Flinders Institute for Nanoscale Science and Technology, College of Science and Engineering, Flinders University, Adelaide, South Australia, Australia.
Department of Chemistry, University of California Irvine, Irvine, California.
Curr Protoc. 2024 Sep;4(9):e70006. doi: 10.1002/cpz1.70006.
This article details how to use a vortex fluidic device (VFD) to accelerate protein purification via immobilized metal affinity chromatography (IMAC). Building upon a previous report of VFD-based purification, we introduce a membrane insert to simplify the purification protocol and the resin recovery step. This new platform can be adapted to different types of IMAC resins and purification membranes. Proteins can be purified directly from clarified lysate, non-clarified lysate, and even non-lysed cultures without concerns of system clogging. Strong binding between the Ni and the target protein's His-tag effectively captures the target protein on IMAC resins or membranes placed in the VFD. Continuous flow of different solutions through the VFD allows dynamic binding, washing, and elution of the target protein. Furthermore, the system dramatically accelerates protein purification; a typical purification from cell lysate requires approximately 4 min. Herein, we demonstrate the single-step purification of two His-tagged proteins from both clarified and non-clarified cell lysates without requiring batch binding. © 2024 The Author(s). Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Preparation of the resin-loaded membrane insert and the vortex fluidic device (VFD) setup prior to purification Basic Protocol 2: Purification of His-tagged proteins using the VFD Alternate Protocol: VFD-mediated His-tagged protein purification from non-clarified lysate Support Protocol: Preparation of chemically modified glass fiber membrane for VFD-mediated immobilized metal affinity chromatography purification.
这篇文章详细介绍了如何使用涡流流体制备装置(VFD)通过固定化金属亲和层析(IMAC)来加速蛋白质的纯化。在之前关于基于 VFD 的纯化的报告的基础上,我们引入了一种膜插入物来简化纯化方案和树脂回收步骤。这个新平台可以适应不同类型的 IMAC 树脂和纯化膜。蛋白质可以直接从澄清的裂解物、未澄清的裂解物甚至未裂解的培养物中进行纯化,而无需担心系统堵塞。Ni 与目标蛋白 His 标签之间的强结合有效地将目标蛋白固定在置于 VFD 中的 IMAC 树脂或膜上。通过 VFD 连续流动不同的溶液允许目标蛋白的动态结合、洗涤和洗脱。此外,该系统大大加速了蛋白质的纯化;从细胞裂解物中进行典型的纯化大约需要 4 分钟。在此,我们展示了从澄清和未澄清的细胞裂解物中一步纯化两个 His 标记蛋白,而无需批量结合。© 2024 作者。Wiley Periodicals LLC 出版的《当代协议》。基本方案 1:在纯化前准备负载树脂的膜插入物和涡流流体制备装置(VFD)的设置基本方案 2:使用 VFD 进行 His 标记蛋白的纯化备选方案:使用 VFD 从未澄清的裂解物中进行 His 标记蛋白的纯化支持方案:用于 VFD 介导的固定化金属亲和层析纯化的化学改性玻璃纤维膜的制备。