The long-term goal of this work is to understand how histone H3 lysine 9 methylation (H3K9me) and heterochromatic gene silencing are epigenetically inherited. Heterochromatin is a conserved feature of eukaryotic chromosmes and plays important roles in regulation of gene expression and maintenance of chromosome stability in organisms ranging from yeast to human. In the fission yeast Schiozosaccharomyces pombe, the establishment of heterochromatin involves RNAi- and transcription factor-dependent recruitment mechanisms, but the mechanisms that mediate epigenetic inheritance, independently of the initial recruitment signals, have remained unclear. We recently demonstrated that ectopically induced domains of H3K9me and silencing can be epigenetically inherited in the absence of sequence-specific recruitment when the rate of H3K9me demethylation is reduced by deletion of the Epe1 demethylase. In addition, we have discovered that, in wildtype epe1+ cells, small noncoding RNAs (siRNAs) or transcription factor binding sites play critical roles in epigenetic maintenance of H3K9me. In this proposal we will use a combination of in vivo approaches and biochemical assays to investigate (1) the functions of a newly discovered complex as well as known histone chapernones in epigenetic inheritance and the transfer of parental histones to newly replicated DNA, (2) the mechanism of siRNA- mediated epigenetic inheritance, and (3) the role of DNA sequence- and chromosomal context- dependent mechanisms in cis maintenance of epigenetic states. The ultimate goal of these studies is a molecular understanding of the mechanisms that epigenetically maintain silent chromatin domains.

Public Health Relevance

Heterochromatin is a conserved feature of eukaryotic chromosomes with roles in the regulation of gene expression and maintenance of genome stability, and contributes to normal development and disease progression in humans. A basic understanding the mechanisms that mediate the assembly and epigenetic inheritance of heterochromatin will not only provide a frame work for understanding how the epigenetic regulatory mechanisms can fail, but also provides the substrate and knowledge to design therapeutic strategies based on intervention.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM072805-15
Application #
9728996
Study Section
Molecular Genetics B Study Section (MGB)
Program Officer
Carter, Anthony D
Project Start
2005-02-01
Project End
2021-06-30
Budget Start
2019-07-01
Budget End
2020-06-30
Support Year
15
Fiscal Year
2019
Total Cost
Indirect Cost
Name
Harvard Medical School
Department
Anatomy/Cell Biology
Type
Schools of Medicine
DUNS #
047006379
City
Boston
State
MA
Country
United States
Zip Code
02115
Iglesias, Nahid; Currie, Mark A; Jih, Gloria et al. (2018) Automethylation-induced conformational switch in Clr4 (Suv39h) maintains epigenetic stability. Nature 560:504-508
Yu, Ruby; Wang, Xiaoyi; Moazed, Danesh (2018) Epigenetic inheritance mediated by coupling of RNAi and histone H3K9 methylation. Nature 558:615-619
Wang, Xiaoyi; Moazed, Danesh (2017) DNA sequence-dependent epigenetic inheritance of gene silencing and histone H3K9 methylation. Science 356:88-91
Jih, Gloria; Iglesias, Nahid; Currie, Mark A et al. (2017) Unique roles for histone H3K9me states in RNAi and heritable silencing of transcription. Nature 547:463-467
Jain, Ruchi; Iglesias, Nahid; Moazed, Danesh (2016) Distinct Functions of Argonaute Slicer in siRNA Maturation and Heterochromatin Formation. Mol Cell 63:191-205
Banday, Shahid; Farooq, Zeenat; Rashid, Romana et al. (2016) Role of Inner Nuclear Membrane Protein Complex Lem2-Nur1 in Heterochromatic Gene Silencing. J Biol Chem 291:20021-9
Behrouzi, Reza; Lu, Chenning; Currie, Mark A et al. (2016) Heterochromatin assembly by interrupted Sir3 bridges across neighboring nucleosomes. Elife 5:
Gerace, Erica; Moazed, Danesh (2015) Affinity Purification of Protein Complexes Using TAP Tags. Methods Enzymol 559:37-52
Gerace, Erica; Moazed, Danesh (2015) Affinity Pull-Down of Proteins Using Anti-FLAG M2 Agarose Beads. Methods Enzymol 559:99-110
Ragunathan, Kaushik; Jih, Gloria; Moazed, Danesh (2015) Epigenetics. Epigenetic inheritance uncoupled from sequence-specific recruitment. Science 348:1258699

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