Extremophilic microorganisms have adapted their molecular machinery to grow and thrive under the most adverse enviromental conditions. These microorganisms have found their natural habitat at the boiling and freezing point of water, in high salt concentration and at extreme pH values. The extremophilic proteins, selected by Nature to withstand this evolutionary pressure, represent a wide research field for scientists from different disciplines and the study of the determinants of their stability has been an important task for basic and applied research. A surprising conclusion emerges from these studies: there are no general rules to achieve protein stabilization. Each extremophilic protein adopts various strategies and the outstanding adaptation to extreme temperature and solvent conditions is realized through the same weak electrostatic and hydrophobic interactions among the ordinary amino acid residues which are also responsible for the proper balance between protein stability and flexibility in mesophilic proteins.

Protein stability in extremophilic archaea / Scandurra, Roberto; Consalvi, Valerio; Chiaraluce, Roberta; Politi, Laura; Engel, P. C.. - In: FRONTIERS IN BIOSCIENCE. - ISSN 1093-9946. - 1; 5D:(2000), pp. D787-795. [10.2741/scan]

Protein stability in extremophilic archaea

SCANDURRA, Roberto;CONSALVI, Valerio;CHIARALUCE, Roberta;POLITI, Laura;
2000

Abstract

Extremophilic microorganisms have adapted their molecular machinery to grow and thrive under the most adverse enviromental conditions. These microorganisms have found their natural habitat at the boiling and freezing point of water, in high salt concentration and at extreme pH values. The extremophilic proteins, selected by Nature to withstand this evolutionary pressure, represent a wide research field for scientists from different disciplines and the study of the determinants of their stability has been an important task for basic and applied research. A surprising conclusion emerges from these studies: there are no general rules to achieve protein stabilization. Each extremophilic protein adopts various strategies and the outstanding adaptation to extreme temperature and solvent conditions is realized through the same weak electrostatic and hydrophobic interactions among the ordinary amino acid residues which are also responsible for the proper balance between protein stability and flexibility in mesophilic proteins.
2000
01 Pubblicazione su rivista::01a Articolo in rivista
Protein stability in extremophilic archaea / Scandurra, Roberto; Consalvi, Valerio; Chiaraluce, Roberta; Politi, Laura; Engel, P. C.. - In: FRONTIERS IN BIOSCIENCE. - ISSN 1093-9946. - 1; 5D:(2000), pp. D787-795. [10.2741/scan]
File allegati a questo prodotto
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/251394
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? 6
  • Scopus 33
  • ???jsp.display-item.citation.isi??? 32
social impact