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Decoding the Inversion Symmetry Underlying Transcription Factor DNA-Binding Specificity and Functionality in the Genome.

Publication ,  Journal Article
Coons, LA; Burkholder, AB; Hewitt, SC; McDonnell, DP; Korach, KS
Published in: iScience
May 31, 2019

Understanding why a transcription factor (TF) binds to a specific DNA element in the genome and whether that binding event affects transcriptional output remains a great challenge. In this study, we demonstrate that TF binding in the genome follows inversion symmetry (IS). In addition, the specific DNA elements where TFs bind in the genome are determined by internal IS within the DNA element. These DNA-binding rules quantitatively define how TFs select the appropriate regulatory targets from a large number of similar DNA elements in the genome to elicit specific transcriptional and cellular responses. Importantly, we also demonstrate that these DNA-binding rules extend to DNA elements that do not support transcriptional activity. That is, the DNA-binding rules are obeyed, but the retention time of the TF at these non-functional DNA elements is not long enough to initiate and/or maintain transcription. We further demonstrate that IS is universal within the genome. Thus, IS is the DNA code that TFs use to interact with the genome and dictates (in conjunction with known DNA sequence constraints) which of those interactions are functionally active.

Duke Scholars

Published In

iScience

DOI

EISSN

2589-0042

Publication Date

May 31, 2019

Volume

15

Start / End Page

552 / 591

Location

United States
 

Citation

APA
Chicago
ICMJE
MLA
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Coons, L. A., Burkholder, A. B., Hewitt, S. C., McDonnell, D. P., & Korach, K. S. (2019). Decoding the Inversion Symmetry Underlying Transcription Factor DNA-Binding Specificity and Functionality in the Genome. IScience, 15, 552–591. https://doi.org/10.1016/j.isci.2019.04.006
Coons, Laurel A., Adam B. Burkholder, Sylvia C. Hewitt, Donald P. McDonnell, and Kenneth S. Korach. “Decoding the Inversion Symmetry Underlying Transcription Factor DNA-Binding Specificity and Functionality in the Genome.IScience 15 (May 31, 2019): 552–91. https://doi.org/10.1016/j.isci.2019.04.006.
Coons LA, Burkholder AB, Hewitt SC, McDonnell DP, Korach KS. Decoding the Inversion Symmetry Underlying Transcription Factor DNA-Binding Specificity and Functionality in the Genome. iScience. 2019 May 31;15:552–91.
Coons, Laurel A., et al. “Decoding the Inversion Symmetry Underlying Transcription Factor DNA-Binding Specificity and Functionality in the Genome.IScience, vol. 15, May 2019, pp. 552–91. Pubmed, doi:10.1016/j.isci.2019.04.006.
Coons LA, Burkholder AB, Hewitt SC, McDonnell DP, Korach KS. Decoding the Inversion Symmetry Underlying Transcription Factor DNA-Binding Specificity and Functionality in the Genome. iScience. 2019 May 31;15:552–591.
Journal cover image

Published In

iScience

DOI

EISSN

2589-0042

Publication Date

May 31, 2019

Volume

15

Start / End Page

552 / 591

Location

United States