We have previously shown that the major ion-pairs network of the tetrameric beta-glycosidase from the hyperthermophilic archeon Sulfolobus solfataricus involves more than 16 ion-pairs and hydrogen bonds between several residues from the four subunits and protects the protein from thermal unfolding by sewing the carboxy-termini of the enzyme. We show here that the amino-terminal of the enzyme also plays a relevant role in the thermostabilization of the protein. In fact, the addition of four extra amino acids at the amino-terminal of the beta-glycosidase, though not affecting the catalytic machinery of the enzyme and its thermophilicity, produced a faster enzyme inactivation in the temperature range 85-95 degrees C and decreased the Tm of the...
The perturbation induced by mono- and divalent cations on the thermophilicity and thermostability of...
The effects of temperature and SDS on the three-dimensional organization and secondary structure of ...
The β-glycosidase isolated from the extreme thermophilic archaeon Sulfolobus solfataricus, grown at ...
We have previously shown that the major ion-pairs network of the tetrameric beta-glycosidase from th...
We have previously shown that the major ion-pairs network of the tetrameric beta-glycosidase from th...
Enzymes from hyperthermophilic organisms must operate at temperatures which rapidly denature protein...
Biochemical, crystallographic, and computational data support the hypothesis that electrostatic inte...
Beta-glycosidase from the hyperthermophilic archaeon Sulfolobus solfataricus is a homotetramer with ...
The identification of the determinants of protein thermal stabilization is often pursued by comparin...
The perturbation induced by mono- and divalent cations on the thermophilicity and thermostability of...
The effects of temperature and SDS on the three-dimensional organization and secondary structure of ...
The β-glycosidase isolated from the extreme thermophilic archaeon Sulfolobus solfataricus, grown at ...
We have previously shown that the major ion-pairs network of the tetrameric beta-glycosidase from th...
We have previously shown that the major ion-pairs network of the tetrameric beta-glycosidase from th...
Enzymes from hyperthermophilic organisms must operate at temperatures which rapidly denature protein...
Biochemical, crystallographic, and computational data support the hypothesis that electrostatic inte...
Beta-glycosidase from the hyperthermophilic archaeon Sulfolobus solfataricus is a homotetramer with ...
The identification of the determinants of protein thermal stabilization is often pursued by comparin...
The perturbation induced by mono- and divalent cations on the thermophilicity and thermostability of...
The effects of temperature and SDS on the three-dimensional organization and secondary structure of ...
The β-glycosidase isolated from the extreme thermophilic archaeon Sulfolobus solfataricus, grown at ...