YY1 Haploinsufficiency Causes an Intellectual Disability Syndrome Featuring Transcriptional and Chromatin Dysfunction.

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Date: December 5, 2017
Authors:
Alessandro Vitriolo, Anita Rauch, Anneke T. Vulto-van Silfhout, Anne Ronan, Arie van Haeringen, Asbjørg Stray-Pedersen, Bert B.A. de Vries, Bregje W.M. van Bon, Charlotte Brasch-Andersen, Christeen Ramane J. Pedurupillay, Christian Gilissen, Christian P. Schaaf, David A. Koolen, David Rodriguez-Buritica, Doriana Misceo, Eirik Frengen, Eric Haan, Evelyn Douglas, Giuseppe Testa, Han G. Brunner, Janneke H.M. Schuurs-Hoeijmakers, Jennifer Friedman, Jenny Morton, Jill A. Rosenfeld, Jillian Nicholl, Joris Andrieux, Jozef Gecz, Katharina Steindl, Kenjiro Kosaki, Kimberly M. Nugent, Laura Farach, Lisenka E.L.M. Vissers, Michele Gabriele, Pascal Chambon, Perla Thulin, Pernille M. Tørring, Peter J. Anderson, Petter Stromme, Pierre-Luc Germain, Raman Kumar, Rolph Pfundt, Sally A. Lynch, Scott D. McLean, Sophie Patrier, Stefan Lelieveld, Susanne Kjaergaard, Toshiki Takenouchi, William J. Craigen, Willy M. Nillesen, Yunru Shao, Zöe Powis
Journal: American journal of human genetics
Journal Volume: 100

Yin and yang 1 (YY1) is a well-known zinc-finger transcription factor with crucial roles in normal development and malignancy. YY1 acts both as a repressor and as an activator of gene expression. We have identified 23 individuals with de novo mutations or deletions of YY1 and phenotypic features that define a syndrome of cognitive impairment, behavioral alterations, intrauterine growth restriction, feeding problems, and various congenital malformations. Our combined clinical and molecular data define “YY1 syndrome” as a haploinsufficiency syndrome. Through immunoprecipitation of YY1-bound chromatin from affected individuals’ cells with antibodies recognizing both ends of the protein, we show that YY1 deletions and missense mutations lead to a global loss of YY1 binding with a preferential retention at high-occupancy sites. Finally, we uncover a widespread loss of H3K27 acetylation in particular on the YY1-bound enhancers, underscoring a crucial role for YY1 in enhancer regulation. Collectively, these results define a clinical syndrome caused by haploinsufficiency of YY1 through dysregulation of key transcriptional regulators.