The Role of Histone Dopaminylation and Serotinylation in Neuronal Plasticity (Ian Maze)

The Role of Histone Dopaminylation and Serotinylation in Neuronal Plasticity (Ian Maze)

In this episode of the Epigenetics Podcast, we caught up with Ian Maze from Ichan School of Medicine at Mount Sinai and a Howard Hughes Medical Institute (HHMI) Investigator to talk about his work on the role of histone dopaminylation and serotinylation in neuronal plasticity.

The Maze group focuses on understanding the complex interplay between chromatin regulatory mechanisms in brain and neuronal plasticity. The lab places an emphasis on psychiatric disorders associated with monoaminergic (e.g., serotonin, dopamine, etc.) dysfunction, such as major depressive disorder and drug addiction. In particular the Maze team has investigated cocaine addiction and its effect on chromatin by serotonylation and dopaminylation of Histone H3 Tails.

References

  • Maze, I., Covington, H. E., Dietz, D. M., LaPlant, Q., Renthal, W., Russo, S. J., Mechanic, M., Mouzon, E., Neve, R. L., Haggarty, S. J., Ren, Y., Sampath, S. C., Hurd, Y. L., Greengard, P., Tarakhovsky, A., Schaefer, A., & Nestler, E. J. (2010). Essential Role of the Histone Methyltransferase G9a in Cocaine-Induced Plasticity. Science, 327(5962), 213–216. https://doi.org/10.1126/science.1179438

  • Farrelly, L. A., Thompson, R. E., Zhao, S., Lepack, A. E., Lyu, Y., Bhanu, N. V., Zhang, B., Loh, Y.-H. E., Ramakrishnan, A., Vadodaria, K. C., Heard, K. J., Erikson, G., Nakadai, T., Bastle, R. M., Lukasak, B. J., Zebroski, H., Alenina, N., Bader, M., Berton, O., … Maze, I. (2019). Histone serotonylation is a permissive modification that enhances TFIID binding to H3K4me3. Nature, 567(7749), 535–539. https://doi.org/10.1038/s41586-019-1024-7

  • Lepack, A. E., Werner, C. T., Stewart, A. F., Fulton, S. L., Zhong, P., Farrelly, L. A., Smith, A. C. W., Ramakrishnan, A., Lyu, Y., Bastle, R. M., Martin, J. A., Mitra, S., O’Connor, R. M., Wang, Z.-J., Molina, H., Turecki, G., Shen, L., Yan, Z., Calipari, E. S., … Maze, I. (2020). Dopaminylation of histone H3 in ventral tegmental area regulates cocaine seeking. Science, 368(6487), 197–201. https://doi.org/10.1126/science.aaw8806

Related Episodes

Contact

Episoder(171)

RNA modifications and Gene Expression (Michaela Frye)

RNA modifications and Gene Expression (Michaela Frye)

In this episode of the Epigenetics Podcast, we talked with Michaela Frye from he German Cancer Research Center (DKFZ) in Heidelberg about her work on the role of RNA modifications and RNA binding prot...

26 Mar 45min

Polycomb and Three-Dimensional Genome Organisation (Oliver Bell)

Polycomb and Three-Dimensional Genome Organisation (Oliver Bell)

In this episode of the Epigenetics Podcast, we talked with Oliver Bell from the University of Southern California in Los Angeles about his work on chromatin-based regulatory systems that encode cellul...

12 Mar 48min

From Placeholder Nucleosomes to Zygotic Genome Activation (Patrick Murphy)

From Placeholder Nucleosomes to Zygotic Genome Activation (Patrick Murphy)

In this episode of the Epigenetics Podcast, we talked with Patrick Murphy from Cornell University about his work on gene regulation and cellular identity. Dr. Murphy's research focuses on the molecu...

26 Feb 39min

Decoding Cell Fate Through 3D Genome Organization and Chromatin Dynamics (Srinjan Basu)

Decoding Cell Fate Through 3D Genome Organization and Chromatin Dynamics (Srinjan Basu)

In this episode of the Epigenetics Podcast, we talked with Srinjan Basu from Imperial College London to talk about his work on how chromatin architecture and epigenetic mechanisms orchestrate developm...

12 Feb 41min

Taking ChIP from Yeast to ENCODE to Enable Genome-Wide Regulatory Protein Mapping (Peggy Farnham)

Taking ChIP from Yeast to ENCODE to Enable Genome-Wide Regulatory Protein Mapping (Peggy Farnham)

In this episode of the Epigenetics Podcast, we talked with Peggy Farnham from the Keck School of Medicine at USC about her work on establishing the ChIP Method in mammalian cells. In this episode, we ...

29 Jan 29min

Spatial-Omics and Machine Learning in Muscle Stem Cell Repair (Will Wang)

Spatial-Omics and Machine Learning in Muscle Stem Cell Repair (Will Wang)

In this episode of the Epigenetics Podcast, we talked with Will Wang from Sanford Burnham Prebys about his work on muscle stem cell repair, regeneration, and aging, exploring spatial-omics and machine...

15 Jan 55min

The Future of Protein–DNA Mapping (Mitch Guttman)

The Future of Protein–DNA Mapping (Mitch Guttman)

In this episode of the Epigenetics Podcast, we talked with Mitch Guttman from Caltec about ChIP-DIP (ChIP-Done In Parallel). ChIP-DIP is a newly developed approach for high-resolution protein–DNA inte...

18 Des 20251h 2min

Chromatin Modifiers and Their Roles in Brain Development (Fides Zenk)

Chromatin Modifiers and Their Roles in Brain Development (Fides Zenk)

In this episode of the Epigenetics Podcast, we talked with Fides Zenk from the École polytechnique fédérale de Lausanne about her work on transgenerational inheritance in Drosophila and brain organoid...

4 Des 202528min

Populært innen Vitenskap

fastlegen
tingenes-tilstand
rekommandert
jss
liberal-halvtime
rss-rekommandert
sinnsyn
forskningno
villmarksliv
dekodet-2
rss-nysgjerrige-norge
tomprat-med-gunnar-tjomlid
rss-paradigmepodden
fjellsportpodden
tidlose-historier
smart-forklart
kvinnehelsepodden
rss-lundqvist-podden
diagnose
utenrikshospitalet