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考马斯亮蓝G-250染料结合技术用于测定纤细裸藻中的自溶蛋白分解,并与其他自溶测量方法进行比较。

Coomassie brilliant blue G-250 dye-binding technique for determination of autolytic protein breakdown in Euglena gracilis and comparison to other methods of autolysis measurement.

作者信息

Krauspe R, Scheer A

出版信息

Anal Biochem. 1986 Mar;153(2):242-50. doi: 10.1016/0003-2697(86)90088-6.

Abstract

The Coomassie brilliant blue G-250 dye-binding technique of M. M. Bradford (1976, Anal. Biochem. 72, 248-254) for protein quantification has been used to measure autolytic protein breakdown in cell-free extracts of Euglena gracilis. Specific autolysis rates were calculated from the difference between initial and actual absorbances at different incubation times of Coomassie brilliant blue-stained protein. They were found to depend linearly on time and initial protein concentration. Calibration against another method of protein determination is necessary due to different color yields with various protein mixtures. The high sensitivity and reproducibility of this method permit determination of specific autolysis rates below 0.1% mg-1 h-1 over a pH range between 3 and 8, without protein precipitation or pH adjustment, and in the presence of high amounts of amino acids and/or small peptides. Results obtained by this method are comparable to those of other autolysis measurements and to proteolytic activity determination by azocaseinolysis. Proteolytic autolysis has been observed in both the soluble and the particulate fractions of E. gracilis cell-free extracts, but displays different pH optima and specific activities in these fractions, as is also the case for azocaseinolysis. The method described is easy to perform, inexpensive, time saving, and should be applicable to other biological systems as well.

摘要

M. M. 布拉德福德(1976年,《分析生物化学》72卷,248 - 254页)用于蛋白质定量的考马斯亮蓝G - 250染料结合技术已被用于测量纤细裸藻无细胞提取物中的自溶蛋白降解。通过考马斯亮蓝染色蛋白在不同孵育时间的初始吸光度与实际吸光度之差计算特定自溶速率。发现它们与时间和初始蛋白浓度呈线性关系。由于不同蛋白质混合物产生的颜色不同,因此需要与另一种蛋白质测定方法进行校准。该方法的高灵敏度和重现性允许在pH值为3至8的范围内测定低于0.1% mg-1 h-1的特定自溶速率,无需蛋白质沉淀或pH调节,并且在存在大量氨基酸和/或小肽的情况下也可进行。通过该方法获得的结果与其他自溶测量结果以及通过偶氮酪蛋白水解法测定的蛋白水解活性结果相当。在纤细裸藻无细胞提取物的可溶性和颗粒部分均观察到蛋白水解自溶现象,但在这些部分中显示出不同的最适pH值和比活性,偶氮酪蛋白水解也是如此。所描述的方法易于操作、成本低廉、节省时间,并且也应适用于其他生物系统。

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