SIRT6缺乏会损害UHRF1的去乙酰化和泛素化,从而在膀胱癌中增强糖酵解和乳酸分泌。

IF 6.1 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Xiaojing Wang, Peipei Zhang, Jiaqi Yan, Jingyi Huang, Yan Shen, Hongchao He, Hongjing Dou
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引用次数: 0

摘要

背景:表观遗传重编程和代谢重布线事件之间的异常相互作用有助于膀胱癌的进展和转移。脱乙酰酶SIRT6 (SIRT6)调控膀胱癌中糖酵解和乳酸分泌的机制尚不清楚。因此,我们旨在研究SIRT6在膀胱癌中的生物学功能。方法:采用生物信息学方法研究SIRT6/UHRF1在BLCA中的预后意义。体外和体内实验均用于确定SIRT6/UHRF1在BLCA中的作用。去乙酰化和泛素检测揭示SIRT6-UHRF1的调控。测定细胞外酸化率(ECAR)和耗氧量(OCR)来评价糖酵解能力。结果:在这里,我们发现蛋白质去乙酰化酶SIRT6在BLCA中下调,并预测了较差的总生存率。SIRT6缺乏显著增强BLCA细胞的增殖、自我更新和体外和体内迁移能力。在机制上,SIRT6与β-TrCP1介导的UHRF1相互作用、脱乙酰并促进UHRF1降解。因此,SIRT6缺乏导致UHRF1稳定,并依赖于UHRF1加速BLCA恶性进展。此外,UHRF1通过激活MCT4/HK2表达显著增加有氧糖酵解。因此,下调的SIRT6依赖于UHRF1促进BLCA的糖酵解和乳酸分泌。靶向UHRF1或MCT4显著损害BLCA细胞外乳酸积累。值得注意的是,一种靶向UHRF1的特异性小分子抑制剂(NSC232003)显著抑制了sirt6缺陷的BLCA进展。结论:我们的研究揭示了SIRT6/UHRF1轴驱动BLCA糖酵解和乳酸分泌的表观遗传机制,为BLCA治疗创造了一个新的脆弱性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SIRT6 deficiency impairs the deacetylation and ubiquitination of UHRF1 to strengthen glycolysis and lactate secretion in bladder cancer.

Background: Aberrant interplay between epigenetic reprogramming and metabolic rewiring events contributes to bladder cancer progression and metastasis. How the deacetylase Sirtuin-6 (SIRT6) regulates glycolysis and lactate secretion in bladder cancer remains poorly defined. We thus aimed to study the biological functions of SIRT6 in bladder cancer.

Methods: Bioinformatic analysis was used to study the prognostic significance of SIRT6/UHRF1 in BLCA. Both in vitro and in vivo assays were used to determine the roles of SIRT6/UHRF1 in BLCA. Deacetylation and ubiquitin assays were performed to uncover the regulations of SIRT6-UHRF1. Measurement of extracellular acidification rate (ECAR) and oxygen consumption rate (OCR) was used to assess glycolytic abilities.

Results: Here, we show that protein deacetylase SIRT6 was down-regulated in BLCA, and predicts poor overall survival. SIRT6 deficiency notably enhances BLCA cell proliferation, self-renewal, and migration capacities in vitro and in vivo. Mechanistically, SIRT6 interacts with, deacetylates, and promotes UHRF1 degradation mediated by β-TrCP1. Thus, SIRT6 deficiency leads to stabilized UHRF1 and depends on UHRF1 to accelerate BLCA malignant progression. Furthermore, UHRF1 significantly increased aerobic glycolysis via activating MCT4/HK2 expressions. Down-regulated SIRT6 thus depended on UHRF1 to promote glycolysis and lactate secretion in BLCA. Targeting UHRF1 or MCT4 notably impaired the extracellular lactate accumulations in BLCA. Significantly, a specific small-molecule inhibitor (NSC232003) targeting UHRF1 substantially inhibited SIRT6-deficient BLCA progression.

Conclusion: Together, our study uncovered an epigenetic mechanism of the SIRT6/UHRF1 axis in driving BLCA glycolysis and lactate secretion, creating a novel vulnerability for BLCA treatment.

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来源期刊
Cell and Bioscience
Cell and Bioscience BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.70
自引率
0.00%
发文量
187
审稿时长
>12 weeks
期刊介绍: Cell and Bioscience, the official journal of the Society of Chinese Bioscientists in America, is an open access, peer-reviewed journal that encompasses all areas of life science research.
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