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Biomedical subjects

C C Ewing

Publications and source records attributed to C C Ewing.

11 recordsLinked to original sources

The natural history of X-linked retinoschisis.

OBJECTIVE: To evaluate long-term changes in visual acuity, clinical features and complications in X-linked retinoschisis, and to analyse recombinant chromosomes in affected males, carrier females and unaffected males to further refine the retinoschisis gene locus. DESIGN: Longitudinal study. SETTING: Ophthalmology department at a university-affiliated hospital in Saskatoon. PATIENTS: A total of 92 male patients from 6 pedigrees affected with X-linked retinoschisis examined between 1962 and 1994. Of the 92, 73 were followed for a mean of 19.78 (standard deviation 8.74) years (range 1.5 to 31 years). Blood samples were taken from 91 affected males, 100 unaffected males and 86 carrier females for DNA analysis. OUTCOME MEASURES: Significant visual loss was defined as a doubling or more in the visual angle. Clinical comparisons of fundus features were aided by stereoscopic fundus photographs. RESULTS: The mean geometric visual acuity was 20/67 on initial examination and 20/78 on last assessment. Significant loss in visual acuity occurred in 18 (21.2%) of 85 eyes of 43 patients during childhood or adolescence and in 20 (17.1%) of 117 eyes of 59 patients in the postadolescent period. All 183 eyes had changes at the macula. Peripheral schisis was detected in 106 eyes (57.9%), with a mean of 1.48 (standard deviation 1.03) involved quadrants. Asymmetric disease was detected in 19 patients (20.6%). Vitreal hemorrhages occurred in 24 eyes (13.1%), retinal detachments in 10 (5.5%). Thirteen eyes (7.1%) of eight patients had a very poor visual outcome (light perception or no light perception). A new gene, XLRSI, was identified by means of positional cloning. XLRSI is mutated in affected people. CONCLUSIONS: In uncomplicated cases of X-linked retinoschisis the visual prognosis is good. There is wide variation in clinical features among those affected and in the disease over time.

Adolescent↗

Positional cloning of the gene associated with X-linked juvenile retinoschisis.

X-linked juvenile retinoschisis(RS) is a recessively inherited vitreo-retinal degeneration characterized by macular pathology and intraretinal splitting of the retina. The RS gene has been localized to Xp22.2 to an approximately 1 Mb interval between DXS418 and DXS999/DXS7161. Mapping and expression analysis of expressed sequence tags have identified a novel transcript, designated XLRS1, within the centromeric RS locus that is exclusively expressed in retina. The predicted XLRS1 protein contains a highly conserved motif implicated in cell-cell interaction and thus may be active in cell adhesion processes during retinal development. Mutational analyses of XLRS1 in affected individuals from nine unrelated RS families revealed one nonsense, one frameshift, one splice acceptor and six missense mutations segregating with the disease phenotype in the respective families. These data provide strong evidence that the XLRS1 gene, when mutated, causes RS.

Amino Acid Sequence↗

X-linked juvenile retinoschisis (RS) maps between DXS987 and DXS443.

X-linked juvenile retinoschisis (RS) has previously been localized to a 7-8 cM interval between markers at (DXS43, DXS207) and (DXS274, DXS41). Our analysis of more than 300 meioses in two multigeneration RS families identified eight recombinant RS chromosomes and narrowed the RS locus to an interval between DXS987 and DXS443. Our data suggest the following order of loci: Xpter-DXS207-DXS987-([DXS418-DXS999], RS)-DXS443-DXS365-DXS274-Xcen.

Base Sequence↗

Sorsby's fundus dystrophy is genetically linked to chromosome 22q13-qter.

Sorsby's fundus dystrophy (SFD) is an autosomal dominant macular degeneration developing in the third or fourth decade. Patients lose central vision from subretinal neovascularization and atrophy of the choriocapillaris, pigment epithelium and retina. SFD shares some striking clinical features with age-related macular degeneration (AMD), the most common cause of blindness in western countries thereby providing a valuable genetic model for AMD. To map the SFD locus, we performed linkage analysis in a single large SFD family. After exclusion of approximately 65% of the autosomal genome, we found significant linkage to several markers from chromosome 22. Recombinant chromosomes sublocalize the SFD gene to 22q13-qter between D22S275 and D22S274.

Chromosomes, Human, Pair 22↗

Sorsby's fundus dystrophy.

Ever since Sorsby described his pseudoinflammatory dystrophy in five families, its characteristics have been unclear. The findings in ten affected members of a seven-generation pedigree are discussed and the literature is reviewed. Patients with this dominantly inherited fundus dystrophy lose central vision between the second and fourth decade of life. Three variations in the fundus appearances were distinguished: in the first and most common, white to yellow fundus spots (which are not drusen) accompany a disciform macular degeneration; in the second, the fundus spots are absent; in the third, the yellow deposits are associated with atrophic macular degeneration. Atrophy of the retina, pigment epithelium, and choroid then slowly progresses toward the periphery. Treatment does not halt the progress of the disease. Although variations in this dystrophy may be examples of genetic heterogeneity, Sorbsy's fundus dystrophy is a distinct clinical disorder.

Adult↗

Congenital hereditary (juvenile X-linked) retinoschisis. Histopathologic and ultrastructural findings in three eyes.

One surgically enucleated and two postmortem eyes were obtained from two related men with congenital hereditary retinoschisis. A periodic acid-Schiff-positive amorphous material was identified within the retina adjacent to the schisis cavities. Ultrastructural examination of this material showed numerous extracellular filaments, measuring approximately 11 nm in diameter. Similar filaments were found in the vitreous in all three globes and in a normal globe. We believe that the intraretinal filaments are produced by defective Müller cells and that their extracellular accumulation may lead to degeneration of cells and subsequent schisis formation.

Adolescent↗