Literature DB >> 21360837

Effects of arginine on heat-induced aggregation of concentrated protein solutions.

Dhawal Shah1, Abdul Rajjak Shaikh, Xinxia Peng, Raj Rajagopalan.   

Abstract

Arginine is one of the commonly used additives to enhance refolding yield of proteins, to suppress aggregation of proteins, and to increase solubility of proteins, and yet the molecular interactions that contribute to the role of arginine are unclear. Here, we present experiments, using bovine serum albumin (BSA), lysozyme (LYZ), and β-lactoglobulin (BLG) as model proteins, to show that arginine can enhance heat-induced aggregation of concentrated protein solutions, contrary to the conventional belief that arginine is a universal suppressor of aggregation. Results show that the enhancement in aggregation is caused only for BSA and BLG, but not for LYZ, indicating that arginine's preferential interactions with certain residues over others could determine the effect of the additive on aggregation. We use this previously unrecognized behavior of arginine, in combination with density functional theory calculations, to identify the molecular-level interactions of arginine with various residues that determine arginine's role as an enhancer or suppressor of aggregation of proteins. The experimental and computational results suggest that the guanidinium group of arginine promotes aggregation through the hydrogen-bond-based bridging interactions with the acidic residues of a protein, whereas the binding of the guanidinium group to aromatic residues (aggregation-prone) contributes to the stability and solubilization of the proteins. The approach, we describe here, can be used to select suitable additives to stabilize a protein solution at high concentrations based on an analysis of the amino acid content of the protein.
Copyright © 2011 American Institute of Chemical Engineers (AIChE).

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Year:  2011        PMID: 21360837     DOI: 10.1002/btpr.563

Source DB:  PubMed          Journal:  Biotechnol Prog        ISSN: 1520-6033


  6 in total

1.  Thermodynamic and fluorescence analyses to determine mechanisms of IgG1 stabilization and destabilization by arginine.

Authors:  Masakazu Fukuda; Daisuke Kameoka; Takuya Torizawa; Satoshi Saitoh; Masaya Yasutake; Yoshimi Imaeda; Akiko Koga; Akihiko Mizutani
Journal:  Pharm Res       Date:  2013-11-28       Impact factor: 4.200

2.  Characterization of heat induced spherulites of lysozyme reveals new insight on amyloid initiation.

Authors:  Pankaj Sharma; Neha Verma; Pradip Kumar Singh; Suresh Korpole
Journal:  Sci Rep       Date:  2016-03-01       Impact factor: 4.379

3.  Inhibition of protein aggregation by zwitterionic polymer-based core-shell nanogels.

Authors:  Robin Rajan; Kazuaki Matsumura
Journal:  Sci Rep       Date:  2017-04-04       Impact factor: 4.379

4.  Inhibitory effects of arginine on the aggregation of bovine insulin.

Authors:  Michael M Varughese; Jay Newman
Journal:  J Biophys       Date:  2012-07-09

5.  Small molecules present in the cerebrospinal fluid metabolome influence superoxide dismutase 1 aggregation.

Authors:  Joana S Cristóvão; Sónia S Leal; Isabel Cardoso; Cláudio M Gomes
Journal:  Int J Mol Sci       Date:  2013-09-17       Impact factor: 5.923

6.  The Influence of Arginine on the Response of Enamel Matrix Derivative (EMD) Proteins to Thermal Stress: Towards Improving the Stability of EMD-Based Products.

Authors:  Alessandra Apicella; Peggy Heunemann; Sreenath Bolisetty; Matteo Marascio; Anja Gemperli Graf; Laszlo Garamszegi; Raffaele Mezzenga; Peter Fischer; Christopher J Plummer; Jan-Anders Månson
Journal:  PLoS One       Date:  2015-12-15       Impact factor: 3.240

  6 in total

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