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快速 LC-MS 法测定膜蛋白和疏水性蛋白的精确分子量。

Rapid LC-MS Method for Accurate Molecular Weight Determination of Membrane and Hydrophobic Proteins.

机构信息

Amgen Discovery Research , Amgen , Thousand Oaks , California 91320 , United States.

Department of Biological Chemistry , University of California-Los Angeles , Los Angeles , California 90095 , United States.

出版信息

Anal Chem. 2018 Nov 20;90(22):13616-13623. doi: 10.1021/acs.analchem.8b03843. Epub 2018 Oct 31.

Abstract

Therapeutic target characterization involves many components, including accurate molecular weight (MW) determination. Knowledge of the accurate MW allows one to detect the presence of post-translational modifications, proteolytic cleavages, and importantly, if the correct construct has been generated and purified. Denaturing liquid chromatography-mass spectrometry (LC-MS) can be an attractive method for obtaining this information. However, membrane protein LC-MS methodology has remained relatively under-explored and under-incorporated in comparison to methods for soluble proteins. Here, systematic investigation of multiple gradients and column chemistries has led to the development of a 5 min denaturing LC-MS method for acquiring membrane protein accurate MW measurements. Conditions were interrogated with membrane proteins, such as GPCRs and ion channels, as well as bispecific antibody constructs of variable sizes with the aim to provide the community with rapid LC-MS methods necessary to obtain chromatographic and accurate MW measurements in a medium- to high-throughput manner. The 5 min method detailed has successfully produced MW measurements for hydrophobic proteins with a wide MW range (17.5 to 105.3 kDa) and provided evidence that some constructs indeed contain unexpected modifications or sequence clipping. This rapid LC-MS method is also capable of baseline separating formylated and nonformylated aquaporinZ membrane protein.

摘要

治疗靶点表征涉及许多组成部分,包括准确的分子量 (MW) 测定。对准确 MW 的了解可以检测到翻译后修饰、蛋白水解裂解的存在,更重要的是,可以检测到正确的构建体是否已经生成和纯化。变性液相色谱-质谱联用 (LC-MS) 可以是获取此信息的一种有吸引力的方法。然而,与可溶性蛋白的方法相比,膜蛋白 LC-MS 方法在很大程度上仍未得到充分探索和应用。在这里,对多种梯度和柱化学性质进行了系统研究,从而开发出了一种 5 分钟变性 LC-MS 方法,用于获取膜蛋白的准确 MW 测量值。该方法使用了膜蛋白(如 GPCR 和离子通道)以及各种大小的双特异性抗体构建体进行了条件测试,旨在为社区提供快速 LC-MS 方法,以实现中等至高通量方式获得色谱和准确 MW 测量值。详细介绍的 5 分钟方法已成功地对具有广泛 MW 范围(17.5 至 105.3 kDa)的疏水性蛋白质进行了 MW 测量,并提供了证据表明某些构建体确实包含意外的修饰或序列剪辑。这种快速 LC-MS 方法还能够基线分离甲酰化和非甲酰化水通道蛋白 Z 膜蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13a4/6580849/4838872aee3a/nihms-1028324-f0001.jpg

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