Pain perception has evolved as a warning mechanism to alert organisms to tissue damage and dangerous environments(1,2). In humans, however, undesirable, excessive or chronic pain is a common and major societal burden for which available medical treatments are currently suboptimal(3,4). New therapeutic options have recently been derived from studies of individuals with congenital insensitivity to pain (CIP)(5,6). Here we identified 10 different homozygous mutations in PRDM12 (encoding PRDI-BF1 and RIZ homology domain-containing protein 12) in subjects with CIP from 11 families. Prdm proteins are a family of epigenetic regulators that control neural specification and neurogenesis(7,8). We determined that Prdm12 is expressed in nociceptors and their progenitors and participates in the development of sensory neurons in Xenopus embryos. Moreover, CIP-associated mutants abrogate the histone-modifying potential associated with wild-type Prdm12. Prdm12 emerges as a key factor in the orchestration of sensory neurogenesis and may hold promise as a target for new pain therapeutics(9,10).

Transcriptional regulator PRDM12 is essential for human pain perception

VALENTE, ENZA MARIA;
2015-01-01

Abstract

Pain perception has evolved as a warning mechanism to alert organisms to tissue damage and dangerous environments(1,2). In humans, however, undesirable, excessive or chronic pain is a common and major societal burden for which available medical treatments are currently suboptimal(3,4). New therapeutic options have recently been derived from studies of individuals with congenital insensitivity to pain (CIP)(5,6). Here we identified 10 different homozygous mutations in PRDM12 (encoding PRDI-BF1 and RIZ homology domain-containing protein 12) in subjects with CIP from 11 families. Prdm proteins are a family of epigenetic regulators that control neural specification and neurogenesis(7,8). We determined that Prdm12 is expressed in nociceptors and their progenitors and participates in the development of sensory neurons in Xenopus embryos. Moreover, CIP-associated mutants abrogate the histone-modifying potential associated with wild-type Prdm12. Prdm12 emerges as a key factor in the orchestration of sensory neurogenesis and may hold promise as a target for new pain therapeutics(9,10).
2015
(area 06) The General & Internal Medicine category covers resources on medical specialties such as general medicine, family medicine, internal medicine, clinical physiology, pain management medicine, geriatric medicine, military medicine, and hospital medicine.
Molecular Biology & Genetics considers all aspects of basic and applied genetics, including molecular genetics, prokaryotic and eukaryotic gene expression, mechanisms of mutagenesis, structure, function and regulation of genetic material. Also included are resources concerned with clinical genetics, patterns of inheritance, genetic cause, and screening and treatment of disease. Resources dealing specifically with developmentally regulated gene expression, or with signal transduction pathways that modulate gene expression at the cellular level are excluded and are covered in the Cell and Developmental Biology category.
Esperti anonimi
Inglese
Internazionale
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7
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Erratum in Corrigendum: Transcriptional regulator PRDM12 is essential for human pain perception. [Nat Genet. 2015]
59
info:eu-repo/semantics/article
262
Chen, Ya Chun; Auer Grumbach, Michaela; Matsukawa, Shinya; Zitzelsberger, Manuela; Themistocleous, Andreas C.; Strom, Tim M.; Samara, Chrysanthi; Moor...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1180771
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