Search Results - "de Jiménez, Estela Sánchez"

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  1. 1

    Intragenic modification of maize by Almeraya, Erika V., Sánchez-de-Jiménez, Estela

    Published in Journal of biotechnology (20-11-2016)
    “…•First use of intragenic system for targeting protein overexpression in corn plants.•Marker free strategy was used during the intragenic…”
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  2. 2

    Functional and structural analysis of maize hsp101 IRES by Jiménez-González, Augusto Samuel, Fernández, Noemí, Martínez-Salas, Encarnación, Sánchez de Jiménez, Estela

    Published in PloS one (15-09-2014)
    “…Maize heat shock protein of 101 KDa (HSP101) is essential for thermotolerance induction in this plant. The mRNA encoding this protein harbors an IRES element…”
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  3. 3

    Ribosomal Heterogeneity of Maize Tissues: Insights of Biological Relevance by Hernández-Hermenegildo, Ricardo A, Bernal, Lilia, Jiménez-Pérez, Laura V, Bernal-Lugo, Irma, de Jiménez, Estela Sánchez

    Published in Plant molecular biology reporter (01-06-2018)
    “…In recent years, the selective role of ribosomes in the translational process of eukaryotes has been suggested. Evidence indicates that ribosomal heterogeneity…”
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  4. 4

    Insights into the TOR-S6K Signaling Pathway in Maize (Zea mays L.). Pathway Activation by Effector–Receptor Interaction by Garrocho-Villegas, Verónica, Aguilar C, Raúl, Sánchez de Jiménez, Estela

    Published in Biochemistry (Easton) (23-12-2013)
    “…The primordial TOR pathway, known to control growth and cell proliferation, has still not been fully described for plants. Nevertheless, in maize, an…”
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  5. 5

    Expression Profile of Maize (Zea mays L.) Embryonic Axes During Germination: Translational Regulation of Ribosomal Protein mRNAs by Jiménez-López, Sara, Mancera-Martínez, Eder, Donayre-Torres, Alberto, Rangel, Claudia, Uribe, Laura, March, Santiago, Jiménez-Sánchez, Gerardo, Sánchez de Jiménez, Estela

    Published in Plant and cell physiology (01-10-2011)
    “…Seed germination is a critical developmental period for plant propagation. Information regarding gene expression within this important period is relevant for…”
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  6. 6

    TOR pathway activation in Zea mays L. tissues: Conserved function between animal and plant kingdoms by Garrocho-Villegas, Verónica, Sánchez de Jiménez, Estela

    Published in Plant signaling & behavior (01-06-2012)
    “…In most non-photosynthetic eukaryotes it has been demonstrated a conserved signal transduction pathway, namely TOR-S6K, that coordinates growth and cell…”
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  7. 7

    Auxin stimulates S6 ribosomal protein phosphorylation in maize thereby affecting protein synthesis regulation by Beltrán-Peña, Elda, Aguilar, Raúl, Ortíz-López, Adriana, Dinkova, Tzvetanka D., De Jiménez, Estela Sánchez

    Published in Physiologia plantarum (01-06-2002)
    “…Auxin is known to stimulate protein synthesis in many plant tissues, but the mechanisms involved in this process are unknown. The present research inquires…”
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  8. 8

    Biochemical characterization of a new maize (Zea mays L.) peptide growth factor by Rodríguez-López, Cesar David, Rodríguez-Romero, Adela, Aguilar, Raúl, de Jiménez, Estela Sánchez

    Published in Protein and peptide letters (01-01-2011)
    “…Coordination of cell growth and cell division is very important for living organisms in order for these to develop harmonically. The present research is…”
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  9. 9

    LEA 4 protein up-regulated by ABA is involved in drought response in maize roots by Zamora-Briseño, Jesús Alejandro, de Jiménez, Estela Sánchez

    Published in Molecular biology reports (01-04-2016)
    “…Late embryogenesis abundant (LEA) proteins are hydrophilic proteins that accumulate to high concentrations during the late stages of seeds development, which…”
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  10. 10

    Dissecting the TOR-S6K signal transduction pathway in maize seedlings: relevance on cell growth regulation by Dinkova, Tzvetanka D, de la Cruz, Homero Reyes, García-Flores, Cristina, Aguilar, Raul, Jiménez-García, Luis Felipe, de Jiménez, Estela Sánchez

    Published in Physiologia plantarum (01-05-2007)
    “…Insulin and 'insulin-like' growth factors (IGFs) are known to regulate cell growth in eukaryotes by stimulating a signal transduction pathway that exerts…”
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  11. 11

    Contribution of the Zea mays insulin-like growth factor (ZmIGF) to the embryogenic competence of maize tissue cultures by Garrocho-Villegas, Verónica, Aguilar, Raúl, de Jiménez, Estela Sánchez

    “…Establishment of somatic embryogenic cultures is highly influenced by the plant genotype and the explant type. In maize, immature embryos generate embryogenic…”
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  12. 12

    Rubisco activase chaperone activity is regulated by a post-translational mechanism in maize leaves by Vargas-Suárez, Martín, Ayala-Ochoa, Alfredo, Lozano-Franco, Jessica, García-Torres, Itzhel, Díaz-Quiñonez, Alberto, Ortíz-Navarrete, Vianney F., Sánchez-de-Jiménez, Estela

    Published in Journal of experimental botany (01-12-2004)
    “…Rubisco activase (RCA) is a molecular chaperone present in maize as 43 kDa and 41 kDa polypeptides. They are encoded by two different genes comprising an…”
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  13. 13

    Synthesis and phosphorylation of maize acidic ribosomal proteins. Implications in translational regulation by Aguilar, R, Montoya, L, Sanchez de Jimenez, E

    Published in Plant physiology (Bethesda) (01-01-1998)
    “…The objective of this research was to determine the role of acidic ribosomal protein (ARP) phosphorylation in translation. Ribosomes (Rbs) from germinated…”
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  14. 14

    Coordination of cell growth and cell division in maize (Zea mays L.) relevance of the conserved TOR signal transduction pathway by Sotelo, Ricardo, Garrocho-Villegas, Verónica, Aguilar, Raúl, Calderón, Ma. Elena, de Jiménez, Estela Sánchez

    “…Mechanisms that bring about coordination of cell growth and cell division in different organisms are biological events not yet clearly revealed. In maize,…”
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  15. 15

    Functional characterization of a maize ribosomal S6 protein kinase (ZmS6K), a plant ortholog of metazoan p70(S6K) by Reyes de la Cruz, Homero, Aguilar, Raúl, Sánchez de Jiménez, Estela

    Published in Biochemistry (Easton) (20-01-2004)
    “…Ribosomal protein S6 (S6rp) is phosphorylated by the p70S6K enzyme in mammals, under mitogen/IGF regulation. This event has been correlated with an increase in…”
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  16. 16

    Regulation of Acidic Ribosomal Protein Expression and Phosphorylation in Maize by Montoya-García, Leonel, Muñoz-Ocotero, Verónica, Aguilar, Raúl, Sánchez de Jiménez, Estela

    Published in Biochemistry (Easton) (06-08-2002)
    “…Acidic ribosomal proteins (ARPs) are highly conserved phosphoproteins in eukaryotic organisms. They participate in translation regulation by interacting with…”
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  17. 17

    Regulation of ribulose-1,5-bisphosphate carboxylase expression in second leaves of maize seedlings from low and high yield populations by Loza-Tavera, H. (Universidad Nacional Autonoma de Mexico, Mexico), Martinez-Barajas, E, Sanchez-de-Jimenez, E

    Published in Plant physiology (Bethesda) (01-06-1990)
    “…Ribulose-1,5-bisphosphate carboxylase oxygenase (EC 4.1.1.39) (Rubisco) activity, Rubisco-protein, and Rubisco large and small subunit gene (rbcL and rbcS)…”
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  18. 18

    Cap-independent translation of maize Hsp101 by Dinkova, T.D, Zepeda, H, Martinez-Salas, E, Martinez, L.M, Nieto-Sotelo, J, Sanchez de Jimenez, E

    “…Maize embryonic axes contain stored mRNAs, some of which are able to undergo cap-independent translation initiation during germination. The Hsp101 mRNA,…”
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  19. 19

    Synthesis of ribosomal proteins from stored mRNAs early in seed germination by Beltrán-Peña, E, Ortíz-López, A, Sánchez de Jiménez, E

    Published in Plant molecular biology (01-05-1995)
    “…In several eukaryotic organisms the mRNA expression for ribosomal proteins (RPs) is highly regulated at the translational level. The present work addresses the…”
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  20. 20

    Protein synthesis patterns. Relevance of old and new messenger RNA in germinating maize embryos by DE JIMENEZ, E. S, AGUILAR, R

    Published in Plant physiology (Bethesda) (01-05-1984)
    “…The proteins synthesized during the first hours of seed imbibition were studied in axes and scutellum of maize embryos separately. Increase in fresh weight was…”
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