1jl2 Citations

Contributions of folding cores to the thermostabilities of two ribonucleases H.

Protein Sci 11 381-9 (2002)
Cited: 22 times
EuropePMC logo PMID: 11790848

Abstract

To investigate the contribution of the folding cores to the thermodynamic stability of RNases H, we used rational design to create two chimeras composed of parts of a thermophilic and a mesophilic RNase H. Each chimera combines the folding core from one parent protein and the remaining parts of the other. Both chimeras form active, well-folded RNases H. Stability curves, based on CD-monitored chemical denaturations, show that the chimera with the thermophilic core is more stable, has a higher midpoint of thermal denaturation, and a lower change in heat capacity (DeltaCp) upon unfolding than the chimera with the mesophilic core. A possible explanation for the low DeltaCp of both the parent thermophilic RNase H and the chimera with the thermophilic core is the residual structure in the denatured state. On the basis of the studied parameters, the chimera with the thermophilic core resembles a true thermophilic protein. Our results suggest that the folding core plays an essential role in conferring thermodynamic parameters to RNases H.

Reviews - 1jl2 mentioned but not cited (1)

  1. Snake Venom Metalloproteinases (SVMPs): A structure-function update. Olaoba OT, Karina Dos Santos P, Selistre-de-Araujo HS, Ferreira de Souza DH. Toxicon X 7 100052 (2020)

Articles - 1jl2 mentioned but not cited (2)



Reviews citing this publication (3)

  1. Heat capacity in proteins. Prabhu NV, Sharp KA. Annu Rev Phys Chem 56 521-548 (2005)
  2. The folding of single domain proteins--have we reached a consensus? Sosnick TR, Barrick D. Curr Opin Struct Biol 21 12-24 (2011)
  3. Thermodynamics of protein denatured states. Bowler BE. Mol Biosyst 3 88-99 (2007)

Articles citing this publication (16)