectiveness.The optimum point on the graph of the concentration dependence was shifted to the area of lower concentrations, and the character of enzyme–substrate interactions at high concentrations of the enzyme changed. Upon prolongation of hypothermia, changes in the AChE kinetic characteristics favored normalization of the enzyme activity and concentration dependence. To test the hypothesis of a possible influence of the lipid matrix on the kinetic characteristics of AchE, we studied structural properties of the erythrocyte membranes using fluorescent probe pyrene. The observed changes in the structural and dynamic characteristics of erythrocyte membranes after a 1.5-h hypothermia suggested a reduction in microviscosity of both total and annular lipids. Prolongation of hypothermia up to 3 h favored normalization of this parameter. It was found that the indicators of the structural state of erythrocyte membranes at different durations of hypothermia correlate with certain kinetic characteristics of AChE. The data indicate that the prolongation of mild hypothermia up to 3 h triggers adaptive mechanisms directed to normalization of the erythrocytes membrane functioning.]]>
机译:<![cdata [ <标题>抽象 ara>性质动物的人为低温状态有助于红细胞中自由基过程的刺激。为了了解红细胞膜的氧化损伤的后果是什么,我们检查了整体膜酶乙酰胆碱酯酶(疼痛)和膜的结构和功能状态的依赖性在轻度体温过低的持续时间内。为此目的,我们通过外部冷却至30°C(短期中低温),减少成人Wistar大鼠的体温,然后长度低温高达1.5和3小时。随后是短期体温过低,随后增加<重点类型=“斜体”> v <下标> max ,而<重点类型=“斜体”> k <下标> M ,促进催化效率的增加。浓度依赖性图的最佳点转移到较低浓度的面积,以及在高浓度的酶的酶 - 底物相互作用变化。在慢温延长时,疼痛动力学特征的变化有利于酶活性的标准化和浓度依赖性。为了测试脂质基质可能影响对疼痛的动力学特性的假设,我们使用荧光探针芘研究了红细胞膜的结构性质。在1.5-H低温后,观察到的红细胞膜的结构和动态特性的变化表明,总和环状脂质的微粘性降低。低温延长高达3小时赞成的该参数的正常化。发现不同耐温性在不同持续时间的红细胞膜结构状态的指标与疼痛的某些动力学特征相关。数据表明,温和的体温过低高达3小时的延长,触发了针对红细胞膜功能标准化的自适应机制。 ]]>

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