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Insertion of a novel transposable element in the tyrosinase gene is responsible for an albino mutation in the medaka fish, Oryzias latipes.

In the medaka fish (Oryzias latipes) many mutants for body color have been isolated. A typical example is the recessive oculocutaneous albino mutant i, which has amelanotic skin and red-colored eyes with no tyrosinase activity. To cast light on the molecular basis of the albino mechanism, we performed Southern blot analysis of genomic DNA from the mutant with an authentic tyrosinase gene probe; the results demonstrate that an extra 1.9 kb fragment is present inside the first exon. The insertion is responsible for the oculocutaneous albinism. About 80 copies of this fragment are present in the genomes of albino-i and wild-type fish; these repeated sequences are here designated Tol1 elements and the particular element found in the tyrosinase gene of albino-i is denoted Tol1-tyr. The nucleotide sequence of Tol1-tyr shows that the fragment (i) carries terminal inverted repeats of 14 bp, and (ii) is flanked by duplicated 8 bp segments of the host chromosome. These are properties of DNA-mediated transposable elements. Comparison of the nucleotide sequence of Tol1-tyr with other sequences in DNA databases, with special attention to sequences of transposable elements known to date, did not reveal any similarity. Thus, Tol1 constitutes a hitherto unknown family of DNA transposable elements.

Albinism↗

Evaluation of the effect of thymoxamine solution 0.5% on mydriasis induced by ibopamine solution 1%.

The effects of thymoxamine 0.5% solution and of a placebo solution (mannitol) on the mydriasis induced by ibopamine 1% solution were evaluated in 8 healthy volunteers and 12 patients with eye diseases. One drop of ibopamine was instilled into each eye and 30 min later 1 drop of thymoxamine was instilled into one eye and 1 drop of placebo into the contralateral eye. Pupillary diameter was measured before and 30 min after the instillation of ibopamine, immediately before the treatment with thymoxamine and placebo and 30, 60 and 90 min after the instillation of thymoxamine or of placebo. Within 30 min of treatment, ibopamine had produced a statistically and clinically significant mydriatic effect. In eyes treated with thymoxamine, prompt reversal of mydriasis was observed, the baseline diameter being observed within 60 min. No difference in the time-course of the mydriatic effect was detected between healthy subjects and patients. The pupillary response to thymoxamine was not influenced by the colour of the iris. The tolerability of ibopamine and of thymoxamine was good. No local or systemic adverse events were seen or reported.

Adult↗

DNA representation of variegating heterochromatic P-element inserts in diploid and polytene tissues of Drosophila melanogaster.

Position-effect variegation (PEV) is the mosaic expression of a euchromatic gene brought into juxtaposition with heterochromatin. Fourteen different transformed Drosophila melanogaster lines with variegating P-element inserts were used to examine the DNA levels of these transgenes. Insert sites include pericentric, telomeric and fourth chromosome regions. Southern blot analyses showed that the heterochromatic hsp26 transgenes are underrepresented 1.3- to 33-fold in polytene tissue relative to the endogenous euchromatic hsp26 gene. In contrast, the heterochromatic hsp26 transgenes are present in approximately the same copy number as the endogenous euchromatic hsp26 gene in diploid tissue. It appears unlikely that DNA loss could account for the lack of gene expression in diploid tissues seen with these examples of PEV.

ATP-Binding Cassette Transporters↗

Genetic and functional analysis of tryptophan transport in Malpighian tubules of Drosophila.

Dissected Malpighian tubules from wild type and the eye color mutant white of Drosophila were compared with respect to their abilities to transport tryptophan and kynurenine into tubule cells. It was determined that mutation at white greatly impairs the ability of Malpighian tubule cells to take up tryptophan. Functional studies on the extracellular spaces and ultrastructural observations indicated no differences in these respects between wild type and white tubules. It is consistent with several observations that much of the tryptophan associated with white exists in the intercellular spaces. Furthermore, the uptake of tryptophan by the w+ system of wild type tubules is inhibited by the analogue 5-methyl-tryptophan. However, the incorporation of radioactive tryptophan into protein in tubule cells from wild type and white occurs at the same rates and is not affected by 5-methyl-tryptophan. Therefore, it is apparent that Malpighian tubules have a transport system that enables entry of tryptophan into a cellular pool and that this cellular pool is initially independent of the tryptophan pool used for protein synthesis. The mutant white lacks this transport system. From these studies and others it appears that compartmentalization of cellular pools may be brought about via the utilization of specific membrane transport systems.

Animals↗

Nutritional control of xanthine dehydrogenase. II. Effects on xanthine dehydrogenase and aldehyde oxidase of culturing wild-type and mutant Drosophila on different levels of molybdenum.

Two new mutants, deficient in aldehyde oxidase and xanthine dehydrogenase, have been isolated from a wild-type stock of Drosophila melanogaster and have been provisionally termed lxd-c and lxd-d, respectively, as both mutants appear to be allelic with lxd (low xanthine dehydrogenase). An analysis has been made of the effects of dietary molybdenum on lxd, lxd-c, lxd-d, lao (low aldehyde oxidase), mal (maroon-like eye color), and pac (Pacific) wild-type flies. On the lower dietary levels of 10(-3) M and 10(-2) M molybdenum, increases in specific activity of both enzymes were observed only in lxd. Furthermore, two- to three-fold increases in specific activity of both enzymes occurred in all strains, except mal, when cultured on 5 x 10(-2) M molybdenum. The lxd and lxd-c strains failed to survive on this high concentration of the ion. Similar concentrations of molybdenum had no effect in vitro. An extra electrophoretic band of xanthine dehydrogenase was observed on polyacrylamide gel from extracts of wild-type flies cultured on certain levels of molybdenum, but its appearance was not always correlated with the increases in specific activity.

Aldehyde Oxidoreductases↗

Purification and properties of the enzymes from Drosophila melanogaster that catalyze the synthesis of sepiapterin from dihydroneopterin triphosphate.

Sepiapterin synthase, the enzyme system responsible for the synthesis of sepiapterin from dihydroneopterin triphosphate, has been partially purified from extracts of the heads of young adult fruit flies (Drosophila melanogaster). The sepiapterin synthase system consists of two components, termed "enzyme A" (MW 82,000) and "enzyme B" (MW 36,000). Some of the properties of the enzyme system are as follows: NADPH and a divalent cation, supplied most effectively as MgCl2, are required for activity; optimal activity occurs are pH 7.4 and 30 C; the Km for dihydroneopterin triphosphate is 10 microM; and a number of unconjugated pterins, including biopterin and sepiapterin, are inhibitory. Dihydroneopterin cannot be used as substrate in place of dihydroneopterin triphosphate. Evidence is presented in support of a proposed reaction mechanism for the enzymatic conversion of dihydroneopterin triphosphate to sepiapterin in which enzyme A catalyzes the production of a labile intermediate by nonhydrolytic elimination of the phosphates of dihydroneopterin triphosphate, and enzyme B catalyzes the conversion of this intermediate, in the presence of NADPH, to sepiapterin. An analysis of the activity of sepiapterin synthase during development in Drosophila revealed the presence of a small amount of activity in eggs and young larvae and a much larger amount in late pupae and young adults. Sepiapterin synthase activity during development corresponds with the appearance of sepiapterin in the flies. Of a variety of eye color mutants of Drosophila melanogaster tested for sepiapterin synthase activity, only purple (pr) flies contained activity that was significantly lower than that found in the wild-type flies (22% of the wild-type activity). Further studies indicated that the amount of enzyme A activity is low in purple flies, whereas the amount of enzyme B activity is equal to that present in wild-type flies.

Alcohol Oxidoreductases↗

Three purine auxotrophic loci on the second chromosome of Drosophila melanogaster.

Mutations at three second-chromosomal loci of Drosophila melanogaster have been isolated, mapped, and shown to be purine nucleoside auxotrophs. Two of the loci, adenosine2 and adenosine3, located at map positions 18.4 and 20, respectively, produce mutations which are supplementable with adenine, adenosine, and inosine. Guanosine supplements mutations at the burgundy locus (55.7); this locus was described previously through a pteridine eye-color defect but identified as an auxotrophic locus after the isolation of a new allele, burgua2-1. The mutation ade2-1 also has defective pteridine metabolism.

Adenosine↗

Regulation of pteridine biosynthesis and aromatic amino acid hydroxylation in Drosophila melanogaster.

The relationship between high dietary levels of aromatic amino acid and regulation of pteridines in Drosophila eyes was examined by measuring changes in pool levels of six pterins in the wild type and mutants and amino acid pool levels in flies that carry mutations for pteridine biosynthesis. The effect upon relative viability and developmental times was also analyzed; relative viability was affected by L-phenylalanine, L-tryptophan, and L-tyrosine in decreasing order and the D-amino acids had little or no effect. The changes in concentration of biopterin, dihydrobiopterin, pterin, sepiapterin, drosopterins, and isoxanthopterin showed a characteristic pattern of increased and/or decreased amounts in response to each of the three L-amino acids. Pterin was regularly increased, and isoxanthopterin decreased. L-Tyrosine caused a 2.1-fold increase in dihydrobiopterin, the largest increase found in this study; L-tryptophan also caused dihydrobiopterin to increase but L-phenylalanine did not. Of 18 eye-color mutants examined, 2 were found to contain high levels of phenylalanine and/or tyrosine, Pu2 and Hnr3. These two mutants, along with prc4 cn/prm2b cn, were shown to be very sensitive to dietary L-phenylalanine, indicating that having low levels of certain pteridines makes them susceptible to toxic effects of these amino acids. Therefore, high levels of aromatic amino acids can perturb the balance among pteridine pools, and low levels of some pteridines in mutants are correlated with the inability to withstand the toxic effects of phenylalanine. From the patterns of change in the pteridines we suggest that tetrahydropterin may also be a cofactor for hydroxylation of phenylalanine, along with tetrahydrobiopterin.

Amino Acids↗

The diagnosis of zygosity in twins.

Uniovular and diovular twin pairs can be classified with at least 90% accuracy by careful questioning or by ratings by observers of similarity in appearance, eye color, ear conformation, and the like. This article outlines the methods required for highly accurate zygosity diagnosis using blood typing, fingerprints, and anthropometry. The logic behind the use of discrete Mendelian phenotypes is explained and tables are provided which give the odds against a dizygotic twin pair showing concordance on eight blood group systems, four serum proteins, and six red blood cell enzymes. These tables are suitable for use with American twins of European ancestry; the method of generating such tables is explained so that similar tables based on different gene frequency estimates or for additional genetic markers can be easily constructed. The logic behind the use of metric, polygenic traits in zygosity diagnosis is also presented, together with tables giving the odds against a dizygotic twin pair showing various degrees of similarity in ponderal index, in cephalic index, and in Slater's Z score, a measure of fingerprint similarity. Taken together, the 18 serological markers should misclassify dizygotic twins as monozygotic fewer than two times in 1000. With the three anthropometric variables, this average probability of misclassification drops about 1 order of magnitude.

Anthropometry↗

Turnover of membrane and opsin in visual receptors of normal and mutant Drosophila.

Electron microscopy was used to investigate membrane turnover in the photoreceptors of Drosophila. Coated pits and vesicles, multivesicular bodies, primary lysosomes, multilamellate bodies, residual bodies and Golgi complexes are present throughout a light/dark cycle. Serial sections reveal that the membrane bounding of multivesicular bodies is only seen at an optimal plane of section. The temperature-sensitive shibire (shi(ts)) mutant has a defect in conversion of coated pits into vesicles which may also affect visual receptors. We used monoclonal antibodies to Rh1 in R1-6 receptors in the compound eye (also to Rh2 in ocellar receptors in the simple eyes) ro relate turnover processes at the visual pigment compared with membrane levels. Compound eye rhabdomeres but not rhabdomere caps stained selectively. Immunogold labelling was equivocal in multivesicular bodies. Further, early in the process of carotenoid replacement therapy, labelling is high in the rough endoplasmic reticulum, demonstrating de novo opsin synthesis.

Animals↗

Characterization of sequences associated with position-effect variegation at pericentric sites in Drosophila heterochromatin.

In a variety of organisms, euchromatic genes brought into juxtaposition with pericentric heterochromatin show position-effect variegation (PEV), a silencing of gene expression in a subset of the cells in which the gene is normally expressed. Previously, a P-element mobilization screen identified transgenic Drosophila stocks showing PEV of an hsp70-white+ reporter gene; transgenes in many of these stocks map to the chromocenter of polytene chromosome. A screen at an elevated temperature identified two stocks that under standard culture temperatures show complete repression of the hsp70-white+ transgene. The transgenes in both cases map to the chromocenter of polytene chromosomes. Different types of middle repetitive elements are adjacent to seven pericentric transgenes; unique sequences are adjacent to two of the perimetric transgenes. All of the transgenes show suppression of PEV in response to a mutation in the gene encoding heterochromatin protein 1 (HP1). This suppression correlates with a more accessible chromatin structure. The results indicate that a pericentric transgene showing PEV can be associated with different types of DNA sequences, while maintaining a common association with the chromosomal protein HP1.

ATP-Binding Cassette Transporters↗

Directional gene silencing induced by a complex subtelomeric satellite from Drosophila.

The telomeric regions in Drosophila cause transcriptional silencing of integrated transgenes. A complex satellite has recently been identified in the subterminal region of the left arm of chromosome 2 that is a good candidate for the source of the observed telomeric silencing, because genetically marked transposable elements that have inserted into this subtelomeric array show repression and variegation of the reporter gene. We asked whether this satellite can also cause transcriptional repression in ectopic chromosomal positions by placing it upstream of a mini-white reporter gene in P element constructs used for germ line transformation. The transgenes are shielded from external influences at the integration site using SU(HW) binding sites at either end. It was found that the satellite represses transcription of the reporter gene in an orientation dependent and an array length dependent manner. The satellite does not, however, induce variegation under the conditions used. The repressed transgenes do not respond to typical modifiers of centromeric position effect variegation, such as Su(var)2055, Su(var)2-11, Su(var)3-11, and Su(var)3-61, or to the addition of a Y chromosome. However, as with the original variegating telomeric insertion, suppression in the transgenes is relieved by Su(z)25, suggesting that suppression induced by the subtelomeric satellite retains aspects of telomeric silencing in ectopic positions.

ATP-Binding Cassette Transporters↗

The clot gene of Drosophila melanogaster encodes a conserved member of the thioredoxin-like protein superfamily.

The conversion of pyruvoyl-H(4)-pterin to pyrimidodiazepine (PDA), which is an essential step in the biosynthesis of the red components of Drosophila eye pigments known as drosopterins, requires the products of the genes sepia and clot. While the product of sepia has been shown to correspond to the enzyme PDA-synthase, the role of clot remains unknown, although the clot(1) allele was one of the first eye-color mutants to be isolated in Drosophila melanogaster,and much genetic and biochemical data has become available since. Here we report the cloning of the clot gene, describe its molecular organization and characterize the sequence alterations associated with the alleles cl(1) and cl(2). The coding properties of the gene show that it encodes a protein related to the Glutaredoxin class of the Thioredoxin-like enzyme superfamily, conserved members of which are found in human, mouse and plants. We suggest that the Clot protein is an essential component of a glutathione redox system required for the final step in the biosynthetic pathway for drosopterins.

Amino Acid Sequence↗

Identification and characterisation of a silkworm ABC transporter gene homologous to Drosophila white.

In the silkworm, Bombyx mori, many eye- and egg-colour mutations affecting the synthesis and accumulation of ommochrome pigments have been described. In order to understand the pigment precursor transporters involved, ABC transporter genes homologous to the Drosophila white gene were isolated from the silkworm. Reverse transcriptase-polymerase chain reactions (RT-PCR) using embryonic mRNA amplified three cDNA fragments, named Bmwh1, Bmwh2 and Bmwh3 that showed homology to the white gene. Since Bmwh3 shows the highest degree of sequence identity and a similar expression pattern to the Drosophila homologue, we characterised this gene further. A 2667-bp Bmwh3 cDNA isolated from an embryonic library has one ORF encoding a polypeptide of 687 amino acids. The predicted protein has one ATP-binding domain, six transmembrane-spanning segments and high similarity to the Drosophila WHITE protein. Southern analysis indicates that Bmwh3 is a single-copy gene. Polyadenylated Bmwh3 transcripts about 2.7 kb long were detected in eggs, Malpighian tubules and pupal heads, but not in testes, posterior silk glands or fat body cells. The level of Bmwh3 mRNA was reduced in w3 and w3ol mutants but normal in other egg- and eye-colour mutants, suggesting that Bmwh3 correspond to the w3 locus. Genetic analysis was used to map the cloned gene to chromosome 10.

ATP-Binding Cassette Transporters↗

Ocular melanocytosis and melanoma.

The hypothesis that ocular melanocytosis is a precancerous condition that may lead to a choroidal melanoma should be seriously questioned for the following reasons: The incidence of malignant degeneration in a hyperpigmented eye is unknown and overreported. If the hypothesis were correct a bilateral melanoma would occasionally occur in patients with bilateral melanosis. No such case has been reported. In patients with unilateral melanosis the blue, unaffected eye may also develop a melanoma. A 67-year-old white woman with one dark and one blue eye provided the first such instance, although previous cases may not have been reported if their histologic picture was not unusual. The incidence of melanoma in our patients with unilateral melanosis was rare compared with the many melanomas developing in normal pigmented eyes (4/418). I found no statistically significant difference in the incidence of choroidal melanomas originating in the hyperpigmented or in the blue eye in patients with unilateral ocular melanocytosis.

Aged↗

Ocular manifestations and treatment of hemifacial atrophy.

Enophthalmos, flattening of the maxilla that may progress to inferior orbital rim and floor defects, eyelid atrophy, and slight relative hypotony occurred in patients with hemifacial atrophy. Less common manifestations included pupillary and iris abnormalities, vertical muscle imbalances, and retinal changes. The prognosis for vision was good. Fluid silicone injection was the major modality in treatment and the results were generally excellent.

Adolescent↗

Basal precorneal tear turnover in the human eye.

We studied 51 normal subjects with a simple method that permits measurement of the rate of fluorescein loss from the central precorneal tear film. In 15 (29%), no measurable dye remained 30 minutes after application of 1 microliter of a 10% solution of sodium fluorescein into the lower culde-sac. In 31 (61%) of the subjects, an exponential decay of the dye was observed between 15 and 30 minutes after application. In 5 (10%) of the subjects, a prolonged increase in dye concentration was observed, followed by a steady decrease that began 30 to 45 minutes after application. One eye of one subject had a steady increase in dye concentration for over an hour, and this eye was excluded from the analysis. The mean value for the tear elimination coefficient in all subjects analyzed was 15%/min. The logarithm of the tear elimination coefficient appeared to be normally distributed within the population sample. Analysis of the frequency distribution permitted an estimate that the 95% confidence limits for the tear elimination coefficient, as measured by this method, was 5 to 30%/min. No statistically significant correlations were found between tear elimination coefficient and sex, eye color, or contact lens use.

Adult↗

Albinotic characteristics in congenital nystagmus.

We studied 26 white patients (19 males and seven females), ranging in age from 1 to 57 years, with congenital nystagmus for the characteristics of albinism. None of the patients was known to be an albino and none had readily apparent signs of albinism. The study also included 26 controls matched by age, sex, race, and complexion. Twelve of the 26 patients with congenital nystagmus had one or more of the following characteristics: detectable iris transillumination (six of 25 patients), choroidal depigmentation (four of 22 patients), and abnormal tanning history (eight of 26 patients). Iris transillumination and abnormal tanning were not found in any of the controls but two controls showed choroidal depigmentation and one showed blunting of the macular reflex (this was determined to be age-related). These differences were significant for iris transillumination (P = .01), blunting of the macular reflex (P = .01), and abnormal tanning (P = .002) but not significant for choroidal depigmentation (P = .38). Within the group of patients with congenital nystagmus, iris transillumination was significantly associated with blunting of the macular reflex (P = .03), choroidal depigmentation (P = .03), and abnormal tanning (P = .004) but not with eye color (P = .16) or visual acuity (P = .33). These findings suggested that many patients with apparently isolated congenital nystagmus may have subclinical albinism or a form of albinoidism.

Adolescent↗