» Articles » PMID: 8683586

Measurement and Modelling of Sequence-specific PKa Values of Lysine Residues in Calbindin D9k

Overview
Journal J Mol Biol
Publisher Elsevier
Date 1996 Jun 21
PMID 8683586
Citations 24
Authors
Affiliations
Soon will be listed here.
Abstract

A pH titration study of calbindin D9k was performed using heteronuclear 1H-13C two-dimensional NMR spectroscopy. The protein was produced with carbon-13 label in the side-chain of lysine residues, next to the titrating group. The site-specific pKa values of these lysine residues, ranging from 10.1 to 12.1, were obtained from the analysis of pH-dependent chemical shifts of 13C and 1H resonances. Ionization constants for both the Ca(2+)-free (apo) and Ca(2+)-loaded forms of the protein were determined. The proton uptake by lysine residues in the apo form was shifted up to 1.7 units towards high pH as compared to that for the model compound. The binding of calcium affected the pKa values of all lysine residues. The largest reduction of one pK unit was observed for Lys55, which is also the closest to the calcium binding sites. A threefold increase in protein concentration, from 0.5 to 1.5 mM, reduced the pKa values by 0.1 to 0.4 pK unit in agreement with the screening concept of ionic interactions. All the observed pKa shifts were site-specific, depending on the local electrostatic environment and were reproduced in Monte Carlo simulations based on the three-dimensional structure of calbindin D9k and a dielectric continuum model for the electrostatic interactions.

Citing Articles

Conformational features and ionization states of Lys side chains in a protein studied using the stereo-array isotope labeling (SAIL) method.

Takeda M, Miyanoiri Y, Terauchi T, Kainosho M Magn Reson (Gott). 2023; 2(1):223-237.

PMID: 37904773 PMC: 10539808. DOI: 10.5194/mr-2-223-2021.


Accurately Predicting Protein p Values Using Nonequilibrium Alchemy.

Wilson C, Karttunen M, de Groot B, Gapsys V J Chem Theory Comput. 2023; 19(21):7833-7845.

PMID: 37820376 PMC: 10653114. DOI: 10.1021/acs.jctc.3c00721.


Anomalous Salt Dependence Reveals an Interplay of Attractive and Repulsive Electrostatic Interactions in α-synuclein Fibril Formation.

Gaspar R, Lund M, Sparr E, Linse S QRB Discov. 2023; 1:e2.

PMID: 37528959 PMC: 10392692. DOI: 10.1017/qrd.2020.7.


Analysis of protonation equilibria of some alanyl dipeptides in water and aqueous ethanol mixtures.

Karaca T, Dogan A Amino Acids. 2023; 55(4):443-450.

PMID: 36692845 DOI: 10.1007/s00726-023-03238-9.


Charge Regulation during Amyloid Formation of α-Synuclein.

Palmadottir T, Malmendal A, Leiding T, Lund M, Linse S J Am Chem Soc. 2021; 143(20):7777-7791.

PMID: 33998793 PMC: 8161422. DOI: 10.1021/jacs.1c01925.