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Calorimetric Study of Helix aspersa Maxima Hemocyanin Isoforms

机译:螺旋曲霉最大血红蛋白同工型的量热研究

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The thermal unfolding of hemocyanin isoforms, β-HaH and αD+N-HaH, isolated from the hemolymph of garden snails Helix aspersa maxima, was studied by means of differential scanning calorimetry (DSC). One transition, with an apparent transition temperature (Tm) at 79.88°C, was detected in the thermogram of β-HaH in 20 mM HEPES buffer, containing 0.1 M NaCl, 5 mM CaCl2, and 5 mM MgCl2, pH 7.0, at scan rate of 1.0°C min−1. By means of successive annealing procedure, two individual transitions were identified in the thermogram of αD+N-HaH. Denaturation of both hemocyanins was found to be an irreversible process. The scan-rate dependence of the calorimetric profiles indicated that the thermal unfolding of investigated hemocyanins was kinetically controlled. The thermal denaturation of the isoforms β-HaH and αD+N-HaH was described by the two-state irreversible model, and parameters of the Arrhenius equation were calculated.
机译:通过差示扫描量热法(DSC)研究了从大蜗牛螺旋线的血淋巴中分离出来的血蓝蛋白亚型β-HaH和αD+ N-HaH的热解折叠。在扫描过程中,在20μmMHEPES缓冲液中的β-HaH的热分析图中检测到一种转变,表观转变温度(Tm)为79.88°C,该缓冲液含有0.1μMNaCl,5μmMCaCl2和5μmMMgCl2,pH 7.0,速率为1.0°C min-1。通过连续退火程序,在αD+ N-HaH的热分析图中鉴定出两个单独的转变。发现两种血蓝蛋白的变性都是不可逆的过程。量热曲线的扫描速率依赖性表明,所研究的血蓝蛋白的热展开是动力学控制的。通过二态不可逆模型描述了亚型β-HaH和αD+ N-HaH的热变性,并计算了Arrhenius方程的参数。

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