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Functional Interaction of Histone Deacetylase 5 (HDAC5) and Lysine-specific Demethylase 1 (LSD1) Promotes Breast Cancer Progression

机译:组蛋白脱乙酰基酶5(HDAC5)和赖氨酸特异性脱甲基酶1(LSD1)的功能相互作用促进乳腺癌的进展。

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摘要

We have previously demonstrated that crosstalk between lysine-specific demethylase 1 (LSD1) and histone deacetylases (HDACs) facilitates breast cancer proliferation. However, the underlying mechanisms are largely unknown. Here we report that expression of HDAC5 and LSD1 proteins were positively correlated in human breast cancer cell lines and tissue specimens of primary breast tumors. Protein expression of HDAC5 and LSD1 was significantly increased in primary breast cancer specimens in comparison with matched normal adjacent tissues. Using HDAC5 deletion mutants and co-immunoprecipitation studies, we showed that HDAC5 physically interacted with LSD1 complex through its domain containing nuclear localization sequence and phosphorylation sites. While the in vitro acetylation assays revealed that HDAC5 decreased LSD1 protein acetylation, siRNA-mediated HDAC5 knockdown did not alter the acetylation level of LSD1 in MDA-MB-231 cells. Overexpression of HDAC5 stabilized LSD1 protein and decreased the nuclear level of H3K4me1/me2 in MDA-MB-231 cells, whereas loss of HDAC5 by siRNA diminished LSD1 protein stability and demethylation activity. We further demonstrated that HDAC5 promoted the protein stability of USP28, a bona fide deubiquitinase of LSD1. Overexpression of USP28 largely reversed HDAC5-KD induced LSD1 protein degradation, suggesting a role of HDAC5 as a positive regulator of LSD1 through upregulation of USP28 protein. Depletion of HDAC5 by shRNA hindered cellular proliferation, induced G1 cell cycle arrest, and attenuated migration and colony formation of breast cancer cells. A rescue study showed that increased growth of MDA-MB-231 cells by HDAC5 overexpression was reversed by concurrent LSD1 depletion, indicating that tumor-promoting activity of HDAC5 is an LSD1 dependent function. Moreover, overexpression of HDAC5 accelerated cellular proliferation and promoted acridine mutagen ICR191 induced transformation of MCF10A cells. Taken together, these results suggest that HDAC5 is critical in regulating LSD1 protein stability through posttranslational modification, and the HDAC5-LSD1 axis plays an important role in promoting breast cancer development and progression.
机译:我们以前已经证明,赖氨酸特异性脱甲基酶1(LSD1)和组蛋白脱乙酰基酶(HDACs)之间的串扰促进了乳腺癌的扩散。但是,基本机制尚不清楚。在这里,我们报告HDAC5和LSD1蛋白的表达在人乳腺癌细胞系和原发性乳腺肿瘤的组织样本中呈正相关。与匹配的正常邻近组织相比,HDAC5和LSD1的蛋白表达在原发性乳腺癌标本中显着增加。使用HDAC5缺失突变体和免疫共沉淀研究,我们表明HDAC5通过其包含核定位序列和磷酸化位点的域与LSD1复合体发生物理相互作用。尽管体外乙酰化分析显示HDAC5降低了LSD1蛋白的乙酰化,但是siRNA介导的HDAC5敲低并没有改变MDA-MB-231细胞中LSD1的乙酰化水平。 HDAC5的过表达稳定了LSD1蛋白,并降低了MDA-MB-231细胞中H3K4me1 / me2的核水平,而siRNA缺失HDAC5则降低了LSD1蛋白的稳定性和脱甲基活性。我们进一步证明,HDAC5促进了USP28(LSD1的真正去泛素酶)的蛋白质稳定性。 USP28的过表达在很大程度上逆转了HDAC5-KD诱导的LSD1蛋白降解,表明HDAC5通过上调USP28蛋白而作为LSD1的正调节剂。 shRNA耗尽HDAC5会阻止细胞增殖,诱导G1细胞周期停滞,并减弱乳腺癌细胞的迁移和集落形成。一项救援研究表明,HDAC5过表达使MDA-MB-231细胞的生长增加被同时发生的LSD1耗竭所逆转,表明HDAC5的促肿瘤活性是LSD1依赖性功能。此外,HDAC5的过表达加速细胞增殖并促进a啶诱变剂ICR191诱导MCF10A细胞转化。综上所述,这些结果表明HDAC5在通过翻译后修饰调节LSD1蛋白稳定性方面至关重要,而HDAC5-LSD1轴在促进乳腺癌的发展和进程中起着重要的作用。

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