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纯化 Reelin 异源二聚体构建体以研究结合比例。

Purification of a heterodimeric Reelin construct to investigate binding stoichiometry.

机构信息

Child Health Institute of New Jersey, New Brunswick, NJ, 08901, USA.

Department of Neuroscience and Cell Biology, Robert Wood Johnson Medical School, Rutgers, The State University of New Jersey, New Brunswick, NJ, 08901, USA.

出版信息

Eur Biophys J. 2020 Dec;49(8):773-779. doi: 10.1007/s00249-020-01465-6. Epub 2020 Oct 14.

Abstract

Reelin is a secreted glycoprotein that is integral in neocortex development and synaptic function. Reelin exists as a homodimer with two chains linked by a disulfide bond at cysteine 2101, a feature that is vital to the protein's function. This is highlighted by the fact that only dimeric Reelin can elicit efficient, canonical signaling, even though a mutated (C2101A) monomeric construct of Reelin retains the capacity to bind to its receptors. Receptor clustering has been shown to be important in the signaling pathway, however direct evidence regarding the stoichiometry of Reelin-receptor binding interaction is lacking. Here we describe the construction and purification of a heterodimeric Reelin construct to investigate the stoichiometry of Reelin-receptor binding and how it affects Reelin pathway signaling. We have devised different strategies and have finalized a protocol to produce a heterodimer of Reelin's central fragment using differential tagging and tandem affinity chromatography, such that chain A is wild type in amino acid sequence whereas chain B includes a receptor binding site mutation (K2467A). We also validate that the heterodimer is capable of binding to the extracellular domain of one of Reelin's known receptors, calculating the K of the interaction. This heterodimeric construct will enable us to understand in greater detail the mechanism by which Reelin interacts with its known receptors and initiates pathway signaling.

摘要

Reelin 是一种分泌型糖蛋白,在新皮层发育和突触功能中起重要作用。Reelin 以二聚体的形式存在,两条链通过半胱氨酸 2101 上的二硫键连接,这一特征对其功能至关重要。事实上,只有二聚体 Reelin 才能引发有效的、规范的信号转导,尽管 Reelin 的突变(C2101A)单体结构仍然保留与受体结合的能力。受体聚类已被证明在信号通路中很重要,然而,关于 Reelin-受体结合相互作用的化学计量学的直接证据仍然缺乏。在这里,我们描述了一种异二聚体 Reelin 构建体的构建和纯化,以研究 Reelin-受体结合的化学计量学以及它如何影响 Reelin 通路信号转导。我们设计了不同的策略,并最终制定了一种使用差异标记和串联亲和层析生产 Reelin 中心片段异二聚体的方案,使得链 A 在氨基酸序列上是野生型,而链 B 包含一个受体结合位点突变(K2467A)。我们还验证了该异二聚体能够与 Reelin 已知受体的胞外结构域结合,计算出相互作用的 K 值。这种异二聚体构建体将使我们能够更详细地了解 Reelin 与其已知受体相互作用并启动通路信号转导的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6b3/7701066/1e72d773dfcd/249_2020_1465_Fig1_HTML.jpg

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