Deer mouse hemoglobin exhibits a lowered oxygen affinity owing to mobility of the E helix

Author:

Inoguchi Noriko,Oshlo Jake R.,Natarajan Chandrasekhar,Weber Roy E.,Fago Angela,Storz Jay F.,Moriyama Hideaki

Abstract

The deer mouse,Peromyscus maniculatus, exhibits altitude-associated variation in hemoglobin oxygen affinity. To examine the structural basis of this functional variation, the structure of the hemoglobin was solved. Recombinant hemoglobin was expressed inEscherichia coliand was purified by ion-exchange chromatography. Recombinant hemoglobin was crystallized by the hanging-drop vapor-diffusion method using polyethylene glycol as a precipitant. The obtained orthorhombic crystal contained two subunits in the asymmetric unit. The refined structure was interpreted as the aquo-met form. Structural comparisons were performed among hemoglobins from deer mouse, house mouse and human. In contrast to human hemoglobin, deer mouse hemoglobin lacks the hydrogen bond between α1Trp14 in the A helix and α1Thr67 in the E helix owing to the Thr67Ala substitution. In addition, deer mouse hemoglobin has a unique hydrogen bond at the α1β1 interface between residues α1Cys34 and β1Ser128.

Publisher

International Union of Crystallography (IUCr)

Subject

Condensed Matter Physics,Genetics,Biochemistry,Structural Biology,Biophysics

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Commentary: Hierarchical reductionism approach to understanding adaptive variation in animal performance;Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology;2021-10

2. Crystal structure of hemoglobin from mouse (Mus musculus) compared with those from other small animals and humans;Acta Crystallographica Section F Structural Biology Communications;2021-04-01

3. Alteration of the α1β2/α2β1 subunit interface contributes to the increased hemoglobin-oxygen affinity of high-altitude deer mice;PLOS ONE;2017-03-31

4. Peromyscus as a model of human disease;Seminars in Cell & Developmental Biology;2017-01

5. Bohr effect and temperature sensitivity of hemoglobins from highland and lowland deer mice;Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology;2016-05

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