Cell Biology and Physiology Division, CSIR-Indian Institute of Chemical Biology, Kolkata 700032, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
Biochem Cell Biol. 2024 Oct 1;102(5):394-409. doi: 10.1139/bcb-2024-0010. Epub 2024 Jul 8.
Ovarian cancer (OC) is the deadliest gynecological malignancy, having a high mortality rate due to its asymptomatic nature, chemoresistance, and recurrence. However, the proper mechanistic knowledge behind these phenomena is still inadequate. Cancer recurrence is commonly observed due to cancer stem cells which also show chemoresistance. We aimed to decipher the molecular mechanism behind chemoresistance and stemness in OC. Earlier studies suggested that PITX2, a homeobox transcription factor and, its different isoforms are associated with OC progression upon regulating different signaling pathways. Moreover, they regulate the expression of drug efflux transporters in kidney and colon cancer, rendering chemoresistance properties in the tumor cell. Considering these backgrounds, we decided to look for the role of PITX2 isoforms in promoting stemness and chemoresistance in OC cells. In this study, PITX2A/B has been shown to promote stemness and to enhance the transcription of ABCB1. PITX2 has been discovered to augment ABCB1 gene expression by directly binding to its promoter. To further investigate the regulatory mechanism of PITX2 gene expression, we found that TGFβ signaling could augment the PITX2A/B expression through both SMAD and non-SMAD signaling pathways. Collectively, we conclude that TGFβ1-activated PITX2A/B induces stem-like features and chemoresistance properties in the OC cells.
卵巢癌(OC)是致命性最高的妇科恶性肿瘤,因其无症状、化疗耐药和易复发等特点,死亡率居高不下。然而,这些现象背后的机制知识仍然不足。癌症复发通常是由于癌症干细胞引起的,这些干细胞也表现出化疗耐药性。我们旨在揭示 OC 中化疗耐药性和干性的分子机制。早期研究表明,同源盒转录因子 PITX2 及其不同的异构体通过调节不同的信号通路与 OC 的进展有关。此外,它们还调节了肾和结肠癌中药物外排转运蛋白的表达,使肿瘤细胞具有化疗耐药性。鉴于这些背景,我们决定研究 PITX2 异构体在促进 OC 细胞干性和化疗耐药性中的作用。在这项研究中,PITX2A/B 被证明可以促进干性,并增强 ABCB1 的转录。发现 PITX2 通过直接结合其启动子来增加 ABCB1 基因的表达。为了进一步研究 PITX2 基因表达的调控机制,我们发现 TGFβ 信号可以通过 SMAD 和非 SMAD 信号通路同时增加 PITX2A/B 的表达。综上所述,我们得出结论,TGFβ1 激活的 PITX2A/B 诱导 OC 细胞产生类干细胞特征和化疗耐药性。