Raine Syndrome (OMIM #259775), Caused By FAM20C Mutation, Is Congenital Sclerosing Osteomalacia With Cerebral Calcification (OMIM 259660). (14th December 2016)
- Record Type:
- Journal Article
- Title:
- Raine Syndrome (OMIM #259775), Caused By FAM20C Mutation, Is Congenital Sclerosing Osteomalacia With Cerebral Calcification (OMIM 259660). (14th December 2016)
- Main Title:
- Raine Syndrome (OMIM #259775), Caused By FAM20C Mutation, Is Congenital Sclerosing Osteomalacia With Cerebral Calcification (OMIM 259660)
- Authors:
- Whyte, Michael P
McAlister, William H
Fallon, Michael D
Pierpont, Mary Ella
Bijanki, Vinieth N
Duan, Shenghui
Otaify, Ghada A
Sly, William S
Mumm, Steven - Abstract:
- ABSTRACT: In 1985, we briefly reported infant sisters with a unique, lethal, autosomal recessive disorder designated congenital sclerosing osteomalacia with cerebral calcification. In 1986, this condition was entered into Mendelian Inheritance In Man (MIM) as osteomalacia, sclerosing, with cerebral calcification (MIM 259660). However, no attestations followed. Instead, in 1989 Raine and colleagues published an affected neonate considering unprecedented the striking clinical and radiographic features. In 1992, "Raine syndrome" entered MIM formally as osteosclerotic bone dysplasia, lethal (MIM #259775). In 2007, the etiology emerged as loss‐of‐function mutation of FAM20C that encodes family with sequence similarity 20, member C. FAM20C is highly expressed in embryonic calcified tissues and encodes a kinase (dentin matrix protein 4) for most of the secreted phosphoproteome including FGF23, osteopontin, and other regulators of skeletal mineralization. Herein, we detail the clinical, radiological, biochemical, histopathological, and FAM20C findings of our patients. Following premortem tetracycline labeling, the proposita's non‐decalcified skeletal histopathology after autopsy indicated no rickets but documented severe osteomalacia. Archival DNA revealed the sisters were compound heterozygotes for a unique missense mutation and a novel deletion in FAM20C . Individuals heterozygous for the missense mutation seemed to prematurely fuse their metopic suture and develop a metopic ridgeABSTRACT: In 1985, we briefly reported infant sisters with a unique, lethal, autosomal recessive disorder designated congenital sclerosing osteomalacia with cerebral calcification. In 1986, this condition was entered into Mendelian Inheritance In Man (MIM) as osteomalacia, sclerosing, with cerebral calcification (MIM 259660). However, no attestations followed. Instead, in 1989 Raine and colleagues published an affected neonate considering unprecedented the striking clinical and radiographic features. In 1992, "Raine syndrome" entered MIM formally as osteosclerotic bone dysplasia, lethal (MIM #259775). In 2007, the etiology emerged as loss‐of‐function mutation of FAM20C that encodes family with sequence similarity 20, member C. FAM20C is highly expressed in embryonic calcified tissues and encodes a kinase (dentin matrix protein 4) for most of the secreted phosphoproteome including FGF23, osteopontin, and other regulators of skeletal mineralization. Herein, we detail the clinical, radiological, biochemical, histopathological, and FAM20C findings of our patients. Following premortem tetracycline labeling, the proposita's non‐decalcified skeletal histopathology after autopsy indicated no rickets but documented severe osteomalacia. Archival DNA revealed the sisters were compound heterozygotes for a unique missense mutation and a novel deletion in FAM20C . Individuals heterozygous for the missense mutation seemed to prematurely fuse their metopic suture and develop a metopic ridge sometimes including trigonocephaly. Our findings clarify FAM20C 's role in hard tissue formation and mineralization, and show that Raine syndrome is congenital sclerosing osteomalacia with cerebral calcification. © 2016 American Society for Bone and Mineral Research. Abstract : In 1985, we briefly characterized "congenital sclerosing osteomalacia with cerebral calcification" (CSOCC) in infant sisters. Later, Raine syndrome (RNS) became known, with FAM20C deactivation discovered in 2007. FAM20C is a kinase for the secreted phosphoproteome, including FGF23 and SIBLINGs that regulate mineralization. We find the sisters carried two unique mutations in FAM20C . Skeletal histopathology indicated severe osteomalacia yet no rickets. Our findings clarify FAM20C's role in osteogenesis and hard tissue mineralization, and show RNS is CSOCC. … (more)
- Is Part Of:
- Journal of bone and mineral research. Volume 32:Number 4(2017:Apr.)
- Journal:
- Journal of bone and mineral research
- Issue:
- Volume 32:Number 4(2017:Apr.)
- Issue Display:
- Volume 32, Issue 4 (2017)
- Year:
- 2017
- Volume:
- 32
- Issue:
- 4
- Issue Sort Value:
- 2017-0032-0004-0000
- Page Start:
- 757
- Page End:
- 769
- Publication Date:
- 2016-12-14
- Subjects:
- CRANIOFACIAL DYSOSTOSIS -- CRANIOSYNOSTOSIS -- CROUZON SYNDROME -- DENTIN MATRIX PROTEIN -- HYPOPHOSPHATEMIA -- KINASE -- METOPIC SUTURE -- MINERALIZATION -- OSTEOMALACIA -- OSTEOPETROSIS -- OSTEOPONTIN -- OSTEOSCLEROSIS -- PHOSPHOPROTEOME -- RICKETS -- SIBLING PROTEINS -- TRIGONOCEPHALY
Bones -- Metabolism -- Periodicals
Mineral metabolism -- Periodicals
612.392 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1523-4681 ↗
http://www.jbmr-online.com ↗ - DOI:
- 10.1002/jbmr.3034 ↗
- Languages:
- English
- ISSNs:
- 0884-0431
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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