Testing mixing rules for structural and dynamical quantities in multi-component crowded protein solutions

Author:

Gulotta Alessandro1ORCID,Bucciarelli Saskia1ORCID,Roosen-Runge Felix12ORCID,Holderer Olaf3ORCID,Schurtenberger Peter14ORCID,Stradner Anna14ORCID

Affiliation:

1. Division for Physical Chemistry, Lund University 1 , Naturvetarvägen 14, 22100 Lund, Sweden

2. Department of Biomedical Sciences and Biofilms-Research Center for Biointerfaces (BRCB), Faculty of Health and Society, Malmö University 2 , Malmö, Sweden

3. Jülich Centre for Neutron Science (JCNS) at Heinz Maier-Leibnitz Zentrum (MLZ), Forschungszentrum Jülich GmbH 3 , Garching, Germany

4. LINXS Institute of Advanced Neutron and X-ray Science, Lund University 4 , Lund, Sweden

Abstract

Crowding effects significantly influence the phase behavior and the structural and dynamic properties of the concentrated protein mixtures present in the cytoplasm of cells or in the blood serum. This poses enormous difficulties for our theoretical understanding and our ability to predict the behavior of these systems. While the use of course grained colloid-inspired models allows us to reproduce the key physical solution properties of concentrated monodisperse solutions of individual proteins, we lack corresponding theories for complex polydisperse mixtures. Here, we test the applicability of simple mixing rules in order to predict solution properties of protein mixtures. We use binary mixtures of the well-characterized bovine eye lens proteins α and γB crystallin as model systems. Combining microrheology with static and dynamic scattering techniques and observations of the phase diagram for liquid–liquid phase separation, we show that reasonably accurate descriptions are possible for macroscopic and mesoscopic signatures, while information on the length scale of the individual protein size requires more information on cross-component interaction.

Funder

Vetenskapsrådet

European Commission

Kungliga Fysiografiska Sällskapet i Lund

Per-Eric and Ulla Schyberg Foundation

Publisher

AIP Publishing

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