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拟南芥截短型血红蛋白中N端和C端附属结构的结构与功能意义

Structural and Functional Significance of the N- and C-Terminal Appendages in Arabidopsis Truncated Hemoglobin.

作者信息

Mukhi Nitika, Dhindwal Sonali, Uppal Sheetal, Kapoor Abhijeet, Arya Richa, Kumar Pravindra, Kaur Jagreet, Kundu Suman

机构信息

Department of Genetics, University of Delhi South Campus , New Delhi 110021, India.

Department of Biotechnology, Indian Institute of Technology , Roorkee, Uttarakhand 247667, India.

出版信息

Biochemistry. 2016 Mar 29;55(12):1724-40. doi: 10.1021/acs.biochem.5b01013. Epub 2016 Mar 7.

Abstract

Plant hemoglobins constitute three distinct groups: symbiotic, nonsymbiotic, and truncated hemoglobins. Structural investigation of symbiotic and nonsymbiotic (class I) hemoglobins revealed the presence of a vertebrate-like 3/3 globin fold in these proteins. In contrast, plant truncated hemoglobins are similar to bacterial truncated hemoglobins with a putative 2/2 α-helical globin fold. While multiple structures have been reported for plant hemoglobins of the first two categories, for plant truncated globins only one structure has been reported of late. Here, we report yet another crystal structure of the truncated hemoglobin from Arabidopsis thaliana (AHb3) with two water molecules in the heme pocket, of which one is distinctly coordinated to the heme iron, unlike the only available crystal structure of AHb3 with a hydroxyl ligand. AHb3 was monomeric in its crystallographic asymmetric unit; however, dimer was evident in the crystallographic symmetry, and the globin indeed existed as a stable dimer in solution. The tertiary structure of the protein exhibited a bacterial-like 2/2 α-helical globin fold with an additional N-terminal α-helical extension and disordered C-termini. To address the role of these extended termini in AHb3, which is yet unknown, N- and C-terminal deletion mutants were created and characterized and molecular dynamics simulations performed. The C-terminal deletion had an insignificant effect on most properties but perturbed the dimeric equilibrium of AHb3 and significantly influenced azide binding kinetics in the ferric state. These results along with the disordered nature of the C-terminus indicated its putative role in intramolecular or intermolecular interactions probably regulating protein-ligand and protein-protein interactions. While the N-terminal deletion did not change the overall globin fold, stability, or ligand binding kinetics, it seemed to have influenced coordination at the heme iron, the hydration status of the active site, and the quaternary structure of AHb3. Evidence indicated that the N-terminus is the predominant factor regulating the quaternary interaction appropriate to physiological requirements, dynamics of the side chains in the heme pocket, and tunnel organization in the protein matrix.

摘要

植物血红蛋白可分为三个不同的类别

共生血红蛋白、非共生血红蛋白和截短型血红蛋白。对共生和非共生(I类)血红蛋白的结构研究表明,这些蛋白质中存在类似脊椎动物的3/3珠蛋白折叠结构。相比之下,植物截短型血红蛋白与细菌截短型血红蛋白相似,具有假定的2/2α-螺旋珠蛋白折叠结构。虽然已经报道了前两类植物血红蛋白的多种结构,但最近关于植物截短型珠蛋白仅报道了一种结构。在此,我们报道了拟南芥截短型血红蛋白(AHb3)的另一种晶体结构,其血红素口袋中有两个水分子,其中一个与血红素铁有明显的配位作用,这与唯一已知的带有羟基配体的AHb3晶体结构不同。AHb3在其晶体学不对称单元中为单体;然而,在晶体学对称性中明显存在二聚体,并且该珠蛋白在溶液中确实以稳定的二聚体形式存在。该蛋白质的三级结构呈现出类似细菌的2/2α-螺旋珠蛋白折叠结构,带有额外的N端α-螺旋延伸和无序的C端。为了探究这些延伸末端在AHb3中尚未明确的作用,我们构建并表征了N端和C端缺失突变体,并进行了分子动力学模拟。C端缺失对大多数性质影响不大,但扰乱了AHb3的二聚体平衡,并显著影响了铁状态下叠氮化物的结合动力学。这些结果以及C端的无序性质表明其在分子内或分子间相互作用中可能具有调节蛋白质-配体和蛋白质-蛋白质相互作用的假定作用。虽然N端缺失没有改变整体珠蛋白折叠结构、稳定性或配体结合动力学,但它似乎影响了血红素铁的配位、活性位点的水合状态以及AHb3的四级结构。有证据表明,N端是调节适合生理需求的四级相互作用、血红素口袋中侧链动力学以及蛋白质基质中通道组织的主要因素。

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