Phosphatidylinositol promoted the proliferation and invasion of pituitary adenoma cells by regulating POU1F1 expression.

IF 6 3区 医学 Q1 CELL BIOLOGY Cancer & Metabolism Pub Date : 2025-01-14 DOI:10.1186/s40170-024-00372-0
Tongjiang Xu, Xiaodong Zhai, RuiWei Wang, Xiaoben Wu, ZhiZhen Zhou, MiaoMiao Shang, Chongcheng Wang, Tengfei Qi, Wei Yang
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Abstract

Invasiveness of pituitary adenoma is the main cause of its poor prognosis, mechanism of which remains largely unknown. In this study, the differential proteins between invasive and non-invasive pituitary tumors (IPA and NIPA) were identified by TMT labeled quantitative proteomics. The differential metabolites in venous bloods from patients with IPA and NIPA were analyzed by untargeted metabolomics. Proteomic data showed that the top five up-regulated proteins were AD021, C2orf15, PLCXD3, HIST3H2BB and POU1F1, and the top five down-regulated proteins were AIPL1, CALB2, GLUD2, SLC4A10 and GTF2I. Metabolomic data showed that phosphatidylinositol (PI) was most remarkably up-regulated and melibiose was most obviously down-regulated. Further investigation demonstrated that PI stimulation increased the expression of PITPNM1, POU1F1, C2orf15 and LDHA as well as the phosphorylation of AKT and ERK, and promoted the proliferation, migration and invasion of GH3 cells, which were blocked by PITPNM1knockdown. Inhibiting AKT phosphorylation reduced the expression of POU1F1, C2orf15 and LDHA in PI-stimulated cells while activating AKT increased their expression in PITPNM1-silencing cells, which was similar to the function of ERK. POU1F1 silence suppressed the expression of LDHA and C2orf15. Luciferase report assay and ChIP assay demonstrated that POU1F1 positively regulated the transcription of LDHA and C2orf15. In addition, PI propelled the metastasis of GH3 cells in vivo, and elevated the expression of PITPNM1, POU1F1, C2orf15 and LDHA. These results suggested that elevated serum PI might contribute to the proliferation and invasion of pituitary adenoma by regulating the expression of PITPNM1/AKT/ERK/POU1F1 axis.

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磷脂酰肌醇通过调节POU1F1的表达促进垂体腺瘤细胞的增殖和侵袭。
垂体腺瘤的侵袭性是其预后不良的主要原因,其机制尚不清楚。本研究采用TMT标记的定量蛋白质组学方法鉴定侵袭性和非侵袭性垂体瘤(IPA和NIPA)之间的差异蛋白。采用非靶向代谢组学方法分析IPA和NIPA患者静脉血中代谢物的差异。蛋白质组学数据显示,上调前5位的蛋白分别为AD021、C2orf15、PLCXD3、HIST3H2BB和POU1F1,下调前5位的蛋白分别为AIPL1、CALB2、GLUD2、SLC4A10和GTF2I。代谢组学数据显示,磷脂酰肌醇(PI)上调最为显著,糖二糖下调最为明显。进一步研究表明,PI刺激增加了PITPNM1、POU1F1、C2orf15和LDHA的表达以及AKT和ERK的磷酸化,促进了被PITPNM1敲低阻断的GH3细胞的增殖、迁移和侵袭。抑制AKT磷酸化可降低pi刺激细胞中POU1F1、C2orf15和LDHA的表达,而激活AKT可增加其在pitpnm1沉默细胞中的表达,其功能与ERK相似。POU1F1沉默抑制LDHA和C2orf15的表达。荧光素酶报告实验和ChIP实验表明,POU1F1正调控LDHA和C2orf15的转录。此外,PI在体内促进了GH3细胞的转移,提高了PITPNM1、POU1F1、C2orf15和LDHA的表达。提示血清PI升高可能通过调节PITPNM1/AKT/ERK/POU1F1轴的表达参与垂体腺瘤的增殖和侵袭。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
1.70%
发文量
17
审稿时长
14 weeks
期刊介绍: Cancer & Metabolism welcomes studies on all aspects of the relationship between cancer and metabolism, including: -Molecular biology and genetics of cancer metabolism -Whole-body metabolism, including diabetes and obesity, in relation to cancer -Metabolomics in relation to cancer; -Metabolism-based imaging -Preclinical and clinical studies of metabolism-related cancer therapies.
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Correction to: Cone photoreceptor phosphodiesterase PDE6H inhibition regulates cancer cell growth and metabolism, replicating the dark retina response. Steatohepatitis-induced vascular niche alterations promote melanoma metastasis. GDF15-mediated enhancement of the Warburg effect sustains multiple myeloma growth via TGFβ signaling pathway. Exploratory profiling of metabolites in cerebrospinal fluid using a commercially available targeted LC-MS based metabolomics kit to discriminate leptomeningeal metastasis. Phosphatidylinositol promoted the proliferation and invasion of pituitary adenoma cells by regulating POU1F1 expression.
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