Winter Michael B, Woodward Joshua J, Marletta Michael A
Department of Chemistry, California Institute for Quantitative Biosciences, University of California, Berkeley, CA, USA.
Methods Mol Biol. 2013;987:95-106. doi: 10.1007/978-1-62703-321-3_8.
The ability to replace the native heme cofactor of proteins with an unnatural porphyrin of interest affords new opportunities to study heme protein chemistry and engineer heme proteins for new functions. Previous methods for porphyrin substitution rely on removal of the native heme followed by porphyrin reconstitution. However, conditions required to remove the native heme often lead to denaturation, limiting success at heme replacement. An expression-based strategy for porphyrin substitution was developed to circumvent the heme removal and reconstitution steps, whereby unnatural porphyrin incorporation occurs under biological conditions. The approach uses the RP523 strain of Escherichia coli, which has a deletion of a key gene involved in heme biosynthesis and is permeable to porphyrins. The expression-based strategy for porphyrin substitution detailed here is a robust platform to generate heme proteins containing unnatural porphyrins for diverse applications.
用感兴趣的非天然卟啉取代蛋白质的天然血红素辅因子的能力为研究血红素蛋白质化学和改造具有新功能的血红素蛋白质提供了新机会。以前的卟啉取代方法依赖于去除天然血红素,然后进行卟啉重构。然而,去除天然血红素所需的条件常常导致蛋白质变性,限制了血红素取代的成功率。为了规避血红素去除和重构步骤,开发了一种基于表达的卟啉取代策略,通过该策略可在生物学条件下实现非天然卟啉的掺入。该方法使用大肠杆菌的RP523菌株,该菌株缺失了参与血红素生物合成的一个关键基因,并且对卟啉具有通透性。这里详细介绍的基于表达的卟啉取代策略是一个强大的平台,可用于生成含有非天然卟啉的血红素蛋白质,以用于各种应用。