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As a journalist, you can create a free Muck Rack account to customize your profile, list your contact preferences, and upload a portfolio of your best work.Articles
A non-syndromic orofacial cleft risk locus links tRNA splicing defects to neural crest cell pathologies
Keywords craniofacial development epigenetics neural crest cells tRNA orofacial cleft DDX1 MYCN tRNA fragments Get full text access Log in, subscribe or purchase for full access. References 1. Som, P.M. ∙ Naidich, T.P. Illustrated review of the embryology and development of the facial region, part 1: Early face and lateral nasal cavities AJNR. Am. J. Neuroradiol. 2013; 34:2233-2240 2. Simões-Costa, M. ∙ Bronner, M.E. Establishing neural crest identity: a gene regulatory recipe Development.
Nucleolus activity-dependent recruitment and biomolecular condensation by pH sensing
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Modeling the Pathological Long-Range Regulatory Effects of Human Structural Variation with Patient-Specific hiPSCs
Anders S. Huber W. Differential expression analysis for sequence count data. Genome Biol. 2010; 11: R106 Arnold C.D. Zabidi M.A. Pagani M. Rath M. Schernhuber K. Kazmar T. Stark A. Genome-wide assessment of sequence-intrinsic enhancer responsiveness at single-base-pair resolution. Nat. Biotechnol. 2017; 35: 136-144 Bajpai R. Chen D.A. Rada-Iglesias A. Zhang J. Xiong Y. Helms J. Chang C.-P. Zhao Y. Swigut T. Wysocka J. CHD7 cooperates with PBAF to control multipotent neural crest formation. Nature.
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