Literature DB >> 31110157

Targeting IDH1 as a Prosenescent Therapy in High-grade Serous Ovarian Cancer.

Erika S Dahl1, Raquel Buj1, Kelly E Leon1, Jordan M Newell2, Yuka Imamura3, Benjamin G Bitler4, Nathaniel W Snyder5, Katherine M Aird6.   

Abstract

Epithelial ovarian cancer (EOC) is the deadliest gynecologic cancer. High-grade serous carcinoma (HGSC) is the most frequently diagnosed and lethal histosubtype of EOC. A significant proportion of patients with HGSC relapse with chemoresistant disease. Therefore, there is an urgent need for novel therapeutic strategies for HGSC. Metabolic reprogramming is a hallmark of cancer cells, and targeting metabolism for cancer therapy may be beneficial. Here, we found that in comparison with normal fallopian tube epithelial cells, HGSC cells preferentially utilize glucose in the TCA cycle and not for aerobic glycolysis. This correlated with universally increased TCA cycle enzyme expression in HGSC cells under adherent conditions. HGSC disseminates as tumor cell spheroids within the peritoneal cavity. We found that wild-type isocitrate dehydrogenase I (IDH1) is the only TCA cycle enzyme upregulated in both adherent and spheroid conditions and is associated with reduced progression-free survival. IDH1 protein expression is also increased in patients with primary HGSC tumors. Pharmacologic inhibition or knockdown of IDH1 decreased proliferation of multiple HGSC cell lines by inducing senescence. Mechanistically, suppression of IDH1 increased the repressive histone mark H3K9me2 at multiple E2F target gene loci, which led to decreased expression of these genes. Altogether, these data suggest that increased IDH1 activity is an important metabolic adaptation in HGSC and that targeting wild-type IDH1 in HGSC alters the repressive histone epigenetic landscape to induce senescence. IMPLICATIONS: Inhibition of IDH1 may act as a novel therapeutic approach to alter both the metabolism and epigenetics of HGSC as a prosenescent therapy. ©2019 American Association for Cancer Research.

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Year:  2019        PMID: 31110157      PMCID: PMC6679739          DOI: 10.1158/1541-7786.MCR-18-1233

Source DB:  PubMed          Journal:  Mol Cancer Res        ISSN: 1541-7786            Impact factor:   5.852


  49 in total

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Authors:  A F D ADAMO; D E HAFT
Journal:  J Biol Chem       Date:  1965-02       Impact factor: 5.157

2.  JmjC-domain-containing proteins and histone demethylation.

Authors:  Robert J Klose; Eric M Kallin; Yi Zhang
Journal:  Nat Rev Genet       Date:  2006-09       Impact factor: 53.242

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Journal:  Nat Rev Mol Cell Biol       Date:  2007-09       Impact factor: 94.444

Review 4.  Hallmarks of Cellular Senescence.

Authors:  Alejandra Hernandez-Segura; Jamil Nehme; Marco Demaria
Journal:  Trends Cell Biol       Date:  2018-02-21       Impact factor: 20.808

5.  Inhibition of glycolysis enhances cisplatin-induced apoptosis in ovarian cancer cells.

Authors:  Paul Loar; Heather Wahl; Malti Kshirsagar; Gabrielle Gossner; Kent Griffith; J Rebecca Liu
Journal:  Am J Obstet Gynecol       Date:  2010-04       Impact factor: 8.661

6.  Independence of repressive histone marks and chromatin compaction during senescent heterochromatic layer formation.

Authors:  Tamir Chandra; Kristina Kirschner; Jean-Yves Thuret; Benjamin D Pope; Tyrone Ryba; Scott Newman; Kashif Ahmed; Shamith A Samarajiwa; Rafik Salama; Thomas Carroll; Rory Stark; Rekin's Janky; Masako Narita; Lixiang Xue; Agustin Chicas; Sabrina Nũnez; Ralf Janknecht; Yoko Hayashi-Takanaka; Michael D Wilson; Aileen Marshall; Duncan T Odom; M Madan Babu; David P Bazett-Jones; Simon Tavaré; Paul A W Edwards; Scott W Lowe; Hiroshi Kimura; David M Gilbert; Masashi Narita
Journal:  Mol Cell       Date:  2012-07-12       Impact factor: 17.970

7.  Integrated genomic analyses of ovarian carcinoma.

Authors: 
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9.  HMGB2 orchestrates the chromatin landscape of senescence-associated secretory phenotype gene loci.

Authors:  Katherine M Aird; Osamu Iwasaki; Andrew V Kossenkov; Hideki Tanizawa; Nail Fatkhutdinov; Benjamin G Bitler; Linh Le; Gretchen Alicea; Ting-Lin Yang; F Brad Johnson; Ken-Ichi Noma; Rugang Zhang
Journal:  J Cell Biol       Date:  2016-10-31       Impact factor: 10.539

10.  Mutant IDH1 Downregulates ATM and Alters DNA Repair and Sensitivity to DNA Damage Independent of TET2.

Authors:  Satoshi Inoue; Wanda Y Li; Alan Tseng; Isabel Beerman; Andrew J Elia; Sean C Bendall; François Lemonnier; Ken J Kron; David W Cescon; Zhenyue Hao; Evan F Lind; Naoya Takayama; Aline C Planello; Shu Yi Shen; Alan H Shih; Dana M Larsen; Qinxi Li; Bryan E Snow; Andrew Wakeham; Jillian Haight; Chiara Gorrini; Christian Bassi; Kelsie L Thu; Kiichi Murakami; Alisha R Elford; Takeshi Ueda; Kimberly Straley; Katharine E Yen; Gerry Melino; Luisa Cimmino; Iannis Aifantis; Ross L Levine; Daniel D De Carvalho; Mathieu Lupien; Derrick J Rossi; Garry P Nolan; Rob A Cairns; Tak W Mak
Journal:  Cancer Cell       Date:  2016-07-14       Impact factor: 31.743

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  11 in total

Review 1.  Mapping the genomic diaspora of gastric cancer.

Authors:  Khay Guan Yeoh; Patrick Tan
Journal:  Nat Rev Cancer       Date:  2021-10-26       Impact factor: 60.716

2.  Palmitoylation of MDH2 by ZDHHC18 activates mitochondrial respiration and accelerates ovarian cancer growth.

Authors:  Xuan Pei; Kai-Yue Li; Yuan Shen; Jin-Tao Li; Ming-Zhu Lei; Cai-Yun Fang; Hao-Jie Lu; Hui-Juan Yang; Wenyu Wen; Miao Yin; Jia Qu; Qun-Ying Lei
Journal:  Sci China Life Sci       Date:  2022-03-25       Impact factor: 10.372

3.  A Novel Gene Signature Associated With "E2F Target" Pathway for Predicting the Prognosis of Prostate Cancer.

Authors:  Haoran Xia; Miaomiao Wang; Xiaonan Su; Zhengtong Lv; Qiuxia Yan; Xiaoxiao Guo; Ming Liu
Journal:  Front Mol Biosci       Date:  2022-04-13

4.  Identification of Genes Required for Enzalutamide Resistance in Castration-Resistant Prostate Cancer Cells In Vitro.

Authors:  Sarah E Kohrt; Wisam N Awadallah; Robert A Phillips; Thomas C Case; Renjie Jin; Jagpreet S Nanda; Xiuping Yu; Peter E Clark; Yajun Yi; Robert J Matusik; Philip D Anderson; Magdalena M Grabowska
Journal:  Mol Cancer Ther       Date:  2020-12-09       Impact factor: 6.009

5.  High Levels of HIST1H2BK in Low-Grade Glioma Predicts Poor Prognosis: A Study Using CGGA and TCGA Data.

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Journal:  Front Oncol       Date:  2020-05-08       Impact factor: 6.244

6.  Multiomic analysis identifies CPT1A as a potential therapeutic target in platinum-refractory, high-grade serous ovarian cancer.

Authors:  Dongqing Huang; Shrabanti Chowdhury; Hong Wang; Sara R Savage; Richard G Ivey; Jacob J Kennedy; Jeffrey R Whiteaker; Chenwei Lin; Xiaonan Hou; Ann L Oberg; Melissa C Larson; Najmeh Eskandari; Davide A Delisi; Saverio Gentile; Catherine J Huntoon; Uliana J Voytovich; Zahra J Shire; Qing Yu; Steven P Gygi; Andrew N Hoofnagle; Zachary T Herbert; Travis D Lorentzen; Anna Calinawan; Larry M Karnitz; S John Weroha; Scott H Kaufmann; Bing Zhang; Pei Wang; Michael J Birrer; Amanda G Paulovich
Journal:  Cell Rep Med       Date:  2021-12-21

Review 7.  Models for measuring metabolic chemical changes in the metastasis of high grade serous ovarian cancer: fallopian tube, ovary, and omentum.

Authors:  Hannah Lusk; Joanna E Burdette; Laura M Sanchez
Journal:  Mol Omics       Date:  2021-12-06

8.  A new role for IDH1 in the control of ovarian cancer cells metabolism and senescence.

Authors:  Maura Sonego; Gustavo Baldassarre
Journal:  Ann Transl Med       Date:  2020-06

Review 9.  Cellular Senescence: Mechanisms and Therapeutic Potential.

Authors:  Zehuan Liao; Han Lin Yeo; Siaw Wen Wong; Yan Zhao
Journal:  Biomedicines       Date:  2021-11-25

10.  ATM inhibition synergizes with fenofibrate in high grade serous ovarian cancer cells.

Authors:  Chi-Wei Chen; Raquel Buj; Erika S Dahl; Kelly E Leon; Katherine M Aird
Journal:  Heliyon       Date:  2020-09-29
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