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Transcription factor protein interactomes reveal genetic determinants in heart disease.

Authors :
Gonzalez-Teran, Barbara
Gonzalez-Teran, Barbara
Pittman, Maureen
Felix, Franco
Thomas, Reuben
Richmond-Buccola, Desmond
Hüttenhain, Ruth
Choudhary, Krishna
Moroni, Elisabetta
Costa, Mauro W
Huang, Yu
Padmanabhan, Arun
Alexanian, Michael
Lee, Clara Youngna
Maven, Bonnie EJ
Samse-Knapp, Kaitlen
Morton, Sarah U
McGregor, Michael
Gifford, Casey A
Seidman, JG
Seidman, Christine E
Gelb, Bruce D
Colombo, Giorgio
Conklin, Bruce R
Black, Brian L
Bruneau, Benoit G
Krogan, Nevan J
Pollard, Katherine S
Srivastava, Deepak
Gonzalez-Teran, Barbara
Gonzalez-Teran, Barbara
Pittman, Maureen
Felix, Franco
Thomas, Reuben
Richmond-Buccola, Desmond
Hüttenhain, Ruth
Choudhary, Krishna
Moroni, Elisabetta
Costa, Mauro W
Huang, Yu
Padmanabhan, Arun
Alexanian, Michael
Lee, Clara Youngna
Maven, Bonnie EJ
Samse-Knapp, Kaitlen
Morton, Sarah U
McGregor, Michael
Gifford, Casey A
Seidman, JG
Seidman, Christine E
Gelb, Bruce D
Colombo, Giorgio
Conklin, Bruce R
Black, Brian L
Bruneau, Benoit G
Krogan, Nevan J
Pollard, Katherine S
Srivastava, Deepak
Source :
Cell; vol 185, iss 5, 794-814.e30; 0092-8674
Publication Year :
2022

Abstract

Congenital heart disease (CHD) is present in 1% of live births, yet identification of causal mutations remains challenging. We hypothesized that genetic determinants for CHDs may lie in the protein interactomes of transcription factors whose mutations cause CHDs. Defining the interactomes of two transcription factors haplo-insufficient in CHD, GATA4 and TBX5, within human cardiac progenitors, and integrating the results with nearly 9,000 exomes from proband-parent trios revealed an enrichment of de novo missense variants associated with CHD within the interactomes. Scoring variants of interactome members based on residue, gene, and proband features identified likely CHD-causing genes, including the epigenetic reader GLYR1. GLYR1 and GATA4 widely co-occupied and co-activated cardiac developmental genes, and the identified GLYR1 missense variant disrupted interaction with GATA4, impairing in vitro and in vivo function in mice. This integrative proteomic and genetic approach provides a framework for prioritizing and interrogating genetic variants in heart disease.

Details

Database :
OAIster
Journal :
Cell; vol 185, iss 5, 794-814.e30; 0092-8674
Notes :
Cell vol 185, iss 5, 794-814.e30 0092-8674
Publication Type :
Electronic Resource
Accession number :
edsoai.on1325589106
Document Type :
Electronic Resource