TY - JOUR
T1 - Germline gain-of-function mutations in AFF4 cause a developmental syndrome functionally linking the super elongation complex and cohesin
AU - Izumi, Kosuke
AU - Nakato, Ryuichiro
AU - Zhang, Zhe
AU - Edmondson, Andrew C.
AU - Noon, Sarah
AU - Dulik, Matthew C.
AU - Rajagopalan, Ramakrishnan
AU - Venditti, Charles P.
AU - Gripp, Karen
AU - Samanich, Joy
AU - Zackai, Elaine H.
AU - Deardorff, Matthew A.
AU - Clark, Dinah
AU - Allen, Julian L.
AU - Dorsett, Dale
AU - Misulovin, Ziva
AU - Komata, Makiko
AU - Bando, Masashige
AU - Kaur, Maninder
AU - Katou, Yuki
AU - Shirahige, Katsuhiko
AU - Krantz, Ian D.
N1 - Publisher Copyright:
© 2015 Nature America, Inc. All rights reserved.
PY - 2015/4/28
Y1 - 2015/4/28
N2 - Transcriptional elongation is critical for gene expression regulation during embryogenesis. The super elongation complex (SEC) governs this process by mobilizing paused RNA polymerase II (RNAP2). Using exome sequencing, we discovered missense mutations in AFF4, a core component of the SEC, in three unrelated probands with a new syndrome that phenotypically overlaps Cornelia de Lange syndrome (CdLS) that we have named CHOPS syndrome (C for cognitive impairment and coarse facies, H for heart defects, O for obesity, P for pulmonary involvement and S for short stature and skeletal dysplasia). Transcriptome and chromatin immunoprecipitation sequencing (ChIP-seq) analyses demonstrated similar alterations of genome-wide binding of AFF4, cohesin and RNAP2 in CdLS and CHOPS syndrome. Direct molecular interaction of the SEC, cohesin and RNAP2 was demonstrated. These data support a common molecular pathogenesis for CHOPS syndrome and CdLS caused by disturbance of transcriptional elongation due to alterations in genome-wide binding of AFF4 and cohesin.
AB - Transcriptional elongation is critical for gene expression regulation during embryogenesis. The super elongation complex (SEC) governs this process by mobilizing paused RNA polymerase II (RNAP2). Using exome sequencing, we discovered missense mutations in AFF4, a core component of the SEC, in three unrelated probands with a new syndrome that phenotypically overlaps Cornelia de Lange syndrome (CdLS) that we have named CHOPS syndrome (C for cognitive impairment and coarse facies, H for heart defects, O for obesity, P for pulmonary involvement and S for short stature and skeletal dysplasia). Transcriptome and chromatin immunoprecipitation sequencing (ChIP-seq) analyses demonstrated similar alterations of genome-wide binding of AFF4, cohesin and RNAP2 in CdLS and CHOPS syndrome. Direct molecular interaction of the SEC, cohesin and RNAP2 was demonstrated. These data support a common molecular pathogenesis for CHOPS syndrome and CdLS caused by disturbance of transcriptional elongation due to alterations in genome-wide binding of AFF4 and cohesin.
UR - https://www.scopus.com/pages/publications/84925840671
U2 - 10.1038/ng.3229
DO - 10.1038/ng.3229
M3 - Article
C2 - 25730767
AN - SCOPUS:84925840671
SN - 1061-4036
VL - 47
SP - 338
EP - 344
JO - Nature Genetics
JF - Nature Genetics
IS - 4
ER -