Department of Bioengineering, University of California, Berkeley, California 94720, USA.
Anal Chem. 2010 May 1;82(9):3803-11. doi: 10.1021/ac100201z.
We describe a sensitive zymography technique that utilizes an automated microfluidic platform to report enzyme molecular weight, amount, and activity (including k(cat) and K(m)) from dilute protein mixtures. Calf intestinal alkaline phosphatase (CIP) is examined in detail as a model enzyme system, and the method is also demonstrated for horseradish peroxidase (HRP). The 40 min assay has a detection limit of 5 zmol ( approximately 3 000 molecules) of CIP. Two-step pore-limit electrophoresis with enzyme assay (PLENZ) is conducted in a single, straight microchannel housing a polyacrylamide (PA) pore-size gradient gel. In the first step, pore limit electrophoresis (PLE) sizes and pseudoimmobilizes resolved proteins. In the second step, electrophoresis transports both charged and neutral substrates into the PLE channel to the entrapped proteins. Arrival of substrate at the resolved enzyme band generates fluorescent product that reveals enzyme molecular weight against a fluorescent protein ladder. Additionally, the PLENZ zymography assay reports the kinetic properties of CIP in a fully quantitative manner. In contrast to covalent enzyme immobilization, physical pseudoimmobilization of CIP in the PA gel does not significantly reduce its maximum substrate turnover rate. However, an 11-fold increase in the Michaelis constant (over the free solution value) is observed, consistent with diffusional limitations on substrate access to the enzyme active site. PLENZ offers a robust platform for rapid and multiplexed functional analysis of heterogeneous protein samples in drug discovery, clinical diagnostics, and biocatalyst engineering.
我们描述了一种灵敏的酶谱技术,该技术利用自动化微流控平台从稀释的蛋白质混合物中报告酶的分子量、数量和活性(包括 k(cat)和 K(m))。以小牛肠碱性磷酸酶(CIP)作为模型酶系统进行了详细研究,该方法还可用于辣根过氧化物酶(HRP)。该 40 分钟的测定法的检测限为 5 zmol(约 3000 个分子)的 CIP。两步孔限电泳与酶测定(PLENZ)在单个直的微通道中进行,该微通道内置有聚丙烯酰胺(PA)孔径梯度凝胶。在第一步中,孔限电泳(PLE)对分离的蛋白质进行大小和伪固定。在第二步中,电泳将带电和中性底物输送到 PLE 通道到被捕获的蛋白质。底物到达已分离的酶带会产生荧光产物,该产物根据荧光蛋白质梯来显示酶的分子量。此外,PLENZ 酶谱测定法以完全定量的方式报告 CIP 的动力学特性。与共价酶固定化相比,CIP 在 PA 凝胶中的物理伪固定不会显著降低其最大底物转换速率。但是,观察到米氏常数(相对于游离溶液值)增加了 11 倍,这与底物进入酶活性位点的扩散限制一致。PLENZ 为药物发现、临床诊断和生物催化剂工程中的异质蛋白质样品的快速和多重功能分析提供了一个强大的平台。