Topologically associating domain boundaries are required for normal genome function

Author:

Rajderkar SudhaORCID,Barozzi IrosORCID,Zhu YiwenORCID,Hu Rong,Zhang Yanxiao,Li Bin,Alcaina Caro AnaORCID,Fukuda-Yuzawa Yoko,Kelman Guy,Akeza Adyam,Blow Matthew J.ORCID,Pham Quan,Harrington Anne N.,Godoy Janeth,Meky Eman M.,von Maydell Kianna,Hunter Riana D.,Akiyama Jennifer A.ORCID,Novak Catherine S.,Plajzer-Frick Ingrid,Afzal Veena,Tran Stella,Lopez-Rios Javier,Talkowski Michael E.ORCID,Lloyd K. C. KentORCID,Ren Bing,Dickel Diane E.ORCID,Visel AxelORCID,Pennacchio Len A.ORCID

Abstract

AbstractTopologically associating domain (TAD) boundaries partition the genome into distinct regulatory territories. Anecdotal evidence suggests that their disruption may interfere with normal gene expression and cause disease phenotypes1–3, but the overall extent to which this occurs remains unknown. Here we demonstrate that targeted deletions of TAD boundaries cause a range of disruptions to normal in vivo genome function and organismal development. We used CRISPR genome editing in mice to individually delete eight TAD boundaries (11–80 kb in size) from the genome. All deletions examined resulted in detectable molecular or organismal phenotypes, which included altered chromatin interactions or gene expression, reduced viability, and anatomical phenotypes. We observed changes in local 3D chromatin architecture in 7 of 8 (88%) cases, including the merging of TADs and altered contact frequencies within TADs adjacent to the deleted boundary. For 5 of 8 (63%) loci examined, boundary deletions were associated with increased embryonic lethality or other developmental phenotypes. For example, a TAD boundary deletion near Smad3/Smad6 caused complete embryonic lethality, while a deletion near Tbx5/Lhx5 resulted in a severe lung malformation. Our findings demonstrate the importance of TAD boundary sequences for in vivo genome function and reinforce the critical need to carefully consider the potential pathogenicity of noncoding deletions affecting TAD boundaries in clinical genetics screening.

Funder

U.S. Department of Health & Human Services | NIH | National Human Genome Research Institute

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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