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血红素 d 生物合成相关的小 c 型细胞色素 NirC 的晶体结构揭示了在结晶相中混合的寡聚状态。

The crystal structure of the heme d biosynthesis-associated small c-type cytochrome NirC reveals mixed oligomeric states in crystallo.

机构信息

Structure and Function of Proteins, Helmholtz Centre for Infection Research, Inhoffenstrasse 7, 38124 Braunschweig, Germany.

出版信息

Acta Crystallogr D Struct Biol. 2020 Apr 1;76(Pt 4):375-384. doi: 10.1107/S2059798320003101. Epub 2020 Mar 25.

Abstract

Monoheme c-type cytochromes are important electron transporters in all domains of life. They possess a common fold hallmarked by three α-helices that surround a covalently attached heme. An intriguing feature of many monoheme c-type cytochromes is their capacity to form oligomers by exchanging at least one of their α-helices, which is often referred to as 3D domain swapping. Here, the crystal structure of NirC, a c-type cytochrome co-encoded with other proteins involved in nitrite reduction by the opportunistic pathogen Pseudomonas aeruginosa, has been determined. The crystals diffracted anisotropically to a maximum resolution of 2.12 Å (spherical resolution of 2.83 Å) and initial phases were obtained by Fe-SAD phasing, revealing the presence of 11 NirC chains in the asymmetric unit. Surprisingly, these protomers arrange into one monomer and two different types of 3D domain-swapped dimers, one of which shows pronounced asymmetry. While the simultaneous observation of monomers and dimers probably reflects the interplay between the high protein concentration required for crystallization and the structural plasticity of monoheme c-type cytochromes, the identification of conserved structural motifs in the monomer together with a comparison with similar proteins may offer new leads to unravel the unknown function of NirC.

摘要

单血红素 c 型细胞色素是所有生命领域中重要的电子转运体。它们具有共同的折叠结构,由三个环绕共价连接的血红素的α-螺旋组成。许多单血红素 c 型细胞色素的一个有趣特征是它们通过交换至少一个α-螺旋形成寡聚体的能力,这通常被称为 3D 结构域交换。在这里,已确定与其他蛋白质共同编码的 c 型细胞色素 NirC 的晶体结构,这些蛋白质参与铜绿假单胞菌引起的亚硝酸盐还原。该晶体以各向异性的方式衍射,最大分辨率为 2.12Å(球形分辨率为 2.83Å),通过 Fe-SAD 相测定获得初始相位,揭示了在不对称单位中存在 11 个 NirC 链。令人惊讶的是,这些原聚体排列成一个单体和两种不同类型的 3D 结构域交换二聚体,其中一种表现出明显的不对称性。虽然单体和二聚体的同时观察可能反映了结晶所需的高蛋白质浓度与单血红素 c 型细胞色素结构可塑性之间的相互作用,但在单体中识别保守的结构基序并与类似蛋白质进行比较,可能为揭示 NirC 的未知功能提供新的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1690/7137109/71e88e8a7c9e/d-76-00375-fig1.jpg

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