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首页> 外文期刊>Molecular oncology. >Induced PTF1a expression in pancreatic ductal adenocarcinoma cells activates acinar gene networks, reduces tumorigenic properties, and sensitizes cells to gemcitabine treatment
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Induced PTF1a expression in pancreatic ductal adenocarcinoma cells activates acinar gene networks, reduces tumorigenic properties, and sensitizes cells to gemcitabine treatment

机译:胰腺导管腺癌细胞中诱导的PTF1a表达激活腺泡基因网络,降低致瘤性,并使细胞对吉西他滨治疗敏感

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摘要

Pancreatic acinar cells synthesize, package, and secrete digestive enzymes into the duodenum to aid in nutrient absorption and meet metabolic demands. When exposed to cellular stresses and insults, acinar cells undergo a dedifferentiation process termed acinar–ductal metaplasia (ADM). ADM lesions with oncogenic mutations eventually give rise to pancreatic ductal adenocarcinoma (PDAC). In healthy pancreata, the basic helix‐loop‐helix (bHLH) factors MIST1 and PTF1a coordinate an acinar‐specific transcription network that maintains the highly developed differentiation status of the cells, protecting the pancreas from undergoing a transformative process. However, when MIST1 and PTF1a gene expression is silenced, cells are more prone to progress to PDAC. In this study, we tested whether induced MIST1 or PTF1a expression in PDAC cells could (i) re‐establish the transcriptional program of differentiated acinar cells and (ii) simultaneously reduce tumor cell properties. As predicted, PTF1a induced gene expression of digestive enzymes and acinar‐specific transcription factors, while MIST1 induced gene expression of vesicle trafficking molecules as well as activation of unfolded protein response components, all of which are essential to handle the high protein production load that is characteristic of acinar cells. Importantly, induction of PTF1a in PDAC also influenced cancer‐associated properties, leading to a decrease in cell proliferation, cancer stem cell numbers, and repression of key ATP‐binding cassette efflux transporters resulting in heightened sensitivity to gemcitabine. Thus, activation of pancreatic bHLH transcription factors rescues the acinar gene program and decreases tumorigenic properties in pancreatic cancer cells, offering unique opportunities to develop novel therapeutic intervention strategies for this deadly disease.
机译:胰腺腺泡细胞将消化酶合成,包装并分泌到十二指肠中,以帮助营养吸收并满足代谢需求。当暴露于细胞压力和侮辱时,腺泡细胞会经历去分化过程,称为腺泡-导管化生(ADM)。带有致癌突变的ADM病变最终会引起胰腺导管腺癌(PDAC)。在健康的胰腺中,基本螺旋-环-螺旋(bHLH)因子MIST1和PTF1a协调着一个腺泡特异性转录网络,该网络维持了细胞高度发达的分化状态,从而保护了胰腺免于经历转化过程。但是,当MIST1和PTF1a基因表达沉默时,细胞更容易发展为PDAC。在这项研究中,我们测试了PDAC细胞中诱导的MIST1或PTF1a表达是否可以(i)重新建立分化的腺泡细胞的转录程序,以及(ii)同时降低肿瘤细胞的特性。如预期的那样,PTF1a诱导消化酶和腺泡特异性转录因子的基因表达,而MIST1诱导囊泡运输分子的基因表达以及未折叠的蛋白质反应成分的激活,所有这些对于处理蛋白质的高负荷生产都是必不可少的。腺泡细胞的特征。重要的是,在PDAC中诱导PTF1a也影响了与癌症相关的特性,导致细胞增殖减少,癌症干细胞数量减少以及对关键的ATP结合盒外排转运蛋白的抑制导致对吉西他滨的敏感性增强。因此,胰腺bHLH转录因子的激活可拯救腺泡基因程序并降低胰腺癌细胞的致癌特性,为开发针对这种致命疾病的新型治疗干预策略提供了独特的机会。

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