Skip to Main Content (Press Enter)

Logo UNIMI
  • ×
  • Home
  • Persone
  • Attività
  • Ambiti
  • Strutture
  • Pubblicazioni
  • Terza Missione

Expertise & Skills
Logo UNIMI

|

Expertise & Skills

unimi.it
  • ×
  • Home
  • Persone
  • Attività
  • Ambiti
  • Strutture
  • Pubblicazioni
  • Terza Missione
  1. Pubblicazioni

CO Rebinding Kinetics and Molecular Dynamics Simulations Highlight Dynamic Regulation of Internal Cavities in Human Cytoglobin

Articolo
Data di Pubblicazione:
2013
Citazione:
CO Rebinding Kinetics and Molecular Dynamics Simulations Highlight Dynamic Regulation of Internal Cavities in Human Cytoglobin / M. Gabba, S. Abbruzzetti, F. Spyrakis, F. Forti, S. Bruno, A. Mozzarelli, F.J. Luque, C. Viappiani, P. Cozzini, M. Nardini, F. Germani, M. Bolognesi, L. Moens, S. Dewilde. - In: PLOS ONE. - ISSN 1932-6203. - 8:1(2013 Jan 04), pp. e49770.1-e49770.14. [10.1371/journal.pone.0049770]
Abstract:
Cytoglobin (Cygb) was recently discovered in the human genome and localized in different tissues. It was suggested to play tissue-specific protective roles, spanning from scavenging of reactive oxygen species in neurons to supplying oxygen to enzymes in fibroblasts. To shed light on the functioning of such versatile machinery, we have studied the processes supporting transport of gaseous heme ligands in Cygb. Carbon monoxide rebinding shows a complex kinetic pattern with several distinct reaction intermediates, reflecting rebinding from temporary docking sites, second order recombination, and formation (and dissociation) of a bis-histidyl heme hexacoordinated reaction intermediate. Ligand exit to the solvent occurs through distinct pathways, some of which exploit temporary docking sites. The remarkable change in energetic barriers, linked to heme bis-histidyl hexacoordination by HisE7, may be responsible for active regulation of the flux of reactants and products to and from the reaction site on the distal side of the heme. A substantial change in both protein dynamics and inner cavities is observed upon transition from the CO-liganded to the pentacoordinated and bis-histidyl hexacoordinated species, which could be exploited as a signalling state. These findings are consistent with the expected versatility of the molecular activity of this protein.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
VERTEBRATE GLOBIN FAMILY ; T STATE HEMOGLOBIN ; LIGAND-BINDING ; SILICA-GELS ; HUMAN NEUROGLOBIN ; NITRIC-OXIDE ; HEXACOORDINATE HEMOGLOBIN ; TRUNCATED HEMOGLOBIN ; PLANT HEMOGLOBINS ; OXYGEN-AFFINITY
Elenco autori:
M. Gabba, S. Abbruzzetti, F. Spyrakis, F. Forti, S. Bruno, A. Mozzarelli, F.J. Luque, C. Viappiani, P. Cozzini, M. Nardini, F. Germani, M. Bolognesi, L. Moens, S. Dewilde
Autori di Ateneo:
NARDINI MARCO ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/223655
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/223655/284691/gabbaetchObject.pdf
  • Aree Di Ricerca

Aree Di Ricerca

Settori


Settore BIO/10 - Biochimica
  • Informazioni
  • Assistenza
  • Accessibilità
  • Privacy
  • Utilizzo dei cookie
  • Note legali

Realizzato con VIVO | Progettato da Cineca | 26.1.3.0