Cargando…
An integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes
The interactions between protein and surfactants play an important role in the stability and performance of formulated products. Due to the high complexity of such interactions, multi-technique approaches are required to study these systems. Here, an integrative approach is used to investigate the v...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
RSC
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417085/ https://www.ncbi.nlm.nih.gov/pubmed/36132802 http://dx.doi.org/10.1039/d0na00194e |
_version_ | 1784776628009697280 |
---|---|
author | Sanchez-Fernandez, Adrian Diehl, Carl Houston, Judith E. Leung, Anna E. Tellam, James P. Rogers, Sarah E. Prevost, Sylvain Ulvenlund, Stefan Sjögren, Helen Wahlgren, Marie |
author_facet | Sanchez-Fernandez, Adrian Diehl, Carl Houston, Judith E. Leung, Anna E. Tellam, James P. Rogers, Sarah E. Prevost, Sylvain Ulvenlund, Stefan Sjögren, Helen Wahlgren, Marie |
author_sort | Sanchez-Fernandez, Adrian |
collection | PubMed |
description | The interactions between protein and surfactants play an important role in the stability and performance of formulated products. Due to the high complexity of such interactions, multi-technique approaches are required to study these systems. Here, an integrative approach is used to investigate the various interactions in a model system composed of human growth hormone and sodium dodecyl sulfate. Contrast variation small-angle neutron scattering was used to obtain information on the structure of the protein, surfactant aggregates and surfactant–protein complexes. (1)H and (1)H–(13)C HSQC nuclear magnetic resonance spectroscopy was employed to probe the local structure and dynamics of specific amino acids upon surfactant addition. Through the combination of these advanced methods with fluorescence spectroscopy, circular dichroism and isothermal titration calorimetry, it was possible to identify the interaction mechanisms between the surfactant and the protein in the pre- and post-micellar regimes, and interconnect the results from different techniques. As such, the protein was revealed to evolve from a partially unfolded conformation at low SDS concentration to a molten globule at intermediate concentrations, where the protein conformation and local dynamics of hydrophobic amino acids are partially affected compared to the native state. At higher surfactant concentrations the local structure of the protein appears disrupted, and a decorated micelle structure is observed, where the protein is wrapped around a surfactant assembly. Importantly, this integrative approach allows for the identification of the characteristic fingerprints of complex transitions as seen by each technique, and establishes a methodology for an in-detail study of surfactant–protein systems. |
format | Online Article Text |
id | pubmed-9417085 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | RSC |
record_format | MEDLINE/PubMed |
spelling | pubmed-94170852022-09-20 An integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes Sanchez-Fernandez, Adrian Diehl, Carl Houston, Judith E. Leung, Anna E. Tellam, James P. Rogers, Sarah E. Prevost, Sylvain Ulvenlund, Stefan Sjögren, Helen Wahlgren, Marie Nanoscale Adv Chemistry The interactions between protein and surfactants play an important role in the stability and performance of formulated products. Due to the high complexity of such interactions, multi-technique approaches are required to study these systems. Here, an integrative approach is used to investigate the various interactions in a model system composed of human growth hormone and sodium dodecyl sulfate. Contrast variation small-angle neutron scattering was used to obtain information on the structure of the protein, surfactant aggregates and surfactant–protein complexes. (1)H and (1)H–(13)C HSQC nuclear magnetic resonance spectroscopy was employed to probe the local structure and dynamics of specific amino acids upon surfactant addition. Through the combination of these advanced methods with fluorescence spectroscopy, circular dichroism and isothermal titration calorimetry, it was possible to identify the interaction mechanisms between the surfactant and the protein in the pre- and post-micellar regimes, and interconnect the results from different techniques. As such, the protein was revealed to evolve from a partially unfolded conformation at low SDS concentration to a molten globule at intermediate concentrations, where the protein conformation and local dynamics of hydrophobic amino acids are partially affected compared to the native state. At higher surfactant concentrations the local structure of the protein appears disrupted, and a decorated micelle structure is observed, where the protein is wrapped around a surfactant assembly. Importantly, this integrative approach allows for the identification of the characteristic fingerprints of complex transitions as seen by each technique, and establishes a methodology for an in-detail study of surfactant–protein systems. RSC 2020-07-13 /pmc/articles/PMC9417085/ /pubmed/36132802 http://dx.doi.org/10.1039/d0na00194e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/ |
spellingShingle | Chemistry Sanchez-Fernandez, Adrian Diehl, Carl Houston, Judith E. Leung, Anna E. Tellam, James P. Rogers, Sarah E. Prevost, Sylvain Ulvenlund, Stefan Sjögren, Helen Wahlgren, Marie An integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes |
title | An integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes |
title_full | An integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes |
title_fullStr | An integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes |
title_full_unstemmed | An integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes |
title_short | An integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes |
title_sort | integrative toolbox to unlock the structure and dynamics of protein–surfactant complexes |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417085/ https://www.ncbi.nlm.nih.gov/pubmed/36132802 http://dx.doi.org/10.1039/d0na00194e |
work_keys_str_mv | AT sanchezfernandezadrian anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT diehlcarl anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT houstonjudithe anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT leungannae anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT tellamjamesp anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT rogerssarahe anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT prevostsylvain anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT ulvenlundstefan anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT sjogrenhelen anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT wahlgrenmarie anintegrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT sanchezfernandezadrian integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT diehlcarl integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT houstonjudithe integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT leungannae integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT tellamjamesp integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT rogerssarahe integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT prevostsylvain integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT ulvenlundstefan integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT sjogrenhelen integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes AT wahlgrenmarie integrativetoolboxtounlockthestructureanddynamicsofproteinsurfactantcomplexes |