Search Results - "Torrejon, Marcela"

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  1. 1

    A new functional JAZ degron sequence in strawberry JAZ1 revealed by structural and interaction studies on the COI1–JA-Ile/COR–JAZs complexes by Garrido-Bigotes, Adrián, Valenzuela-Riffo, Felipe, Torrejón, Marcela, Solano, Roberto, Morales-Quintana, Luis, Figueroa, Carlos R.

    Published in Scientific reports (09-07-2020)
    “…The phytohormone jasmonoyl-isoleucine (JA-Ile) regulates fundamental plant processes as developmental and defense responses. JA-Ile mediates the interaction…”
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  2. 2

    Uncovering the role of the subcommissural organ in early brain development through transcriptomic analysis by González, Maryori, Maurelia, Felipe, Aguayo, Jaime, Amigo, Roberto, Arrué, Rodrigo, Gutiérrez, José Leonardo, Torrejón, Marcela, Farkas, Carlos, Caprile, Teresa

    Published in Biological research (27-07-2024)
    “…The significant role of embryonic cerebrospinal fluid (eCSF) in the initial stages of brain development has been thoroughly studied. This fluid contains…”
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  3. 3

    General regulatory factors exert differential effects on nucleosome sliding activity of the ISW1a complex by Oyarzún-Cisterna, Andrea, Gidi, Cristián, Raiqueo, Fernanda, Amigo, Roberto, Rivas, Camila, Torrejón, Marcela, Gutiérrez, José L

    Published in Biological research (04-05-2024)
    “…Chromatin dynamics is deeply involved in processes that require access to DNA, such as transcriptional regulation. Among the factors involved in chromatin…”
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  4. 4

    Gαi protein subunit: A step toward understanding its non-canonical mechanisms by Villaseca, Soraya, Romero, Gabriel, Ruiz, María J., Pérez, Carlos, Leal, Juan I., Tovar, Lina M., Torrejón, Marcela

    “…The heterotrimeric G protein family plays essential roles during a varied array of cellular events; thus, its deregulation can seriously alter signaling events…”
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  5. 5

    Expression Patterns of Extracellular Matrix Proteins during Posterior Commissure Development by Stanic, Karen, Saldivia, Natalia, Förstera, Benjamín, Torrejón, Marcela, Montecinos, Hernán, Caprile, Teresa

    Published in Frontiers in neuroanatomy (28-09-2016)
    “…Extracellular matrix (ECM) molecules are pivotal for central nervous system (CNS) development, facilitating cell migration, axonal growth, myelination,…”
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  6. 6

    The CREB Transcription Factor Controls Transcriptional Activity of the Human RIC8B Gene by Maureira, Alejandro, Sánchez, Rodolfo, Valenzuela, Nicole, Torrejón, Marcela, Hinrichs, María V., Olate, Juan, Gutiérrez, José L.

    Published in Journal of cellular biochemistry (01-08-2016)
    “…ABSTRACT Proper regulation of gene expression is essential for normal development, cellular growth, and differentiation. Differential expression profiles of…”
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  7. 7

    Expression profiles of the Gα subunits during Xenopus tropicalis embryonic development by Fuentealba, Jaime, Toro-Tapia, Gabriela, Rodriguez, Marion, Arriagada, Cecilia, Maureira, Alejandro, Beyer, Andrea, Villaseca, Soraya, Leal, Juan I., Hinrichs, Maria V., Olate, Juan, Caprile, Teresa, Torrejón, Marcela

    Published in Gene Expression Patterns (01-09-2016)
    “…Heterotrimeric G protein signaling plays major roles during different cellular events. However, there is a limited understanding of the molecular mechanisms…”
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  8. 8

    Interaction between SCO-spondin and low density lipoproteins from embryonic cerebrospinal fluid modulates their roles in early neurogenesis by Vera, América, Recabal, Antonia, Saldivia, Natalia, Stanic, Karen, Torrejón, Marcela, Montecinos, Hernán, Caprile, Teresa

    Published in Frontiers in neuroanatomy (28-05-2015)
    “…During early stages of development, encephalic vesicles are composed by a layer of neuroepithelial cells surrounding a central cavity filled with embryonic…”
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  9. 9

    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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  10. 10

    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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  11. 11

    Ric-8A, a GEF for heterotrimeric G-proteins, controls cranial neural crest cell polarity during migration by Leal, Juan Ignacio, Villaseca, Soraya, Beyer, Andrea, Toro-Tapia, Gabriela, Torrejón, Marcela

    Published in Mechanisms of development (01-12-2018)
    “…The neural crest (NC) is a transient embryonic cell population that migrates extensively during development. Ric-8A, a guanine nucleotide exchange factor (GEF)…”
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  12. 12

    The Ric-8A/Gα13/FAK signalling cascade controls focal adhesion formation during neural crest cell migration in Xenopus by Toro-Tapia, Gabriela, Villaseca, Soraya, Beyer, Andrea, Roycroft, Alice, Marcellini, Sylvain, Mayor, Roberto, Torrejón, Marcela

    Published in Development (Cambridge) (21-11-2018)
    “…Ric-8A is a pleiotropic guanine nucleotide exchange factor involved in the activation of various heterotrimeric G-protein pathways during adulthood and early…”
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  13. 13
  14. 14

    Fluorescent tagged analysis of neural gene function using mosaics in zebrafish and Xenopus laevis by Conway, Greg, Torrejón, Marcela, Lin, Shuo, Reinsch, Sigrid

    Published in Brain research (27-01-2006)
    “…An important question in the neurosciences is the role of specific gene expression in the control of neural morphology and connectivity. To address this…”
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  15. 15

    Role of Nhp6 and Hmo1 in SWI/SNF occupancy and nucleosome landscape at gene regulatory regions by Hepp, Matias I., Smolle, Michaela, Gidi, Cristian, Amigo, Roberto, Valenzuela, Nicole, Arriagada, Axel, Maureira, Alejandro, Gogol, Madelaine M., Torrejón, Marcela, Workman, Jerry L., Gutiérrez, José L.

    “…Diverse chromatin modifiers are involved in regulation of gene expression at the level of transcriptional regulation. Among these modifiers are ATP-dependent…”
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  16. 16

    Interactions of JAZ Repressors with Anthocyanin Biosynthesis-Related Transcription Factors of Fragaria × ananassa by Garrido-Bigotes, Adrián, Torrejón, Marcela, Solano, Roberto, Figueroa, Carlos R.

    Published in Agronomy (Basel) (16-10-2020)
    “…Strawberry fruits are rich in flavonoids like proanthocyanidins and anthocyanins. Their biosynthesis and accumulation are controlled by the MYB-bHLH-WD40 (MBW)…”
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    Complementary expression of EphA7 and SCO-spondin during posterior commissure development by Stanic, Karen, Vera, América, González, Melissa, Recabal, Antonia, Astuya, Allison, Torrejón, Marcela, Montecinos, Hernán, Caprile, Teresa

    Published in Frontiers in neuroanatomy (24-06-2014)
    “…Bilaterally symmetric organisms need to exchange information between the two sides of their bodies in order to integrate sensory inputs and coordinate motor…”
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  19. 19

    SCO-spondin from embryonic cerebrospinal fluid is required for neurogenesis during early brain development by Vera, A, Stanic, K, Montecinos, H, Torrejón, M, Marcellini, S, Caprile, T

    Published in Frontiers in cellular neuroscience (03-06-2013)
    “…The central nervous system (CNS) develops from the neural tube, a hollow structure filled with embryonic cerebrospinal fluid (eCSF) and surrounded by…”
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  20. 20

    A dynamic history of gene duplications and losses characterizes the evolution of the SPARC family in eumetazoans by Bertrand, Stephanie, Fuentealba, Jaime, Aze, Antoine, Hudson, Clare, Yasuo, Hitoyoshi, Torrejon, Marcela, Escriva, Hector, Marcellini, Sylvain

    “…The vertebrates share the ability to produce a skeleton made of mineralized extracellular matrix. However, our understanding of the molecular changes that…”
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