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R A Pfeiffer

Publications and source records attributed to R A Pfeiffer.

At least 37 records · Page 2Linked to original sources

Mutational analysis of the SOX9 gene in campomelic dysplasia and autosomal sex reversal: lack of genotype/phenotype correlations.

It has previously been shown that, in the heterozygous state, mutations in the SOX9 gene cause campomelic dysplasia (CD) and the often associated autosomal XY sex reversal. In 12 CD patients, 10 novel mutations and one recurrent mutation were characterized in one SOX9 allele each, and in one case, no mutation was found. Four missense mutations are all located within the high mobility group (HMG) domain. They either reduce or abolish the DNA-binding ability of the mutant SOX9 proteins. Among the five nonsense and three frameshift mutations identified, two leave the C-terminal transactivation (TA) domain encompassing residues 402-509 of SOX9 partly or almost completely intact. When tested in cell transfection experiments, the recurrent nonsense mutation Y440X, found in two patients who survived for four and more than 9 years, respectively, exhibits some residual transactivation ability. In contrast, a frameshift mutation extending the protein by 70 residues at codon 507, found in a patient who died shortly after birth, showed no transactivation. This is apparently due to instability of the mutant SOX9 protein as demonstrated by Western blotting. Amino acid substitutions and nonsense mutations are found in patients with and without XY sex reversal, indicating that sex reversal in CD is subject to variable penetrance. Finally, none of 18 female patients with XY gonadal dysgenesis (Swyer syndrome) showed an altered SOX9 banding pattern in SSCP assays, providing evidence that SOX9 mutations do not usually result in XY sex reversal without skeletal malformations.

Child↗

Brachydactyly in a child with duplication-deficiency subsequent to t(15;20)(q25.2;p12.2)mat. Candidate regions on one or both chromosomes?

We report a child with a duplication-deficiency subsequent to t(15;20)(q25.2;p12.2), transmitted in at least 5 generations, who showed features of 15q- syndrome. We speculate that brachydactyly--most likely because of brachymesophalangism--is a feature of the phenotype of this chromosomal aberration and points to candidate gene(s) in this region. A similar brachydactyly was, however, reported with dup(20p1-pter).

Abnormalities, Multiple↗

Clinical and molecular cytogenetic observations in three cases of "trisomy 12p syndrome".

Two unpublished cases with partial tandem duplication of 12p and one previously published case were studied by fluorescence in situ hybridization using 11 cosmid DNA probes from 12p. We propose that the smallest duplications of 12(p13.2pter) and 12(p13.1p13.33) produce the "trisomy 12p syndrome" which is characterized by heavy birth weight, macrocephaly, muscular hypotonia, short neck, flat face, high forehead, prominent cheeks, large philtrum, short nose with anteverted nostrils, and broad everted lower lip. From a review of the published cases we conclude that gross malformations are lacking in "pure" trisomy 12p, and mental retardation is severe in complete and moderate in partial trisomy 12p. Polydactyly and accessory nipples were found only with almost complete trisomy 12p. Abnormalities of hair growth may be related to a gene at 12p. The sub-band 12p11.21 may be critical for acrocallosal syndrome. Macrocephaly may be due to a metabolic disorder.

Abnormalities, Multiple↗

Translocation breakpoints in three patients with campomelic dysplasia and autosomal sex reversal map more than 130 kb from SOX9.

Campomelic dysplasia (CMPD1) and autosomal XY sex reversal (SRA1) are caused by mutations in the SRY-related gene SOX9 on 17q. Unexpectedly, the 17q breakpoints in four CMPD1 translocation cases previously analyzed by us and others map 50 kb or more from SOX9. Here, we present clinical, cytogenetic, and molecular data from a new CMPD1/SRA1 patient with t(6;17)(q14;q24). Fluorescence in situ hybridization has shown that the 17q breakpoint in this case maps to the same region as the breakpoints in the other translocation cases, at least 130 kb from SOX9. Likewise, the breakpoints in two of the previously described cases also map more than 130 kb and, as shown by pulsed field gel electrophoresis analysis, at most 400 kb or 690 kb from SOX9. By using a SOX9 coding sequence polymorphism, expression of both SOX9 alleles has been demonstrated by the reverse transcriptase polymerase chain reaction in lymphoblastoid cells from one of the translocation cases.

Alleles↗

Mosaicism of a microdeletion of 486 bp involving the CGG repeat of the FMR1 gene due to misalignment of GTT tandem repeats at chi-like elements flanking both breakpoints and a full mutation.

Although the majority of fragile-X patients demonstrate methylation and a much-expanded CGG repeat region in the 5'-untranslated region of exon 1 of the FMR1 gene, exceptional cases have been reported to be due to deletions. However, fine mapping of the deletion breakpoints is still lacking and so far the underlying mechanism is unknown. We identified a fragile-X patient mosaic for a full mutation and a microdeletion. The microdeletion spans 486 bp, involving 168 bp upstream from the CGG repeat region, the entire CGG repeat region, exon 1, and 138 bp of the first intron of the FMR1 gene. In contrast to previous reports, the 5' breakpoint does not fall into the hotspot region. The proximal breakpoint, 5'-GTGGTT/T-3', and the distal breakpoint, 5'-GTTGTT/GG-3', can be characterized as chi-like elements and are flanked by direct tandem repeats. Mosaicism of a full mutation and the microdeletion in the DNA of the patient's leukocytes indicates the mitotic origin of the microdeletion. Since the microdeletion allele is unmethylated, it can be concluded that it is not derived from the methylated full mutation but from an unmethylated premutational allele.

Base Composition↗

Deletion or triplication of the alpha 3 (VI) collagen gene in three patients with 2q37 chromosome aberrations and symptoms of collagen-related disorders.

Two new cases of del(2)(q37.1) and one case of partial trp(2)(q37) are studied by FISH with cosmid probes from the COL6A3 and PAX3 genes mapped in 2q37.3 and 2q36, respectively. While the PAX3 gene dosage appeared unaffected, the COL6A3 gene was found to be deleted and triplicated, respectively. This finding could explain features of connective tissue disorders such as joint laxity and hypotonia or joint stiffness and epiphyseal dysplasia, particularly documented by congenital dislocation of the radial head. Karyotype-phenotype correlations with reference to published cases are discussed.

Adolescent↗

Isochromosome 18p results from maternal meiosis II nondisjunction.

Microsatellite analysis with 13 microsatellites spread over 18p was performed to determine the origin of the marker chromosome in 9 patients with additional metacentric marker chromosomes. Phenotypes and banding patterns suggested that the markers were isochromosomes 18p. Maternal origin was determined in all 8 cases where both parents were available for study. Six cases showed 3 alleles (one paternal, one maternal each in single and double dose) of informative markers located close to the telomere while markers close to the centromere on 18p were reduced to homozygosity (one paternal allele in single dosage and one maternal allele presumably in triple dosage). A similar result was obtained in the patient with no parents available for examination. The other 2 patients were uninformative for maternal hetero- versus homozygosity, but at some loci the maternal band was clearly stronger than the paternal one whereas the opposite was never observed. Trisomy 18 differs from trisomy 21, XXX and XXY of maternal origin through a preponderance of meiosis II versus meiosis I nondisjunction. Thus, the results of our study and the advanced mean maternal age at delivery of patients with additional i(18p) indicate that in most if not all cases the marker chromosome originates from maternal meiosis II nondisjunction immediately followed by isochromosome formation in one of the 2 maternal chromosomes 18. Possible explanations of these results include a maternally imprinted gene on 18q with a lethal effect if the paternal homologue is lost and a mechanism through which nondisjunction in some cases could be connected with isochromosome formation.

Adult↗

Familial reciprocal translocation t(17;19) (q11.2;q13.2) associated with neurofibromatosis type 1, including one patient with non-Hodgkin lymphoma and an additional t(14;20) in B lymphocytes.

The cosegregation of a reciprocal translocation t(17;19) (q11.2;13.2) with neurofibromatosis type 1 in three generations suggested that the breakpoint on chromosome 17 involved the NF1 gene. In order to map the breakpoint, we analysed DNAs of patients using parts of the NF1 gene as probes. Southern analysis revealed that the chromosome 17 breakpoint lies within intron 23 of the NF1 gene. One of the patients of the family developed a non-Hodgkin lymphoma. An additional translocation t(14;20) (q32;13.1) in his B lymphocytes points to a gene on chromosome 20 that is juxtaposed to the IGH locus on 14q32, and that may be of relevance for the development of this tumor type.

Adult↗

Aplasia of the optic nerve in two cases of partial trisomy 10q24-ter.

We report two cases with partial trisomy of 10q24.1-ter with concomitant deficiency of 7pter and 4qter, which share aplasia of the optic nerve and malformation of the anterior chamber. A review of published observations of partial trisomies of 10q showed that abnormalities of the eye, and particularly of the orbital region, are frequent, but ophthalmological studies are lacking. We conclude that our findings demonstrate a major effect of this chromosomal imbalance.

Abnormalities, Multiple↗

Specific acromesomelia with facial and renal anomalies: a new syndrome.

A facio-renal-acromesomelic syndrome is reported in a 15-year-old boy with normal intelligence. The main dysmorphic features are a large head and congenital ptosis with telecanthus. There is unilateral ureteral stenosis with hydronephrosis. Bone abnormalities consist of ulnar dysplasia and tibial hypoplasia, multiple synostoses of carpal and tarsal bones, proximal synostoses of metatarsals, and of brachydactyly. A similar case has not been published.

Abnormalities, Multiple↗

Linkage of Pfeiffer syndrome to chromosome 8 centromere and evidence for genetic heterogeneity.

Pfeiffer syndrome (PS) is an autosomal dominant disorder characterized by craniosynostosis, midfacial hypoplasia, and broad thumbs and great toes. We examined 129 individuals from 11 families with PS and performed linkage studies using microsatellite markers spanning the entire genome. Strongest support for linkage was with DNA markers (D8S255, GATA8G08) from chromosome 8. Obligate crossovers exclude close linkage to this region in six families, and there was significant evidence for genetic heterogeneity. A multipoint lod score of 7.15 was obtained in five families. The 11 cM interval between D8S278 and D8S285 contains one gene for PS and also spans the centromere of chromosome 8.

Acrocephalosyndactylia↗

Single mandibular incisor in a patient with del (18p) anomaly.

A single mandibular incisor and an unusually narrow mandible and tongue were noted in an 8-year-old moderately retarded boy with 18p- (45, XY, der dic (18) (18qter-p11.2::22p 11.2-qter). While a single maxillary incisor, considered a minor feature of holoprosencephaly, was reported in three cases of 18p-, reduction of mandibular incisors has been a very rare finding and has never been noted in similar cases.

Anodontia↗

Genetic nosology and counseling of humeroradial synostosis.

From published cases of humeroradial synostoses three entities can be delineated: AD ankylosis of the elbow as a part of a systemic disorder causing multiple synostoses (symphalangism), AR humeroradial synostosis with dysgenesis of the ulna (and fibula?) but without oligodactyly as part of a syndromal disorder, non-germinal uni- or bilateral humeroradial synostosis as part of ulnar malformation and oligodactyly. Three new observations are considered examples of the latter entity.

Ectromelia↗