Langmuir 2018-03-29

Specific Ion Effects on Protein Thermal Aggregation from Dilute Solutions to Crowded Environments

Shuling Li, Shuji Ye, Guangming Liu

Index: 10.1021/acs.langmuir.8b00294

Full Text: HTML

Abstract

We have investigated specific ion effects on protein thermal aggregation from dilute solutions to crowded environments. Ovalbumin and poly(ethylene glycol) have been employed as the model protein and crowding agent, respectively. Our studies demonstrate that the rate-limiting step of ovalbumin thermal aggregation is changed from the aggregation of unfolded protein molecules to the unfolding of the protein molecules, when the solution conditions are varied from a dilute solution to a crowded environment. The specific ion effects acting on the thermal aggregation of ovalbumin generated by kosmotropic and chaotropic ions are different. The thermal aggregation of ovalbumin molecules is promoted by kosmotropic anions in dilute solutions via an increase in protein hydrophobic interactions. In contrast, ovalbumin thermal aggregation is facilitated by chaotropic ions in crowded environments through accelerated unfolding of protein molecules. Therefore, there are distinct mechanisms causing the ion specificities of protein thermal aggregation between dilute solutions and crowded environments. The ion specificities are dominated by ion-specific hydrophobic interactions between protein molecules and ion-specific unfolding of protein molecules in dilute solutions and crowded environments, respectively.

Latest Articles:

Floating and Tether-Coupled Adhesion of Bacteria to Hydrophobic and Hydrophilic Surfaces

2018-04-18

[10.1021/acs.langmuir.7b04331]

A Concentration-Dependent Insulin Immobilization Behavior of Alkyl-Modified Silica Vesicles: The Impact of Alkyl Chain Length

2018-04-18

[10.1021/acs.langmuir.8b00377]

Numerical Study of Surfactant Dynamics during Emulsification in a T-Junction Microchannel

2018-04-18

[10.1021/acs.langmuir.8b00123]

Bifunctionality of Iminodiacetic Acid-Modified Lysozyme on Inhibiting Zn2+-Mediated Amyloid β-Protein Aggregation

2018-04-17

[10.1021/acs.langmuir.8b00254]

Maximum Spreading and Rebound of a Droplet Impacting onto a Spherical Surface at Low Weber Numbers

2018-04-17

[10.1021/acs.langmuir.8b00625]

More Articles...