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Serine hydroxymethyl transferase 1 stimulates pro-oncogenic cytokine expression through sialic acid to promote ovarian cancer tumor growth and progression

机译:丝氨酸羟甲基转移酶1通过唾液酸刺激促癌性细胞因子表达以促进卵巢癌肿瘤的生长和发展

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摘要

High-grade serous (HGS) ovarian cancer accounts for 90% of all ovarian cancer-related deaths. However, factors that drive HGS ovarian cancer tumor growth have not been fully elucidated. In particular, comprehensive analysis of the metabolic requirements of ovarian cancer tumor growth has not been performed. By analyzing The Cancer Genome Atlas mRNA expression data for HGS ovarian cancer patient samples, we observed that six enzymes of the folic acid metabolic pathway were overexpressed in HGS ovarian cancer samples compared with normal ovary samples. Systematic knockdown of all six genes using short hairpin RNAs (shRNAs) and follow-up functional studies demonstrated that serine hydroxymethyl transferase 1 (SHMT1) was necessary for ovarian cancer tumor growth and cell migration in culture and tumor formation in mice. SHMT1 promoter analysis identified transcription factor Wilms tumor 1 (WT1) binding sites, and WT1 knockdown resulted in reduced SHMT1 transcription in ovarian cancer cells. Unbiased large-scale metabolomic analysis and transcriptome-wide mRNA expression profiling identified reduced levels of several metabolites of the amino sugar and nucleotide sugar metabolic pathways, including sialic acid N-acetylneuraminic acid (Neu5Ac), and downregulation of pro-oncogenic cytokines interleukin-6 and 8 (IL-6 and IL-8) as unexpected outcomes of SHMT1 loss. Overexpression of either IL-6 or IL-8 partially rescued SHMT1 loss-induced tumor growth inhibition and migration. Supplementation of culture medium with Neu5Ac stimulated expression of IL-6 and IL-8 and rescued the tumor growth and migratory phenotypes of ovarian cancer cells expressing SHMT1 shRNAs. In agreement with the ovarian tumor-promoting role of Neu5Ac, treatment with Neu5Ac-targeting glycomimetic P-3Fax-Neu5Ac blocked ovarian cancer growth and migration. Collectively, these results demonstrate that SHMT1 controls the expression of pro-oncogenic inflammatory cytokines by regulating sialic acid Neu5Ac to promote ovarian cancer tumor growth and migration. Thus, targeting of SHMT1 and Neu5Ac represents a precision therapy opportunity for effective HGS ovarian cancer treatment.
机译:高度浆液性(HGS)卵巢癌占所有卵巢癌相关死亡的90%。然而,尚未完全阐明驱动HGS卵巢癌肿瘤生长的因素。特别地,尚未对卵巢癌肿瘤生长的代谢需求进行综合分析。通过分析HGS卵巢癌患者样品的癌症基因组图谱mRNA表达数据,我们观察到与正常卵巢样品相比,HGS卵巢癌样品中叶酸代谢途径的六种酶过表达。使用短发夹RNA(shRNA)对所有六个基因的系统性敲除和后续功能研究表明,丝氨酸羟甲基转移酶1(SHMT1)对于卵巢癌肿瘤的生长以及细胞在培养物中的迁移和小鼠的肿瘤形成是必需的。 SHMT1启动子分析确定了转录因子Wilms肿瘤1(WT1)结合位点,而WT1敲低导致卵巢癌细胞SHMT1转录降低。无偏倚的大规模代谢组学分析和转录组范围的mRNA表达谱分析确定了氨基糖和核苷酸糖代谢途径的几种代谢物的水平降低,包括唾液酸N-乙酰神经氨酸(Neu5Ac),以及促癌细胞因子白介素6的下调和8(IL-6和IL-8)是SHMT1缺失的意外结果。 IL-6或IL-8的过表达可部分挽救SHMT1丢失诱导的肿瘤生长抑制和迁移。补充Neu5Ac的培养基可刺激IL-6和IL-8的表达,并挽救表达SHMT1 shRNA的卵巢癌细胞的肿瘤生长和迁移表型。与Neu5Ac促进卵巢肿瘤的作用相一致,靶向Neu5Ac的糖模拟物P-3Fax-Neu5Ac的治疗可阻断卵巢癌的生长和迁移。总的来说,这些结果表明SHMT1通过调节唾液酸Neu5Ac促进卵巢癌肿瘤的生长和迁移来控制促癌性炎性细胞因子的表达。因此,SHMT1和Neu5Ac的靶向代表了有效HGS卵巢癌治疗的精确治疗机会。

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