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High Resolution of Peroxidase-Indoleacetic Acid Oxidase Isoenzymes from Horseradish by Isoelectric Focusing

机译:等电聚焦高分辨率分离辣根过氧化物酶-吲哚乙酸氧化酶同工酶

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摘要

Several improved techniques for isoelectric focusing of isoenzymes in polyacrylamide gel slabs were developed. Using these techniques, three commercial sources of horseradish peroxidase were each examined with three commercial sources of carrier ampholytes to determine their respective isoenzyme profiles.A much higher degree of isoenzyme resolution was obtained than reported previously. A composite of all of the various tests gave a total of 42 peroxidase isoenzymes. Commercial sources of horseradish peroxidase showed many similarities in their isoenzyme patterns, but their differences were sufficient to recognize each source easily. Isoenzyme patterns for all three sources spanned the entire pH range with all three sources of wide range carrier ampholytes. Only a few isoenzymes stained darkly. Most isoenzymes stained moderately to lightly, but all were well resolved. Gels stained for indoleacetic acid oxidase activity showed the same pattern as gels stained for peroxidase activity. This was true for all three commerial sources of the enzyme. The isoenzyme patterns obtained in each run were entirely reproducible, and linear pH gradients were obtained in all cases. Limitations in the pH range of the wide range carrier ampholytes relative to the isoelectric points of the extreme anodic and cathodic isoenzymes led to the adoption of a modified definition of focusing time. In addition, the labeling of isoenzymes commonly used in electrophoresis was adapted for labeling isoenzymes resolved by isoelectric focusing.
机译:已开发出几种改进的技术,用于等电聚焦聚丙烯酰胺凝胶平板中的同工酶。使用这些技术,分别对三种辣根过氧化物酶的商业来源和三种载体两性载体的商业来源进行了检查,以确定它们各自的同工酶谱图。所有各种测试的复合物总共提供了42种过氧化物酶同工酶。辣根过氧化物酶的商业来源在同工酶模式上显示出许多相似之处,但是它们之间的差异足以轻松识别每种来源。这三种来源的同工酶模式涵盖了整个pH范围,其中三种来源均具有宽范围的载体两性电解质。只有少数同工酶被染成深色。大多数同工酶的染色程度为中度至轻度,但均被很好地溶解。吲哚乙酸氧化酶活性染色的凝胶显示与过氧化物酶活性染色的凝胶相同的模式。对于该酶的所有三种商业来源都是如此。每次运行中获得的同工酶模式完全可重现,并且在所有情况下均获得线性pH梯度。相对于极端阳极和阴极同工酶的等电点,宽范围载流子两性电解质的pH范围受到限制,导致采用了改进的聚焦时间定义。此外,电泳中常用的同工酶标记适用于标记通过等电聚焦解析的同工酶。

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