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Biomedical subjects

R A Pfeiffer

Publications and source records attributed to R A Pfeiffer.

At least 19 recordsLinked to original sources

Ocular findings in ichthyosis follicularis, atrichia, and photophobia syndrome.

Ichthyosis follicularis, atrichia, and photophobia (IFAP) are typical features of a rare neuroichthyosis termed IFAP syndrome. We demonstrate the ultrastructural findings of the eyes from a 33-year-old patient with IFAP syndrome. Clinically, eyebrows and eyelashes were absent from birth, and photophobia was noted at the age of 1 year. The globes measured 28 and 29 mm, respectively, and both eyes showed a posterior staphyloma. Histopathologically, bilateral centrally located subepithelial avascular corneal scarring with secondary corneal amyloid deposition was found. In addition to already described ocular abnormalities in IFAP syndrome we demonstrate ultrastructural anomalies of desmosomes and tonofilaments in corneal epithelium; defects of basement membrane, Bowman layer, and anchoring fibrils; secondary corneal amyloid deposition; and keratocyte degeneration. A defective tear film, recurrent atopic keratoconjunctival inflammations, or a primary anomaly of corneal epithelial adhesion are potential causes for the corneal defects. Photophobia is most likely due to corneal abnormalities.

Abnormalities, Multiple

Defective sexual development in an infant with 46, XY, der(9)t(8;9)(q23.1;p23)mat.

UNLABELLED: We report on a male infant with ambiguous genitalia (scrotal hypospadias, sinus urogenitalis) trisomic for 8q23-ter and monosomic for 9p23-ter, who shared craniofacial and other abnormalities with either phenotype. Gonadal histology was nearly normal for age. Normal endocrinological findings and exclusion of mutations in SRY, androgen receptor and alpha-reductase genes point to supplementary gene(s) located in 9p2305-ter, haplo-insufficiency (by deletion) of which is expected to cause defective male morphogenesis. CONCLUSION: This observation lends further support to the hypothesis that genetic factors are located at 9p23-ter which are involved in normal sex determination.

Abnormalities, Multiple

Ichthyosis follicularis, alopecia, and photophobia (IFAP) syndrome: clinical and neuropathological observations in a 33-year-old man.

The syndrome of ichthyosis follicularis, alopecia, and photophobia (IFAP) is an uncommon neuroichthyosis described in only 10 males so far. We report on a man with congenital ichthyosis and alopecia with apparently normal development in early infancy. Photophobia and generalized myoclonicastatic seizures began during or after the first year of age and were associated with progressive impairment of motor skills and mental abilities. He died at 33 years of age. Neuropathological findings showed an unusual deformation of the temporal lobes and olivocerebellar atrophy. Cytogenetic and molecular studies did not uncover deletions in either Xp22.2 to 3 or in Xq27.3 to qter.

Abnormalities, Multiple

Incidence and significance of 22q11.2 hemizygosity in patients with interrupted aortic arch.

Interruption of the aortic arch (IAA) is a severe malformation of the heart with known association to DiGeorge syndrome (DGS) and 22q11.2 hemizygosity. The aim of this study was to establish incidence and significance of 22q11.2 hemizygosity in an unbiased sample of patients with IAA. All 15 children with IAA who were referred to our hospital in a 3-year period were tested by chromosome and fluorescence in situ hybridization (FISH) analysis with the probes D22S75, Tuplel, and cHKAD26 and by a set of 10 simple tandem repeat polymorphic (STRP) markers. In nine of 11 children with IAA type B, 22q11.2 hemizygosity was demonstrated by FISH and STRP analysis, but in none of the four children with type A. In all but one child, deletion size was approximately 3 Mb. The girl with the smaller deletion of approximately 1.5 Mb differed because of an Ullrich-Turner syndrome-like phenotype and severe T-cell defect. Additionally, in one patient with phenotypic signs of DGS, a small deletion distal to the known DGS region containing the marker D22S308 was suspected by STRP analysis. One deletion was shown to be inherited from a healthy father and one IAA type A recurred in a sib. T-cell anomalies were evident in eight of the nine children with classical deletion, five of whom suffered also from hypoparathyroidism. With respect to cause and clinical course, IAA type A and B were shown to represent different entities. This study showed that variable symptoms of 22q11.2 hemizygosity may cluster.

Aorta, Thoracic

Monozygotic twins concordant for Cayler syndrome.

Deletions within chromosome band 22q11.2 are associated with a variety of conditions, although a simple genotype-phenotype correlation has not been established so far. Environmental factors, chance events, or a second hit theory were supported by two observations of monozygotic twins with 22q11.2 deletions and discordant phenotypes [Goodship et al., J Med Genet 1995;32:746-748; Fryer, J Med Genet 1996;33:173]. We present monozygotic twins concordant for 22q11.2 deletion and Cayler syndrome, favoring the view that there exists a predominant genetic determination of the del 22q11.2 phenotype. As these twins are diamniotic and dichorionic, they may offer a more reliable insight in genetic phenotype determination than the other published, probably monochorionic, twins who may have a discordant malformation by twinning itself.

Chromosomes, Human, Pair 22

Rapid RT-PCR-based protein truncation test in the screening for 5' located mutations of the APC gene.

Although in vitro protein synthesis is a rapid method to screen for translational stops in the adenomatous polyposis coli (APC) gene, truncating mutations at the 5' most end are at risk of being overseen due to their small size. The authors describe a reverse transcriptase-polymerase chain reaction (RT-PCR)-based protein truncation test specifically designed for detecting truncated polypeptide chains of less than 10 kDa. Using this detection system, three novel germline mutations in familial adenomatous polyposis (FAP) patients were identified, i.e. a Gly101 Ter non-sense mutation in exon 3, an exon 4 splice acceptor mutation and a 555delC deletion in exon 5. Morever, a patient manifesting congenital hypertrophy of the retinal pigmented epithelium (CHPRE) was detected with an Arg232Ter mutation in exon 6. This is, to the authors' knowledge, the fourth exception to the rule that FAP patients manifesting CHRPE harbour genetic alternations downstream from APC exon 9. Hence, an alternative hotspot for non-sense mutations associated with CHRPE appears to encompass the codons 215, 216 and 232. Patients reported in this study, exhibited relatively mild clinical symptoms with respect to the age of onset of malignancy (> 50 years of age) and the number of polyps (70-100 adenomas). However, manifestation of severe duodenal adenomatosis was independent of the attenuated colorectal FAP phenotype.

Adenomatous Polyposis Coli Protein

Juvenile open angle glaucoma: fine mapping of the TIGR gene to 1q24.3-q25.2 and mutation analysis.

Autosomal dominant juvenile open angle glaucoma (JOAG) is an early-onset form of primary open angle glaucoma (POAG), which has been linked to chromosome 1q21-q31. Recently, mutations in the trabecular meshwork inducible glucocorticoid response gene (TIGR), one of the candidate genes mapped in this region, were identified in glaucoma patients of several families. We screened for mutations of the TIGR gene in two German families with JOAG and in 100 unselected sporadic cases of POAG. In the first family we identified a Pro370Leu mutation and in the second family a Gly367Arg mutation cosegregating with the glaucoma phenotype. No pathogenic mutation was found in 100 sporadic cases but a Tyr347Tyr polymorphism was found in two patients. Furthermore, fluorescence in situ hybridization (FISH) analysis was used to map a TIGR-specific yeast artificial chromosome to 1q24.3-q25.2.

Adolescent

Identification of microdeletions spanning the Diamond-Blackfan anemia locus on 19q13 and evidence for genetic heterogeneity.

Diamond-Blackfan anemia (DBA) is a rare pure red-cell hypoplasia of unknown etiology and pathogenesis. A major DBA locus has previously been localized to chromosome 19q13.2. Samples from additional families have been collected to identify key recombinations, microdeletions, and the possibility of heterogeneity for the disorder. In total, 29 multiplex DBA families and 50 families that comprise sporadic DBA cases have been analyzed with polymorphic 19q13 markers, including a newly identified short-tandem repeat in the critical gene region. The results from DNA analysis of 29 multiplex families revealed that 26 of these were consistent with a DBA gene on 19q localized to within a 4.1-cM interval restricted by loci D19S200 and D19S178; however, in three multiplex families, the DBA candidate region on 19q13 was excluded from the segregation of marker alleles. Our results suggest genetic heterogeneity for DBA, and we show that a gene region on chromosome 19q segregates with the disease in the majority of familial cases. Among the 50 families comprising sporadic DBA cases, we identified two novel and overlapping microdeletions on chromosome 19q13. In combination, the three known microdeletions associated with DBA restrict the critical gene region to approximately 1 Mb. The results indicate that a proportion of sporadic DBA cases are caused by deletions in the 19q13 region.

Chromosome Mapping

Interstitial deletion del(3)(p12p21) in a malformed child subsequent to paternal paracentric insertion (or intraarm shift) 46,XY, ins(3)(p24.1p12.1p21.31).

We report on a malformed stillborn with deletion 3p subsequent to direct paracentric insertion (intraarm shift) in the normal father which had been first mistaken for paracentric inversion. The corrected diagnosis was supported by FISH of mapped markers on metaphase chromosomes. In addition we looked for recombinants in sperm. This observation reminds similar cases that had been considered exceptions to the expected meiotic recombination of paracentric inversions and points to a cytogenetic pitfall. Published deletions and paracentric inversions in 3p are briefly quoted.

Abnormalities, Multiple

True fetal mosaicism of an isochromosome of the long arm of a chromosome 20: the dilemma persists.

We report the prenatal findings of mos 46,XY/46,XY,i(20q) after amniocentesis. The propositus presented with two epidermal scalp scars, retrobulbar orbital cysts, and dyssegmentation of the thoracic spine. The abnormal cell line was discovered in cells cultured from the proximal umbilical cord and--by fluorescence in situ hybridization (FISH)--in interphase nuclei from buccal epithelium and urinary sediment but not from the placenta, lymphocytes, or skin fibroblasts.

Adult

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