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Biomedical subjects

G N Wilson

Publications and source records attributed to G N Wilson.

At least 19 recordsLinked to original sources

Differential evolution and expression of murine peroxisomal membrane protein genes.

Gene segments encoding the 70 and 22-kDa peroxisomal membrane proteins (PMP) have been characterized in mice and compared with other peroxisomal proteins in terms of evolution and expression. The mouse PMP22 gene sequence predicts A16G and I136V substitutions that agree with those defined by cyanogen bromide cleavage analysis, providing additional evidence that this gene encodes the major 22-kDa membrane protein visualized by SDS-polyacrylamide electrophoresis. Mammalian PMP22 genes exhibit high evolutionary rates (0.17% amino acid substitution per million years) than PMP35 (0.14%), PMP70 (0.07%), or catalase genes (0.13%). PMP70 gene regions are conserved throughout vertebrate phylas based on Southern analysis, while PMP22 sequences were only detected in rodents. Amino acid substitutions are clustered in both PMP22 and PMP70 genes, and their pattern supports membrane topologies derived from hydropathy profiles. Northern blot analysis identifies single mRNAs of 4.6 kb (PMP70), 1.4 kb (PMP22), and 2.3 kb (catalase) in several rodent tissues. Quantitative or competitive RT-PCR assays detected two- to three-fold greater numbers of catalase mRNA molecules relative to PMP mRNA molecules in brain, liver, and kidney; PMP22 and PMP35 mRNAs were two-fold more abundant than PMP70 mRNA in these tissues. Steady-state levels of PMP22 mRNA were highest in rodent liver kidney, spinal cord, and duodenum with low levels in colon, adrenal, thymus, and spleen. We conclude that PMP genes exhibit independent evolutionary rates and tissue regulation, suggesting that they have unique roles in peroxisome biogenesis and tissue differentiation.

ATP-Binding Cassette Transporters

Genomics of human dysmorphogenesis.

A survey of Mendelian Inheritance in Man emphasizes the large Mendelian contribution to human dysmorphogenesis and contrasts single gene conditions with chromosomal disorders. There were 1761 conditions that involved altered morphogenesis (49% of disease entries), including 1040 multiple defect syndromes and 721 inherited single birth defects. Premature death (36-57%), mental retardation (20-59%), and growth retardation (37-59%) are more frequent in autosomal recessive or X-linked syndromes, while predisposition to tumorigenesis was more common in dominant (16%) than recessive (3.4%) syndromes. Comparison of the Mendelian conditions with 100 chromosomal disorders showed a strikingly similar spectrum of malformation, with skeletal, craniofacial, eye, epidermal, and neuromuscular systems being most frequently affected. Chromosomal syndromes average 10.6 systems affected per disorder, in contrast to 3.55 for Mendelian syndromes, and pleiotropy does correlate weakly with aneuploid segment length. Genomic understanding of these relationships is still primitive, with 74 of 1609 (4.6%) autosomal conditions and 43 of 152 (29%) X-linked conditions mapped to specific chromosomal regions. The societal toll of human dysmorphogenesis and the evident progress with X-linked disorders provide a powerful rationale for the Human Genome Project.

Chromosome Aberrations

Dietary ether lipid incorporation into tissue plasmalogens of humans and rodents.

Chronic feeding of 1-O-octadecyl-sn-glycerol (batyl alcohol) to patients suffering from congenital deficiency in tissue ether glycerolipids showed an increase in the plasmalogens content of their erythrocytes. However, nothing is known about the ether lipid content of other tissues in these patients. Feeding 1-O-heptadecyl-sn-glycerol to young rats showed that this uncommon ether lipid was incorporated to a high extent into the plasmalogens of all tissues except brain. Comparative studies with other precursors, such as 3-O-heptadecyl-sn-glycerol, heptadecanol and heptadecanoic acid, indicated a stereospecific incorporation of the dietary 1-O-alkyl-sn-glycerols into tissue plasmalogens without cleavage of the ether bond. Dietary ether lipids were also shown to be transferred from mothers to suckling rats, but not from pregnant rats to fetuses. The implication of these results to possible dietary ether lipid therapy for patients suffering from peroxisomal disorders is discussed.

Acyltransferases

Mutational risks in females: genomic imprinting and maternal molecules.

Genetic mechanisms for selective mutagenesis in female mammals might include alterations of genomic imprinting, maternally derived molecules, mitochondrial DNA or sex chromosome loci. None of these mechanisms provides an obvious explanation for the higher mutational rates observed for certain mutagens in mouse female pronuclei, but the association of DNA methylation with maternal genomic imprinting is an enticing avenue for research. Further characterization of the extent and homology of genomic imprinting among mammals is required before its relevance to mutagenesis can be determined. The existence of maternal effect mutations in mammals merits evaluation but is not yet proven. The relevance of mitochondrial DNA to female-specific mutagenesis will be greatest in multi-generational studies.

Animals

Non-specific X linked mental retardation with aphasia exhibiting genetic linkage to chromosomal region Xp11.

A new type of non-specific X linked mental retardation is described in a three generation family. The three affected males had severe mental retardation (IQ 20 to 30), mutism, growth failure, frequent infections, seizures, and the following minor anomalies: brachycephaly, frontal hair whorl, square face, large mouth, thick lips, and prognathism. There was not a characteristic facies. Normal laboratory studies on the proband included a karyotype with fragile X screening, skeletal survey, blood amino acid, urine organic acid, and HGPRT levels. Linkage analysis was performed with 10 X chromosome DNA probes of which probe DXS255 at chromosomal region Xp11.22 gave a maximal two point lod score of 2.10 if phase was inferred and 1.20 if it was not. Crossovers were shown with probes mapping to regions Xp22, Xp21, and Xq28. Comparison of these patients with 80 X linked causes of mental retardation, including 41 which might be classified as 'non-specific', showed no other disorders compatible with the phenotypic and linkage data.

Abnormalities, Multiple

Human congenital anomalies: application of new genetic tools and concepts.

The discovery of nontraditional inheritance and of developmental gene families common to all metazoans has revolutionized research on human congenital anomalies. The most gratifying results of these new concepts are summarized in Table 5: several human syndromes have already been related to their causative genes. Classic embryonic mechanisms (ie, gastrulation, segmentation, adhesion) also have been correlated with specific molecules. Perhaps most optimistic are the facts that many of the relevant molecules can be viewed as growth factors and that many anomalies are examples of extended or arrested development known as heterochrony. The implication is that genetic screening and preconceptional diagnosis will allow treatment of congenital malformations by supplementation/suppression of the maternofetal unit. This future specialty of "gestational endocrinology" is already being used for embryonic therapy of 21-hydroxylase deficiency.

Alleles

Keratitis, hepatitis, ichthyosis, and deafness: report and review of KID syndrome.

A 14-year-old girl with ichthyosis and severe liver disease is compared to 35 reported cases of KID or Senter syndrome. Common manifestations such as ichthyosis (35/35 patients), sensorineural deafness (33/34), "ectodermal dysplasia" (25/28), corneal abnormality (26/31) were present in the proposita, while less common manifestations such as chronic infections (15/20) and neuromuscular disease (12/35) were absent. Two families with vertical transmission and 28 sporadic cases are compatible with an autosomal dominant form of KID syndrome, while one inbred sibship with liver disease suggests the existence of an autosomal recessive form. The proposita was similar to the latter patients in having progressive cirrhosis necessitating liver transplantation; she also had short stature (10/35 patients) and mental retardation (3/35). Hepatic findings included micronodular cirrhosis, cholestasis, hyperplastic Kupffer cells, abundant Mallory's hyaline, copper accumulation without steatosis, and normal peroxisomes.

Adolescent

Balanced translocation 12/13 and situs abnormalities: homology of early pattern formation in man and lower organisms?

Studies in "lower" organisms have identified a set of homologous sequences expressed in oocytes and early embryos that is critical for pattern formation. Mutations in such genes may exhibit maternal effect--they cause abnormalities in the fetus only when present in the mother. We report on a mother and child with identical, apparently balanced translocations having the breakpoints 12q13.1 and 13p13. The fetus had multiple anomalies including bilateral trilobar lungs, complex heart defect, malrotation of the gut, and asplenia, while the mother was entirely normal. Several hypotheses are advanced to explain this variable expression including transection of a gene with maternal effect--lateral asymmetry in the fetus is influenced by the maternal genotype. This explanation would account for the higher transmission of congenital heart disease to offspring by affected females noted in several studies. The human counterparts of 2 loci (int-1 and HOX 3) involved in Drosophila early pattern formation are located near the translocation breakpoint 12q13.1. If one of these genes is responsible for situs abnormality, then university of positional code (but not of embryologic mechanism) is suggested for higher metazoans.

Abnormalities, Multiple

Structure and variability of mammalian peroxisomal membrane proteins.

Peroxisomal membrane proteins (PMPs) from the Swiss-Webster mouse are analyzed and compared to those of rats and humans using sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and immunoblotting. A purification procedure for fresh mouse, rat, or human biopsy liver which enriches peroxisomal/mitochondrial marker enzyme ratios over 100-fold is characterized. When analyzed by SDS-PAGE, membranes of purified liver peroxisomes are shown to contain the same complement of 145-, 70-, 55-, 36-, and 22-kDa PMPs in rats, mice, and humans. A rabbit polyclonal antibody raised against mouse peroxisomal membranes demonstrates immunoreactivity to 145- and 70-kDa proteins in fresh liver homogenates from all three species and in control or Zellweger syndrome fibroblasts from humans. Human autopsy or placental tissues which were refrigerated before analysis exhibited 105-, 55-, and 36-kDa peptides which may be derived from the 145- and 70-kDa peptides. Such conversions, if related to degradation, may explain difficulties in purifying peroxisomes from human autopsy specimens. Variable amounts of the 55-kDa peptide also occurred in mouse adrenal and lung, and the conversion of higher to lower molecular weight PMPs could not be demonstrated by in vitro incubation of mouse liver. Further definition of the structure and variability of mammalian PMPs should be helpful in understanding polyenzymopathies such as Zellweger syndrome.

Animals

Structure-function relationships in the peroxisome: implications for human disease.

Progress relevant to human peroxisomal disorders over the past 3 years includes improved biochemical delineation of disease phenotypes and new insights into peroxisomal structure and biogenesis. Immunoblotting studies using antibodies to peroxisomal beta-oxidation enzymes have defined mutations affecting each step of the pathway, some with clinical phenotypes as severe as disorders with global peroxisome deficiency. The latter disorders, typified by Zellweger syndrome, often lack matrix proteins but retain major membrane species of 150, 70, 35, and 22 kDa in empty peroxisomal "ghost" structures. The hypothesis that peroxisomal deficiency disorders result from altered targeting or import of peroxisomal matrix proteins has been strengthened by the demonstration of a carboxy terminal peroxisome-targeting signal which is distinct from amino terminal signals directing proteins to mitochondria. A mutation which mistargets alanine/glyoxylate aminotransferase from peroxisomes to mitochondria in primary hyperoxaluria provides a graphic example of these signals. The structural significance of membrane function is supported by the primacy of membrane assembly in normal ontogeny or regenerating liver. The coordinate control, targeting, and striking inducibility of peroxisomal proteins suggests a potential vehicle for gene and enzyme therapy.

Amino Acid Sequence

Maternal clofibrate administration amplifies fetal peroxisomes.

To study the effects of peroxisome proliferators on fetal biogenesis, 400 mg/kg oral clofibrate was administered to pregnant mice beginning at d 6 of gestation. Maternal/fetal tissues from three separate experiments were harvested between gestational d 13 and 19 and maternal/fetal tissues were assayed for peroxisomal matrix, membrane-associated, and integral membrane proteins. By comparison to control pregnancies that received vehicle only, clofibrate produced a 4- to 5-fold increase in the levels of peroxisomal membrane protein 70, a 1.5- to 2-fold increase of dihydroxyacetone phosphate acyltransferase (DHAP-AT) sp act, and a 1.2- to 1.8-fold increase of catalase sp act in fetal liver of 19 d gestation. Fetal liver endoplasmic reticulum and peroxisomes were also amplified as visualized by electron microscopy. Clofibrate exhibited maximal effects on maternal tissues by 6 d of oral treatment with increases in peroxisomal membrane protein 70 occurring most clearly in maternal liver; DHAP-AT activity was increased in maternal liver, kidney, and brain but not in lung. Slight increases in DHAP-AT activities were evident in fetal brain, lung, and placenta as compared with the greater increases in liver and kidney. There was a general increase in peroxisomal proteins between 13 and 19 gestational d in all fetal tissues except placenta, and the effect of clofibrate was evident by gestational d 13 in lung and placenta. Minimal changes in the activities of acid phosphatase (lysosomal enzyme) or glycerol-3-phosphate acyltransferase (microsomal enzyme) were observed in maternal or fetal tissues although the latter enzyme was increased 10-30% by clofibrate in maternal brain, fetal lung, and placenta.(ABSTRACT TRUNCATED AT 250 WORDS)

ATP-Binding Cassette Transporters

Karyotype/phenotype controversy: genetic and molecular implications of alternative hypotheses.

Alternative explanations for aneuploid phenotypes are evaluated according to clinical and experimental predictions. The additive hypothesis views the diverse manifestations of aneuploidy as the simple sum of individual gene dosage effects. The interactive hypothesis views aneuploid characteristics as network properties of genes within and outside the aneuploid segment. The importance and historical context of this debate are emphasized, and the 2 hypotheses are contrasted in terms of their experimental predictions and explanatory power. In particular, the concepts of colinearity and continuity derived from single gene action are explicitly examined in human aneuploidy with the conclusion they are likely to be false assumptions.

Aneuploidy

Partial trisomy 18 with minimal anomalies: lack of correspondence between phenotypic manifestations and triplicated loci along chromosome 18.

A 2-year-old boy with microcephaly, developmental delay, and minimal anomalies was found to have an extra submetacentric chromosome equivalent to 18pter----q12. Review of the phenotypes produced by various triplicated 18 regions supports the hypothesis that no one chromosome 18 region is sufficient to produce the phenotype of trisomy 18. The mild phenotype of trisomy 18p, the variable phenotype of trisomy 18pter----q12, and the discontinuous phenotype of triplication for band 18q12 alone emphasizes that the contribution of triplicated loci to the phenotype is neither additive nor invariant.

Child, Preschool

Malformations and minor anomalies in children whose mothers had prenatal diagnosis: comparison between CVS and amniocentesis.

The frequency of abortion following chorionic villus sampling (CVS) is similar to that following amniocentesis. However, there is no information on long-term effects, such as malformations in liveborn children exposed to CVS. We evaluated 189 infants whose mothers had either CVS or amniocentesis as participants in the Canadian Collaborative Randomized Trial, a prospective assessment of the safety of CVS compared with amniocentesis. The participation rate of children who could be contacted was 95%. Ninety-five of the 189 infants (50.2%) had been exposed to CVS, 87 (46%) to amniocentesis, and 7 (3.8%) to both. (The latter group was excluded from calculations.) One hundred twenty-eight (128) children had greater than or equal to one minor anomalies but no major abnormalities: 58 of 95 (60%) in the CVS and 70 of 87 (80%) in the amniocentesis group. Twenty-six children had malformations: 17 (17.8%) in the CVS and 9 (10.3%) in the amniocentesis group. Only one anomaly, Sturge-Weber dysplasia (amniocentesis group), was potentially severe and none were life-threatening. Superficial cavernous hemangiomas (strawberry nevi) were noted more frequently in children in the CVS group (12.6%) than in the amniocentesis group (3.4%), but only slightly higher than in the general public. We conclude that exposure to CVS is not associated with an increased frequency of malformations or minor anomalies in infants compared with amniocentesis although we observed a higher frequency of superficial cavernous (strawberry) hemangiomas in the children in the CVS group.

Amniocentesis

Euchromatic 16p+ heteromorphism: first report in North America.

A heteromorphism of the short arm of 16 (16p+) was discovered in 2 unrelated infants. By G banding, the euchromatic variant appears as a light and a medium dark band just distal to the centromere. This results in an increase of the short arm by about 1/3. The same variant was present in the normal father and the normal paternal grandmother in one family and mildly retarded mother in the 2nd family. The anomalies of the 2 infants are not similar and are apparently unrelated to the 16p+ variant. Though the discovery of such euchromatic variants is highly significant for clinical diagnosis, their genetic significance and mode of origin remain to be elucidated.

Abnormalities, Multiple

Intracranial angioblastic meningioma and an aged appearance in a woman with Rubinstein-Taybi syndrome.

Here we report on a 39-year-old woman with severe mental retardation, short stature, unusual face with prominent nose, broad thumbs, and broad first toes diagnostic of the Rubinstein-Taybi syndrome. Following admission because of headache and anorexia, a bifrontal lobe neoplasm was excised and diagnosed as an angioblastic meningioma. The unusual tumor and aged appearance of the patient add 2 facets to the natural history of Rubinstein-Taybi syndrome.

Abnormalities, Multiple