4.6 Article

The evolutionarily conserved transcription factor PRDM12 controls sensory neuron development and pain perception

期刊

CELL CYCLE
卷 14, 期 12, 页码 1797-1808

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/15384101.2015.1036209

关键词

Hamlet; nociception; PRDM12; sensory neurons; TRHDE; PRDM12; PR homology domain-containing member 12; HSAN; hereditary and sensory autonomic neuropathy; TRHDE; tyrotropin-releasing hormone degrading enzyme; RA; retinoic acid; Brn3d; brain 3d; Tlx3; T-cell leukemia homeobox 3; Hmx3; H6 family homeobox 3; Drgx; dorsal root ganglia homeobox; Sncg; Synuclein Gamma (Breast Cancer-Specific Protein 1); En1; engrailed-1; RT-qPCR; real-time quantitative polymerase chain reaction; MO; morpholino oligonucleotide; ChIP; chromatin immunoprecipitation; S1PR1; Sphi8ngosine-1-phosphate receptor 1; CGNL1; cyclin L1; IL1R1; interleukin 1 receptor type 1; TRH(DE); tryrotropin-releasing hormone degrading enzyme; pCMV6; plasmid cytomegalovirus; DDK; DYKDDDDK epitope; GAPDH; glyceraldehyde 3-phospate dehydrogenase; NBT; BCIP; nitro blue tetrazolium; 5-bromo-4-chloro-3-indolyl-phosphate; SET; Su(var)3-9 and Enhancer of zeste'; PDB; protein data base; HEK293; human embryonic kidney cell 293; PBS; phosphate buffered saline; DAPI; 4; 6-diamidino-2-phenylindole; GFP; green fluorescent protein; BSA; bovine serum albumin; HRP; horseraddish peroxidase; ECL; enhanced chemiluminescence; FPKM; fragments per kilobase exon; FDR; false discovery rate; GEO; gene expression omnibus; PMID; pubmed identification

资金

  1. Belgian Fonds de la Recherche Scientifique (FRS-FNRS) (FRFC)
  2. Walloon region (First International Epigene)
  3. Van Buuren Foundation
  4. IMBA
  5. Austrian National Foundation
  6. Austrian Academy of Sciences
  7. EU ERC Advanced Grant

向作者/读者索取更多资源

PR homology domain-containing member 12 (PRDM12) belongs to a family of conserved transcription factors implicated in cell fate decisions. Here we show that PRDM12 is a key regulator of sensory neuronal specification in Xenopus. Modeling of human PRDM12 mutations that cause hereditary sensory and autonomic neuropathy (HSAN) revealed remarkable conservation of the mutated residues in evolution. Expression of wild-type human PRDM12 in Xenopus induced the expression of sensory neuronal markers, which was reduced using various human PRDM12 mutants. In Drosophila, we identified Hamlet as the functional PRDM12 homolog that controls nociceptive behavior in sensory neurons. Furthermore, expression analysis of human patient fibroblasts with PRDM12 mutations uncovered possible downstream target genes. Knockdown of several of these target genes including thyrotropin-releasing hormone degrading enzyme (TRHDE) in Drosophila sensory neurons resulted in altered cellular morphology and impaired nociception. These data show that PRDM12 and its functional fly homolog Hamlet are evolutionary conserved master regulators of sensory neuronal specification and play a critical role in pain perception. Our data also uncover novel pathways in multiple species that regulate evolutionary conserved nociception.

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