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    br broad [ Drosophila melanogaster (fruit fly) ]

    Gene ID: 44505, updated on 9-Dec-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    The Broad Transcription Factor Links Hormonal Signaling, Gene Expression, and Cellular Morphogenesis Events During Drosophila Imaginal Disc Development.

    The Broad Transcription Factor Links Hormonal Signaling, Gene Expression, and Cellular Morphogenesis Events During Drosophila Imaginal Disc Development.
    Rice C, Macdonald SJ, Wang X, Ward RE., Free PMC Article

    07/17/2021
    let-7-Complex MicroRNAs Regulate Broad-Z3, Which Together with Chinmo Maintains Adult Lineage Neurons in an Immature State.

    let-7-Complex MicroRNAs Regulate Broad-Z3, Which Together with Chinmo Maintains Adult Lineage Neurons in an Immature State.
    Wu YC, Chawla G, Sokol N., Free PMC Article

    07/17/2021
    Broad as an important cell-intrinsic transcription factor that promotes the neuroepithelial-cell-to-neuroblast transition.

    Broad Promotes Neuroepithelial Stem Cell Differentiation in the Drosophila Optic Lobe.
    Zhou Y, Yang Y, Huang Y, Wang H, Wang S, Luo H., Free PMC Article

    04/4/2020
    Developmental regulation of regenerative potential in Drosophila by ecdysone through a bistable loop of ZBTB transcription factors Chinmo and Broad.

    Developmental regulation of regenerative potential in Drosophila by ecdysone through a bistable loop of ZBTB transcription factors.
    Narbonne-Reveau K, Maurange C., Free PMC Article

    11/30/2019
    Polytene chromosome stains showed that Cg co-localizes with EcR, the major regulator of BR-C, at the BR-C locus and that EcR binding to chromatin was sensitive to changes in Cg levels

    Combgap Promotes Ovarian Niche Development and Chromatin Association of EcR-Binding Regions in BR-C.
    Hitrik A, Popliker M, Gancz D, Mukamel Z, Lifshitz A, Schwartzman O, Tanay A, Gilboa L., Free PMC Article

    04/29/2017
    The CSN suppresses Sens through repression of the ecdysone signaling target gene broad (br) that encodes the BR-Z1 transcription factor to activate sens expression

    The COP9 signalosome converts temporal hormone signaling to spatial restriction on neural competence.
    Huang YC, Lu YN, Wu JT, Chien CT, Pi H., Free PMC Article

    11/14/2015
    Early gene Broad complex(BR-C) could be regulating the immune pathways by activating Relish and physically interacting with it to activate antimicrobial peptides expression.

    Early gene Broad complex plays a key role in regulating the immune response triggered by ecdysone in the Malpighian tubules of Drosophila melanogaster.
    Verma P, Tapadia MG.

    08/15/2015
    broad (br), encoding a small group of zinc-finger transcription factors resulting from alternative splicing, is a transcriptional target of Notch nuclear effector Suppressor of Hairless (Su(H)).

    Regulation of broad by the Notch pathway affects timing of follicle cell development.
    Jia D, Tamori Y, Pyrowolakis G, Deng WM., Free PMC Article

    08/16/2014
    Understanding Broad expression is impossible without simultaneously considering two enhancers, a dynamic gradient, and a network with extracellular and intracellular components.

    Dynamic model for the coordination of two enhancers of broad by EGFR signaling.
    Cheung LS, Simakov DS, Fuchs A, Pyrowolakis G, Shvartsman SY., Free PMC Article

    01/11/2014
    Broad (Br)-mediated hormone signaling regulates AMP specification

    Broad relays hormone signals to regulate stem cell differentiation in Drosophila midgut during metamorphosis.
    Zeng X, Hou SX., Free PMC Article

    12/22/2012
    analysis of EGFR-dependent network interactions that pattern Drosophila eggshell appendages; each appendage is derived from a primordium comprising a patch of cells expressing broad (br) and an adjacent stripe of cells expressing rhomboid (rho)

    EGFR-dependent network interactions that pattern Drosophila eggshell appendages.
    Simakov DS, Cheung LS, Pismen LM, Shvartsman SY.

    10/6/2012
    These data show the potential for diverse functions of Broad within the developing central nervous system

    Temporal patterns of broad isoform expression during the development of neuronal lineages in Drosophila.
    Zhou B, Williams DW, Altman J, Riddiford LM, Truman JW., Free PMC Article

    01/25/2010
    cell-type-selective expression of BRC isoforms suggests a model of BRC-dependent CNS morphogenesis resulting from intercellular interactions, culminating in BRC-Z1-controlled, glia-mediated CNS movements in late prepupa.

    Broad Complex isoforms have unique distributions during central nervous system metamorphosis in Drosophila melanogaster.
    Spokony RF, Restifo LL.

    01/21/2010
    Data show that during oogenesis, the two-domain expression pattern of Broad is established by a single gradient of EGFR activation that induces both Broad and Pointed, which mediates repression of Broad.

    Feedback control of the EGFR signaling gradient: superposition of domain-splitting events in Drosophila oogenesis.
    Zartman JJ, Kanodia JS, Cheung LS, Shvartsman SY., Free PMC Article

    01/21/2010
    Broad isoform Z1 suppresses Acp65A expression by preventing the normal up-regulation of DHR38 at the time of adult cuticle formation.

    Elucidation of the regulation of an adult cuticle gene Acp65A by the transcription factor Broad.
    Cui HY, Lestradet M, Bruey-Sedano N, Charles JP, Riddiford LM.

    01/21/2010
    PP2A-dependent disruption of centrosome replication and cytoskeleton organization by SV40 small tumor antigen is reported.

    PP2A-dependent disruption of centrosome replication and cytoskeleton organization in Drosophila by SV40 small tumor antigen.
    Kotadia S, Kao LR, Comerford SA, Jones RT, Hammer RE, Megraw TL., Free PMC Article

    01/21/2010
    Broad specifies pupal development and mediates the 'status quo' action of juvenile hormone on the pupal-adult transformation in Drosophila and Manduca.

    Broad specifies pupal development and mediates the 'status quo' action of juvenile hormone on the pupal-adult transformation in Drosophila and Manduca.
    Zhou X, Riddiford LM.

    01/21/2010
    depending upon the period of expression relative to the major peak of ecdysone production, BR-C Z1, Z2, and Z4 first inhibited and then stimulated the process of SG

    Temporal regulation of Drosophila salivary gland degeneration by the Broad-Complex transcription factors.
    Kuchárová-Mahmood S, Raska I, Mechler BM, Farkas R.

    01/21/2010
    The BR-C Z3 isoform is essential for BhC4-1-lacZ induction in prepupal salivary glands and constitute the first demonstration of the participation of early genes products on DNA puff genes regulation.

    Broad-Complex, E74, and E75 early genes control DNA puff BhC4-1 expression in prepupal salivary glands.
    Basso LR Jr, de C Neves M, Monesi N, Paçó-Larson ML.

    01/21/2010
    Mutations in the steroid-regulated genes BR-C and E93 differentially impact larval midgut cell death but do not affect the formation of adult midgut epithelia

    Steroid regulation of midgut cell death during Drosophila development.
    Lee CY, Cooksey BA, Baehrecke EH.

    01/21/2010
    BR-C, the zinc family of transcription factors, is regulated by ecdysone during insect metamorphosis. DRONC caspase is transcriptionally regulated and is essential for ecdysone-mediated cell death.

    Ecdysone-induced expression of the caspase DRONC during hormone-dependent programmed cell death in Drosophila is regulated by Broad-Complex.
    Cakouros D, Daish T, Martin D, Baehrecke EH, Kumar S., Free PMC Article

    01/21/2010
    Broad-Complex protein is required for Ddc activation at eclosion in Drosophila

    Control of Dopa decarboxylase gene expression by the Broad-Complex during metamorphosis in Drosophila.
    Chen L, O'Keefe SL, Hodgetts RB.

    01/21/2010
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