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    chb chromosome bows [ Drosophila melanogaster (fruit fly) ]

    Gene ID: 43901, updated on 27-Dec-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Orbit/CLASP determines centriole length by antagonising Klp10A in Drosophila spermatocytes.

    Orbit/CLASP determines centriole length by antagonising Klp10A in Drosophila spermatocytes.
    Shoda T, Yamazoe K, Tanaka Y, Asano Y, Inoue YH., Free PMC Article

    07/24/2021
    Findings suggest that Msps is a novel Rac effector that acts, in partnership with Orbit, to regionally regulate microtubule dynamics.

    TOG Proteins Are Spatially Regulated by Rac-GSK3β to Control Interphase Microtubule Dynamics.
    Trogden KP, Rogers SL., Free PMC Article

    05/28/2016
    Orbit plays an essential role as a connector between microtubules and the contractile ring in Drosophila male meiosis.

    Orbit/CLASP is required for myosin accumulation at the cleavage furrow in Drosophila male meiosis.
    Kitazawa D, Matsuo T, Kaizuka K, Miyauchi C, Hayashi D, Inoue YH., Free PMC Article

    06/20/2015
    Orbit is involved in the proper orientation of spindles towards fusomes during synchronous mitosis of spermatogonial cysts.

    Orbit/CLASP is required for germline cyst formation through its developmental control of fusomes and ring canals in Drosophila males.
    Miyauchi C, Kitazawa D, Ando I, Hayashi D, Inoue YH., Free PMC Article

    09/14/2013
    Data suggest a model in which CLASP and Msps converge in an antagonistic balance in the Abl signaling pathway.

    Parallel genetic and proteomic screens identify Msps as a CLASP-Abl pathway interactor in Drosophila.
    Lowery LA, Lee H, Lu C, Murphy R, Obar RA, Zhai B, Schedl M, Van Vactor D, Zhan Y., Free PMC Article

    02/26/2011
    Dynein and mast/orbit/CLASP have antagonistic roles in regulating kinetochore-microtubule plus-end dynamics.

    Dynein and mast/orbit/CLASP have antagonistic roles in regulating kinetochore-microtubule plus-end dynamics.
    Reis R, Feijão T, Gouveia S, Pereira AJ, Matos I, Sampaio P, Maiato H, Sunkel CE.

    01/21/2010
    results suggest that Mast plays an essential role in reducing the dynamic behaviour of microtubules by specifically promoting the pause state

    The Drosophila CLASP homologue, Mast/Orbit regulates the dynamic behaviour of interphase microtubules by promoting the pause state.
    Sousa A, Reis R, Sampaio P, Sunkel CE.

    01/21/2010
    is an essential component for microtubule subunit incorporation into fluxing K-fibres

    Drosophila CLASP is required for the incorporation of microtubule subunits into fluxing kinetochore fibres.
    Maiato H, Khodjakov A, Rieder CL., Free PMC Article

    01/21/2010
    MAST/Orbit has a role in microtubule-kinetochore attachment and is essential for chromosome alignment and maintenance of spindle bipolarity.

    MAST/Orbit has a role in microtubule-kinetochore attachment and is essential for chromosome alignment and maintenance of spindle bipolarity.
    Maiato H, Sampaio P, Lemos CL, Findlay J, Carmena M, Earnshaw WC, Sunkel CE., Free PMC Article

    01/21/2010
    Orbit/Mast/CLASP localizes to interior rather than peripheral central spindle microtubules

    Mutations in orbit/mast reveal that the central spindle is comprised of two microtubule populations, those that initiate cleavage and those that propagate furrow ingression.
    Inoue YH, Savoian MS, Suzuki T, Máthé E, Yamamoto MT, Glover DM., Free PMC Article

    01/21/2010
    Data show that the Orbit/Mast microtubule-associated protein is required at several stages in Drosophila oocyte cell differentiation.

    Orbit/Mast, the CLASP orthologue of Drosophila, is required for asymmetric stem cell and cystocyte divisions and development of the polarised microtubule network that interconnects oocyte and nurse cells during oogenesis.
    Máthé E, Inoue YH, Palframan W, Brown G, Glover DM.

    01/21/2010
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