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首页> 外文期刊>The Journal of biological chemistry >Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder
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Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder

机译:β-光谱,一种人癌症干细胞疾病中TGF-β信号/支架蛋白的表观遗传沉默

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摘要

Hereditary cancer syndromes provide powerful insights into dysfunctional signaling pathways that lead to sporadic cancers. Beckwith-Wiedemann syndrome (BWS) is a hereditary human cancer stem cell syndrome currently linked to deregulated imprinting at chromosome 11p15 and uniparental disomy. However, causal molecular defects and genetic models have remained elusive to date in the majority of cases. The non-pleckstrin homology domain β-spectrin (β2SP) (the official name for human is Spectrin, beta, nonerythrocytic 1 (SPTBN1), isoform 2; the official name for mouse is Spectrin beta 2 (Spnb2), isoform 2), a scaffolding protein, functions as a potent TGF-β signaling member adaptor in tumor suppression and development. Yet, the role of the β2SP in human tumor syndromes remains unclear. Here, we report that β2SP+/? mice are born with many phenotypic characteristics observed in BWS patients, suggesting that β2SP mutant mice phenocopy BWS, and β2SP loss could be one of the mechanisms associated with BWS. Our results also suggest that epigenetic silencing of β2SP is a new potential causal factor in human BWS patients. Furthermore, β2SP+/? mice provide an important animal model for BWS, as well as sporadic cancers associated with it, including lethal gastrointestinal and pancreatic cancer. Thus, these studies could lead to further insight into defects generated by dysfunctional stem cells and identification of new treatment strategies and functional markers for the early detection of these lethal cancers that otherwise cannot be detected at an early stage.
机译:遗传性癌症综合症提供了强大的见解,以导致散发性癌症的功能障碍信号通路。 Beckwith-Wiedemann综合征(BWS)是一种遗传性人癌症干细胞综合征,目前与染色体11p15和发单症脱发的注释印迹联系起来。然而,因果的大多数情况下,因果分子缺陷和遗传模型仍然是令人难以捉摸的。非Pleckstrin同源域β-光谱(β2SP)(人类的官方名称是光谱,β,非合适的1(SPTBN1),同种型2;鼠标的官方名称是光谱β2(SPNB2),同种型2),a脚手架蛋白质,用作肿瘤抑制和发育中有效的TGF-β信号传导构件适配器。然而,β2SP在人肿瘤综合征中的作用仍不清楚。在这里,我们报告β2sp+ /?小鼠出生在BWS患者中观察到的许多表型特征,表明β2SP突变小鼠的异发明BWS,β2SP损失可能是与BWS相关的机制之一。我们的研究结果还表明,β2SP的表观遗传沉默是人BWS患者的新潜在因果因素。此外,β2sp+ /?小鼠为BWS提供了重要的动物模型,以及与之相关的散发性癌症,包括致死的胃肠和胰腺癌。因此,这些研究可能导致进一步了解功能障碍干细胞产生的缺陷,以及鉴定新的治疗策略和功能标志物,用于早期检测这些致死的癌症,否则在早期无法检测到。

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