Mutations of Gene Regulatory Elements in Human Disease (Nadav Ahituv)
Epigenetics Podcast30 Touko 2024

Mutations of Gene Regulatory Elements in Human Disease (Nadav Ahituv)

In this episode of the Epigenetics Podcast, we talked with Nadav Ahituv from University of California, San Francisco about his work on mutations of gene regulatory elements in human disease.

Using massively parallel experiments, his lab revolutionized functional genomics by studying the impact of transcription factor binding sites on gene expression. His groundbreaking technology deciphered the regulatory language of gene expression by exploring transcription factor combinations, spacing, and orientation. By delving into the influence of DNA shape and gene topology, Nadav Ahituv's research provides a comprehensive understanding of gene regulation at the molecular level, shedding light on the complexity of genetic interactions.

The conversation delves into specific cases involving enhancers, gene sequencing, and 3D genomic structure, highlighting the impact of critical elements such as CTCF sites on gene expression. Discussions of haploid insufficiency and its implications for human health, using CRISPR technology to enhance gene expression, offer new possibilities for treating genetic diseases. Explorations of leptin-responsive regulatory elements in the hypothalamus and liver-associated transcription factors provide insights into metabolic regulation and gene expression networks in different tissues.

The episode also explores the epigenomic landscape, the evolution of methods from bulk approaches to single-cell analyses, and the role of AI and machine learning in deciphering complex genetic patterns. The conversation transitions to a unique study of bat embryonic development, dietary differences, and their implications for understanding wing development and metabolism in different bat species.

References
  • Ahituv, N., Zhu, Y., Visel, A., Holt, A., Afzal, V., Pennacchio, L. A., & Rubin, E. M. (2007). Deletion of ultraconserved elements yields viable mice. PLoS biology, 5(9), e234. https://doi.org/10.1371/journal.pbio.0050234

  • Matharu, N., Rattanasopha, S., Tamura, S., Maliskova, L., Wang, Y., Bernard, A., Hardin, A., Eckalbar, W. L., Vaisse, C., & Ahituv, N. (2019). CRISPR-mediated activation of a promoter or enhancer rescues obesity caused by haploinsufficiency. Science (New York, N.Y.), 363(6424), eaau0629. https://doi.org/10.1126/science.aau0629

  • Ushiki, A., Zhang, Y., Xiong, C., Zhao, J., Georgakopoulos-Soares, I., Kane, L., Jamieson, K., Bamshad, M. J., Nickerson, D. A., University of Washington Center for Mendelian Genomics, Shen, Y., Lettice, L. A., Silveira-Lucas, E. L., Petit, F., & Ahituv, N. (2021). Deletion of CTCF sites in the SHH locus alters enhancer-promoter interactions and leads to acheiropodia. Nature communications, 12(1), 2282. https://doi.org/10.1038/s41467-021-22470-z

  • Georgakopoulos-Soares, I., Deng, C., Agarwal, V., Chan, C. S. Y., Zhao, J., Inoue, F., & Ahituv, N. (2023). Transcription factor binding site orientation and order are major drivers of gene regulatory activity. Nature communications, 14(1), 2333. https://doi.org/10.1038/s41467-023-37960-5

  • Gordon, W. E., Baek, S., Nguyen, H. P., Kuo, Y. M., Bradley, R., Fong, S. L., Kim, N., Galazyuk, A., Lee, I., Ingala, M. R., Simmons, N. B., Schountz, T., Cooper, L. N., Georgakopoulos-Soares, I., Hemberg, M., & Ahituv, N. (2024). Integrative single-cell characterization of a frugivorous and an insectivorous bat kidney and pancreas. Nature communications, 15(1), 12. https://doi.org/10.1038/s41467-023-44186-y

Related Episodes

Contact

Jaksot(168)

CpG Islands, DNA Methylation, and Disease (Adrian Bird)

CpG Islands, DNA Methylation, and Disease (Adrian Bird)

In this episode of the Epigenetics Podcast, we caught up with Sir Adrian Bird, Buchanan Professor of Genetics at the University of Edinburgh to talk about his work on CpG islands, DNA methylation, and...

18 Kesä 202047min

Biophysical Modeling of 3-D Genome Organization (Leonid Mirny)

Biophysical Modeling of 3-D Genome Organization (Leonid Mirny)

In this episode of the Epigenetics Podcast, we caught up with Leonid Mirny, Ph.D., from MIT to talk about his work on biophysical modeling of the 3-D structure of chromatin. Leonid Mirny was part of t...

4 Kesä 202041min

From Nucleosome Structure to Function (Karolin Luger)

From Nucleosome Structure to Function (Karolin Luger)

In this episode of the Epigenetics Podcast, we caught up with Karolin Luger, Ph.D., from the University of Colorado in Boulder to talk about her work on solving the crystal structure of the nucleosome...

19 Touko 202036min

Identification of Functional Elements in the Genome (Bing Ren)

Identification of Functional Elements in the Genome (Bing Ren)

In this episode of the Epigenetics Podcast, we caught up with Bing Ren, Ph.D., from the University of California, San Diego and the Ludwig Institute for Cancer Research to talk about his work on ident...

7 Touko 202043min

Hi-C and Three-Dimensional Genome Sequencing (Erez Lieberman Aiden)

Hi-C and Three-Dimensional Genome Sequencing (Erez Lieberman Aiden)

In this episode of the Epigenetics Podcast, we caught up with Erez Lieberman Aiden, Ph.D. from Baylor College of Medicine and Rice University in Houston to talk about his work on developing Hi-C and i...

23 Huhti 202047min

Chromatin Structure and Dynamics at Ribosomal RNA Genes (Tom Moss)

Chromatin Structure and Dynamics at Ribosomal RNA Genes (Tom Moss)

In this episode of the Epigenetics Podcast, we caught up with Professor Tom Moss from Université Laval in Québec City, Canada to talk about his work on the chromatin structure and dynamics at ribosoma...

24 Maalis 202033min

Epigenetic Origins Of Heterogeneity And Disease (Andrew Pospisilik)

Epigenetic Origins Of Heterogeneity And Disease (Andrew Pospisilik)

In this episode of the Epigenetics Podcast, we caught up with Dr. Andrew Pospisilik from the Van Andel Institute in Grand Rapids, Michigan to talk about his work on the epigenetic origins of heterogen...

19 Helmi 202033min

PIXUL: On the Leading Edge of Chromatin Shearing (Karol Bomsztyk and Tom Matula)

PIXUL: On the Leading Edge of Chromatin Shearing (Karol Bomsztyk and Tom Matula)

In this episode of the Epigenetics Podcast, we caught up with Karol Bomsztyk M.D. and Tom Matula, Ph.D. from the University of Washington and Matchstick Technologies, to talk about their work on DNA a...

28 Tammi 202045min

Suosittua kategoriassa Tiede

tiedekulma-podcast
rss-mita-tulisi-tietaa
rss-poliisin-mieli
docemilia
rss-duodecim-lehti
utelias-mieli
radio-antro
filocast-filosofian-perusteet
rss-laakaripodi
rss-sosiopodi
ihanat-ipanat
sotataidon-ytimessa
mielipaivakirja
rss-bios-podcast
rss-radplus
rss-opeklubi
rss-lihavuudesta-podcast