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使用凝胶渗透色谱-多角度光散射(SEC-MALS)测定含[Fe-S]的蛋白质的绝对摩尔质量。

Determination of the Absolute Molar Mass of [Fe-S]-Containing Proteins Using Size Exclusion Chromatography-Multi-Angle Light Scattering (SEC-MALS).

机构信息

Fundamental Microbiology and Pathogenicity Laboratory, UMR 5234 CNRS-University of Bordeaux, SFR TransBioMed, 33076 Bordeaux, France.

Institute for Integrative Biology of the Cell (I2BC), CNRS, Université Paris-Saclay, 91198 Gif-sur-Yvette, France.

出版信息

Biomolecules. 2022 Feb 8;12(2):270. doi: 10.3390/biom12020270.

Abstract

Size Exclusion Chromatography coupled with Multi-Angle Light Scattering (SEC-MALS) is a technique that determines the absolute molar mass (molecular weight) of macromolecules in solution, such as proteins or polymers, by detecting their light scattering intensity. Because SEC-MALS does not rely on the assumption of the globular state of the analyte and the calibration of standards, the molar mass can be obtained for proteins of any shape, as well as for intrinsically disordered proteins and aggregates. Yet, corrections need to be made for samples that absorb light at the wavelength of the MALS laser, such as iron-sulfur [Fe-S] cluster-containing proteins. We analyze several examples of [2Fe-2S] and [4Fe-4S] cluster-containing proteins, for which various corrections were applied to determine the absolute molar mass of both the apo- and holo-forms. Importantly, the determination of the absolute molar mass of the [2Fe-2S]-containing holo-NEET proteins allowed us to ascertain a change in the oligomerization state upon cluster binding and, thus, to highlight one essential function of the cluster.

摘要

尺寸排阻色谱法与多角度光散射(SEC-MALS)相结合,是一种通过检测其光散射强度来确定溶液中大分子(如蛋白质或聚合物)的绝对摩尔质量(分子量)的技术。由于 SEC-MALS 不依赖于分析物的球形状态的假设和标准品的校准,因此可以获得任何形状的蛋白质的分子量,以及天然无序的蛋白质和聚集体的分子量。然而,对于在 MALS 激光波长处吸收光的样品,需要进行校正,例如含铁-硫 [Fe-S] 簇的蛋白质。我们分析了几种含有 [2Fe-2S] 和 [4Fe-4S] 簇的蛋白质的例子,对于这些蛋白质,应用了各种校正方法来确定apo 和 holo 形式的绝对分子量。重要的是,确定含有 [2Fe-2S] 的 holo-NEET 蛋白质的绝对分子量使我们能够确定在簇结合时寡聚状态的变化,从而突出了簇的一个重要功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daba/8961635/3cc96faf6b33/biomolecules-12-00270-g001.jpg

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