The ionization state of titratable amino acids strongly affects proteins structure and functioning in a large number of biological processes. It is therefore essential to be able to characterize the pKa of ionizable groups inside proteins and to understand its microscopic determinants in order to gain insights into many functional properties of proteins. A big effort has been devoted to the development of theoretical approaches for the prediction of deprotonation free energies, yet the accurate theoretical/computational calculation of pKa values is recognized as a current challenge. A methodology based on a hybrid quantum/classical approach is here proposed for the computation of deprotonation free energies. The method is applied to calcula...
This paper describes the extension of our computational strategy for pK predictions of small molecul...
This paper describes the extension of our computational strategy for pK predictions of small molecul...
This paper describes the extension of our computational strategy for pK predictions of small molecul...
The ionization state of titratable amino acids strongly affects proteins structure and functioning i...
The ionization state of titratable amino acids strongly affects proteins structure and functioning i...
The ionization state of titratable amino acids strongly affects proteins structure and functioning i...
This work emphasises on elaboration of improved theoretical and computational methods for determinat...
This work emphasises on elaboration of improved theoretical and computational methods for determinat...
<p>A computational method, to predict the pKa values of the ionizable residues Asp, Glu, His, Tyr, a...
<p>NSF proposal 7/15/02 - 6/30/06</p> <p>The objective of the proposed research is to establish a QM...
A computational methodology for pKa predictions of small molecules based on an ab initio quantum mec...
AbstractProton binding plays a critical role in protein structure and function. We report pKa calcul...
Accurate predictions of pKa values of titratable groups require taking into account all relevant pro...
Accurate predictions of pKa values of titratable groups require taking into account all relevant pro...
The stability, solubility, and function of a protein depend on both its net charge and the protonati...
This paper describes the extension of our computational strategy for pK predictions of small molecul...
This paper describes the extension of our computational strategy for pK predictions of small molecul...
This paper describes the extension of our computational strategy for pK predictions of small molecul...
The ionization state of titratable amino acids strongly affects proteins structure and functioning i...
The ionization state of titratable amino acids strongly affects proteins structure and functioning i...
The ionization state of titratable amino acids strongly affects proteins structure and functioning i...
This work emphasises on elaboration of improved theoretical and computational methods for determinat...
This work emphasises on elaboration of improved theoretical and computational methods for determinat...
<p>A computational method, to predict the pKa values of the ionizable residues Asp, Glu, His, Tyr, a...
<p>NSF proposal 7/15/02 - 6/30/06</p> <p>The objective of the proposed research is to establish a QM...
A computational methodology for pKa predictions of small molecules based on an ab initio quantum mec...
AbstractProton binding plays a critical role in protein structure and function. We report pKa calcul...
Accurate predictions of pKa values of titratable groups require taking into account all relevant pro...
Accurate predictions of pKa values of titratable groups require taking into account all relevant pro...
The stability, solubility, and function of a protein depend on both its net charge and the protonati...
This paper describes the extension of our computational strategy for pK predictions of small molecul...
This paper describes the extension of our computational strategy for pK predictions of small molecul...
This paper describes the extension of our computational strategy for pK predictions of small molecul...