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2型鲟钙蛋白通过靶向SNAI2和基质金属蛋白酶驱动人胶质母细胞瘤细胞的恶性转化。

Stanniocalcin 2 drives malignant transformation of human glioblastoma cells by targeting SNAI2 and Matrix Metalloproteinases.

作者信息

Yun Eun-Jin, Kim Donghwi, Hsieh Jer-Tsong, Baek Seung Tae

机构信息

POSTECH Biotech Center, POSTECH, Pohang, Republic of Korea.

Department of Life Sciences, POSTECH, Pohang, Republic of Korea.

出版信息

Cell Death Discov. 2022 Jul 5;8(1):308. doi: 10.1038/s41420-022-01090-6.

Abstract

Glioblastoma multiforme (GBM) is the most malignant brain tumor and is refractory to conventional therapies. Although previous studies have proposed that the interaction between gene mutations and the external environment leads to the occurrence of GBM, the pathogenesis of GBM is still unclear and much remains to be studied. Herein, we show an association between human glycoprotein stanniocalcin-2 (STC2) and aggressive GBM progression, and demonstrate the underlying mechanism. Elevated STC2 expression and secretion greatly increase GBM cell growth and invasive phenotypes. Mechanistically, both, conditioned media (CM) containing STC2 and recombinant STC2, can induce the transformation of GBM cells into more malignant phenotypes by upregulating the expression of the epithelial-mesenchymal transition transcription factor, snail family transcription repressor 2 (SNAI2) as well as matrix metalloproteinases (MMPs). Moreover, we further demonstrate that the oncogenic function of STC2 in GBM is mediated through the MAPK signaling pathway. Collectively, these results identify the mechanism of STC2 targeting SNAI2 and MMPs through the MAPK pathway in GBM, and provide insights into a potential therapeutic strategy for GBM.

摘要

多形性胶质母细胞瘤(GBM)是最恶性的脑肿瘤,对传统治疗具有耐药性。尽管先前的研究提出基因突变与外部环境之间的相互作用导致了GBM的发生,但GBM的发病机制仍不清楚,仍有许多有待研究。在此,我们展示了人类糖蛋白骨钙素-2(STC2)与侵袭性GBM进展之间的关联,并阐明了其潜在机制。STC2表达和分泌的升高极大地增加了GBM细胞的生长和侵袭表型。从机制上讲,含有STC2的条件培养基(CM)和重组STC2均可通过上调上皮-间质转化转录因子、蜗牛家族转录抑制因子2(SNAI2)以及基质金属蛋白酶(MMPs)的表达,诱导GBM细胞转化为更具恶性的表型。此外,我们进一步证明STC2在GBM中的致癌功能是通过MAPK信号通路介导的。总体而言,这些结果确定了STC2在GBM中通过MAPK途径靶向SNAI2和MMPs的机制,并为GBM的潜在治疗策略提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5e8/9256701/1e22025e77fd/41420_2022_1090_Fig1_HTML.jpg

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