
Sign up to save your podcasts
Or


In this episode of the Epigenetics Podcast, we caught up with Erna Magnúsdóttir from the University of Iceland to talk about her work on the role of Blimp-1 in immune-cell differentiation.
The Magnúsdóttir Lab is interested in how the mammalian genome is interpreted in a context dependent manner, leading to different cellular states, by using mouse primordial germ cells as well as mouse and human B-cells as model systems. More specifically, the team is interested in the Transcription Factor Blimp-1 and its effect on immune cell differentiation. Next to its function in immune cells, Blimp-1 also plays a role in Waldenström’s macroglobulinemia. The lab hopes to reveal the intricacies in disease progression and alteration in cellular states to increasingly aggressive tumor behavior.
References
Magnúsdóttir, E., Dietmann, S., Murakami, K. et al. A tripartite transcription factor network regulates primordial germ cell specification in mice. Nat Cell Biol 15, 905–915 (2013). https://doi.org/10.1038/ncb2798
Anderson, K.J., Ósvaldsdóttir, Á.B., Atzinger, B. et al. The BLIMP1—EZH2 nexus in a non-Hodgkin lymphoma. Oncogene 39, 5138–5151 (2020). https://doi.org/10.1038/s41388-020-1347-8
Related Episodes
Pioneer Transcription Factors and Their Influence on Chromatin Structure (Ken Zaret)
DNA Methylation and Mammalian Development (Déborah Bourc'his)
The Role of SMCHD1 in Development and Disease (Marnie Blewitt)
Contact
Active Motif on Twitter
Epigenetics Podcast on Twitter
Active Motif on LinkedIn
Active Motif on Facebook
Email: [email protected]
By Active Motif4.9
4343 ratings
In this episode of the Epigenetics Podcast, we caught up with Erna Magnúsdóttir from the University of Iceland to talk about her work on the role of Blimp-1 in immune-cell differentiation.
The Magnúsdóttir Lab is interested in how the mammalian genome is interpreted in a context dependent manner, leading to different cellular states, by using mouse primordial germ cells as well as mouse and human B-cells as model systems. More specifically, the team is interested in the Transcription Factor Blimp-1 and its effect on immune cell differentiation. Next to its function in immune cells, Blimp-1 also plays a role in Waldenström’s macroglobulinemia. The lab hopes to reveal the intricacies in disease progression and alteration in cellular states to increasingly aggressive tumor behavior.
References
Magnúsdóttir, E., Dietmann, S., Murakami, K. et al. A tripartite transcription factor network regulates primordial germ cell specification in mice. Nat Cell Biol 15, 905–915 (2013). https://doi.org/10.1038/ncb2798
Anderson, K.J., Ósvaldsdóttir, Á.B., Atzinger, B. et al. The BLIMP1—EZH2 nexus in a non-Hodgkin lymphoma. Oncogene 39, 5138–5151 (2020). https://doi.org/10.1038/s41388-020-1347-8
Related Episodes
Pioneer Transcription Factors and Their Influence on Chromatin Structure (Ken Zaret)
DNA Methylation and Mammalian Development (Déborah Bourc'his)
The Role of SMCHD1 in Development and Disease (Marnie Blewitt)
Contact
Active Motif on Twitter
Epigenetics Podcast on Twitter
Active Motif on LinkedIn
Active Motif on Facebook
Email: [email protected]

22,023 Listeners

43,968 Listeners

32,147 Listeners

30,649 Listeners

43,765 Listeners

1,380 Listeners

762 Listeners

12,184 Listeners

59,188 Listeners

824 Listeners

1,451 Listeners

24,310 Listeners

124 Listeners

6,087 Listeners

2,108 Listeners