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Mutation-Driven Signals of ARID1A and PI3K Pathways in Ovarian Carcinomas: Alteration Is An Opportunity

机译:卵巢癌中Arid1a和pi3k途径的突变驱动信号:改变是一个机会

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摘要

The chromosome is a functionally dynamic structure. The dynamic nature of chromosome functionally connects it to almost every event within a cell, in health and sickness. Chromatin remodeling system acts in unison with the cell survival pathway in mediating a variety of cellular functions, including mitosis, differentiation, DNA damage repair, and apoptosis. In humans, the 16 SWI/SNF complexes are a class of nucleosome remodelers, and ARID1A, an epigenetic tumor suppressor, is a member of mammalian 17 chromatin remodeling complex, SWI/SNF. Alterations of chromatin remodeling system contribute to tumorigenic events in various cancers, including ovarian cancers. Oncogenic changes of genes of the PI3K pathway are one of the potential genetic determinants of ovarian carcinomas. In this review, we present the data demonstrating the co-occurrence of mutations of ARID1A and the PI3K pathway in our cohort of ovarian cancers from the Avera Cancer Institute (SD, USA). Taking into account data from our cohort and the cBioPortal, we interrogate the opportunity provided by this co-occurrence in the context of mutation-driven signals in the life cycle of a tumor cell and its response to the targeted anti-tumor drugs.
机译:染色体是一种功能性动态结构。染色体的动态性质在功能上将其连接到细胞内的几乎每种事件,健康和疾病。染色质重塑系统与细胞存活途径一致作用于介导多种细胞功能,包括有丝分裂,分化,DNA损伤修复和细胞凋亡。在人类中,16种SWI / SNF复合物是一类核心重塑剂,并且ARID1A是表观遗传肿瘤抑制剂,是哺乳动物17染色质重塑复合物,SWI / SNF的成员。染色质重塑系统的改变有助于各种癌症的致瘤事件,包括卵巢癌。 PI3K途径基因的致癌变化是卵巢癌的潜在遗传决定因素之一。在这篇综述中,我们展示了从Avera Cancer Institute(SD,USA)的卵巢癌群中ARID1A和PI3K途径的共同发生的数据。考虑到我们的队列和CBIOPortal的数据,我们询问了这种共同发生的机会,在肿瘤细胞生命周期的突变驱动信号的背景下,其对靶向抗肿瘤药物的反应。

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  • 作者

    Pradip De; Nandini Dey;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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