Crystal structure of Kumaglobin: a hexacoordinated heme protein from an anhydrobiotic tardigrade, Ramazzottius varieornatus. (20th December 2018)
- Record Type:
- Journal Article
- Title:
- Crystal structure of Kumaglobin: a hexacoordinated heme protein from an anhydrobiotic tardigrade, Ramazzottius varieornatus. (20th December 2018)
- Main Title:
- Crystal structure of Kumaglobin: a hexacoordinated heme protein from an anhydrobiotic tardigrade, Ramazzottius varieornatus
- Authors:
- Kim, JeeEun
Fukuda, Yohta
Inoue, Tsuyoshi - Abstract:
- Abstract : Tardigrades, also known as water bears, can survive extreme conditions. For example, tardigrades have high tolerance to extreme desiccation because they can enter an anhydrobiotic state, in which they show no or nearly undetectable metabolic processes. Proteins from anhydrobiotic tardigrades with low homology to known proteins from other organisms are new potential targets for structural genomics. Here, we present spectroscopic and structural characterization of an unprecedented globin protein (Kumaglobin: Kgb) found in an anhydrobiotic tardigrade. Spectroscopy reveals that Kgb contains hexacoordinated low‐spin heme, which is not capable of binding to hydrogen sulfide (H2 S) unlike other globin proteins, such as neuroglobin. Interestingly however, when distal histidine is replaced with alanine, H2 S is capable of binding to heme, implying that the distal histidine of Kgb binds tightly to heme. The overall structure of Kgb at 1.5 Å resolution shows high resemblance to well‐characterized eukaryotic globin proteins, such as myoglobin and cytoglobin. However, the heme coordination geometry in Kgb is unique because the distal histidinyl ligand is located at the 11th position of helix E while it is found at 7th position on helix E in many known globin proteins. The unusual conformation of distal histidine in Kgb is stabilized by a hydrogen bond with the carbonyl O atom of A103. Furthermore, bulky residues exist around the heme cofactor, resulting in a rufflingAbstract : Tardigrades, also known as water bears, can survive extreme conditions. For example, tardigrades have high tolerance to extreme desiccation because they can enter an anhydrobiotic state, in which they show no or nearly undetectable metabolic processes. Proteins from anhydrobiotic tardigrades with low homology to known proteins from other organisms are new potential targets for structural genomics. Here, we present spectroscopic and structural characterization of an unprecedented globin protein (Kumaglobin: Kgb) found in an anhydrobiotic tardigrade. Spectroscopy reveals that Kgb contains hexacoordinated low‐spin heme, which is not capable of binding to hydrogen sulfide (H2 S) unlike other globin proteins, such as neuroglobin. Interestingly however, when distal histidine is replaced with alanine, H2 S is capable of binding to heme, implying that the distal histidine of Kgb binds tightly to heme. The overall structure of Kgb at 1.5 Å resolution shows high resemblance to well‐characterized eukaryotic globin proteins, such as myoglobin and cytoglobin. However, the heme coordination geometry in Kgb is unique because the distal histidinyl ligand is located at the 11th position of helix E while it is found at 7th position on helix E in many known globin proteins. The unusual conformation of distal histidine in Kgb is stabilized by a hydrogen bond with the carbonyl O atom of A103. Furthermore, bulky residues exist around the heme cofactor, resulting in a ruffling conformation of the porphyrin ring. Based on our study, Kgb is thought to be involved in electron transfer or enzymatic reactions rather than transporting or storing ligands. Database: Structural data are available in the Protein Data Bank under the accession numbers5ZIQ (Kgb4‐SR) and5ZM9 (Kgb7‐house). Abstract : Tardigrades are renowned for being able to survive extreme conditions that would be intolerable to other animals. To survive extreme desiccation, they enter an anhydrobiotic state in which they virtually stop all metabolic processes. In this study, Tsuyoshi Inoue and co‐authors present a detailed spectroscopic and structural characterization of a newly discovered heme protein that is unique to anhydrobiotic tardigrades. Exploration of this protein, Kumaglobin (Kgb, named after the Japanese name for tardigrades) expands our knowledge of globin protein biodiversity. … (more)
- Is Part Of:
- FEBS journal. Volume 286:Number 7(2019)
- Journal:
- FEBS journal
- Issue:
- Volume 286:Number 7(2019)
- Issue Display:
- Volume 286, Issue 7 (2019)
- Year:
- 2019
- Volume:
- 286
- Issue:
- 7
- Issue Sort Value:
- 2019-0286-0007-0000
- Page Start:
- 1287
- Page End:
- 1304
- Publication Date:
- 2018-12-20
- Subjects:
- Globin proteins -- heme -- tardigrade -- X‐ray crystallography -- Structural biology
Biochemistry -- Periodicals
Molecular biology -- Periodicals
Pathology, Molecular -- Periodicals
572 - Journal URLs:
- http://firstsearch.oclc.org ↗
http://gateway.ovid.com/ovidweb.cgi?T=JS&MODE=ovid&NEWS=n&PAGE=toc&D=ovft&AN=01038983-000000000-00000 ↗
http://www.blackwell-synergy.com/servlet/useragent?func=showIssues&code=ejb ↗
http://onlinelibrary.wiley.com/ ↗
http://www.blackwell-synergy.com/servlet/useragent?func=showIssues&code=ejb ↗ - DOI:
- 10.1111/febs.14713 ↗
- Languages:
- English
- ISSNs:
- 1742-464X
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3901.578500
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