Search Results - "Glise, Bruno"

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  1. 1

    Modelling variability and heterogeneity of EMT scenarios highlights nuclear positioning and protrusions as main drivers of extrusion by Plunder, Steffen, Danesin, Cathy, Glise, Bruno, Ferreira, Marina A., Merino-Aceituno, Sara, Theveneau, Eric

    Published in Nature communications (28-08-2024)
    “…Epithelial-Mesenchymal Transition (EMT) is a key process in physiological and pathological settings. EMT is often presented as a linear sequence with (i)…”
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  2. 2

    Sulf2a controls Shh-dependent neural fate specification in the developing spinal cord by Danesin, Cathy, Darche-Gabinaud, Romain, Escalas, Nathalie, Bouguetoch, Vanessa, Cochard, Philippe, Al Oustah, Amir, Ohayon, David, Glise, Bruno, Soula, Cathy

    Published in Scientific reports (08-01-2021)
    “…Sulf2a belongs to the Sulf family of extracellular sulfatases which selectively remove 6-O-sulfate groups from heparan sulfates, a critical regulation level…”
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  3. 3

    Dynamics of sonic hedgehog signaling in the ventral spinal cord are controlled by intrinsic changes in source cells requiring sulfatase 1 by Al Oustah, Amir, Danesin, Cathy, Khouri-Farah, Nagham, Farreny, Marie-Amélie, Escalas, Nathalie, Cochard, Philippe, Glise, Bruno, Soula, Cathy

    Published in Development (Cambridge) (15-03-2014)
    “…In the ventral spinal cord, generation of neuronal and glial cell subtypes is controlled by Sonic hedgehog (Shh). This morphogen contributes to cell diversity…”
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  4. 4

    Patterns in evolution: veins of the Drosophila wing by Crozatier, Michèle, Glise, Bruno, Vincent, Alain

    Published in Trends in genetics (01-10-2004)
    “…The development of the Drosophila wing is a classical model for studying the genetic control of tissue size, shape and patterning. A detailed picture of how…”
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  5. 5

    Shifted, the Drosophila Ortholog of Wnt Inhibitory Factor-1, Controls the Distribution and Movement of Hedgehog by Glise, Bruno, Miller, Catherine A., Crozatier, Michèle, Halbisen, Michael A., Wise, Steve, Olson, David J., Vincent, Alain, Blair, Seth S.

    Published in Developmental cell (01-02-2005)
    “…We here identify and characterize an extracellular modulator of Hedgehog signaling in Drosophila, Shifted. Shifted is required for high levels of long-range…”
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  6. 6

    Connecting Hh, Dpp and EGF signalling in patterning of the Drosophila wing; the pivotal role of collier/knot in the AP organiser by Crozatier, Michèle, Glise, Bruno, Vincent, Alain

    Published in Development (Cambridge) (15-09-2002)
    “…Hedgehog (Hh) signalling from posterior (P) to anterior (A) cells is the primary determinant of AP polarity in the limb field in insects and vertebrates. Hh…”
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  7. 7

    Sulfatase 2 promotes generation of a spinal cord astrocyte subtype that stands out through the expression of Olig2 by Ohayon, David, Escalas, Nathalie, Cochard, Philippe, Glise, Bruno, Danesin, Cathy, Soula, Cathy

    Published in Glia (01-08-2019)
    “…Generation of glial cell diversity in the developing spinal cord is known to depend on spatio‐temporal patterning programs. In particular, expression of the…”
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  8. 8

    DSulfatase-1 fine-tunes Hedgehog patterning activity through a novel regulatory feedback loop by Wojcinski, Alexandre, Nakato, Hiroshi, Soula, Cathy, Glise, Bruno

    Published in Developmental biology (01-10-2011)
    “…Sulfs are secreted sulfatases that catalyse removal of sulfate from Heparan Sulfate Proteoglycans (HSPGs) in the extracellular space. These enzymes are well…”
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  9. 9

    Sulf2a controls Shh-dependent neural fate specification in the developing spinal cord by Danesin, Cathy, Darche-Gabinaud, Romain, Escalas, Nathalie, Bouguetoch, Vanessa, Cochard, Philippe, Al Oustah, Amir, Ohayon, David, Glise, Bruno, Soula, Cathy

    Published in Scientific reports (08-01-2021)
    “…Abstract Sulf2a belongs to the Sulf family of extracellular sulfatases which selectively remove 6-O-sulfate groups from heparan sulfates, a critical regulation…”
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    Journal Article
  10. 10

    Robustness of positional specification by the Hedgehog morphogen gradient by Irons, David J., Wojcinski, Alexandre, Glise, Bruno, Monk, Nicholas A.M.

    Published in Developmental biology (15-06-2010)
    “…Spatial gradients of Hedgehog signalling play a central role in many patterning events during animal development, regulating cell fate determination and tissue…”
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  11. 11

    hemipterous encodes a novel drosophila MAP kinase kinase, required for epithelial cell sheet movement by Glise, Bruno, Bourbon, Henri, Noselli, Stéphane

    Published in Cell (03-11-1995)
    “…During Drosophila embryogenesis, a cell sheet movement, dorsal closure, allows establishment of the dorsal epidermis. In this morphogenetic process, lateral…”
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  12. 12

    Coupling of Jun amino-terminal kinase and Decapentaplegic signaling pathways in Drosophila morphogenesis by Glise, B, Noselli, S

    Published in Genes & development (01-07-1997)
    “…Dorsal closure in Drosophila embryos involves the migration of two lateral epithelia toward the dorsal midline to establish the dorsal ectoderm. Previous work…”
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    Notch and Wingless Modulate the Response of Cells to Hedgehog Signalling in the Drosophila Wing by Glise, Bruno, Jones, D.Leanne, Ingham, Philip W.

    Published in Developmental biology (01-08-2002)
    “…During Drosophila wing development, Hedgehog (Hh) signalling is required to pattern the imaginal disc epithelium along the anterior–posterior (AP) axis. The…”
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  16. 16

    The Drosophila p38 MAPK pathway is required during oogenesis for egg asymmetric development by Suzanne, M, Irie, K, Glise, B, Agnès, F, Mori, E, Matsumoto, K, Noselli, S

    Published in Genes & development (01-06-1999)
    “…In mammalian cells, the p38 mitogen-activated protein kinase (MAPK) pathway is activated in response to a variety of environmental stresses and inflammatory…”
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  17. 17

    Vein-positioning in the Drosophila wing in response to Hh; new roles of Notch signaling by Crozatier, Michèle, Glise, Bruno, Khemici, Vanessa, Vincent, Alain

    Published in Mechanisms of development (01-05-2003)
    “…The Drosophila wing is a classical model for studying the generation of developmental patterns. Previous studies have suggested that vein primordia form at…”
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