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来自不等蛤 Scapharca inaequivalvis 的四聚体血红蛋白中的三级和四级变构作用。

Tertiary and quaternary allostery in tetrameric hemoglobin from Scapharca inaequivalvis.

机构信息

Department of Pharmacy, University of Parma , Parco Area delle Scienze, 23/A, 43124 Parma, Italy.

出版信息

Biochemistry. 2013 Mar 26;52(12):2108-17. doi: 10.1021/bi301620x. Epub 2013 Mar 15.

Abstract

The clam Scapharca inaequivalvis possesses two cooperative oxygen binding hemoglobins in its red cells: a homodimeric HbI and a heterotetrameric A2B2 HbII. Each AB dimeric half of HbII is assembled in a manner very similar to that of the well-studied HbI. This study presents crystal structures of HbII along with oxygen binding data both in the crystalline state and in wet nanoporous silica gels. Despite very similar ligand-linked structural transitions observed in HbI and HbII crystals, HbII in the crystal or encapsulated in silica gels apparently exhibits minimal cooperativity in oxygen binding, in contrast with the full cooperativity exhibited by HbI crystals. However, oxygen binding curves in the crystal indicate the presence of a significant functional inequivalence of A and B chains. When this inequivalence is taken into account, both crystal and R state gel functional data are consistent with the conservation of a tertiary contribution to cooperative oxygen binding, quantitatively similar to that measured for HbI, and are in keeping with the structural information. Furthermore, our results indicate that to fully express cooperative ligand binding, HbII requires quaternary transitions hampered by crystal lattice and gel encapsulation, revealing greater complexity in cooperative function than the direct communication across a dimeric interface observed in HbI.

摘要

贻贝 Scapharca inaequivalvis 的红细胞中含有两种协同氧结合的血红蛋白:同源二聚体 HbI 和异四聚体 A2B2 HbII。HbII 的每个 AB 二聚体部分以与研究充分的 HbI 非常相似的方式组装。本研究提供了 HbII 的晶体结构以及在晶体状态和湿纳米多孔硅胶中的氧结合数据。尽管在 HbI 和 HbII 晶体中观察到非常相似的配体连接结构转变,但在晶体或硅胶包封中的 HbII 显然在氧结合中表现出最小的协同性,与 HbI 晶体表现出的完全协同性形成对比。然而,晶体中的氧结合曲线表明 A 和 B 链存在明显的功能不均一性。当考虑到这种不均一性时,晶体和 R 态凝胶的功能数据都与对协同氧结合的三级贡献的保留一致,与测量到的 HbI 相似,并且与结构信息一致。此外,我们的结果表明,为了充分表达协同配体结合,HbII 需要四元转变,这受到晶体晶格和凝胶包封的阻碍,这揭示了协同功能比在 HbI 中观察到的通过二聚体界面的直接通信更复杂。

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