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Jiajun Zhu
  邮箱   jiajun_zhu@outlook.com 
TA的实验室:   朱佳俊实验室 Zhu Lab
论文

Oncogenic activation of PI3K-AKT-mTOR signaling suppresses ferroptosis via SREBP-mediated lipogenesis

Ferroptosis, a form of regulated necrosis driven by iron-dependent peroxidation of phospholipids, is regulated by cellular metabolism, redox homeostasis, and various signaling pathways related to cancer. In this study, we found that activating mutation of phosphatidylinositol 3-kinase (PI3K) or loss of phosphatase and tensin homolog deleted on chromosome 10 (PTEN) function, highly frequent events in human cancer, confers ferroptosis resistance in cancer cells, and that inhibition of the PI3K-AKT-mTOR signaling axis sensitizes cancer cells to ferroptosis induction. Mechanistically, this resistance requires sustained activation of mTORC1 and the mechanistic target of rapamycin (mTOR)C1-dependent induction of sterol regulatory element-binding protein 1 (SREBP1), a central transcription factor regulating lipid metabolism. Furthermore, stearoyl-CoA desaturase-1 (SCD1), a transcriptional target of SREBP1, mediates the ferroptosis-suppressing activity of SREBP1 by producing monounsaturated fatty acids. Genetic or pharmacologic ablation of SREBP1 or SCD1 sensitized ferroptosis in cancer cells with PI3K-AKT-mTOR pathway mutation. Conversely, ectopic expression of SREPB1 or SCD1 restored ferroptosis resistance in these cells, even when mTORC1 was inhibited. In xenograft mouse models for PI3K-mutated breast cancer and PTEN-defective prostate cancer, the combination of mTORC1 inhibition with ferroptosis induction resulted in near-complete tumor regression. In conclusion, hyperactive mutation of PI3K-AKT-mTOR signaling protects cancer cells from oxidative stress and ferroptotic death through SREBP1/SCD1-mediated lipogenesis, and combination of mTORC1 inhibition with ferroptosis induction shows therapeutic promise in preclinical models.

期刊: Proceedings of the National Academy of Sciences  2020
作者: Xuejun Jiang,Craig B. Thompson,Jiao Wu,Jiajun Zhu,Junmei Yi
DOI:10.1073/pnas.2017152117

Proline biosynthesis is a vent for TGFβ‐induced mitochondrial redox stress

期刊: The EMBO Journal  2020
作者: Craig B. Thompson,Justin R. Cross,Ronald C Hendrickson,Jiajun Zhu,Weige Qin,Sara Violante,Mirela Berisa,Simon Schwörer
DOI:10.15252/embj.2019103334

Transsulfuration Activity Can Support Cell Growth upon Extracellular Cysteine Limitation

期刊: Cell Metabolism  2019
作者: Craig B. Thompson,Justin R. Cross,Weige Qin,Simon Schwörer,Mirela Berisa,Jiajun Zhu
DOI:10.1016/j.cmet.2019.09.009

Role of Mitochondria in Ferroptosis

期刊: Molecular Cell  2019
作者: Xuejun Jiang,Craig B. Thompson,Prashant Monian,Alexander M. Minikes,Jiajun Zhu,Junmei Yi,Minghui Gao
DOI:10.1016/j.molcel.2018.10.042

Metabolic regulation of cell growth and proliferation

期刊: Nature Reviews Molecular Cell Biology  2019
作者: Craig B. Thompson,Jiajun Zhu
DOI:10.1038/s41580-019-0123-5

Cytoplasmic chromatin triggers inflammation in senescence and cancer

期刊: Nature  2017
作者: Shelley L Berger,Peter D. Adams,Benjamin A. Garcia,Klaus H. Kaestner,Sarah E. Millar,John T. Seykora,Glen N. Barber,K. M. Ahasan Al Tanim,Michal Shoshkes-Carmel,Tianying Jiang,Julia E. Kieckhaefer,Mingang Xu,Caiyue Xu,Brian C. Capell,Zhuo Zhou,Yanping Lin,Yemin Lan,Johayra Simithy,Kirk J. Wangensteen,Payel Sen,Jiajun Zhu,Maria Grazia Vizioli,Kanad Ghosh,Zhixun Dou
DOI:10.1038/nature24050

Lysine methylation represses p53 activity in teratocarcinoma cancer cells

TP53 (which encodes the p53 protein) is the most frequently mutated gene among all human cancers, whereas tumors that retain the wild-type TP53 gene often use alternative mechanisms to repress the p53 tumor-suppressive function. Testicular teratocarcinoma cells rarely contain mutations in TP53, yet the transcriptional activity of wild-type p53 is compromised, despite its high expression level. Here we report that in the teratocarcinoma cell line NTera2, p53 is subject to lysine methylation at its carboxyl terminus, which has been shown to repress p53’s transcriptional activity. We show that reduction of the cognate methyltransferases reactivates p53 and promotes differentiation of the NTera2 cells. Furthermore, reconstitution of methylation-deficient p53 mutants into p53-depleted NTera2 cells results in elevated expression of p53 downstream targets and precocious loss of pluripotent gene expression compared with re-expression of wild-type p53. Our results provide evidence that lysine methylation of endogenous wild-type p53 represses its activity in cancer cells and suggest new therapeutic possibilities of targeting testicular teratocarcinoma.

期刊: Proceedings of the National Academy of Sciences  2016
作者: Shelley L Berger,Arnold J. Levine,Morgan A Sammons,Zhixun Dou,Jiajun Zhu
DOI:10.1073/pnas.1610387113

MLL1 is essential for the senescence-associated secretory phenotype

期刊: Genes & Development  2016
作者: Shelley L Berger,Peter D. Adams,Todd W. Ridky,Christopher Natale,Taranjit Singh Rai,Morgan Sammons,Greg Donahue,Daniel F. Simola,Jean Dorsey,Zhixun Dou,Parisha P. Shah,Jiajun Zhu,Adam M. Drake,Brian C. Capell
DOI:10.1101/gad.271882.115

A Chromatin-Focused siRNA Screen for Regulators of p53-Dependent Transcription

Abstract The protein product of the Homo sapiens TP53 gene is a transcription factor (p53) that regulates the expression of genes critical for the response to DNA damage and tumor suppression, including genes involved in cell cycle arrest, apoptosis, DNA repair, metabolism, and a number of other tumorigenesis-related pathways. Differential transcriptional regulation of these genes is believed to alter the balance between two p53-dependent cell fates: cell cycle arrest or apoptosis. A number of previously identified p53 cofactors covalently modify and alter the function of both the p53 protein and histone proteins. Both gain- and loss-of-function mutations in chromatin modifiers have been strongly implicated in cancer development; thus, we sought to identify novel chromatin regulatory proteins that affect p53-dependent transcription and the balance between the expression of pro-cell cycle arrest and proapoptotic genes. We utilized an siRNA library designed against predicted chromatin regulatory proteins, and identified known and novel chromatin-related factors that affect both global p53-dependent transcription and gene-specific regulators of p53 transcriptional activation. The results from this screen will serve as a comprehensive resource for those interested in further characterizing chromatin and epigenetic factors that regulate p53 transcription.

期刊: G3 Genes|Genomes|Genetics  2016
作者: Shelley L Berger,Jiajun Zhu,Morgan A Sammons
DOI:10.1534/g3.116.031534

Autophagy mediates degradation of nuclear lamina

期刊: Nature  2015
作者: Shelley L Berger,Peter D. Adams,Robert D. Goldman,Terje Johansen,Wei-Xing Zong,Ronen Marmorstein,Stephen A. Adam,Trond Lamark,M. Daniel Ricketts,Joseph M. Catanzaro,Parisha P. Shah,Adam M. Drake,Brian C. Capell,Andrejs Ivanov,Jiajun Zhu,Ji-An Pan,Takeshi Shimi,Greg Donahue,Caiyue Xu,Zhixun Dou
DOI:10.1038/nature15548

Gain-of-function p53 mutants co-opt chromatin pathways to drive cancer growth

期刊: Nature  2015
作者: Shelley L Berger,Cheryl H. Arrowsmith,Xianxin Hua,Jing Huang,Ali Shilatifard,Bryson W. Katona,Rima Al-Awar,Dalia Barsyte-Lovejoy,Matthäus Getlik,Masoud Vedadi,Zhixun Dou,Greg Donahue,Morgan A Sammons,Jiajun Zhu
DOI:10.1038/nature15251

87: Mutant p53 Can Drive Cancer Initiation and Progression Through Gain-of-Function Properties

期刊: American Journal of Clinical Pathology  2015
作者: ...,Anil K. Rustgi,Shelley L Berger,Veronique Giroux,Jiajun Zhu,Apple Long
DOI:10.1093/ajcp/143.suppl1.051

Prevalence of mutations in a panel of breast cancer susceptibility genes in BRCA1/2-negative patients with early-onset breast cancer

期刊: Genetics in Medicine  2014
作者: Katherine L. Nathanson,Susan M. Domchek,Angela Demichele,Michael S. Simon,Angela R. Bradbury,Jiajun Zhu,Jill E. Stopfer,Katherine Rathbun,Jacquelyn Powers,Jessica M. Long,Bradley Garman,Kurt D’Andrea,Bradley Wubbenhorst,Kara N. Maxwell
DOI:10.1038/gim.2014.176

TP53 engagement with the genome occurs in distinct local chromatin environments via pioneer factor activity

期刊: Genome Research  2014
作者: Shelley L Berger,Adam M. Drake,Jiajun Zhu,Morgan A Sammons
DOI:10.1101/gr.181883.114

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