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1.
Mol Cell ; 67(4): 711-723.e7, 2017 Aug 17.
Artículo en Inglés | MEDLINE | ID: mdl-28820965

RESUMEN

The mitochondrial calcium uniporter complex is essential for calcium (Ca2+) uptake into mitochondria of all mammalian tissues, where it regulates bioenergetics, cell death, and Ca2+ signal transduction. Despite its involvement in several human diseases, we currently lack pharmacological agents for targeting uniporter activity. Here we introduce a high-throughput assay that selects for human MCU-specific small-molecule modulators in primary drug screens. Using isolated yeast mitochondria, reconstituted with human MCU, its essential regulator EMRE, and aequorin, and exploiting a D-lactate- and mannitol/sucrose-based bioenergetic shunt that greatly minimizes false-positive hits, we identify mitoxantrone out of more than 600 clinically approved drugs as a direct selective inhibitor of human MCU. We validate mitoxantrone in orthogonal mammalian cell-based assays, demonstrating that our screening approach is an effective and robust tool for MCU-specific drug discovery and, more generally, for the identification of compounds that target mitochondrial functions.


Asunto(s)
Bloqueadores de los Canales de Calcio/farmacología , Canales de Calcio/efectos de los fármacos , Calcio/metabolismo , Descubrimiento de Drogas/métodos , Ensayos Analíticos de Alto Rendimiento , Mitocondrias/efectos de los fármacos , Mitoxantrona/farmacología , Saccharomyces cerevisiae/efectos de los fármacos , Aequorina/metabolismo , Animales , Bloqueadores de los Canales de Calcio/química , Canales de Calcio/genética , Canales de Calcio/metabolismo , Relación Dosis-Respuesta a Droga , Metabolismo Energético/efectos de los fármacos , Células HEK293 , Células HeLa , Humanos , Cinética , Ácido Láctico/metabolismo , Manitol/metabolismo , Potenciales de la Membrana , Ratones Transgénicos , Mitocondrias/metabolismo , Mitoxantrona/química , Modelos Moleculares , Estructura Molecular , Saccharomyces cerevisiae/genética , Saccharomyces cerevisiae/metabolismo , Relación Estructura-Actividad , Sacarosa/metabolismo , Xenopus laevis
2.
Biochim Biophys Acta Mol Cell Res ; 1864(6): 894-899, 2017 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-27939433

RESUMEN

GFP-Aequorin Protein (GAP) can be used to measure [Ca2+] inside intracellular organelles, both by luminescence and by fluorescence. The low-affinity variant GAP3 is adequate for ratiometric imaging in the endoplasmic reticulum and Golgi apparatus, and it can be combined with conventional synthetic indicators for simultaneous measurements of cytosolic Ca2+. GAP is bioorthogonal as it does not have mammalian homologues, and it is robust and functionally expressed in transgenic flies and mice, where it can be used for Ca2+ measurements ex vivo and in vivo to explore animal models of health and disease. This article is part of a Special Issue entitled: ECS Meeting edited by Claus Heizmann, Joachim Krebs and Jacques Haiech.


Asunto(s)
Aequorina/metabolismo , Calcio/metabolismo , Orgánulos/metabolismo , Animales , Dípteros , Proteínas Fluorescentes Verdes/metabolismo , Humanos , Luminiscencia , Ratones , Ratones Transgénicos
3.
Proc Natl Acad Sci U S A ; 111(7): 2584-9, 2014 Feb 18.
Artículo en Inglés | MEDLINE | ID: mdl-24501126

RESUMEN

Genetically encoded calcium indicators allow monitoring subcellular Ca(2+) signals inside organelles. Most genetically encoded calcium indicators are fusions of endogenous calcium-binding proteins whose functionality in vivo may be perturbed by competition with cellular partners. We describe here a novel family of fluorescent Ca(2+) sensors based on the fusion of two Aequorea victoria proteins, GFP and apo-aequorin (GAP). GAP exhibited a unique combination of features: dual-excitation ratiometric imaging, high dynamic range, good signal-to-noise ratio, insensitivity to pH and Mg(2+), tunable Ca(2+) affinity, uncomplicated calibration, and targetability to five distinct organelles. Moreover, transgenic mice for endoplasmic reticulum-targeted GAP exhibited a robust long-term expression that correlated well with its reproducible performance in various neural tissues. This biosensor fills a gap in the actual repertoire of Ca(2+) indicators for organelles and becomes a valuable tool for in vivo Ca(2+) imaging applications.


Asunto(s)
Aequorina/metabolismo , Técnicas Biosensibles/métodos , Calcio/análisis , Imagen Molecular/métodos , Orgánulos/química , Aequorina/genética , Animales , Retículo Endoplásmico/metabolismo , Proteínas Fluorescentes Verdes/metabolismo , Células HEK293 , Células HeLa , Humanos , Ratones , Ratones Transgénicos
4.
Front Endocrinol (Lausanne) ; 11: 615777, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-33664709

RESUMEN

The adenohypophysis contains five secretory cell types (somatotrophs, lactotrophs, thyrotrophs, corticotrophs, and gonadotrophs), each secreting a different hormone, and controlled by different hypothalamic releasing hormones (HRHs). Exocytic secretion is regulated by cytosolic Ca2+ signals ([Ca2+]C), which can be generated either by Ca2+ entry through the plasma membrane and/or by Ca2+ release from the endoplasmic reticulum (ER). In addition, Ca2+ entry signals can eventually be amplified by ER release via calcium-induced calcium release (CICR). We have investigated the contribution of ER Ca2+ release to the action of physiological agonists in pituitary gland. Changes of [Ca2+] in the ER ([Ca2+]ER) were measured with the genetically encoded low-affinity Ca2+ sensor GAP3 targeted to the ER. We used a transgenic mouse strain that expressed erGAP3 driven by a ubiquitous promoter. Virtually all the pituitary cells were positive for the sensor. In order to mimick the physiological environment, intact pituitary glands or acute slices from the transgenic mouse were used to image [Ca2+]ER. [Ca2+]C was measured simultaneously with Rhod-2. Luteinizing hormone-releasing hormone (LHRH) or thyrotropin releasing hormone (TRH), two agonists known to elicit intracellular Ca2+ mobilization, provoked robust decreases of [Ca2+]ER and concomitant rises of [Ca2+]C. A smaller fraction of cells responded to thyrotropin releasing hormone (TRH). By contrast, depolarization with high K+ triggered a rise of [Ca2+]C without a decrease of [Ca2+]ER, indicating that the calcium-induced calcium-release (CICR) via ryanodine receptor amplification mechanism is not present in these cells. Our results show the potential of transgenic ER Ca2+ indicators as novel tools to explore intraorganellar Ca2+ dynamics in pituitary gland in situ.


Asunto(s)
Calcio/metabolismo , Retículo Endoplásmico/metabolismo , Imagen Molecular/métodos , Hipófisis/citología , Hipófisis/metabolismo , Animales , Señalización del Calcio/fisiología , Femenino , Masculino , Ratones , Ratones Transgénicos , Técnicas de Cultivo de Órganos
5.
Methods Mol Biol ; 1567: 245-253, 2017.
Artículo en Inglés | MEDLINE | ID: mdl-28276023

RESUMEN

Mitochondrial Ca2+ homeostasis is crucial for regulating vital functions such as respiration or apoptosis. Targeted aequorins are excellent probes to measure subcellular Ca2+. Ca2+ concentration in mitochondria ([Ca2+]M) is low at rest (about 10-7 M) and can increase to the micromolar or even approach the millimolar range, upon cell activation. Here we describe a new quantitative luminescent protocol to directly measure mitochondrial Ca2+ uptake, optimized for high throughput. The sensitivity of the method allows detection of changes in either the capacity or the affinity of mitochondrial Ca2+ transport.


Asunto(s)
Calcio/metabolismo , Mediciones Luminiscentes/métodos , Mitocondrias/metabolismo , Aequorina/metabolismo , Canales de Calcio/metabolismo , Células HeLa , Humanos , Mediciones Luminiscentes/instrumentación , Estadística como Asunto
6.
Cell Calcium ; 64: 3-11, 2017 06.
Artículo en Inglés | MEDLINE | ID: mdl-28214023

RESUMEN

Aequorins are excellent tools for measuring intra-organellar Ca2+ and assessing its role in physiological and pathological functions. Here we review targeting strategies to express aequorins in various organelles. We address critical topics such as probe affinity tuning as well as normalization and calibration of the signal. We also focus on bioluminescent Ca2+ imaging in nucleus or mitochondria of living cells. Finally, recent advances with a new chimeric GFP-aequorin protein (GAP), which can be used either as luminescent or fluorescent Ca2+ probe, are presented. GAP is robustly expressed in transgenic flies and mice, where it has proven to be a suitable Ca2+ indicator for monitoring physiological Ca2+ signaling ex vivo and in vivo.


Asunto(s)
Aequorina/metabolismo , Calcio/metabolismo , Espacio Intracelular/metabolismo , Sondas Moleculares/metabolismo , Orgánulos/metabolismo , Animales , Colorantes Fluorescentes/metabolismo
7.
Cell Chem Biol ; 23(6): 738-45, 2016 06 23.
Artículo en Inglés | MEDLINE | ID: mdl-27291400

RESUMEN

Proper functioning of organelles such as the ER or the Golgi apparatus requires luminal accumulation of Ca(2+) at high concentrations. Here we describe a ratiometric low-affinity Ca(2+) sensor of the GFP-aequorin protein (GAP) family optimized for measurements in high-Ca(2+) concentration environments. Transgenic animals expressing the ER-targeted sensor allowed monitoring of Ca(2+) signals inside the organelle. The use of the sensor was demonstrated under three experimental paradigms: (1) ER Ca(2+) oscillations in cultured astrocytes, (2) ex vivo functional mapping of cholinergic receptors triggering ER Ca(2+) release in acute hippocampal slices from transgenic mice, and (3) in vivo sarcoplasmic reticulum Ca(2+) dynamics in the muscle of transgenic flies. Our results provide proof of the suitability of the new biosensors to monitor Ca(2+) dynamics inside intracellular organelles under physiological conditions and open an avenue to explore complex Ca(2+) signaling in animal models of health and disease.


Asunto(s)
Aequorina/análisis , Calcio/análisis , Calcio/metabolismo , Proteínas Fluorescentes Verdes/análisis , Orgánulos/metabolismo , Aequorina/química , Aequorina/genética , Aequorina/metabolismo , Animales , Drosophila melanogaster , Retículo Endoplásmico/química , Retículo Endoplásmico/metabolismo , Proteínas Fluorescentes Verdes/química , Proteínas Fluorescentes Verdes/genética , Proteínas Fluorescentes Verdes/metabolismo , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Imagen Molecular , Orgánulos/química
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