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Biomedical subjects

C Graff

Publications and source records attributed to C Graff.

At least 19 recordsLinked to original sources

Dilated cardiomyopathy and atrioventricular conduction blocks induced by heart-specific inactivation of mitochondrial DNA gene expression.

Mutations of mitochondrial DNA (mtDNA) cause several well-recognized human genetic syndromes with deficient oxidative phosphorylation and may also have a role in ageing and acquired diseases of old age. We report here that hallmarks of mtDNA mutation disorders can be reproduced in the mouse using a conditional mutation strategy to manipulate the expression of the gene encoding mitochondrial transcription factor A (Tfam, previously named mtTFA), which regulates transcription and replication of mtDNA. Using a loxP-flanked Tfam allele (TfamloxP) in combination with a cre-recombinase transgene under control of the muscle creatinine kinase promoter, we have disrupted Tfam in heart and muscle. Mutant animals develop a mosaic cardiac-specific progressive respiratory chain deficiency, dilated cardiomyopathy, atrioventricular heart conduction blocks and die at 2-4 weeks of age. This animal model reproduces biochemical, morphological and physiological features of the dilated cardiomyopathy of Kearns-Sayre syndrome. Furthermore, our findings provide genetic evidence that the respiratory chain is critical for normal heart function.

Animals

Failure to achieve gene conversion with chimeric circular oligonucleotides: potentially misleading PCR artifacts observed.

Recently, a novel strategy for nucleotide exchange of target DNA using chimeric RNA/DNA oligonucleotides (CO) was reported. The CO can easily be transfected into cells, remain stable within the cells, and migrate to the nucleus. We have in this study used 42 similar constructs for targeting six different human and canine loci. A variety of cationic lipids, electroporation, and microinjection were used for transfection of the CO into lymphoblastoids, Huh7, HT 1080, and Jurkat cell lines, and canine primary fibroblasts and hepatocytes. However, no nucleotide exchange was detected in any of the targeted loci. Using PCR followed by restriction enzyme analysis, nucleotide exchange in approximately 2%-10% of the PCR products was observed during the first 3 days after transfection with CO-vWF-28S2 designed for repairing a mutation in the von Willebrand gene. Surprisingly, the observed exchange reverted after culturing the cells for a longer period of time (14 days). Furthermore, a positive indication of gene conversion (5%) was also obtained using an allele-specific PCR method for analysis of the PAI-1 gene. However, cloning of the PCR products revealed no nucleotide exchange. In our view, the most likely explanation is that the initial false positive result originates from a PCR artifact created by the CO itself. Our results imply that an independent method, that is, Southern blotting, must be used to verify an observed nucleotide exchange.

Animals

Fine mapping of the gene for autosomal dominant juvenile-onset glaucoma with iridogoniodysgenesis in 6p25-tel.

Glaucoma is a group of ocular disorders leading to reduced visual capabilities and sometimes blindness. The biochemical defect is unknown but it is shown that reduced drainage of the aqueous humour from the anterior chamber may lead to increased intraocular pressure and gradual atrophy of the optic neurons. Families with various forms of autosomal dominant (AD) glaucoma have been linked to 1q21-31, 2cen-q13, 4q25-27, and 13q14 and autosomal recessive congenital glaucoma have been localized to chromosome 1p36 and 2p21. Recently, a locus for AD iridogoniodysgenesis anomaly (IGDA) was mapped to chromosome 6p25. This study refines the localization of IGDA to an approximately 6-cM interval between D6S1600 and D6S1617/D6S1713 at 6p25-tel, based on recombinations in affected individuals with AD juvenile-onset glaucoma and concomitant iridogoniodysgenesis.

Age of Onset

Refined genetic localization of the Best disease gene in 11q13 and physical mapping of linked markers on radiation hybrids.

Best's macular dystrophy, also known as vitelliform macular degeneration type 2 (VMD-2), is an autosomal dominant eye disorder that causes reduced visual acuity. It generally manifests itself in the teenage years. The gene mutated in VMD-2 patients may provide valuable insight into the biological mechanisms of the far more common disorder age-related macular degeneration. The VMD-2 gene has been localized to 11q13 between UGB and Fc epsilon RI. In order to clone the gene positionally, a large Swedish VMD-2 family dating back to the 17th century was studied for recombinations. Since the last study, another 40 microsatellite markers have been analyzed in the family; the closest centromeric flanking marker, D11S4076, revealed two recombinations and the closest telomeric flanking marker, UGB, revealed one recombination. The recombinations have occurred in affected individuals, which eliminates the potential problem of reduced penetrance. The order and physical distance between 22 markers located at proximal 11q13 were analyzed on the G3 Stanford radiation-reduced cell hybrids. The data suggest that the VMD-2 region flanked by the microsatellite markers D11S4076 and UGB is approximately 980 kb.

Centromere

Genetic mapping using fluorescent quantification of allele frequencies in pooled DNA loaded by solid support.

An efficient and labour-saving method for fragment analysis in linkage studies using biotinylated primers and streptavidin-coated combs is presented. The level of streptavidin attached to the combs was used to control the amount of immobilised material. Thus, the need for titration of PCR products to fit the dynamic range of the sequencer was reduced. The method was used to investigate the possibility of quantitating allele frequencies in pools of DNA from family members with the autosomal dominant eye disorder Best's macular dystrophy. The method allowed the detection of one unique allele in a background of 39 other alleles. Using independent datasets, it was further found that the method was able to detect distorted allele frequencies in affected individuals of one family as compared to reference individuals, for markers located more than 30 cM from the disease locus. It was found that this procedure is a powerful alternative to conventional linkage analysis and the method may prove useful in a genome scan for genes involved in complex disorders.

Alleles

Confirmation of linkage to 1q21-31 in a Danish autosomal dominant juvenile-onset glaucoma family and evidence of genetic heterogeneity.

Autosomal dominant juvenile-onset open-angle glaucoma has been mapped to 1q21-31 in a number of American families. Our study confirms linkage in a Danish five-generation dominant juvenile-onset glaucoma family with a maximum two-point lod score of 6.67 at the D1S210 locus. Multipoint linkage analysis in a nine-generation Swedish family with dominant juvenile-onset glaucoma and iris hypoplasia excludes linkage to the region of approximately 18 cM between loci D1S104 and D1S218, shown to contain the previously mapped glaucoma gene. This study thus provides support for genetic heterogeneity with respect to dominant juvenile-onset glaucoma.

Adolescent

Fine mapping of Best's macular dystrophy localizes the gene in close proximity to but distinct from the D11S480/ROM1 loci.

The Best's macular dystrophy (BMD) gene has previously been mapped to the 11q13 region. In this study, recombination data localizes the BMD gene to the 6-cM genetic interval between the markers Fc epsilon RI and D11S480/ROM1 in a large Swedish 12-generation BMD family. Mutation analyses of the candidate gene ROM1 did not reveal any mutations that could explain the disease phenotype. However, one recombination event between intragenic ROM1 polymorphisms and the BMD phenotype was detected. Therefore, it is highly unlikely that mutations in the ROM1 gene cause BMD. Identification of the disease gene will elucidate the pathophysiological mechanism in BMD, which may also be of importance in other retinopathies such as age-related macular degeneration.

Alleles

The gene for Best's macular dystrophy is located at 11q13 in a Swedish family.

A large Swedish family with more than 250 cases of Best's macular dystrophy has been clinically and genetically studied. The gene was traced to a couple born in central Sweden in the 17th century. Highly significant evidence for genetic linkage to DNA markers on chromosome 11q13 was detected. A lod score of 15.12 was obtained at recombination fraction 0.01 with DNA marker INT2 (also called FGF3). The retinally expressed gene ROM1, which maps to the same chromosomal region is a candidate for this genetic disease.

Chromosomes, Human, Pair 11

Recording electrophysiological signals from small moving animals: electrode fixation and low torque swivel for recording a weakly electric fish in a group.

A silicone rubber ring maintains an electrode on the electric organ of a mormyrid fish. The electrode is connected with a novel swivel, which allows free motion of the wire around its axis. The principle of the rotating contact is based on magnetic contact between a steel pin (moving) and a steel ball (fixed). Using this apparatus, a single fish within a group is recorded. The general electric activity of the group is recorded by means of two sets of fixed differential electrodes. These devices may be adapted for neuroethological studies of other small animals.

Animals