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K Urabe

Publications and source records attributed to K Urabe.

At least 73 records · Page 4Linked to original sources

The Pmel 17/silver locus protein. Characterization and investigation of its melanogenic function.

The silver mutation in mice causes progressive graying of hair due to the loss of functional follicular melanocytes. Recently the silver locus gene (called Pmel 17) has been cloned; its encoded product shares homology with a chick melanosomal matrix protein and a bovine retinal pigment epithelial protein. Although the sequence of the silver gene and the correlation of its expression with pigment production have been reported, its function in melanogenesis is still unknown. In an effort to characterize that function, we have synthesized the predicted carboxyl-terminal peptide of the mouse Pmel 17 protein and generated a rabbit polyclonal antibody (alpha PEP13) to it; that antibody recognized the silver protein specifically. The immunoaffinity-purified silver protein lacked all of the known melanogenic catalytic activities which other tyrosinase-related proteins (TRP) have, nor did it appear to modulate any of those TRP activities. Metabolic labeling experiments demonstrated that the silver protein disappears in vivo within a few hours, indicating that it is rapidly degraded, or quickly processed to lose its carboxyl terminus. Cross-reactivity experiments showed that a recently reported anti-melanosomal matrix protein antibody (alpha MX) also recognizes the silver protein, although at a different epitope from that of alpha PEP13. Using Western immunoblotting, we analyzed subcellular fractions isolated from B16 F10 melanoma cells and found that the silver protein was rich in the melanosome fraction but was absent from coated vesicles which deliver TRPs to melanosomes. These results suggest that the silver locus product is a melanosomal matrix protein which may contribute to melanogenesis as a structural protein, although the possibility remains that it also has a novel catalytic function in melanogenesis.

Amino Acid Sequence↗

Functional analysis of the slaty gene product (TRP2) as dopachrome tautomerase and the effect of a point mutation on its catalytic function.

Slaty (slt), an autosomal recessive mutation that arose in YZ57/Ch mice, results in the dilution of coat color and premature hair loss. Recently, a gene encoding a homologue of the melanogenic enzyme tyrosinase (termed tyrosinase related protein 2 or TRP2) was cloned and was subsequently mapped to the slaty locus on chromosome 14. TRP2 was shown to function in melanogenesis as DOPAchrome tautomerase by means of the catalytic activity of the immunopurified protein and in slaty mutant skin samples. In this study, we generated an expression vector of a murine TRP2 encoding cDNA and are able to confirm its activity as DOPAchrome tautomerase. We further demonstrate that the slaty mutation dramatically decreases the catalytic function of the protein.

Animals↗

A new enzymatic function in the melanogenic pathway. The 5,6-dihydroxyindole-2-carboxylic acid oxidase activity of tyrosinase-related protein-1 (TRP1).

Since the characterization of 5,6-dihydroxyindole-2-carboxylic acid (DHICA) as a major melanogenic intermediate, the fate of this compound and the mechanisms of its incorporation into the melanin polymer have become major issues in the study of melanogenesis. DHICA is a stable dihydroxyindole with a low rate of spontaneous oxidation, suggesting that enzymatic mechanism(s) might contribute to its evolution. The most obvious candidates are the melanosomal tyrosinases. We have recently shown that mouse melanosomes contain two electrophoretically distinct tyrosinase isoenzymes, termed low electrophoretic mobility tyrosinase (LEMT) and high electrophoretic mobility tyrosinase (HEMT), that can be resolved and purified. In this study, we report immunological evidence indicating that LEMT corresponds to the protein encoded by the brown locus (termed tyrosinase-related protein-1, TRP1), while HEMT corresponds to the tyrosinase encoded by the albino locus. We have compared the ability of both isoenzymes to catalyze DHICA evolution as determined by high performance liquid chromatography; although LEMT is a relatively poor tyrosine hydroxylase and DOPA oxidase as compared to HEMT, it was readily able to accelerate DHICA consumption concomitant with the production of a brownish product. However, the DHICA conversion activity of HEMT was barely detectable. The ability of purified LEMT to catalyze DHICA conversion could be almost completely abolished by treatment with heat or trypsin, and was inhibited in a concentration dependent way by the tyrosinase inhibitor 2-phenylthiourea and by L-tyrosine. Moreover, in the presence of low concentration of ascorbate, the DHICA conversion activity of LEMT displayed a lag period which was progressively longer at higher ascorbate concentrations. Based on the relationship between ascorbate added, enzyme activity, and lag period, it is very likely that the DHICA converting activity is indeed a DHICA oxidase activity. This was further proven by the demonstration that the product reacts rapidly and efficiently with the quinone trapping reagent 3-methyl-2-benzothiazolinone hydrazone, yielding a colored adduct similar to the one obtained with DOPAquinone. The DHICA oxidase activity of LEMT displayed a Km for DHICA of about 0.8 mM, as compared to 1.9 mM for L-DOPA and 0.23 nM for L-tyrosine. These results suggest that TRP1, the product of the brown locus, is indeed a tyrosinase with DHICA oxidase activity. However, as opposed to the tyrosinase encoded by the albino locus, TRP1's role in melanogenesis could be more directly related to DHICA metabolism than to the first steps of the pathway.

Animals↗

The inherent cytotoxicity of melanin precursors: a revision.

The potential cytotoxicity of the melanogenic intermediates DOPA, (L-3,4-dihydroxyphenylalanine) and DHI (5,6-dihydroxyindole) has long been recognized and exploited as a targeting concept in experimental melanoma therapy. In recent years, however, a novel branchpoint in the melanin biosynthetic pathway has been shown to divert the metabolism of DOPAchrome to a carboxylated derivative termed DHICA (DHI-2-carboxylic acid) rather than to DHI. In order to evaluate the biological implications of this regulatory control, we have reexamined the inherent cytotoxicity of DHICA versus DHI on different cell lines. We found that under the usual conditions of the biological assay, the apparent cytotoxicity of the two indoles reflect their instability in the culture medium, the less stable DHI being generally more toxic than DHICA to melanoma cells and nonmelanocytic cells. Moreover, the observed cytotoxic effects increased with the time of incubation and were markedly reduced by the addition of catalase to the medium, suggesting that they were probably due to the generation of reactive oxygen species (particularly H2O2) during the autoxidation of the melanin precursors outside the cells. To circumvent this problem, we then tested the diacetylated derivatives of DHI and DHICA (DAI and DAICA) which are sufficiently stable until taken up into the cells whereupon they may be converted by endogenous esterases back to the parent indoles. Although DAI proved to be cytotoxic for nonmelanocytic cells, it had no detectable activity on melanoma cells, whereas DAICA showed no effect on any of the cells examined. These results, when combined with other studies, point to a reconsideration of the inherent cytotoxicity of the 5,6-dihydroxyindoles, as well as DOPA, to melanin producing cells.

3T3 Cells↗

Nucleoside transport inhibitors enhance the infarct size-limiting effect of ischemic preconditioning.

We recently observed that dipyridamole pretreatment significantly enhanced the infarct size (IS)-limiting effect of preconditioning (PC), which was attenuated by adenosine receptor antagonist. This potentiation of PC was interpreted to result from inhibition of nucleoside transport by dipyridamole, but contribution of other pharmacologic actions of dipyridamole could not be excluded. To confirm that inhibition of nucleoside transport leads to PC enhancement, we assessed alteration of mild PC by two different nucleoside transport inhibitors, dilazep and R75231, which, unlike dipyridamole, lack action on phosphodiesterase (PDE) and prostacyclin. Myocardial infarction was induced in rabbits by 30-min coronary occlusion and 72-h reperfusion. IS and area at risk (AAR) were determined by histology and fluorescent particles, respectively. Rabbits either were untreated or received dilazep (0.34 mg/kg intravenously, i.v.) or R75231 (0.05 mg/kg i.v.) before coronary occlusion. In other groups of rabbits, PC was conducted with 2-min ischemia and 5-min reperfusion with or without injection of the nucleoside transport inhibitor (0.34 or 0.10 mg/kg dilazep or 0.05 mg/kg of R75231) before PC. IS expressed as percentage of AAR (%IS/AAR) was 43.9 +/- 2.3% (SE) in untreated controls; dilazep (0.34 mg/kg) and R75231 alone did not modify IS (%IS/AAR = 50.6 +/- 4.7 and 42.7 +/- 11.9%, respectively). PC tended to reduce IS (%IS/AAR = 33.3 +/- 3.5%), but the combination of dilazep or R75231 with PC significantly limited %IS/AAR (%IS/AAR = 22.5 +/- 5.0% after low-dose dilazep plus PC, 27.6 +/- 4.9% after high-dose dilazep plus PC, and 19.9 +/- 3.6%, after R75231 plus PC).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

DHICA oxidase activity of TRP1 and interactions with other melanogenic enzymes.

Tyrosinase-related protein 1 (TRP1) maps to the brown locus in mice. Although the specific function of TRP1 has been in dispute, mutations in its structural gene result in the formation of brown rather than black melanin. We have investigated the melanogenic function of TRP1 by using immune-affinity purification of the protein and also by using transfection of its gene into fibroblasts to study its characteristics. We show that TRP1 has the ability to oxidize DHICA, a melanogenic intermediate derived from DOPAchrome. In addition, TRP1 has the ability to interact with tyrosinase and significantly stabilize the latter's catalytic function.

Animals↗

Effects of Houttuyniae cordata and refinery final molasses on the development of offensive odor in porcine small intestine during storage.

Porcine small intestine evolved a specific offensive odor only 0.5 to 1 day after storage at 20 degrees C. We investigated the effects of Houttuyniae cordata (dokudami), refinery final molasses (RFM), green tea, and brown sugar on the evolution of methylmercaptan and ethanol, which were the main components of the volatiles which evolved from porcine small intestine in storage. Furthermore, we determined their antibacterial effect and deodorant activity against methylmercaptan, as possible factors in reducing the offensive odor. Addition of those materials reduced the offensive odor during storage. In particular, dokudami, green tea, and RFM markedly suppressed the evolution of methylmercaptan. RFM was most effective in suppressing the growth of bacteria. Dokudami had the highest deodorant activity, comparable to that of perilla leaves. However, the retardation of methylmercaptan evolution in situ cannot be simply explained by either of deodorant or antibacterial effect. It seems likely that the combined action of both effects affects the evolution of methylmercaptan in situ.

Animals↗

The tyrosinase gene family--interactions of melanogenic proteins to regulate melanogenesis.

Several genes critical to the regulation of melanin production in mammals have recently been cloned and characterized. They map to the albino, brown, and slaty loci in mice, and encode proteins with similar structures and features, but with distinct catalytic capacities. The albino locus encodes tyrosinase, an enzyme with three distinct melanogenic functions, the brown locus encodes TRP1 (tyrosinase-related protein-1), and the slaty locus encodes TRP2, another tyrosinase related-protein. TRP2 functions as DOPAchrome tautomerase, an enzyme that preserves the carboxylic acid content of melanins, which would be spontaneously lost in its absence, while TRP1 is able to oxidize the DHICA produced by TRP2. In this study we have used three different systems (immune-affinity purified melanogenic enzymes, mutant melanocytes, and transfected cells) to examine the enzymatic interactions of these proteins, and their stabilization in a complex which significantly increases their physiological half-life. When extrapolated to the melanocyte, our results demonstrate the catalytic functions of these proteins and suggest how they might stably interact within a melanogenic complex in the melanosome to regulate the quantity and quality of melanin synthesized.

3T3 Cells↗

Melanin biosynthesis patterns following hormonal stimulation.

The effect of melanocyte-stimulating hormone (MSH) on the differentiation of mammalian melanocytes has been widely studied since the early 1950s. There have been many reports about the stimulatory effect of MSH on melanin production and specifically on the activity of tyrosinase, the critical enzyme in the melanogenic pathway. However, few and variable results have been obtained concerning the effect of this hormone on the regulation of DOPAchrome tautomerase (TRP2), another melanogenic enzyme which functions later in the melanogenic pathway, or on other melanogenic activities, such as TRP1. In this study, we show that the MSH-induced stimulation of tyrosinase is accompanied by no significant change in the synthesis or catalytic activities of other melanogenic enzymes such as TRP1 or TRP2. This in turn elicits a dramatic increase in melanin production accompanied by a significant decrease in the incorporation of carboxylated precursors into that melanin biopolymer, although the biological implication of that is still unclear.

Animals↗

Stable self-sustained potential oscillations across a membrane filter impregnated with triolein.

When applying constant electric current, periodic self-sustained potential oscillations with high stability are observed across a membrane filter impregnated with triolein, placed between KCl and NaCl aqueous solutions. Stability, reproducibility and controllability of the oscillation are much improved by the application of constant electric current compared with those obtained without application of electric current. Relations among value of electric current, base potential and period of the oscillations are studied, and it is concluded that the oscillation period can be controlled by base electric potential. Effects of temperature on the oscillations are investigated, and it is shown that Arrhenius plots for both base conductance and conductance amplitude of each oscillation fitted well to an individual straight line and that values of activation energies are similar to those of bulk salt solutions. From all data obtained it is suggested that the oscillations occur as a result of rhythmic repetition of opening and closing of hole(s) in the membrane, which is due to breakdown and restoration of a part of the membrane.

Cellulose↗

Preconditioning enhances myocardial resistance to postischaemic myocardial stunning via adenosine receptor activation.

OBJECTIVE: The aim was to test a hypothesis that ischaemic preconditioning attenuates myocardial stunning via adenosine receptor activation. METHODS: Myocardial stunning was induced in male rabbits by a transient 5 or 10 min coronary artery occlusion, and alteration of regional systolic thickening fraction (TF) was measured by using an epicardial Doppler sensor before and after the regional ischaemia. Rabbits were either untreated, preconditioned with 1 min ischaemia, given 8-phenyltheophylline (8-PT, 10 mg.kg-1 intravenously), or given 8-PT plus 1 min ischaemic preconditioning. Preconditioning and 8-PT were given 5 min and 20 min before stunning the heart, respectively. RESULTS: Postischaemic recovery of the thickening fraction was significantly improved by preconditioning with 1 min ischaemia. TF (% baseline) after 10 min ischaemia/30 min reperfusion was 84.3(SEM 5.0)% in the preconditioned group, which was significantly higher than the value of 51.3(8.1)% in the control rabbits. Treatment with 8-PT alone did not significantly alter the recovery of TF from 10 min ischaemia [TF = 45.0(7.4)%,], but 8-PT treatment completely abolished the effect of 1 min preconditioning [TF = 51.3(6.4)%]. Attenuation of myocardial stunning by 1 min preconditioning was also observed when the stunning was induced by 5 min ischaemia [92.2(1.3)% in preconditioned group v 75.9(3.2)% in controls]. CONCLUSIONS: These findings suggest that preconditioning protects the myocardium against stunning through activation of the adenosine receptors.

Animals↗

Pigment production in murine melanoma cells is regulated by tyrosinase, tyrosinase-related protein 1 (TRP1), DOPAchrome tautomerase (TRP2), and a melanogenic inhibitor.

Using antibodies that recognize either tyrosinase, tyrosinase-related protein-1 (TRP1), or tyrosinase-related protein-2 (TRP2, DOPAchrome tautomerase), the quantities of those melanogenic enzymes were analyzed in five melanoma cell lines that possess various degrees of melanin production. All cells except JB/MS-W increased melanin production four to 30 times after 4 d of melanocyte-stimulating hormone (MSH) treatment. Melanin production by JB/MS-W cells was always under background, with or without MSH treatment. There was a positive correlation between quantities and synthetic rates of those melanogenic enzymes and their melanin formation or DOPAchrome tautomerase activities. The activity of a heat-resistant melanogenic inhibitory factor was also analyzed. The results showed, surprisingly, that pigmented cells showed higher levels of melanogenic inhibitors activity. Tyrosinase activity was increased dramatically whereas the level of melanogenic inhibitor was remarkably decreased following MSH treatment. Interestingly, melanogenic inhibitor derived from JB/MS-W cells suppressed not only tyrosinase but also DOPAchrome tautomerase, another enzyme functional in melanin production. These results clearly suggest that melanin production is regulated by a subtle balance between the activities of these enzymes and other factors such as the melanogenic inhibitor.

Animals↗

Do angiotensin converting enzyme inhibitors limit myocardial infarct size?

1. Effects of captopril, ramiprilat and Hoe 140, a specific bradykinin receptor antagonist, on infarct size were assessed in a rabbit model of myocardial infarction. 2. Rabbits were untreated or pretreated with 0.5 mg/kg of captopril, 0.05 mg/kg of ramiprilat or 20 nmol/kg of Hoe 140 before 30 min coronary artery occlusion and 72 h reperfusion. 3. Captopril and ramiprilat treatment reduced systemic blood pressure by about 10 mmHg without alteration of heart rate, and the dose of Hoe 140 almost completely blocked hypotensive response to intravenous injection of bradykinin (100 ng/kg). 4. Infarct size expressed as percentage of area at risk was 44.5 +/- 3.3% in the control group, 41.9 +/- 1.6% in the captopril group, 51.8 +/- 2.7% in the ramiprilat group and 46.7 +/- 2.2% in the Hoe 140 group. All percentages were not significantly different. 5. These data suggest that angiotensin converting enzymes (ACE), with or without sulfhydryl groups do not limit myocardial infarct size and that endogenous bradykinin in ischaemic myocardium does not play a major protective role against ischaemic myocardial necrosis.

Angiotensin-Converting Enzyme Inhibitors↗

Effect of nicorandil on post-ischaemic contractile dysfunction in the heart: roles of its ATP-sensitive K+ channel opening property and nitrate property.

1. This study aimed to characterize the effect of nicorandil (NC) on myocardial stunning and the role of ATP-sensitive K+ (KATP) channel opening property in its cardioprotective action. 2. In open-chest anaesthetized rabbits, myocardial stunning was induced by 10 min of coronary occlusion followed by 30 min of reperfusion. As an index of regional contractile function, systolic thickening fraction (TF) was measured by an epicardial Doppler sensor. The doses of NC (10 micrograms/kg per min) and nitroglycerin (TNG) (1 micrograms/kg per min) were selected not to lower the systemic blood pressure significantly. 3. In the untreated controls, TF at 30 min after reperfusion was 46.4 +/- 2.9% of the baseline value, indicating myocardial stunning. Both NC and TNG significantly improved post-ischaemic recovery of TF when administered during the pre-ischaemic and post-ischaemic periods (TF = 68.2 +/- 6.4%, 64.7 +/- 2.3%, respectively). However, when their infusion was restricted to a pre-ischaemic 10 min period, TF recovery was improved by NC, but not by TNG (63.4 +/- 7.9%, 40.9 +/- 6.2%, respectively). 4. Pretreatment with glibenclamide (GL; 0.3 mg/kg) did not influence the recovery of TF after the 10 min ischaemia (TF = 52.4 +/- 3.9% at 30 min after reperfusion). However, after the GL injection, a cardioprotective effect from nicorandil pretreatment was not detected (TF = 51.3 +/- 1.7%). 5. These results suggest that nicorandil protects the myocardium against stunning by opening the KATP channel when it is given before ischaemia, and that the nitrate property of nicorandil may also play a role during the reperfusion period in attenuation of post-ischaemic contractile dysfunction.

Adenosine Triphosphate↗

From gene to protein: determination of melanin synthesis.

Melanin production in mammals is regulated at a variety of levels (tissue, cellular, and subcellular), and many gene loci are involved in the determination of color patterns directed by the melanocyte. Many of the genes involved in these complex processes have now been cloned, and even the simplest mutation can lead to dramatic changes in the phenotype of the individual. Many, if not all, of the pigment related genes have pleiotropic effects on the development and differentiation of the organism, and perhaps because of this, the melanocyte is evolving as an important model for the study of gene regulation and action at the functional level. In view of the importance of pigmentation as a photoprotective barrier and as a cosmetic factor affecting appearance and social acceptance, the importance of these studies seems destined to increase significantly in the future.

Animals↗

Mutational mapping of the catalytic activities of human tyrosinase.

Tyrosinase (EC 1.14.18.1) is a copper-containing metalloglycoprotein that catalyzes several steps in the melanin pigment biosynthetic pathway; the hydroxylation of tyrosine to L-3,4-dihydroxyphenylalanine (dopa) and the subsequent oxidation of dopa to dopaquinone. It has been proposed that tyrosinase is also able to oxidize 5,6-dihydroxyindole (DHI), a later product in the melanogenic pathway, to indole-5,6-quinone. Tyrosinase enzymatic activity is deficient in patients with classic type I oculocutaneous albinism (OCA), and more than 50 distinct mutations have now been identified in the tyrosinase genes of such patients. To determine the effects of the various tyrosinase gene mutations on the catalytic activities of the enzyme, we carried out site-directed mutagenesis of human tyrosinase cDNA, transiently expressed the mutant cDNAs in transfected HeLa cells, and assayed the resultant encoded proteins for tyrosine hydroxylase, dopa, and DHI oxidase activities, and resulting melanin production. The tyrosine hydroxylase activity of normal tyrosinase is thermostable, whereas its dopa oxidase and DHI oxidase activities are temperature-sensitive. Although all amino acid substitutions tested generally affected the dopa oxidase and DHI oxidase activities in parallel, several exerted distinctly different effects on the tyrosine hydroxylase activities. Together, these results confirm the DHI oxidase activity of mammalian tyrosinase and suggest that the dopa oxidase and DHI oxidase activities of tyrosinase share a common catalytic site, whereas the tyrosine hydroxylase catalytic site is at least partially distinct in the tyrosinase polypeptide.

Amino Acid Sequence↗

Sexual transmission of hepatitis C virus among female prostitutes and patients with sexually transmitted diseases in Fukuoka, Kyushu, Japan.

The authors investigated the prevalence of antibody to hepatitis C virus (anti-HCV) in 404 female prostitutes, 428 clinic patients with a history of at least one episode of sexually transmitted disease, and 8,944 blood donors who served as the controls. All subjects were Japanese, and all studies were carried out in Fukuoka, Kyushu, Japan, in 1989. The prevalence of anti-HCV was significantly higher in the prostitutes (6.2%), in the female patients with sexually transmitted diseases (6.1%), and in the male patients with sexually transmitted diseases (2.9%) than in the controls (1.5%). Prevalence of anti-HCV increased with age in prostitutes and in the controls. The prevalence of anti-HCV in those who had been involved in prostitution for 1 year or more (8.1%) was higher than in those who had been involved in prostitution for less than 1 year (1.4%), but the difference was not statistically significant. One of the 152 anti-HCV negative prostitutes seroconverted between 1 and 2 years later. Among the subjects with sexually transmitted diseases, patients with a history of at least one episode of syphilis had a significantly higher prevalence of anti-HCV (4.4%) than the controls. Patients with acute urethritis and cervicitis also showed a high prevalence of anti-HCV (3.6% and 6.7%, respectively). These data support the possibility of sexual transmission of hepatitis C virus.

Adolescent↗

A second tyrosinase-related protein, TRP-2, is a melanogenic enzyme termed DOPAchrome tautomerase.

The production of melanin pigment in mammals requires tyrosinase, an enzyme which hydroxylates the amino acid tyrosine to DOPA (3,4-dihydroxyphenylalanine), thus allowing the cascade of reactions necessary to synthesize that biopolymer. However, there are other regulatory steps that follow the action of tyrosinase and modulate the quantity and quality of the melanin produced. DOPAchrome tautomerase is one such melanogenic enzyme that isomerizes the pigmented intermediate DOPAchrome to DHICA (5,6-dihydroxyindole-2-carboxylic acid) rather than to DHI (5,6-dihydroxyindole), which would be generated spontaneously. This enzyme thus regulates a switch that controls the proportion of carboxylated subunits in the melanin biopolymer. Efforts to clone the gene for tyrosinase have resulted in the isolation of a family of tyrosinase related genes which have significant homology and encode proteins with similar predicted structural characteristics. Using specific antibodies generated against synthetic peptides encoded by unique areas of several of those proteins, we have immuno-affinity purified them and studied their melanogenic catalytic functions. We now report that TRP-2 (tyrosinase related protein-2), which maps to and is mutated at the slaty locus in mice, encodes a protein with DOPAchrome tautomerase activity.

Amino Acid Sequence↗