Modulation of the Pol II CTD Phosphorylation Code by Rac1 and Cdc42 Small GTPases in Cultured Human Cancer Cells and Its Implication for Developing a Synthetic-Lethal Cancer Therapy

被引:7
作者
Zhang, Bo [1 ,2 ]
Zhong, Xuelin [1 ,3 ,4 ]
Sauane, Moira [1 ,3 ,4 ]
Zhao, Yihong [5 ,6 ]
Zheng, Zhi-Liang [1 ]
机构
[1] CUNY, Dept Biol Sci, Lehman Coll, Bronx, NY 10468 USA
[2] Wenzhou Kean Univ, Dept Biol, Wenzhou 325060, Zhejiang, Peoples R China
[3] CUNY, Grad Sch, Biol PhD Program, New York, NY 10016 USA
[4] CUNY, Univ Ctr, New York, NY 10016 USA
[5] Rutgers State Univ, Ctr Alcohol & Subst Use Studies, Grad Sch Appl & Profess Psychol, Piscataway, NJ 08854 USA
[6] Rutgers State Univ, Dept Appl Psychol, Grad Sch Appl & Profess Psychol, Piscataway, NJ 08854 USA
基金
美国国家科学基金会;
关键词
Rho; Rac1; Cdc42; Pol II; CTD code; CDK7; DOCK4; DOCK9; THZ1; Torin1; C-TERMINAL DOMAIN; RHO GTPASES; RAS; TRANSCRIPTION; PROTEIN; DOCK4; DEGRADATION; PHOSPHATASE; INHIBITION; ACTIVATION;
D O I
10.3390/cells9030621
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Rho GTPases, including Rho, Cdc42, Rac and ROP subfamilies, are key signaling molecules in RNA polymerase II (Pol II) transcriptional control. Our prior work has shown that plant ROP and yeast Cdc42 GTPases similarly modulate Ser2 and Ser5 phosphorylation status of the C-terminal domain (CTD) of the Pol II largest subunit by regulating CTD phosphatase degradation. Here, we present genetic and pharmacological evidence showing that Cdc42 and Rac1 GTPase signaling modulates a similar CTD Ser2 and Ser5 phosphorylation code in cultured human cancer cells. While siRNA knockdown of Cdc42 and Rac1, respectively, in HeLa cells increased the level of CTD Ser phosphatases RPAP2 and FCP1, they both decreased the level of CTD kinases CDK7 and CDK13. In addition, the protein degradation inhibitor MG132 reversed the effect of THZ1, a CDK7 inhibitor which could decrease the cell number and amount of CDK7 and CDK13, accompanied by a reduction in the level of CTD Ser2 and Ser5 phosphorylation and DOCK4 and DOCK9 (the activators for Rac1 and Cdc42, respectively). Conversely, treatments of Torin1 or serum deprivation, both of which promote protein degradation, could enhance the effect of THZ1, indicating the involvement of protein degradation in controlling CDK7 and CDK13. Our results support an evolutionarily conserved signaling shortcut model linking Rho GTPases to Pol II transcription across three kingdoms, Fungi, Plantae and Animalia, and could lead to the development of a potential synthetic-lethal strategy in controlling cancer cell proliferation or death.
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页数:17
相关论文
共 47 条
[1]   A Ras-dependent pathway regulates RNA polymerase II phosphorylation in cardiac myocytes: Implications for cardiac hypertrophy [J].
Abdellatif, M ;
Packer, SE ;
Michael, LH ;
Zhang, D ;
Charng, MJ ;
Schneider, MD .
MOLECULAR AND CELLULAR BIOLOGY, 1998, 18 (11) :6729-6736
[2]   A Rac/Cdc42 exchange factor complex promotes formation of lateral filopodia and blood vessel lumen morphogenesis [J].
Abraham, Sabu ;
Scarcia, Margherita ;
Bagshaw, Richard D. ;
McMahon, Kathryn ;
Grant, Gary ;
Harvey, Tracey ;
Yeo, Maggie ;
Esteves, Filomena O. G. ;
Thygesen, Helene H. ;
Jones, Pamela F. ;
Speirs, Valerie ;
Hanby, Andrew M. ;
Selby, Peter J. ;
Lorger, Mihaela ;
Dear, T. Neil ;
Pawson, Tony ;
Marshall, Christopher J. ;
Mavria, Georgia .
NATURE COMMUNICATIONS, 2015, 6
[3]   TFIIH Kinase Places Bivalent Marks on the Carboxy-Terminal Domain of RNA Polymerase II [J].
Akhtar, Md. Sohail ;
Heidemann, Martin ;
Tietjen, Joshua R. ;
Zhang, David W. ;
Chapman, Rob D. ;
Eick, Dirk ;
Ansari, Aseem Z. .
MOLECULAR CELL, 2009, 34 (03) :387-393
[4]   A single flexible RNAPII-CTD integrates many different transcriptional programs [J].
Aristizabal, Maria J. ;
Kobor, Michael S. .
TRANSCRIPTION-AUSTIN, 2016, 7 (02) :50-56
[5]  
Bologa C., 2010, Probe Reports from the NIH Molecular Libraries Program [Internet], P1
[6]   RAS GTPase-dependent pathways in developmental diseases: old guys, new lads, and current challenges [J].
Bustelo, Xose R. ;
Crespo, Piero ;
Fernandez-Pisonero, Isabel ;
Rodriguez-Fdez, Sonia .
CURRENT OPINION IN CELL BIOLOGY, 2018, 55 :42-51
[7]   THZ1 targeting CDK7 suppresses STAT transcriptional activity and sensitizes T-cell lymphomas to BCL2 inhibitors [J].
Cayrol, Florencia ;
Praditsuktavorn, Pannee ;
Fernando, Tharu M. ;
Kwiatkowski, Nicholas ;
Marullo, Rosella ;
Calvo-Vidal, M. Nieves ;
Phillip, Jude ;
Pera, Benet ;
Yang, Shao Ning ;
Takpradit, Kaipol ;
Roman, Lidia ;
Gaudiano, Marcello ;
Crescenzo, Ramona ;
Ruan, Jia ;
Inghirami, Giorgio ;
Zhang, Tinghu ;
Cremaschi, Graciela ;
Gray, Nathanael S. ;
Cerchietti, Leandro .
NATURE COMMUNICATIONS, 2017, 8
[8]   The Ras/IPKA signaling pathway directly targets the Srb9 protein, a component of the general RNA polymerase II transcription apparatus [J].
Chang, YW ;
Howard, SC ;
Herman, PK .
MOLECULAR CELL, 2004, 15 (01) :107-116
[9]   CDK7 Inhibition Suppresses Super-Enhancer-Linked Oncogenic Transcription in MYCN-Driven Cancer [J].
Chipumuro, Edmond ;
Marco, Eugenio ;
Christensen, Camilla L. ;
Kwiatkowski, Nicholas ;
Zhang, Tinghu ;
Hatheway, Clark M. ;
Abraham, Brian J. ;
Sharma, Bandana ;
Yeung, Caleb ;
Altabef, Abigail ;
Perez-Atayde, Antonio ;
Wong, Kwok-Kin ;
Yuan, Guo-Cheng ;
Gray, Nathanael S. ;
Young, Richard A. ;
George, Rani E. .
CELL, 2014, 159 (05) :1126-1139
[10]   Targeting Transcriptional Addictions in Small Cell Lung Cancer with a Covalent CDK7 Inhibitor [J].
Christensen, Camilla L. ;
Kwiatkowski, Nicholas ;
Abraham, Brian J. ;
Carretero, Julian ;
Al-Shahrour, Fatima ;
Zhang, Tinghu ;
Chipumuro, Edmond ;
Herter-Sprie, Grit S. ;
Akbay, Esra A. ;
Altabef, Abigail ;
Zhang, Jianming ;
Shimamura, Takeshi ;
Capelletti, Marzia ;
Reibel, Jakob B. ;
Cavanaugh, Jillian D. ;
Gao, Peng ;
Liu, Yan ;
Michaelsen, Signe R. ;
Poulsen, Hans S. ;
Aref, Amir R. ;
Barbie, David A. ;
Bradner, James E. ;
George, Rani E. ;
Gray, Nathanael S. ;
Young, Richard A. ;
Won, Kwok-Kin .
CANCER CELL, 2014, 26 (06) :909-922