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环状PVT1和PVT1/AKT3在小细胞肺癌的细胞增殖、凋亡及肿瘤亚型定义中发挥作用。

circPVT1 and PVT1/AKT3 show a role in cell proliferation, apoptosis, and tumor subtype-definition in small cell lung cancer.

作者信息

Tolomeo Doron, Traversa Debora, Venuto Santina, Ebbesen Karoline K, García Rodríguez Juan L, Tamma Grazia, Ranieri Marianna, Simonetti Giorgia, Ghetti Martina, Paganelli Matteo, Visci Grazia, Liso Arcangelo, Kok Klaas, Muscarella Lucia Anna, Fabrizio Federico Pio, Frassanito Maria Antonia, Lamanuzzi Aurelia, Saltarella Ilaria, Solimando Antonio Giovanni, Fatica Alessandro, Ianniello Zaira, Marsano René Massimiliano, Palazzo Antonio, Azzariti Amalia, Longo Vito, Tommasi Stefania, Galetta Domenico, Catino Annamaria, Zito Alfredo, Mazza Tommaso, Napoli Alessandro, Martinelli Giovanni, Kjems Jørgen, Kristensen Lasse Sommer, Vacca Angelo, Storlazzi Clelia Tiziana

机构信息

Department of Biosciences, Biotechnology and Environment, University of Bari Aldo Moro, Bari, Italy.

Department of Medical and Surgical Sciences, University of Foggia, Foggia, Italy.

出版信息

Genes Chromosomes Cancer. 2023 Jul;62(7):377-391. doi: 10.1002/gcc.23121. Epub 2023 Jan 23.

Abstract

Small cell lung cancer (SCLC) is treated as a homogeneous disease, although the expression of NEUROD1, ASCL1, POU2F3, and YAP1 identifies distinct molecular subtypes. The MYC oncogene, amplified in SCLC, was recently shown to act as a lineage-specific factor to associate subtypes with histological classes. Indeed, MYC-driven SCLCs show a distinct metabolic profile and drug sensitivity. To disentangle their molecular features, we focused on the co-amplified PVT1, frequently overexpressed and originating circular (circRNA) and chimeric RNAs. We analyzed hsa_circ_0001821 (circPVT1) and PVT1/AKT3 (chimPVT1) as examples of such transcripts, respectively, to unveil their tumorigenic contribution to SCLC. In detail, circPVT1 activated a pro-proliferative and anti-apoptotic program when over-expressed in lung cells, and knockdown of chimPVT1 induced a decrease in cell growth and an increase of apoptosis in SCLC in vitro. Moreover, the investigated PVT1 transcripts underlined a functional connection between MYC and YAP1/POU2F3, suggesting that they contribute to the transcriptional landscape associated with MYC amplification. In conclusion, we have uncovered a functional role of circular and chimeric PVT1 transcripts in SCLC; these entities may prove useful as novel biomarkers in MYC-amplified tumors.

摘要

小细胞肺癌(SCLC)被视为一种同质化疾病,尽管神经分化因子1(NEUROD1)、achaete-scute复合体样蛋白1(ASCL1)、POU结构域蛋白2F3(POU2F3)和Yes相关蛋白1(YAP1)的表达可识别出不同的分子亚型。MYC癌基因在SCLC中发生扩增,最近研究表明它作为一种谱系特异性因子,将亚型与组织学类别联系起来。事实上,MYC驱动的SCLC表现出独特的代谢特征和药物敏感性。为了厘清它们的分子特征,我们聚焦于共同扩增的 Pvt1基因座(PVT1),其经常过度表达,并产生环状(circRNA)和嵌合RNA。我们分别分析了hsa_circ_0001821(circPVT1)和PVT1/蛋白激酶B3(AKT3)(chimPVT1)作为此类转录本的实例,以揭示它们对SCLC的致瘤作用。具体而言,circPVT1在肺细胞中过表达时激活了促增殖和抗凋亡程序,敲低chimPVT1可导致SCLC体外细胞生长减少和凋亡增加。此外,所研究的PVT1转录本突显了MYC与YAP1/POU2F3之间的功能联系,表明它们有助于与MYC扩增相关的转录格局。总之,我们发现了环状和嵌合PVT1转录本在SCLC中的功能作用;这些实体可能被证明是MYC扩增肿瘤中有用的新型生物标志物。

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