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从. 中获得非共生血红蛋白的血红素口袋和寡聚状态的结构见解。

Structural Insights into the Heme Pocket and Oligomeric State of Non-Symbiotic Hemoglobins from .

机构信息

Department of Biotechnology, University of Verona, Strada Le Grazie 15, 37134 Verona, Italy.

Department of Neuroscience, Biomedicine and Movement Sciences, Section of Biological Chemistry, University of Verona, Strada Le Grazie, 8, 37134 Verona, Italy.

出版信息

Biomolecules. 2020 Nov 29;10(12):1615. doi: 10.3390/biom10121615.

Abstract

Non-symbiotic hemoglobins AHb1 and AHb2 from are hexacoordinate heme-proteins that likely have different biological roles, in view of diverse tissue localization, expression pattern, and ligand binding properties. Herein, we expand upon previous biophysical studies on these isoforms, focusing on their oligomeric states and circular dichroism (CD) characteristics. We found that AHb1 exists in solution in a concentration-dependent monomer-dimer equilibrium, while AHb2 is present only as a monomer. The quaternary structure of AHb1 affects its degree of hexacoordination with the formation of the dimer that enhances pentacoordination. Accordingly, the mutant of a conserved residue within the dimeric interface, AHb1-T45A, which is mostly monomeric in solution, has an equilibrium that is shifted toward a hexacoordinate form compared to the wild-type protein. CD studies further support differences in the globin's structure and heme moiety. The Soret CD spectra for AHb2 are opposite in sense to those for AHb1, reflecting different patterns of heme-protein side chain contacts in the two proteins. Moreover, the smaller contribution of the heme to the near-UV CD in AHb2 compared to AHb1 suggests a weaker heme-protein association in AHb2. Our data corroborate the structural diversity of AHb1 and AHb2 and confirm the leghemoglobin-like structural properties of AHb2.

摘要

来自 的非共生血红蛋白 AHb1 和 AHb2 是六配位血红素蛋白,鉴于其不同的组织定位、表达模式和配体结合特性,可能具有不同的生物学功能。在此,我们扩展了之前对这些同工酶的生物物理研究,重点研究它们的聚合态和圆二色性 (CD) 特征。我们发现,AHb1 在溶液中以浓度依赖的单体-二聚体平衡存在,而 AHb2 仅以单体形式存在。AHb1 的四级结构影响其六配位程度,二聚体的形成增强了五配位。因此,突变位于二聚体界面的保守残基(AHb1-T45A),该残基在溶液中主要以单体形式存在,与野生型蛋白相比,其平衡更倾向于六配位形式。CD 研究进一步支持球蛋白结构和血红素部分的差异。AHb2 的 Soret CD 光谱与 AHb1 的相反,反映了两种蛋白质中血红素-蛋白侧链接触的不同模式。此外,与 AHb1 相比,AHb2 中血红素对近紫外 CD 的贡献较小,表明 AHb2 中血红素-蛋白的结合较弱。我们的数据证实了 AHb1 和 AHb2 的结构多样性,并确认了 AHb2 的豆血红蛋白样结构特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efe4/7761212/7cf679456663/biomolecules-10-01615-g001.jpg

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