PRDM1 DNA-binding zinc finger domain is required for normal limb development and is disrupted in Split Hand/Foot Malformation
Truong, B.; Shull, L.; Lencer, E.; Bend, E.; Field, M.; Everman, D.; Schwartz, C.; Flanagan-Steet, H.; Artinger, K.
Show abstract
Split Hand/Foot Malformation (SHFM) is a rare limb abnormality with clefting of the fingers and/or toes. For many patients, the genetic etiology is unknown. Through whole exome and targeted sequencing, we detected three novel variants in a transcription factor, PRDM1 that arose de novo in families with SHFM or segregated with the phenotype. PRDM1 is required for limb development; however, its role is not well understood, and it is unclear how the PRDM1 variants affect protein function. Using transient and stable overexpression rescue experiments in zebrafish, we show that the variants, which disrupt the proline/serine-rich and DNA-binding zinc finger domains have reduced function compared to wildtype PRDM1. Through gene expression assays, RNA-seq, and CUT&RUN in isolated pectoral fin cells, we demonstrate that Prdm1a directly binds to and regulates genes required for limb induction, outgrowth, and anterior/posterior patterning, such as fgfr1a, dlx5a, dlx6a, and smo. Together, these results improve our understanding of the role of PRDM1 in the limb gene regulatory network and demonstrate the pathogenicity of PRDM1 variants in humans. SUMMARY STATEMENTPRDM1 proline/serine and zinc finger domains are required to regulate limb induction, outgrowth, and anterior/posterior patterning. Variants in PRDM1 are shown to cause Split Hand/Foot Malformation in humans.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Lin28a/let-7 Pathway Modulates the Hox Code via Polycomb Regulation during Axial Patterning in Vertebrates 97%
- Zic1 advances epaxial myotome morphogenesis to cover the neural tube via Wnt11r 97%
- TBX5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development 97%
Similar papers in this journal
- wnt16 regulates spine and muscle morphogenesis through parallel signals from notochord and dermomyotome 96%
- α-Phenylalanyl tRNA synthetase competes with Notch signaling through its N-terminal domain 96%
- The anterior Hox gene ceh-13 and elt-1/GATA activate the posterior Hox genes nob-1 and php-3 to specify posterior lineages in the C. elegans embryo 96%
Similar papers in this journal
- Structural perturbation of chromatin domains with multiple developmental regulators can severely impact gene regulation and development 96%
- Regulation of BMP Signaling by O-GlcNAcylation 95%
- The mesodermal source of fibronectin is required for heart morphogenesis and cardiac outflow tract elongation by regulating cell shape, polarity, and mechanotransduction in the second heart field 95%
Similar papers in this journal
- Characterising open chromatin identifies novel cis-regulatory elements important for paraxial mesoderm formation and axis extension 96%
- Context-Dependent Enhancer Function Revealed Bytargeted Inter-Tad Relocation 96%
- Cell-type-specific chromatin occupancy by the pioneer factor Zelda drives key developmental transitions in Drosophila 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.