Department of Biological Sciences, State University of New York at Binghamton, Binghamton, NY 13902, USA.
Anal Biochem. 2011 Apr 15;411(2):277-83. doi: 10.1016/j.ab.2011.01.015. Epub 2011 Jan 15.
Zymography detects and characterizes proteolytic enzymes by electrophoresis of protease-containing samples into a nonreducing sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) gel containing a copolymerized protein substrate. The usefulness of zymography for molecular weight determination and proteomic analysis is hampered by the fact that some proteases exhibit slower migration through a gel that contains substrate protein. This article introduces electrophoretic transfer protein zymography as one solution to this problem. In this technique, samples containing proteolytic enzymes are first resolved in nonreducing SDS-PAGE on a gel without protein substrate. The proteins in the resolving gel are then electrophoretically transferred to a receiving gel previously prepared with a copolymerized protein substrate. The receiving gel is then developed as a zymogram to visualize clear or lightly stained bands in a dark background. Band intensities are linearly related to the amount of protease, extending the usefulness of the technique so long as conditions for transfer and development of the zymogram are kept constant. Conditions of transfer, such as the pore sizes of resolving and receiving gels and the transfer time relative to the molecular weight of the protease, are explored.
胶内酶谱法通过电泳将含有蛋白酶的样品电泳到含有共聚蛋白底物的非还原十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)凝胶中,从而检测和表征蛋白酶。由于某些蛋白酶在含有底物蛋白的凝胶中迁移速度较慢,胶内酶谱法在分子量测定和蛋白质组学分析方面的实用性受到了限制。本文介绍了电泳转移蛋白胶内酶谱法作为解决该问题的一种方法。在该技术中,首先在不含蛋白底物的胶内进行非还原 SDS-PAGE 电泳分离含有蛋白水解酶的样品。然后将分离胶中的蛋白质通过电泳转移到先前用共聚蛋白底物制备的接收胶上。接收胶然后被开发为胶内酶谱法,以在暗背景下可视化清晰或淡染的条带。条带强度与蛋白酶的量呈线性关系,只要保持胶内酶谱法的转移和开发条件不变,该技术就具有广泛的用途。转移条件,如分离和接收凝胶的孔径以及与蛋白酶分子量相关的转移时间等都进行了探索。