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首页> 外文期刊>Current Protein and Peptide Science >The Structural Analysis of Large Noncovalent Oxygen Binding Proteins by MALLS and ESI-MS:A Review on Annelid Hexagonal Bilayer Hemoglobin and Crustacean Hemocyanin
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The Structural Analysis of Large Noncovalent Oxygen Binding Proteins by MALLS and ESI-MS:A Review on Annelid Hexagonal Bilayer Hemoglobin and Crustacean Hemocyanin

机译:大型非共价氧结合蛋白的结构分析,通过MALLS和ESI-MS:Annelid六角双层血红蛋白和甲壳类血蓝蛋白的综述

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Understanding the function of macromolecular complexes is related to a precise knowledge of their structure.These large complexes are often fragile high molecular mass noncovalent multimeric proteins.Classical biochemical methods for determination of their native mass and subunit composition were used to resolve their quaternary structure,sometimes leading to different models.Recently,the development of mass spectrometry and multi-angle laser light scattering(MALLS)has enabled absolute determination of native masses and subunit masses.Electrospray ionization mass spectrometry(ESI-MS)was used in denaturing and native conditions to probe subunit composition and noncovalent assemblies masses up to 2.25 MDa.In a complementary way,MALLS provides mass and size estimation in various aqueous solvents.ESI-MS method can also give insights into post-translational modifications(glycosylation,disulfide bridges…).By combining native mass and subunit composition data,structural models can be proposed for large edifices such as annelid extracellular hexagonal bilayer hemoglobins(HBL-Hb)and crustacean hemocyanins(Hc).Association/dissociation mechanisms,protein-protein interactions,structural diversity among species and environmental adaptations can also be addressed with these methods.With their absolute mass determination,the very high precision of spectrometry and the versatile nature of light scattering,ESI-MS and MALLS have provided a wealth of data helping to resolve parts of controversies for HBL-Hb models and opening access to new fields of investigation in structural diversity and molecular adaptation.In this review we will focus on annelid HBL-Hb and on crustacean Hc and on the original contributions of ESI-MS and MALLS in this field.
机译:了解大分子复合物的功能与对其结构的精确了解有关。这些大复合物通常是易碎的高分子​​非共价多聚体蛋白质。有时使用经典生化方法测定其天然质量和亚基组成,以解析其四级结构。近年来,质谱技术和多角度激光散射(MALLS)的发展已使绝对质量和亚单位质量的绝对测定成为可能。电喷雾电离质谱(ESI-MS)用于变性和自然条件下探针亚基组成和非共价装配体的质量高达2.25 MDa。作为补充,MALLS可提供各种水性溶剂的质量和尺寸估计。ESI-MS方法还可洞悉翻译后修饰(糖基化,二硫键…)。结合原生质量和亚单位组成数据,可以提出结构模型这些方法适用于大型建筑物,如无细胞的六角形双层血红蛋白(HBL-Hb)和甲壳类血蓝蛋白(Hc)。结合/解离机理,蛋白质间相互作用,物种间结构多样性和环境适应性也可以通过这些方法解决。质谱测定,质谱的极高精确度和光散射的通用性,ESI-MS和MALLS提供了丰富的数据,有助于解决有关HBL-Hb模型的部分争议,并为结构多样性研究的新领域打开了大门在这篇综述中,我们将重点研究无核型HBL-Hb和甲壳类Hc,以及ESI-MS和MALLS在该领域的最初贡献。

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