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基质 Gla 蛋白驱动卵巢癌中的干细胞特性和肿瘤起始。

Matrix Gla Protein drives stemness and tumor initiation in ovarian cancer.

机构信息

Unit of Gynaecological Oncology Research, European Institute of Oncology IRCSS, Milan, Italy.

Cancer Biomarkers Unit, Fondazione IRCCS Casa Sollievo della Sofferenza, San Giovanni Rotondo, Foggia, Italy.

出版信息

Cell Death Dis. 2023 Mar 28;14(3):220. doi: 10.1038/s41419-023-05760-w.

Abstract

Ovarian cancer (OC) displays the highest mortality among gynecological tumors, mainly due to early peritoneal dissemination, the high frequency of tumor relapse following primary debulking, and the development of chemoresistance. All these events are thought to be initiated and sustained by a subpopulation of neoplastic cells, termed ovarian cancer stem cells (OCSC), that are endowed with self-renewing and tumor-initiating properties. This implies that interfering with OCSC function should offer novel therapeutic perspectives to defeat OC progression. To this aim, a better understanding of the molecular and functional makeup of OCSC in clinically relevant model systems is essential. We have profiled the transcriptome of OCSC vs. their bulk cell counterpart from a panel of patient-derived OC cell cultures. This revealed that Matrix Gla Protein (MGP), classically known as a calcification-preventing factor in cartilage and blood vessels, is markedly enriched in OCSC. Functional assays showed that MGP confers several stemness-associated traits to OC cells, including a transcriptional reprogramming. Patient-derived organotypic cultures pointed to the peritoneal microenvironment as a major inducer of MGP expression in OC cells. Furthermore, MGP was found to be necessary and sufficient for tumor initiation in OC mouse models, by shortening tumor latency and increasing dramatically the frequency of tumor-initiating cells. Mechanistically, MGP-driven OC stemness was mediated by the stimulation of Hedgehog signaling, in particular through the induction of the Hedgehog effector GLI1, thus highlighting a novel MGP/Hedgehog pathway axis in OCSC. Finally, MGP expression was found to correlate with poor prognosis in OC patients, and was increased in tumor tissue after chemotherapy, supporting the clinical relevance of our findings. Thus, MGP is a novel driver in OCSC pathophysiology, with a major role in stemness and in tumor initiation.

摘要

卵巢癌(OC)是妇科肿瘤中死亡率最高的肿瘤,主要原因是早期腹膜扩散、初次减瘤后肿瘤复发的频率高以及化疗耐药的发展。所有这些事件都被认为是由一小部分肿瘤细胞启动和维持的,这些肿瘤细胞被称为卵巢癌干细胞(OCSC),它们具有自我更新和肿瘤起始的特性。这意味着干扰 OCSC 的功能应该为战胜 OC 进展提供新的治疗前景。为此,在临床相关的模型系统中更好地了解 OCSC 的分子和功能构成是至关重要的。我们对一组患者来源的 OC 细胞培养物中的 OCSC 与其 bulk 细胞对照进行了转录组分析。这表明,基质 Gla 蛋白(MGP),在软骨和血管中被经典地认为是一种防止钙化的因子,在 OCSC 中明显富集。功能分析表明,MGP 赋予 OC 细胞几种与干性相关的特征,包括转录重编程。来源于患者的器官型培养物表明,OC 细胞中 MGP 的表达主要受腹膜微环境的诱导。此外,在 OC 小鼠模型中发现 MGP 对于肿瘤起始是必需和充分的,它缩短了肿瘤潜伏期,并极大地增加了起始肿瘤细胞的频率。在机制上,MGP 驱动的 OC 干性是通过 Hedgehog 信号的刺激介导的,特别是通过诱导 Hedgehog 效应物 GLI1,从而突出了 OCSC 中一种新的 MGP/Hedgehog 途径轴。最后,发现 MGP 的表达与 OC 患者的预后不良相关,并且在化疗后肿瘤组织中增加,支持了我们研究结果的临床相关性。因此,MGP 是 OCSC 病理生理学中的一种新的驱动因子,在干性和肿瘤起始中起主要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cfa/10050398/26d855a6b62e/41419_2023_5760_Fig1_HTML.jpg

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