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1.
Int J Mol Sci ; 24(23)2023 Nov 22.
Artículo en Inglés | MEDLINE | ID: mdl-38068946

RESUMEN

The p53 protein is a transcriptional regulatory factor and many of its functions require that it forms a tetrameric structure. Although the tetramerization domain of mammalian p53 proteins (p53TD) share significant sequence similarities, it was recently shown that the tree shrew p53TD is considerably more thermostable than the human p53TD. To determine whether other mammalian species display differences in this domain, we used biophysical, functional, and structural studies to compare the properties of the p53TDs from six mammalian model organisms (human, tree shrew, guinea pig, Chinese hamster, sheep, and opossum). The results indicate that the p53TD from the opossum and tree shrew are significantly more stable than the human p53TD, and there is a correlation between the thermostability of the p53TDs and their ability to activate transcription. Structural analysis of the tree shrew and opossum p53TDs indicated that amino acid substitutions within two distinct regions of their p53TDs can dramatically alter hydrophobic packing of the tetramer, and in particular substitutions at positions corresponding to F341 and Q354 of the human p53TD. Together, the results suggest that subtle changes in the sequence of the p53TD can dramatically alter the stability, and potentially lead to important changes in the functional activity, of the p53 protein.


Asunto(s)
Proteína p53 Supresora de Tumor , Animales , Cobayas , Humanos , Zarigüeyas/metabolismo , Ovinos , Proteína p53 Supresora de Tumor/metabolismo , Tupaia/metabolismo
2.
J Biol Chem ; 298(3): 101680, 2022 03.
Artículo en Inglés | MEDLINE | ID: mdl-35124007

RESUMEN

Activation of T cells upon engagement of the T cell antigen receptor rapidly leads to a number of phosphorylation and plasma membrane recruitment events. For example, translocation of phospholipase-Cγ1 (PLC-γ1) to the plasma membrane and its association with the transmembrane adapter protein LAT and two other adapter proteins, Gads and SLP-76, are critical events in the early T cell activation process. We have previously characterized the formation of a tetrameric LAT-Gads-SLP-76-PLC-γ1 complex by reconstitution in vitro and have also characterized the thermodynamics of tetramer formation. In the current study, we define how PLC-γ1 recruitment to liposomes, which serve as a plasma membrane surrogate, and PLC-γ1 activation are regulated both independently and additively by recruitment of PLC-γ1 to phosphorylated LAT, by formation of the LAT-Gads-SLP-76-PLC-γ1 tetramer, and by tyrosine phosphorylation of PLC-γ1. The recently solved structure of PLC-γ1 indicates that, in the resting state, several PLC-γ1 domains inhibit its enzymatic activity and contact with the plasma membrane. We propose the multiple cooperative steps that we observed likely lead to conformational alterations in the regulatory domains of PLC-γ1, enabling contact with its membrane substrate, disinhibition of PLC-γ1 enzymatic activity, and production of the phosphoinositide cleavage products necessary for T cell activation.


Asunto(s)
Fosfolipasa C gamma , Transducción de Señal , Linfocitos T , Activación Enzimática , Proteínas de la Membrana/genética , Proteínas de la Membrana/metabolismo , Fosfolipasa C gamma/genética , Fosfolipasa C gamma/metabolismo , Fosforilación , Receptores de Antígenos de Linfocitos T/metabolismo , Linfocitos T/enzimología , Linfocitos T/metabolismo
3.
J Phys Chem Lett ; 11(22): 9828-9833, 2020 Nov 19.
Artículo en Inglés | MEDLINE | ID: mdl-32966090

RESUMEN

In recent years, the importance of analyzing excited triplet states has increased dramatically because of their relevance in the design and development of photofunctional molecules. Since the second lowest excited triplet (T2) state plays an important role in enhancing the nonradiative intersystem crossing (ISC) process from the lowest excited singlet (S1) state to the lowest excited triplet (T1) state, it is strongly desired to develop direct observation methods for the nonluminescent, short-lived T2 state. In this study, the excited triplet states of platinum(II) octaethylporphyrin (PtOEP), which was used as the first phosphorescent organic light emitting diode and oxygen sensor, are investigated using UV-vis absorption, magnetic circular dichroism, and phosphorescence spectroscopies. At low temperature, in highly concentrated solutions, we observe a distinct Faraday A term for the S0 → T1 transition, as well as for the S0 → T2 transition. The novel spectroscopic methodology applied allows resolution of the excited-state properties of a wide variety of molecular systems.

4.
Proc Natl Acad Sci U S A ; 115(51): E11914-E11923, 2018 12 18.
Artículo en Inglés | MEDLINE | ID: mdl-30510001

RESUMEN

The T cell antigen receptor encounters foreign antigen during the immune response. Receptor engagement leads to activation of specific protein tyrosine kinases, which then phosphorylate multiple enzymes and adapter proteins. One such enzyme, phospholipase-Cγ1, is responsible for cleavage of a plasma membrane lipid substrate, a phosphoinositide, into two second messengers, diacylglycerol, which activates several enzymes including protein kinase C, and an inositol phosphate, which induces intracellular calcium elevation. In T cells, phospholipase-Cγ1 is recruited to the plasma membrane as part of a four-protein complex containing three adapter molecules. We have used recombinant proteins and synthetic phosphopeptides to reconstitute this quaternary complex in vitro. Extending biophysical tools to study concurrent interactions of the four protein components, we demonstrated the formation and determined the composition of the quaternary complex using multisignal analytical ultracentrifugation, and we characterized the thermodynamic driving forces of assembly by isothermal calorimetry. We demonstrate that the four proteins reversibly associate in a circular arrangement of binding interfaces, each protein interacting with two others. Three interactions are of high affinity, and the fourth is of low affinity, with the assembly of the quaternary complex exhibiting significant enthalpy-entropy compensation as in an entropic switch. Formation of this protein complex enables subsequent recruitment of additional molecules needed to activate phospholipase-Cγ1. Understanding the formation of this complex is fundamental to full characterization of a central pathway in T cell activation. Such knowledge is critical to developing ways in which this pathway can be selectively inhibited.


Asunto(s)
Complejos Multiproteicos/metabolismo , Unión Proteica , Dominios y Motivos de Interacción de Proteínas , Receptores de Antígenos de Linfocitos T/metabolismo , Transducción de Señal/inmunología , Miembro 7 de la Superfamilia de Receptores de Factores de Necrosis Tumoral/metabolismo , Proteínas Adaptadoras Transductoras de Señales/metabolismo , Membrana Celular/metabolismo , Humanos , Lípidos de la Membrana/metabolismo , Proteínas de la Membrana/metabolismo , Fosfolipasa C gamma/metabolismo , Fosfoproteínas/metabolismo , Fosforilación , Proteínas Recombinantes , Termodinámica , Activador de Tejido Plasminógeno/metabolismo
5.
Spectrochim Acta A Mol Biomol Spectrosc ; 195: 223-229, 2018 Apr 15.
Artículo en Inglés | MEDLINE | ID: mdl-29414582

RESUMEN

The absorption and fluorescence spectral study of the distyrylbenzene bearing two arms of the dipicolylaminomethyl groups, the effective ligands for Zn2+, was studied in the presence of Zn2+ and ATP. Upon complexation of the distyrylbenzene with zinc ions in acetonitrile, enhancement of the fluorescence intensity was observed due to inhibition of intramolecular PET (photo-induced electron transfer) quenching, but no effect was found in aqueous media because the equilibrium laid to the free form of the ligands. In contrast, the addition of ATP disodium salt was effective to enhance the fluorescence intensity of the combination of the distyrylbenzne and Zn2+ in aqueous media. This assembly was applied to the peroxyoxalate chemiluminescence system and a significant increase in the intensity was observed, which provides a potential detection for ATP by chemiluminescence.

6.
Sci Rep ; 7(1): 1400, 2017 05 03.
Artículo en Inglés | MEDLINE | ID: mdl-28469202

RESUMEN

Binding affinity and specificity are crucial factors that influence nanostructure control by biomineralization peptides. In this paper, we analysed the role that the oligomeric state of a silver biomineralization peptide plays in regulating the morphology of silver nanostructure formation. Oligomerization was achieved by conjugating the silver specific TBP biomineralization peptide to the p53 tetramerization domain peptide (p53Tet). Interestingly, the TBP-p53Tet tetrameric peptide acted as a growth catalyst, controlling silver crystal growth, which resulted in the formation of hexagonal silver nanoplates without consuming the peptide. The TBP-p53Tet peptide caps the surface of the silver crystals, which enhances crystal growth on specific faces and thereby regulates silver nanostructure formation in a catalytic fashion. The present findings not only provide an efficient strategy for controlling silver nanostructure formation by biomineralization peptides, but they also demonstrate that in this case the oligomeric peptides play a unique catalytic role.

7.
Structure ; 23(1): 126-138, 2015 Jan 06.
Artículo en Inglés | MEDLINE | ID: mdl-25497731

RESUMEN

PML and several other proteins localizing in PML-nuclear bodies (PML-NB) contain phosphoSIMs (SUMO-interacting motifs), and phosphorylation of this motif plays a key role in their interaction with SUMO family proteins. We examined the role that phosphorylation plays in the binding of the phosphoSIMs of PML and Daxx to SUMO1 at the atomic level. The crystal structures of SUMO1 bound to unphosphorylated and tetraphosphorylated PML-SIM peptides indicate that three phosphoserines directly contact specific positively charged residues of SUMO1. Surprisingly, the crystal structure of SUMO1 bound to a diphosphorylated Daxx-SIM peptide indicate that the hydrophobic residues of the phosphoSIM bind in a manner similar to that seen with PML, but important differences are observed when comparing the phosphorylated residues. Together, the results provide an atomic level description of how specific acetylation patterns within different SUMO family proteins can work together with phosphorylation of phosphoSIM's regions of target proteins to regulate binding specificity.


Asunto(s)
Proteínas Nucleares/química , Proteínas Nucleares/metabolismo , Dominios y Motivos de Interacción de Proteínas , Proteína SUMO-1/química , Proteína SUMO-1/metabolismo , Factores de Transcripción/química , Factores de Transcripción/metabolismo , Proteínas Supresoras de Tumor/química , Proteínas Supresoras de Tumor/metabolismo , Proteínas Adaptadoras Transductoras de Señales/química , Proteínas Adaptadoras Transductoras de Señales/metabolismo , Secuencia de Aminoácidos , Proteínas Co-Represoras , Cristalografía por Rayos X , Células HEK293 , Humanos , Modelos Moleculares , Chaperonas Moleculares , Datos de Secuencia Molecular , Fosforilación , Proteína de la Leucemia Promielocítica , Unión Proteica , Estructura Terciaria de Proteína , Homología de Secuencia de Aminoácido
8.
Bioorg Med Chem Lett ; 22(8): 2780-3, 2012 Apr 15.
Artículo en Inglés | MEDLINE | ID: mdl-22429466

RESUMEN

Tumor suppressor protein p53 induces cell cycle arrest, apoptosis, and senescence in response to cellular stresses. The p53 tetramer formation is essential for its functions. Despite of these crucial functions of p53 for integrity of genome, activation of the p53 signal pathway causes low induced pluripotent stem (iPS) cell generation efficiency. In this study, we report transient inhibition of p53-dependent transcription using a p53 tetramerization domain peptide that contains cell penetrating and nuclear localization signals. The peptide was efficiently introduced into cells and inhibited p21 expression via hetero-tetramerization with endogenous p53 protein. This method can be applied towards safe and efficient iPS cell generation.


Asunto(s)
Péptidos/farmacología , Multimerización de Proteína , Transcripción Genética/efectos de los fármacos , Proteína p53 Supresora de Tumor/antagonistas & inhibidores , Células Cultivadas , Inhibidor p21 de las Quinasas Dependientes de la Ciclina/antagonistas & inhibidores , Humanos , Células Madre Pluripotentes Inducidas/citología , Unión Proteica , Estructura Terciaria de Proteína/fisiología , Transducción de Señal/efectos de los fármacos , Proteína p53 Supresora de Tumor/metabolismo
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