Porath J
Division of Biotechnology, University of Arizona, Tucson 85721.
Protein Expr Purif. 1992 Aug;3(4):263-81. doi: 10.1016/1046-5928(92)90001-d.
The introduction of immobilized metal ion affinity chromatography, directed toward specific protein side chains, has opened a new dimension in protein purification. This review covers the principles and practice of IMAC that can be performed under very mild, nondenaturing conditions. IMAC is particularly suitable for preparative group fractionation of complex extracts and biofluids, but can also be used in high-performance mode: "HP-IMAC." Single-step purifications of 1000-fold or more may allow isolation of a particular protein from crude extracts on a milligram or gram scale. With respect to separation efficiency, IMAC compares well with biospecific affinity chromatography, and the immobilized metal ion ligand complexes are more likely to withstand wear and tear than are antibodies or enzymes. The enormous potential of IMAC and related metal affinity techniques is only in the initial stages of being explored and exploited. Synthesis of IMA adsorbents, and various modes of performing IMAC are discussed and exemplified with selected applications. Advantages and disadvantages are listed. Effective means of counteracting the few undesirable effects that can occur are suggested.
针对特定蛋白质侧链的固定化金属离子亲和色谱法的引入,为蛋白质纯化开辟了一个新的维度。本综述涵盖了可在非常温和的非变性条件下进行的固定化金属离子亲和色谱法(IMAC)的原理和实践。IMAC特别适用于复杂提取物和生物流体的制备性分组分离,但也可用于高性能模式:“HP-IMAC”。1000倍或更高倍数的单步纯化可能允许从粗提取物中以毫克或克规模分离特定蛋白质。就分离效率而言,IMAC与生物特异性亲和色谱法相当,并且固定化金属离子配体复合物比抗体或酶更有可能经受住磨损。IMAC和相关金属亲和技术的巨大潜力仅处于探索和开发的初始阶段。讨论了IMA吸附剂的合成以及进行IMAC的各种模式,并通过选定的应用举例说明。列出了优点和缺点。提出了抵消可能出现的少数不良影响的有效方法。