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PDZ affinity chromatography: A general method for affinity purification of proteins based on PDZ domains and their ligands

机译:PDZ亲和层析:基于PDZ域及其配体亲和纯化蛋白质的一般方法

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摘要

PDZ (PSD-95, DiscsLarge, ZO1) domains function in nature as protein binding domains within scaffold and membrane-associated proteins. They comprise ∼90 residues and make specific, high affinity interactions with complementary C-terminal peptide sequences, with other PDZ domains, and with phospholipids. We hypothesized that the specific, strong interactions of PDZ domains with their ligands would make them well suited for use in affinity chromatography. Here we describe a novel affinity chromatography method applicable for the purification of proteins that contain PDZ domain-binding ligands, either naturally or introduced by genetic engineering. We created a series of affinity resins comprised of PDZ domains from the scaffold protein PSD-95, or from neuronal nitric oxide synthase (nNOS), coupled to solid supports. We used them to purify heterologously expressed neuronal proteins or protein domains containing endogenous PDZ domain ligands, eluting the proteins with free PDZ domain peptide ligands. We show that Proteins of Interest (POIs) lacking endogenous PDZ domain ligands can be engineered as fusion products containing C-terminal PDZ domain ligand peptides or internal, N- or C-terminal PDZ domains and then can be purified by the same method. Using this method, we recovered recombinant GFP fused to a PDZ-domain ligand in active form as verified by fluorescence yield. Similarly, chloramphenicol acetyltransferase (CAT) and β-Galactosidase (LacZ) fused to a C-terminal PDZ domain ligand or an N-terminal PDZ domain were purified in active form as assessed by enzymatic assay. In general, PDZ domains and ligands derived from PSD-95 were superior to those from nNOS for this method. PDZ Domain Affinity Chromatography promises to be a versatile and effective method for purification of a wide variety of natural and recombinant proteins.
机译:PDZ(PSD-95,DiscsLarge,ZO1)结构域在性质上起支架和膜相关蛋白内的蛋白结合结构域的作用。它们包含约90个残基,并与互补的C端肽序列,其他PDZ域和磷脂进行特异性的高亲和力相互作用。我们假设PDZ结构域与它们的配体之间的特异性,强相互作用将使其非常适合用于亲和色谱。在这里,我们描述了一种新颖的亲和层析方法,适用于纯化包含PDZ域结合配体的蛋白质,这些蛋白质可以是天然的,也可以是通过基因工程引入的。我们创建了一系列亲和树脂,这些树脂由来自支架蛋白PSD-95或来自神经元一氧化氮合酶(nNOS)的PDZ域组成,并与固体支持物偶联。我们用它们来纯化异源表达的神经元蛋白质或含有内源性PDZ域配体的蛋白质域,并用游离的PDZ域肽配体洗脱蛋白质。我们表明缺乏内源性PDZ域配体的目标蛋白(POIs)可以被工程化为包含C端PDZ域配体肽或内部,N或C端PDZ域的融合产物,然后可以通过相同的方法纯化。使用这种方法,我们回收了以活性形式与PDZ域配体融合的重组GFP,通过荧光产量证明。类似地,如通过酶促测定所评估的,以活性形式纯化与C末端PDZ结构域配体或N末端PDZ结构域融合的氯霉素乙酰基转移酶(CAT)和β-半乳糖苷酶(LacZ)。通常,对于该方法,源自PSD-95的PDZ域和配体优于源自nNOS的PDZ域和配体。 PDZ域亲和色谱法有望成为一种纯化多种天然和重组蛋白的通用有效方法。

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