Search Results - "HAENLIN, M"
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Pontin is a critical regulator for AML1-ETO-induced leukemia
Published in Leukemia (01-06-2014)“…The oncogenic fusion protein AML1-ETO, also known as RUNX1-RUNX1T1 is generated by the t(8;21)(q22;q22) translocation, one of the most frequent chromosomal…”
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2
Two different activities of Suppressor of Hairless during wing development in Drosophila
Published in Development (Cambridge) (01-08-2000)“…The Notch pathway plays a crucial and universal role in the assignation of cell fates during development. In Drosophila, Notch is a transmembrane protein that…”
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3
pannier, a negative regulator of achaete and scute in Drosophila, encodes a zinc finger protein with homology to the vertebrate transcription factor GATA-1
Published in Development (Cambridge) (01-12-1993)“…The gene pannier acts as a repressor of achaete and scute, two transcription factors expressed in discrete subsets of cells at the sites where neural…”
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4
genetic analysis of pannier, a gene necessary for viability of dorsal tissues and bristle positioning in Drosophila
Published in Genetics (Austin) (01-07-1996)“…A genetic and phenotypic analysis of the gene pannier described. Animals mutant for strong alleles die as embryos in which the cells of the amnioserosa are…”
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5
Transcriptional regulation of Notch and Delta: requirement for neuroblast segregation in Drosophila
Published in Development (Cambridge) (01-05-1997)“…Segregation of a single neural precursor from each proneural cluster in Drosophila relies on Notch-mediated lateral signalling. Studies concerning the spacing…”
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Lateral inhibition mediated by the Drosophila neurogenic gene Delta is enhanced by proneural proteins
Published in Proceedings of the National Academy of Sciences - PNAS (11-10-1994)“…Cells in the neuroectoderm of Drosophila become either neural or epidermal progenitors. A critical threshold concentration of proneural gene products in a…”
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7
The snail gene required for mesoderm formation in Drosophila is expressed dynamically in derivatives of all three germ layers
Published in Development (Cambridge) (01-04-1991)“…The zygotic effect gene snail (sna) encodes a zinc-finger protein required for mesoderm formation in Drosophila embryos. By in situ analysis, sna transcripts…”
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The pattern of transcription of the neurogenic gene Delta of Drosophila melanogaster
Published in Development (Cambridge) (01-11-1990)“…The function of the Delta locus of Drosophila melanogaster is required for the correct separation of neural and epidermal cell lineages. We describe here the…”
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Oocyte‐specific transcription of fs(1)K10: a Drosophila gene affecting dorsal–ventral developmental polarity
Published in The EMBO journal (01-03-1987)“…The expression of the fs(1)K10 gene is required in early oogenesis for the establishment of the dorsal–ventral polarity of the oocyte, and later in the embryo…”
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10
Cooperation between the GATA and RUNX factors Serpent and Lozenge during Drosophila hematopoiesis
Published in The EMBO journal (15-12-2003)“…Members of the GATA and RUNX families of genes appear to have conserved functions during hematopoiesis from Drosophila to mammals. In Drosophila, the GATA…”
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Requirement for dynamin during Notch signaling in Drosophila Neurogenesis
Published in Developmental biology (15-12-1997)“…Singling out of a unique neural precursor from a group of equivalent cells, during Drosophila neurogenesis, involves Notch-mediated lateral signaling. During…”
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12
Role of the oocyte nucleus in determination of the dorsoventral polarity of Drosophila as revealed by molecular analysis of the K10 gene
Published in Genes & development (01-07-1988)“…In Drosophila, the establishment of dorsoventral polarity of the developing embryo depends on the expression of at least 11 maternally acting genes. Mutant…”
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13
Two isoforms of Serpent containing either one or two GATA zinc fingers have different roles in Drosophila haematopoiesis
Published in The EMBO journal (15-10-2002)“…serpent (srp) encodes a GATA transcription factor essential for haematopoiesis in Drosophila. Previously, Srp was shown to contain a single GATA zinc finger of…”
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Transcription factor interplay during Drosophila haematopoiesis
Published in The International journal of developmental biology (01-01-2010)“…Transcription factors play a key role in regulating blood cell fate choice and differentiation. In this review, we examine current knowledge of the function…”
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15
Resolving embryonic blood cell fate choice in Drosophila: interplay of GCM and RUNX factors
Published in Development (Cambridge) (01-10-2005)“…The differentiation of Drosophila embryonic blood cell progenitors (prohemocytes) into plasmatocytes or crystal cells is controlled by lineage-specific…”
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Delta, notch, and shaggy: elements of a lateral signaling pathway in Drosophila
Published in Cold Spring Harbor Symposia on Quantitative Biology (1992)Get more information
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17
Transcriptional activity of pannier is regulated negatively by heterodimerization of the GATA DNA-binding domain with a cofactor encoded by the u-shaped gene of Drosophila
Published in Genes & development (15-11-1997)“…The genes pannier (pnr) and u-shaped (ush) are required for the regulation of achaete-scute during establishment of the bristle pattern in Drosophila. pnr…”
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18
DNA sequences homologous to the Drosophila opa repeat are present in murine mRNAs that are differentially expressed in fetuses and adult tissues
Published in Molecular and Cellular Biology (01-05-1987)“…Article Usage Stats Services MCB Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley…”
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u-shaped encodes a zinc finger protein that regulates the proneural genes achaete and scute during the formation of bristles in Drosophila
Published in Genes & development (15-11-1997)“…The pattern of the large sensory bristles on the notum of Drosophila arises as a consequence of the expression of the achaete and scute genes. The gene…”
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20
A P-insertion screen identifying novel X-linked essential genes in Drosophila
Published in Mechanisms of development (2002)“…The recent determination and annotation of the entire euchromatic sequence of the Drosophila melanogaster genome predicted the existence of about 13 600…”
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