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Interaction between Tumor Suppressor Adenomatous Polyposis Coli and Topoisomerase IIα: Implication for the G2/M Transition

机译:肿瘤抑制腺瘤性息肉病大肠菌和拓扑异构酶IIα之间的相互作用:对G2 / M过渡的影响。

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The tumor suppressor adenomatous polyposis coli (APC) is implicated in regulating multiple stages of the cell cycle. APC participation in G1/S is attributed to its recognized role in Wnt signaling. APC function in the G2/M transition is less well established. To identify novel protein partners of APC that regulate the G2/M transition, APC was immunoprecipitated from colon cell lysates and associated proteins were analyzed by matrix-assisted laser desorption ionization/time of flight (MALDI-TOF). Topoisomerase IIα (topo IIα) was identified as a potential binding partner of APC. Topo IIα is a critical regulator of G2/M transition. Evidence supporting an interaction between endogenous APC and topo IIα was obtained by coimmunoprecipitation, colocalization, and F?rster resonance energy transfer (FRET). The 15-amino acid repeat region of APC (M2-APC) interacted with topo IIα when expressed as a green fluorescent protein (GFP)-fusion protein in vivo. Although lacking defined nuclear localization signals (NLS) M2-APC predominantly localized to the nucleus. Furthermore, cells expressing M2-APC displayed condensed or fragmented nuclei, and they were arrested in the G2 phase of the cell cycle. Although M2-APC contains a β-catenin binding domain, biochemical studies failed to implicate β-catenin in the observed phenotype. Finally, purified recombinant M2-APC enhanced topo IIα activity in vitro. Together, these data support a novel role for APC in the G2/M transition, potentially through association with topo IIα.
机译:抑癌腺瘤性息肉病大肠杆菌(APC)参与调节细胞周期的多个阶段。 APC参与G1 / S归因于其在Wnt信号传导中的公认作用。 G2 / M过渡中的APC功能不太明确。为了鉴定调节G2 / M过渡的APC新型蛋白伴侣,从结肠细胞裂解物中免疫沉淀APC,并通过基质辅助激光解吸电离/飞行时间(MALDI-TOF)分析相关蛋白。拓扑异构酶IIα(topoIIα)被确定为APC的潜在结合伴侣。 TopoIIα是G2 / M过渡的关键调节剂。通过共免疫沉淀,共定位和Fsterster共振能量转移(FRET)获得了支持内源性APC和topoIIα之间相互作用的证据。当在体内表达为绿色荧光蛋白(GFP)融合蛋白时,APC(M2-APC)的15个氨基酸重复区域与topoIIα相互作用。尽管缺乏明确的核定位信号(NLS),M2-APC主要定位于核。此外,表达M2-APC的细胞显示出浓缩的或破碎的核,并且它们被捕获在细胞周期的G2期。尽管M2-APC包含β-catenin结合域,但生化研究未能将β-catenin暗示为观察到的表型。最后,纯化的重组M2-APC在体外增强了topoIIα的活性。这些数据共同支持了APC在G2 / M过渡中的新作用,可能是通过与topoIIα的结合。

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