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    DSTN destrin, actin depolymerizing factor [ Homo sapiens (human) ]

    Gene ID: 11034, updated on 3-Nov-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    DSTN Hypomethylation Promotes Radiotherapy Resistance of Rectal Cancer by Activating the Wnt/beta-Catenin Signaling Pathway.

    DSTN Hypomethylation Promotes Radiotherapy Resistance of Rectal Cancer by Activating the Wnt/β-Catenin Signaling Pathway.
    Wen R, Zhou L, Jiang S, Fan H, Zheng K, Yu Y, Gao X, Hao L, Lou Z, Yu G, Yang F, Zhang W.

    11/7/2023
    Positive natural selection of N6-methyladenosine on the RNAs of processed pseudogenes.

    Positive natural selection of N6-methyladenosine on the RNAs of processed pseudogenes.
    Tan L, Cheng W, Liu F, Wang DO, Wu L, Cao N, Wang J., Free PMC Article

    01/22/2022
    The actin depolymerizing factor destrin serves as a negative feedback inhibitor of smooth muscle cell differentiation.

    The actin depolymerizing factor destrin serves as a negative feedback inhibitor of smooth muscle cell differentiation.
    Liao KA, Rangarajan KV, Bai X, Taylor JM, Mack CP., Free PMC Article

    10/30/2021
    ADF and cofilin-1 collaborate to promote cortical actin flow and the leader bleb-based migration of confined cells.

    ADF and cofilin-1 collaborate to promote cortical actin flow and the leader bleb-based migration of confined cells.
    Ullo MF, Logue JS., Free PMC Article

    10/9/2021
    Destrin Contributes to Lung Adenocarcinoma Progression by Activating Wnt/beta-Catenin Signaling Pathway.

    Destrin Contributes to Lung Adenocarcinoma Progression by Activating Wnt/β-Catenin Signaling Pathway.
    Zhang HJ, Chang WJ, Jia CY, Qiao L, Zhou J, Chen Q, Zheng XW, Zhang JH, Li HC, Yang ZY, Liu ZH, Liu GC, Ji SP, Lu F.

    10/2/2021
    analysis of human Cof1, Cof2, and ADF effects on actin filament severing and turnover

    TIRF microscopy analysis of human Cof1, Cof2, and ADF effects on actin filament severing and turnover.
    Chin SM, Jansen S, Goode BL., Free PMC Article

    09/17/2016
    Destrin is upregulated in nerve-invasive pancreatic cancer cells and its expression might be related to perineural invasiveness

    The actin binding protein destrin is associated with growth and perineural invasion of pancreatic cancer.
    Klose T, Abiatari I, Samkharadze T, De Oliveira T, Jäger C, Kiladze M, Valkovskaya N, Friess H, Michalski CW, Kleeff J.

    01/12/2013
    The ADF/cofilin1-dependent severing of actin filaments exposes and promotes the activation of SPCA1, which pumps Ca(2+) into the lumen of the TGN for the sorting of the class of secretory cargo that binds Ca(2+).

    ADF/cofilin regulates secretory cargo sorting at the TGN via the Ca2+ ATPase SPCA1.
    von Blume J, Alleaume AM, Cantero-Recasens G, Curwin A, Carreras-Sureda A, Zimmermann T, van Galen J, Wakana Y, Valverde MA, Malhotra V.

    07/16/2011
    Changes in the expression of cytoskeletal regulatory proteins such as LIMK and cofilin may play a role in weakening thoracic aortic medial tissue, as a precondition to thoracic aortic dissection.

    A study of the expression and interaction of Destrin, cofilin, and LIMK in Debakey I type thoracic aortic dissection tissue.
    Tian L, Liao MF, Zhang L, Lu QS, Jing ZP.

    03/12/2011
    The results of this study suggested that temporally regulated ADF/cofilin activities function in postsynaptic modifications of receptor number and spine size during synaptic plasticity.

    ADF/cofilin-mediated actin dynamics regulate AMPA receptor trafficking during synaptic plasticity.
    Gu J, Lee CW, Fan Y, Komlos D, Tang X, Sun C, Yu K, Hartzell HC, Chen G, Bamburg JR, Zheng JQ., Free PMC Article

    10/23/2010
    destrin is a significant regulator of various processes important for invasive phenotype of human colon cancer Isreco1 cells whereas cofilin-1 may be involved in only a subset of them

    Differential involvement of destrin and cofilin-1 in the control of invasive properties of Isreco1 human colon cancer cells.
    Estornes Y, Gay F, Gevrey JC, Navoizat S, Nejjari M, Scoazec JY, Chayvialle JA, Saurin JC, Abello J.

    01/21/2010
    differences in actin binding by human ADF and cofilin

    Determining the differences in actin binding by human ADF and cofilin.
    Yeoh S, Pope B, Mannherz HG, Weeds A.

    01/21/2010
    Important sequence differences between actin-depolymerizing factor/cofilin were correlated with unique structural determinants in the F-actin-binding site to account for differences in biochemical activities of the two proteins.

    Solution structure of human cofilin: actin binding, pH sensitivity, and relationship to actin-depolymerizing factor.
    Pope BJ, Zierler-Gould KM, Kühne R, Weeds AG, Ball LJ.

    01/21/2010
    downregulated following UV exposure in epidermis

    Proteomic profiling identifies an UV-induced activation of cofilin-1 and destrin in human epidermis.
    Hensbergen P, Alewijnse A, Kempenaar J, van der Schors RC, Balog CA, Deelder A, Beumer G, Ponec M, Tensen CP.

    01/21/2010
    In the absence of any crystal structures of ADF or cofilin in complex with actin, these studies provide further information about the binding sites on F-actin for these important actin regulatory proteins.

    Mapping the ADF/cofilin binding site on monomeric actin by competitive cross-linking and peptide array: evidence for a second binding site on monomeric actin.
    Mannherz HG, Ballweber E, Galla M, Villard S, Granier C, Steegborn C, Schmidtmann A, Jaquet K, Pope B, Weeds AG.

    01/21/2010
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