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1.
Molecules ; 27(21)2022 Nov 07.
Artigo em Inglês | MEDLINE | ID: mdl-36364455

RESUMO

Bicelles are disk-shaped models of cellular membranes used to study lipid-protein interactions, as well as for structural and functional studies on transmembrane proteins. One challenge for the incorporation of transmembrane proteins in bicelles is the limited range of detergent and lipid combinations available for the successful reconstitution of proteins in model membranes. This is important, as the function and stability of transmembrane proteins are very closely linked to the detergents used for their purification and to the lipids that the proteins are embedded in. Here, we expand the toolkit of lipid and detergent combinations that allow the formation of stable bicelles. We use a combination of dynamic light scattering, small-angle X-ray scattering and cryogenic electron microscopy to perform a systematic sample characterization, thus providing a set of conditions under which bicelles can be successfully formed.


Assuntos
Bicamadas Lipídicas , Surfactantes Pulmonares , Bicamadas Lipídicas/química , Tensoativos , Detergentes/química , Espectroscopia de Ressonância Magnética , Micelas , Proteínas de Membrana/química
2.
Biomolecules ; 10(11)2020 11 19.
Artigo em Inglês | MEDLINE | ID: mdl-33228042

RESUMO

Peptide oligomerization dynamics affects peptide structure, activity, and pharmacodynamic properties. The thrombin C-terminal peptide, TCP-25 (GKYGFYTHVFRLKKWIQKVIDQFGE), is currently in preclinical development for improved wound healing and infection prevention. It exhibits turbidity when formulated at pH 7.4, particularly at concentrations of 0.3 mM or more. We used biochemical and biophysical approaches to explore whether the peptide self-associates and forms oligomers. The peptide showed a dose-dependent increase in turbidity as well as α-helical structure at pH 7.4, a phenomenon not observed at pH 5.0. By analyzing the intrinsic tryptophan fluorescence, we demonstrate that TCP-25 is more stable at high concentrations (0.3 mM) when exposed to high temperatures or a high concentration of denaturant agents, which is compatible with oligomer formation. The denaturation process was reversible above 100 µM of peptide. Dynamic light scattering demonstrated that TCP-25 oligomerization is sensitive to changes in pH, time, and temperature. Computational modeling with an active 18-mer region of TCP-25 showed that the peptide can form pH-dependent higher-order end-to-end oligomers and micelle-like structures, which is in agreement with the experimental data. Thus, TCP-25 exhibits pH- and temperature-dependent dynamic changes involving helical induction and reversible oligomerization, which explains the observed turbidity of the pharmacologically developed formulation.


Assuntos
Dicroísmo Circular/métodos , Modelos Moleculares , Fragmentos de Peptídeos/análise , Trombina/análise , Sequência de Aminoácidos , Animais , Concentração de Íons de Hidrogênio , Fragmentos de Peptídeos/química , Fragmentos de Peptídeos/genética , Estrutura Secundária de Proteína , Estrutura Terciária de Proteína , Trombina/química , Trombina/genética
3.
Sci Rep ; 9(1): 16708, 2019 Nov 08.
Artigo em Inglês | MEDLINE | ID: mdl-31705043

RESUMO

An amendment to this paper has been published and can be accessed via a link at the top of the paper.

4.
Sci Rep ; 7(1): 13540, 2017 10 19.
Artigo em Inglês | MEDLINE | ID: mdl-29051568

RESUMO

Apolipoprotein A-I (apoA-I) in high-density lipoprotein (HDL) provides cardiovascular protection. Synchrotron radiation circular dichroism (SRCD) spectroscopy was used to analyze the dynamic solution structure of the apoA-I protein in the apo- and HDL-states and the protein structure conversion in HDL formation. Wild-type apoA-I protein was compared to human variants that either are protective (R173C, Milano) or lead to increased risk for ischaemic heart disease (A164S). Comparable secondary structure distributions in the HDL particles, including significant levels of beta strand/turn, were observed. ApoA-I Milano in HDL displayed larger size heterogeneity, increased protein flexibility, and an altered lipid-binding profile, whereas the apoA-I A164S in HDL showed decrease thermal stability, potentially linking the intrinsic HDL propensities of the variants to disease risk.


Assuntos
Apolipoproteína A-I/química , Lipoproteínas HDL/metabolismo , Apolipoproteína A-I/genética , Apolipoproteína A-I/metabolismo , Dicroísmo Circular , Humanos , Lipoproteínas HDL/química , Polimorfismo de Nucleotídeo Único , Ligação Proteica , Conformação Proteica em Folha beta , Estabilidade Proteica , Síncrotrons , Temperatura de Transição
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