Genome Organization Mediated by RNA Polymerase II (Argyrys Papantonis)

Genome Organization Mediated by RNA Polymerase II (Argyrys Papantonis)

In this episode of the Epigenetics Podcast, we caught up with Akis Papantonis from the University Medical Center Göttingen to talk about his work on genome organisation mediated by RNA Polymerase II.

The research of the Papantonis Laboratory focuses on investigating how environmental signalling stimuli are integrated by chromatin to control homeostatic to deregulated functional transitions. In more detail, the team is interested in how dynamic higher-order regulatory networks are influenced by the underlying linear DNA fiber. The ultimate goal of the laboratory is to understand general rules governing transcriptional and chromatin homeostasis and finally, how those rules might affect development, ageing or malignancies.

References

  • Larkin, J. D., Cook, P. R., & Papantonis, A. (2012). Dynamic reconfiguration of long human genes during one transcription cycle. Molecular and cellular biology, 32(14), 2738–2747. https://doi.org/10.1128/MCB.00179-12

  • Diermeier, S., Kolovos, P., Heizinger, L., Schwartz, U., Georgomanolis, T., Zirkel, A., Wedemann, G., Grosveld, F., Knoch, T. A., Merkl, R., Cook, P. R., Längst, G., & Papantonis, A. (2014). TNFα signalling primes chromatin for NF-κB binding and induces rapid and widespread nucleosome repositioning. Genome biology, 15(12), 536. https://doi.org/10.1186/s13059-014-0536-6

  • Sofiadis, K., Josipovic, N., Nikolic, M., Kargapolova, Y., Übelmesser, N., Varamogianni-Mamatsi, V., Zirkel, A., Papadionysiou, I., Loughran, G., Keane, J., Michel, A., Gusmao, E. G., Becker, C., Altmüller, J., Georgomanolis, T., Mizi, A., & Papantonis, A. (2021). HMGB1 coordinates SASP-related chromatin folding and RNA homeostasis on the path to senescence. Molecular systems biology, 17(6), e9760. https://doi.org/10.15252/msb.20209760

  • Enhancer-promoter contact formation requires RNAPII and antagonizes loop extrusion. Shu Zhang, Nadine Übelmesser, Mariano Barbieri, Argyris Papantonis. bioRxiv 2022.07.04.498738; doi: https://doi.org/10.1101/2022.07.04.498738

Related Episodes

Contact

Avsnitt(167)

Epigenetics and X-inactivation (Edith Heard)

Epigenetics and X-inactivation (Edith Heard)

In the seventh Episode of Active Motif's Epigenetics Podcast our host Dr. Stefan Dillinger sat down with Prof. Edith Heard, designated Director General of the European Molecular Biology Laboratory (EM...

21 Nov 201835min

Chromatin Organization (Susan Gasser)

Chromatin Organization (Susan Gasser)

In the sixth Episode of Active Motif's Epigenetics Podcast our host Dr. Stefan Dillinger sits down with Prof. Susan Gasser, director of the Friedrich Miescher Institute in Basel, to talk about her res...

15 Okt 201833min

Epigenomics (Henk Stunnenberg)

Epigenomics (Henk Stunnenberg)

In the fifth Episode of the Epigenetics Podcast of Active Motif our host Dr. Stefan Dillinger sits down with Prof. Henk Stunnenberg, full professor and head of the Department of Molecular Biology at t...

12 Sep 201833min

Aging and Epigenetics (Peter Tessarz)

Aging and Epigenetics (Peter Tessarz)

The aging population and challenges that arise from aging are one of the great scientific challenges of this time. In the fourth episode of the Epigenetics Podcast from Active Motif, our host Dr. Stef...

3 Jan 201830min

Cancer and Epigenetics (David Jones)

Cancer and Epigenetics (David Jones)

Cancer has become one of the most dangerous diseases of the aging population of industrialized countries. Finding tools to fight cancer is hard, because Cancer presents itself as highly heterogeneous,...

31 Okt 201732min

The Nucleosome (Ada and Don Olins)

The Nucleosome (Ada and Don Olins)

The Nucleosome is the basic building unit of chromatin. It consists out of 147 base pairs of double stranded DNA wrapped around the Histone core octamer that consists out of 2 copies of each dimer of ...

11 Sep 201734min

Multiple Challenges in ChIP (Adam Blattler)

Multiple Challenges in ChIP (Adam Blattler)

Chromatin Immunoprecipitation (ChIP) was first developed in Drosophila, where interactions of RNA Pol II with genes were investigated (Mol. Cell. Biol. August 1985 vol. 5 no. 8 2009-2018). Then, in a ...

9 Juni 201735min

Populärt inom Vetenskap

p3-dystopia
pojkmottagningen
svd-nyhetsartiklar
dumma-manniskor
allt-du-velat-veta
kapitalet-en-podd-om-ekonomi
det-morka-psyket
rss-ufobortom-rimligt-tvivel-2
sexet
rss-vetenskapsradion-2
halsorevolutionen
rss-vetenskapsradion
medicinvetarna
4health-med-anna-sparre
rss-spraket
dumforklarat
paranormalt-med-caroline-giertz
bildningspodden
vetenskapsradion
hacka-livet