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1.
J Biol Chem ; 294(9): 3192-3206, 2019 03 01.
Artículo en Inglés | MEDLINE | ID: mdl-30573682

RESUMEN

The role of protein structural disorder in biological functions has gained increasing attention in the past decade. The bacterial acid-resistant chaperone HdeA belongs to a group of "conditionally disordered" proteins, because it is inactive in its well-structured state and becomes activated via an order-to-disorder transition under acid stress. However, the mechanism for unfolding-induced activation remains unclear because of a lack of experimental information on the unfolded state conformation and the chaperone-client interactions. Herein, we used advanced solution NMR methods to characterize the activated-state conformation of HdeA under acidic conditions and identify its client-binding sites. We observed that the structure of activated HdeA becomes largely disordered and exposes two hydrophobic patches essential for client interactions. Furthermore, using the pH-dependent chemical exchange saturation transfer (CEST) NMR method, we identified three acid-sensitive regions that act as structural locks in regulating the exposure of the two client-binding sites during the activation process, revealing a multistep activation mechanism of HdeA's chaperone function at the atomic level. Our results highlight the role of intrinsic protein disorder in chaperone function and the self-inhibitory role of ordered structures under nonstress conditions, offering new insights for improving our understanding of protein structure-function paradigms.


Asunto(s)
Proteínas de Escherichia coli/química , Proteínas de Escherichia coli/metabolismo , Chaperonas Moleculares/química , Chaperonas Moleculares/metabolismo , Desplegamiento Proteico , Secuencia de Aminoácidos , Proteínas de Escherichia coli/genética , Concentración de Iones de Hidrógeno , Modelos Moleculares , Chaperonas Moleculares/genética , Mutagénesis Sitio-Dirigida , Conformación Proteica
2.
Biochemistry ; 56(43): 5748-5757, 2017 10 31.
Artículo en Inglés | MEDLINE | ID: mdl-29016106

RESUMEN

The bacterial acid-resistant chaperone HdeA is a "conditionally disordered" protein that functions at low pH when it undergoes a transition from a well-folded dimer to an unfolded monomer. The dimer dissociation and unfolding processes result in exposure of hydrophobic surfaces that allows binding to a broad range of client proteins. To fully elucidate the chaperone mechanism of HdeA, it is crucial to understand how the activated HdeA interacts with its native substrates during acid stress. Herein, we present a nuclear magnetic resonance study of the pH-dependent HdeA-substrate interactions. Our results show that the activation of HdeA is not only induced by acidification but also regulated by the presence of unfolded substrates. The variable extent of unfolding of substrates differentially regulates the HdeA-substrate interaction, and the binding further affects the HdeA conformation. Finally, we show that HdeA binds its substrates heterogeneously, and the "amphiphilic" model for HdeA-substrate interaction is discussed.


Asunto(s)
Proteínas de Escherichia coli/metabolismo , Escherichia coli/metabolismo , Chaperonas Moleculares/metabolismo , Proteínas Periplasmáticas/metabolismo , Pliegue de Proteína , Estrés Fisiológico , Escherichia coli/química , Proteínas de Escherichia coli/química , Chaperonas Moleculares/química , Resonancia Magnética Nuclear Biomolecular , Proteínas Periplasmáticas/química
3.
Chem Commun (Camb) ; 50(49): 6454-7, 2014 Jun 21.
Artículo en Inglés | MEDLINE | ID: mdl-24811979

RESUMEN

Cationic oligomers with a rigid aromatic backbone were first applied as non-viral gene delivery vectors. These materials showed better DNA condensation ability than their flexible analogues. In vitro transfection experiments revealed that the materials with more rigid backbone exhibited considerably higher TE and lower cytotoxicity than 25 kDa PEI.


Asunto(s)
ADN/metabolismo , Compuestos Heterocíclicos/química , Materiales Biocompatibles/química , Materiales Biocompatibles/metabolismo , ADN/química , Colorantes Fluorescentes/química , Vectores Genéticos/genética , Vectores Genéticos/metabolismo , Células HEK293 , Células HeLa , Células Hep G2 , Humanos , Microscopía Confocal , Polietileneimina/química , Relación Estructura-Actividad , Transfección
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