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result(s) for
"Opitz, John M"
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Mutations in mitochondrial histidyl tRNA synthetase HARS2 cause ovarian dysgenesis and sensorineural hearing loss of Perrault syndrome
by
Klevit, Rachel E
,
Lynch, Eric D
,
Walsh, Tom
in
Alternative Splicing - genetics
,
Amino Acid Substitution
,
Amino acids
2011
Perrault syndrome is a genetically heterogeneous recessive disorder characterized by ovarian dysgenesis and sensorineural hearing loss. In a nonconsanguineous family with five affected siblings, linkage analysis and genomic sequencing revealed the genetic basis of Perrault syndrome to be compound heterozygosity for mutations in the mitochondrial histidyl tRNA synthetase HARS2 at two highly conserved amino acids, L200V and V368L. The nucleotide substitution creating HARS2 p.L200V also created an alternate splice leading to deletion of 12 codons from the HARS2 message. Affected family members thus carried three mutant HARS2 transcripts. Aminoacylation activity of HARS2 p.V368L and HARS2 p.L200V was reduced and the deletion mutant was not stably expressed in mammalian mitochondria. In yeast, lethality of deletion of the single essential histydyl tRNA synthetase HTS1 was fully rescued by wild-type HTS1 and by HTS1 p.L198V (orthologous to HARS2 p.L200V), partially rescued by HTS1 p.V381L (orthologous to HARS2 p.V368L), and not rescued by the deletion mutant. In Caenorhabditis elegans, reduced expression by RNAi of the single essential histydyl tRNA synthetase hars-1 severely compromised fertility. Together, these data suggest that Perrault syndrome in this family was caused by reduction of HARS2 activity. These results implicate aberrations of mitochondrial translation in mammalian gonadal dysgenesis. More generally, the relationship between HARS2 and Perrault syndrome illustrates how causality may be demonstrated for extremely rare inherited mutations in essential, highly conserved genes.
Journal Article
A recurrent mutation in MED12 leading to R961W causes Opitz-Kaveggia syndrome
by
Stevenson, Roger E
,
May, Melanie
,
Rogers, R Curtis
in
Agriculture
,
Amino Acid Substitution - genetics
,
Animal Genetics and Genomics
2007
Opitz-Kaveggia syndrome (also known as FG syndrome) is an X-linked disorder characterized by mental retardation, relative macrocephaly, hypotonia and constipation. We report here that the original family for whom the condition is named and five other families have a recurrent mutation (2881C>T, leading to R961W) in
MED12
(also called
TRAP230
or
HOPA
), a gene located at Xq13 that functions as a thyroid receptor–associated protein in the Mediator complex.
Journal Article
Santos syndrome is caused by mutation in the WNT7A gene
by
Mingroni-Netto, Regina C
,
Alves, Leandro U
,
Musso, Camila M
in
Autosomal dominant inheritance
,
Autosomal recessive inheritance
,
Brachydactyly
2017
We have recently described a family with a condition (Santos syndrome (SS; MIM 613005)) characterized by fibular agenesis/hypoplasia, hypoplastic femora and grossly malformed/deformed clubfeet with severe oligodactyly, ungual hypoplasia/anonychia, sometimes associated with mild brachydactyly and occasional pre-axial polydactyly. Autosomal dominant inheritance with incomplete penetrance was suggested, but autosomal recessive inheritance could not be ruled out, due to the high frequency of consanguineous matings in the region where the family lived. This report deals with linkage studies and exome sequencing, disclosing a novel variant in WNT7A, c.934G>A (p.Gly312Ser), as the cause of this syndrome. This variant was present in homozygous state in five individuals typically affected by the SS syndrome, and in heterozygous state in the son of one affected homozygous individual. The heterozygous boy presented only unilateral complex polysyndactyly and we hypothesize that he either presents a distinct defect or that his phenotype results from a rare, mild clinical manifestation of the variant in heterozygous state. Variants in WNT7A are known to cause at least two other limb defect disorders, the syndromes of Fuhrmann and Al-Awadi/Raas-Rothschild. Despite their variable degree of expressivity and overlap, the three related conditions can be differentiated phenotypically in most instances.
Journal Article
Mutations in the pre-replication complex cause Meier-Gorlin syndrome
by
Feingold, Murray
,
Harley, Margaret E
,
Leitch, Andrea
in
631/208/135
,
631/208/2489/144
,
Agriculture
2011
Andrew Jackson, Ernie Bongers and colleagues report the identification of mutations in five genes in individuals with Meier-Gorlin syndrome. The five genes,
ORC1
,
ORC4
,
ORC6
,
CDT1
and
CDC6
, all encode components of the pre-replication complex.
Meier-Gorlin syndrome (ear, patella and short-stature syndrome) is an autosomal recessive primordial dwarfism syndrome characterized by absent or hypoplastic patellae and markedly small ears
1
,
2
,
3
. Both pre- and post-natal growth are impaired in this disorder, and although microcephaly is often evident, intellect is usually normal in this syndrome. We report here that individuals with this disorder show marked locus heterogeneity, and we identify mutations in five separate genes:
ORC1
,
ORC4
,
ORC6
,
CDT1
and
CDC6
. All of these genes encode components of the pre-replication complex, implicating defects in replication licensing as the cause of a genetic syndrome with distinct developmental abnormalities.
Journal Article
Germline mutations in DIS3L2 cause the Perlman syndrome of overgrowth and Wilms tumor susceptibility
2012
Eamonn Maher and colleagues report germline mutations in
DIS3L2
causing the Perlman syndrome of overgrowth and susceptibility to Wilms tumor.
DIS3L2
encodes a protein with exoribonuclease activity in the RNA exosome complex.
Perlman syndrome is a congenital overgrowth syndrome inherited in an autosomal recessive manner that is associated with Wilms tumor susceptibility. We mapped a previously unknown susceptibility locus to 2q37.1 and identified germline mutations in
DIS3L2
, a homolog of the
Schizosaccharomyces pombe dis3
gene, in individuals with Perlman syndrome. Yeast
dis3
mutant strains have mitotic abnormalities. Yeast Dis3 and its human homologs, DIS3 and DIS3L1, have exoribonuclease activity and bind to the core RNA exosome complex. DIS3L2 has a different intracellular localization and lacks the PIN domain found in DIS3 and DIS3L1; nevertheless, we show that DIS3L2 has exonuclease activity.
DIS3L2
inactivation was associated with mitotic abnormalities and altered expression of mitotic checkpoint proteins.
DIS3L2
overexpression suppressed the growth of human cancer cell lines, and knockdown enhanced the growth of these cells. We also detected evidence of
DIS3L2
mutations in sporadic Wilms tumor. These observations suggest that
DIS3L2
has a critical role in RNA metabolism and is essential for the regulation of cell growth and division.
Journal Article
A De Novo FOXP1 Truncating Mutation in a Patient Originally Diagnosed as C Syndrome
2018
De novo FOXP1
mutations have been associated with intellectual disability (ID), motor delay, autistic features and a wide spectrum of speech difficulties. C syndrome (Opitz C trigonocephaly syndrome) is a rare and genetically heterogeneous condition, characterized by trigonocephaly, craniofacial anomalies and ID. Several different chromosome deletions and and point mutations in distinct genes have been associated with the disease in patients originally diagnosed as Opitz C. By whole exome sequencing we identified a
de novo
splicing mutation in
FOXP1
in a patient, initially diagnosed as C syndrome, who suffers from syndromic intellectual disability with trigonocephaly. The mutation (c.1428 + 1 G > A) promotes the skipping of exon 16, a frameshift and a premature STOP codon (p.Ala450GLyfs*13), as assessed by a minigene strategy. The patient reported here shares speech difficulties, intellectual disability and autistic features with other FOXP1 syndrome patients, and thus the diagnosis for this patient should be changed. Finally, since trigonocephaly has not been previously reported in FOXP1 syndrome, it remains to be proved whether it may be associated with the FOXP1 mutation.
Journal Article
A De Novo Nonsense Mutation in MAGEL2 in a Patient Initially Diagnosed as Opitz-C: Similarities Between Schaaf-Yang and Opitz-C Syndromes
2017
Opitz trigonocephaly C syndrome (OTCS) is a rare genetic disorder characterized by craniofacial anomalies, variable intellectual and psychomotor disability, and variable cardiac defects with a high mortality rate. Different patterns of inheritance and genetic heterogeneity are known in this syndrome. Whole exome and genome sequencing of a 19-year-old girl (P7), initially diagnosed with OTCS, revealed a
de novo
nonsense mutation, p.Q638*, in the
MAGEL2
gene.
MAGEL2
is an imprinted, maternally silenced, gene located at 15q11-13, within the Prader-Willi region. Patient P7 carried the mutation in the paternal chromosome. Recently, mutations in
MAGEL2
have been described in Schaaf-Yang syndrome (SHFYNG) and in severe arthrogryposis. Patient P7 bears resemblances with SHFYNG cases but has other findings not described in this syndrome and common in OTCS. We sequenced
MAGEL2
in nine additional OTCS patients and no mutations were found. This study provides the first clear molecular genetic basis for an OTCS case, indicates that there is overlap between OTCS and SHFYNG syndromes, and confirms that OTCS is genetically heterogeneous. Genes encoding
MAGEL2
partners, either in the retrograde transport or in the ubiquitination-deubiquitination complexes, are promising candidates as OTCS disease-causing genes.
Journal Article
The power of stories in Pediatrics and Genetics
by
Opitz, John M.
,
Pavone, Lorenzo
,
Corsello, Giovanni
in
Animals
,
Books - history
,
Child Development
2016
On the occasion of the opening ceremony of the 43rd Sicilian Congress of Pediatrics, linked with Italian Society of Pediatrics SIP, SIN, SIMEUP, SIAIP and SINP, held in Catania in November 2015, the Organizing Committee dedicated a tribute to Professor John Opitz and invited him to give a Masters Lecture for the attendees at the Congress. The theme expounded was “Storytelling in Pediatrics and Genetics: Lessons from Aesop and from Mendel”. The contribution of John Opitz to the understanding of pediatric clinical disorders and genetic anomalies has been extremely relevant. The interests of Professor John Opitz are linked not only to genetic disorders but also extend to historical medicine, history of the literature and to human evolution. Due to his exceptional talent, combined with his specific interest and basal knowledge in the genetic and pediatric fields, he is widely credited to be one of the best pediatricians in the world.
Journal Article
Hamartoma Syndromes, Exome Sequencing, and a Protean Puzzle
2011
Gross malformations have been well known for centuries, even millennia. However, it was not until 1904 that Albrecht coined the concept of hamartoma. In 1934, the concept entered the field of developmental pathology generally in reference to tissue malformations. Hamartomata are localized overgrowths of a single tissue or combination of tissues, indigenous to the affected body part or organ, usually growing at the same rate as the normal components and causing little pain or functional impairment. They are a key finding in the Proteus syndrome, the cause of which has now been identified by Lindhurst et al.
1
in this issue . . .
Journal Article
Lethal Osteogenesis Imperfecta–Like Condition with Cutis Laxa and Arterial Tortuosity in MZ Twins Due to a Homozygous Fibulin-4 Mutation
by
Zhou, Holly
,
Opitz, John M.
,
Erickson, Lance K.
in
Abnormalities, Multiple - genetics
,
Adult
,
Arteries - abnormalities
2012
This case report involved male infants of a size consistent with the estimated gestational age of 31 weeks. The mother of the twins was a 27-year-old, G4P3 woman with limited prenatal care who presented for cesarean delivery. Resuscitation efforts were initiated and continued until the infants became asystolic. Postmortem radiographs showed innumerable fractures of the limbs, ribs, and skull in various states of healing with callus formation; hence, the fractures were of prenatal origin. Despite the fractures, the growth of the long bones was not impaired. The radiographic findings were initially thought to represent osteogenesis imperfecta type IIC. However, there were also vascular anomalies not explained by this phenotype. Grossly, all arteries were elongated, thickened, and tortuous. The carotids, descending aorta, and iliac arteries were redundant to such an extent that they produced corkscrew patterns. There was also cutis laxa with loose, redundant skin over the entire body. Collagen genes did not show any mutations; however, when it was suggested Fibulin-4 be studied because of overlap with the condition described by Dasouki and colleagues in 2007, a homozygous premature stop codon mutation was found in that gene.
Journal Article