- ES Wong, BM Schmitt, A Kazachenka, D Thybert, A Redmond, F Connor, TF Rayner, C Feig, AC Ferguson-Smith, JC Marioni, DT Odom, P Flicek. Interplay of cis and trans mechanisms driving transcription factor binding and gene expression evolution. Nat Commun 2017;8(1):1092. doi:10.1038/s41467-017-01037-x
[BibTeX] [Abstract]
Noncoding regulatory variants play a central role in the genetics of human diseases and in evolution. Here we measure allele-specific transcription factor binding occupancy of three liver-specific transcription factors between crosses of two inbred mouse strains to elucidate the regulatory mechanisms underlying transcription factor binding variations in mammals. Our results highlight the pre-eminence of cis-acting variants on transcription factor occupancy divergence. Transcription factor binding differences linked to cis-acting variants generally exhibit additive inheritance, while those linked to trans-acting variants are most often dominantly inherited. Cis-acting variants lead to local coordination of transcription factor occupancies that decay with distance; distal coordination is also observed and may be modulated by long-range chromatin contacts. Our results reveal the regulatory mechanisms that interplay to drive transcription factor occupancy, chromatin state, and gene expression in complex mammalian cell states.
@Article{29061983, author = {Wong ES and Schmitt BM and Kazachenka A and Thybert D and Redmond A and Connor F and Rayner TF and Feig C and Ferguson-Smith AC and Marioni JC and Odom DT and Flicek P}, title = {Interplay of cis and trans mechanisms driving transcription factor binding and gene expression evolution}, journal = {Nat Commun}, volume = {8}, number = {1}, pages = {1092}, year = {2017}, doi = {10.1038/s41467-017-01037-x}, note = {First posted as a preprint: 19 June 2016}, abstract = {Noncoding regulatory variants play a central role in the genetics of human diseases and in evolution. Here we measure allele-specific transcription factor binding occupancy of three liver-specific transcription factors between crosses of two inbred mouse strains to elucidate the regulatory mechanisms underlying transcription factor binding variations in mammals. Our results highlight the pre-eminence of cis-acting variants on transcription factor occupancy divergence. Transcription factor binding differences linked to cis-acting variants generally exhibit additive inheritance, while those linked to trans-acting variants are most often dominantly inherited. Cis-acting variants lead to local coordination of transcription factor occupancies that decay with distance; distal coordination is also observed and may be modulated by long-range chromatin contacts. Our results reveal the regulatory mechanisms that interplay to drive transcription factor occupancy, chromatin state, and gene expression in complex mammalian cell states.},}
Description
Noncoding regulatory variants play a central role in the genetics of human diseases and in evolution. Here we measure allele-specific transcription factor binding occupancy of three liver-specific transcription factors between crosses of two inbred mouse strains to elucidate the regulatory mechanisms underlying transcription factor binding variations in mammals. Our results highlight the pre-eminence of cis-acting variants on transcription factor occupancy divergence. Transcription factor binding differences linked to cis-acting variants generally exhibit additive inheritance, while those linked to trans-acting variants are most often dominantly inherited. Cis-acting variants lead to local coordination of transcription factor occupancies that decay with distance; distal coordination is also observed and may be modulated by long-range chromatin contacts. Our results reveal the regulatory mechanisms that interplay to drive transcription factor occupancy, chromatin state, and gene expression in complex mammalian cell states.
Full details have been published in Nature Communications .
Raw Data
The raw ChIP-seq data for can be found in ArrayExpress with the accession number E-MTAB-4089.
Processed Data
Processed data is available for FOXA1, CEBFA, HNF4A and H3K4me3 as a binary format Excel workbook (xlsb) linked here . Column headings for the data spreadsheets are:
| chr_position | Location of SNV underlying TFBS | |
| suffix of .b | Normalized counts for BL6 F0 individuals | |
| suffix of .c | Normalized counts for CAST F0 individuals | |
| r | Dispersion estimate | |
| suffix of .bi | Counts for BL6 allele in BL6xCAST individuals – where total counts (sum of allelic counts) have been adjusted for sequencing depth disparities across F1 libraries | |
| suffix of .br | Counts for BL6 allele in CASTxBL6 individuals – where total counts (sum of allelic counts) have been adjusted for sequencing depth disparities across F1 libraries | |
| suffix of .ci | Counts for CAST allele in BL6xCAST individuals – where total counts (sum of allelic counts) have been adjusted for sequencing depth disparities across F1 libraries | |
| suffix of .cr | Counts for CAST allele in CASTxBL6 individuals – where total counts (sum of allelic counts) have been adjusted for sequencing depth disparities across F1 libraries | |
| cons likelihood | Llikelihood of data fitting the cons model | |
| cis likelihood | Likelihood of data fitting the cis model | |
| trans likelihood | Likelihood of data fitting the trans model | |
| cistrans likelihood | Llikelihood of data fitting the cistrans model | |
| cons_bic | BIC for cons | |
| cis_bic | BIC for cis | |
| trans_bic | BIC for trans | |
| cistrans_bic | BIC for cistrans | |
| cat | Category with lowest BIC |