Search Results - "Hinrichs, Marı́a Victoria"

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    Biosynthesis and characterization of a recombinant eukaryotic allophycocyanin using prokaryotic accessory enzymes by Dagnino‐Leone, Jorge, Figueroa, Maximiliano, Uribe, Elena, Hinrichs, María Victoria, Ortiz‐López, Diego, Martínez‐Oyanedel, José, Bunster, Marta

    Published in MicrobiologyOpen (Weinheim) (01-03-2020)
    “…Phycobiliproteins (PBPs) are colored fluorescent proteins present in cyanobacteria, red alga, and cryptophyta. These proteins have many potential uses in…”
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    Journal Article
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    Biophysical studies support a predicted superhelical structure with armadillo repeats for Ric‐8 by Figueroa, Maximiliano, Victoria Hinrichs, María, Bunster, Marta, Babbitt, Patricia, Martinez‐Oyanedel, José, Olate, Juan

    Published in Protein science (01-06-2009)
    “…Ric‐8 is a highly conserved cytosolic protein (MW 63 KDa) initially identified in C. elegans as an essential factor in neurotransmitter release and asymmetric…”
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    xRic-8 is a GEF for Gsα and participates in maintaining meiotic arrest in Xenopus laevis oocytes by Romo, Ximena, Pastén, Pamela, Martínez, Silvana, Soto, Ximena, Lara, Pablo, de Arellano, Antonieta Ramírez, Torrejón, Marcela, Montecino, Martín, Hinrichs, María Victoria, Olate, Juan

    Published in Journal of cellular physiology (01-03-2008)
    “…Immature stage VI Xenopus oocytes are arrested at the G2/M border of meiosis I until exposed to progesterone, which induces meiotic resumption through a…”
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    Gαq negatively regulates the Wnt-β-catenin pathway and dorsal embryonic Xenopus laevis development by Soto, Ximena, Mayor, Roberto, Torrejón, Marcela, Montecino, Martín, Hinrichs, María Victoria, Olate, Juan

    Published in Journal of cellular physiology (01-02-2008)
    “…The non‐canonical Wnt/Ca2+ signaling pathway has been implicated in the regulation of axis formation and gastrulation movements during early Xenopus laevis…”
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    Classical Xenopus laevis progesterone receptor associates to the plasma membrane through its ligand-binding domain by Martinez, Silvana, Pastén, Pamela, Suarez, Karina, García, Andrea, Nualart, Francisco, Montecino, Martín, Hinrichs, María Victoria, Olate, Juan

    Published in Journal of cellular physiology (01-05-2007)
    “…During the last decade, considerable evidence is accumulating that supports the view that the classic progesterone receptor (xPR‐1) is mediating Xenopus laevis…”
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    Plasma membrane destination of the classical Xenopus laevis progesterone receptor accelerates progesterone-induced oocyte maturation by Martinez, Silvana, Grandy, Rodrigo, Pasten, Pamela, Montecinos, Hernán, Montecino, Martín, Olate, Juan, Hinrichs, María Victoria

    Published in Journal of cellular biochemistry (15-10-2006)
    “…Xenopus laevis oocyte maturation is induced by the steroid hormone progesterone through a non‐genomic mechanism initiated at the cell membrane. Recently, two…”
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    The C2 cytosolic loop of adenylyl cyclase interacts with the activated form of Gαs by Torrejón, Marcela, Genevière, Anne-Marie, Echeverrı́a, Valentina, Guzmán, Leonardo, Hinrichs, Marı́a Victoria, Olate, Juan

    Published in FEBS letters (28-12-1998)
    “…Using the yeast two‐hybrid system, we studied the physical interaction between the complete C1 and C2 cytosolic domains of Xenopus laevis type 9 (xl9C1, xl9C2)…”
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    The C 2 cytosolic loop of adenylyl cyclase interacts with the activated form of Gαs by Torrejón, Marcela, Genevière, Anne-Marie, Echeverrı́a, Valentina, Guzmán, Leonardo, Hinrichs, Marı́a Victoria, Olate, Juan

    Published in FEBS letters (28-12-1998)
    “…Using the yeast two-hybrid system, we studied the physical interaction between the complete C 1 and C 2 cytosolic domains of Xenopus laevis type 9 (xl9C 1,…”
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    Journal Article
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    The classic receptor for 1α,25-dihydroxy vitamin D3 is required for non-genomic actions of 1α,25-dihydroxy vitamin D3 in osteosarcoma cells by Bravo, Soraya, Paredes, Roberto, Izaurieta, Pamela, Lian, Jane B., Stein, Janet L., Stein, Gary S., Hinrichs, Maria Victoria, Olate, Juan, Aguayo, Luis G., Montecino, Martin

    Published in Journal of cellular biochemistry (01-11-2006)
    “…1α,25‐dihydroxy vitamin D3 has a major role in the regulation of the bone metabolism as it promotes the expression of key bone‐related proteins in osteoblastic…”
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    Mutation of the highly conserved Arg 165 and Glu 168 residues of human Gsα disrupts the αD–αE loop and enhances basal GDP/GTP exchange rate by Hinrichs, María Victoria, Montecino, Martin, Bunster, Marta, Olate, Juan

    Published in Journal of cellular biochemistry (01-10-2004)
    “…G protein signalling regulates a wide range of cellular processes such as motility, differentiation, secretion, neurotransmission, and cell division. G…”
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    Journal Article
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    Mutation of the highly conserved Arg165 and Glu168 residues of human Gsalpha disrupts the alphaD-alphaE loop and enhances basal GDP/GTP exchange rate by Hinrichs, María Victoria, Montecino, Martin, Bunster, Marta, Olate, Juan

    Published in Journal of cellular biochemistry (01-10-2004)
    “…G protein signalling regulates a wide range of cellular processes such as motility, differentiation, secretion, neurotransmission, and cell division. G…”
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    Journal Article
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    Mutation of the highly conserved Arg165 and Glu168 residues of human Gsα disrupts the αD-αE loop and enhances basal GDP/GTP exchange rate by Hinrichs, María Victoria, Montecino, Martin, Bunster, Marta, Olate, Juan

    Published in Journal of cellular biochemistry (01-10-2004)
    “…G protein signalling regulates a wide range of cellular processes such as motility, differentiation, secretion, neurotransmission, and cell division. G…”
    Get full text
    Journal Article
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    Mutation of the highly conserved Arg super(165) and Glu super(168) residues of human Gs alpha disrupts the alpha D- alpha E loop and enhances basal GDP/GTP exchange rate by Hinrichs, Maria Victoria, Montecino, Martin, Bunster, Marta, Olate, Juan

    Published in Journal of cellular biochemistry (01-01-2004)
    “…G protein signalling regulates a wide range of cellular processes such as motility, differentiation, secretion, neurotransmission, and cell division. G…”
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    Journal Article
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