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Optimum temperature may be a misleading parameter in enzyme characterization and application

机译:在酶的表征和应用中最佳温度可能是一个令人误解的参数

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摘要

The optimum temperature is commonly determined in enzyme characterization. A search in the PubMed database for “optimum temperature” and “enzymes” yielded more than 1,700 manuscripts reporting this parameter over the last five years. Here, we show that the optimum temperature is not a constant. The catalytic activity of the mesophylic β-glucosidase Sfβgly was determined at different temperatures using different assay times and enzyme concentrations. We observed that the optimum temperature for Sfβgly changed by 5°C simply by modifying the assay length, and it was inversely correlated with enzyme concentration. These observations rely on the fact that close to the melting temperature, thermal denaturation continuously decreases the active enzyme concentration as the assay progresses. Thus, as the denaturation rate increases with increasing temperature, the bell-shaped curves observed in “activity versus temperature plots” occur only if the enzyme is denatured at and above the optimum temperature, which was confirmed using the thermostable β-glucosidase bglTm. Thus, the optimum temperature hardly reflects an intrinsic enzyme property and is actually a mere consequence of the assay condition. Thus, adoption of the “optimum temperature” determined under bench conditions for large-scale uses, which differ in assay length and enzyme concentration, may result in lower yields and financial losses.
机译:最佳温度通常在酶表征中确定。在PubMed数据库中搜索“最佳温度”和“酶”,在过去五年中产生了1,700多份报告该参数的手稿。在这里,我们表明最佳温度不是恒定的。在不同的温度下使用不同的测定时间和酶浓度测定了叶肉β-葡萄糖苷酶Sfβgly的催化活性。我们观察到,仅通过改变测定长度,Sfβgly的最佳温度就会改变5°C,并且与酶浓度成反比。这些观察结果依赖于这样一个事实,即接近熔融温度,随着测定的进行,热变性会不断降低活性酶的浓度。因此,随着变性率随温度的升高而增加,仅在酶在最佳温度或高于最佳温度下变性的情况下,才会出现在“活性与温度关系图”中观察到的钟形曲线,这已通过热稳定的β-葡萄糖苷酶bglTm得以证实。因此,最佳温度几乎不能反映固有的酶性质,并且实际上仅仅是测定条件的结果。因此,采用在实验室条件下为大规模使用而确定的“最佳温度”,这在化验时间和酶浓度方面有所不同,可能导致较低的产量和经济损失。

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