Person: Moqtaderi, Zarmik
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Publication Iwr1 Protein Is Important for Preinitiation Complex Formation by All Three Nuclear RNA Polymerases in (Saccharomyces) (cerevisiae)
(Public Library of Science, 2011) Esberg, Anders; Moqtaderi, Zarmik; Fan, Xiaochun; Lu, Jian; Struhl, Kevin; Byström, AndersBackground: Iwr1, a protein conserved throughout eukaryotes, was originally identified by its physical interaction with RNA polymerase (Pol) II. Principal Findings: Here, we identify Iwr1 in a genetic screen designed to uncover proteins involved in Pol III transcription in (S. cerevisiae). Iwr1 is important for Pol III transcription, because an (iwr1) mutant strain shows reduced association of TBP and Pol III at Pol III promoters, a decreased rate of Pol III transcription, and lower steady-state levels of Pol III transcripts. Interestingly, an (iwr1) mutant strain also displays reduced association of TBP to Pol I-transcribed genes and of both TBP and Pol II to Pol II-transcribed promoters. Despite this, rRNA and mRNA levels are virtually unaffected, suggesting a post-transcriptional mechanism compensating for the occupancy defect. Conclusions: Thus, Iwr1 plays an important role in preinitiation complex formation by all three nuclear RNA polymerases.
Publication SIRT7 Links H3K18 Deacetylation to Maintenance of Oncogenic Transformation
(2012) Barber, Matthew F.; Michishita-Kioi, Eriko; Xi, Yuanxin; Tasselli, Luisa; Kioi, Mitomu; Moqtaderi, Zarmik; Tennen, Ruth I.; Paredes, Silvana; Young, Nicolas L.; Chen, Kaifu; Struhl, Kevin; Garcia, Benjamin A.; Gozani, Or; Li, Wei; Chua, Katrin F.Sirtuin proteins regulate diverse cellular pathways that influence genomic stability, metabolism, and ageing. SIRT7 is a mammalian sirtuin whose biochemical activity, molecular targets, and physiologic functions have been unclear. Here we show that SIRT7 is an NAD(^+)-dependent H3K18Ac (acetylated lysine 18 of histone H3) deacetylase that stabilizes the transformed state of cancer cells. Genome-wide binding studies reveal that SIRT7 binds to promoters of a specific set of gene targets, where it deacetylates H3K18Ac and promotes transcriptional repression. The spectrum of SIRT7 target genes is defined in part by its interaction with the cancer-associated ETS transcription factor ELK4, and comprises numerous genes with links to tumour suppression. Notably, selective hypoacetylation of H3K18Ac has been linked to oncogenic transformation, and in patients is associated with aggressive tumour phenotypes and poor prognosis. We find that deacetylation of H3K18Ac by SIRT7 is necessary for maintaining essential features of human cancer cells, including anchorage-independent growth and escape from contact inhibition. Moreover, SIRT7 is necessary for a global hypoacetylation of H3K18Ac associated with cellular transformation by the viral oncoprotein E1A. Finally, SIRT7 depletion markedly reduces the tumourigenicity of human cancer cell xenografts in mice. Together, our work establishes SIRT7 as a highly selective H3K18Ac deacetylase and demonstrates a pivotal role for SIRT7 in chromatin regulation, cellular transformation programs, and tumour formation in vivo.