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Biosynthesis of phytoquinones. Homogentisic acid: a precursor of plastoquinones, tocopherols and alpha-tocopherolquinone in higher plants, green algae and blue-green algae.

1. By means of (14)C tracer experiments and isotope competition experiments the roles of d-tyrosine, p-hydroxyphenylpyruvic acid, p-hydroxyphenylacetic acid, phenylacetic acid, homogentisic acid and homoarbutin (2-methylquinol 4-beta-d-glucoside) in the biosynthesis of plastoquinones, tocopherols and alpha-tocopherolquinone by maize shoots was investigated. It was established that d-tyrosine, p-hydroxyphenylpyruvic acid and homogentisic acid can all be utilized for this purpose, whereas p-hydroxyphenylacetic acid, phenylacetic acid and homoarbutin cannot. Studies on the mode of incorporation of d-tyrosine, p-hydroxyphenylpyruvic acid and homogentisic acid showed that their nuclear carbon atoms and the side-chain carbon atom adjacent to the nucleus give rise (as a C(6)-C(1) unit) to the p-benzoquinone rings and nuclear methyl groups (one in each case) of plastoquinone-9 and alpha-tocopherolquinone and the aromatic nuclei and nuclear methyl groups (one in each case) of gamma-tocopherol and alpha-tocopherol. 2. By using [(14)C]-homogentisic acid it has been shown that homogentisic acid is also a precursor of plastoquinone, tocopherols and alpha-tocopherolquinone in the higher plants Lactuca sativa and Rumex sanguineus, the green algae Chlorella pyrenoidosa and Euglena gracilis and the blue-green alga Anacystis nidulans.

Carbon Isotopes

Homogentisic acid autoxidation and oxygen radical generation: implications for the etiology of alkaptonuric arthritis.

The metabolic disorder, alkaptonuria, is distinguished by elevated serum levels of 2,5-dihydroxyphenylacetic acid (homogentisic acid), pigmentation of cartilage and connective tissue and, ultimately, the development of inflammatory arthritis. Oxygen radical generation during homogentisic acid autoxidation was characterized in vitro to assess the likelihood that oxygen radicals act as molecular agents of alkaptonuric arthritis in vivo. For homogentisic acid autoxidized at physiological pH and above, yielding superoxide (O2-)2 and hydrogen peroxide (H2O2), the homogentisic acid autoxidation rate was oxygen dependent, proportional to homogentisic acid concentration, temperature dependent and pH dependent. Formation of the oxidized product, benzoquinoneacetic acid was inhibited by the reducing agents, NADH, reduced glutathione, and ascorbic acid and accelerated by SOD and manganese-pyrophosphate. Manganese stimulated autoxidation was suppressed by diethylenetriaminepentaacetic acid (DTPA). Homogentisic acid autoxidation stimulated a rapid cooxidation of ascorbic acid at pH 7.45. Hydrogen peroxide was among the products of cooxidation. The combination of homogentisic acid and Fe3+-EDTA stimulated hydroxyl radical (OH.) formation estimated by salicylate hydroxylation. Ferric iron was required for the reaction and Fe3+-EDTA was a better catalyst than either free Fe3+ or Fe3+-DTPA. SOD accelerated OH. production by homogentisic acid as did H2O2, and catalase reversed much of the stimulation by SOD. Catalase alone, and the hydroxyl radical scavengers, thiourea and sodium formate, suppressed salicylate hydroxylation. Homogentisic acid and Fe3+-EDTA also stimulated the degradation of hyaluronic acid, the chief viscous element of synovial fluid. Hyaluronic acid depolymerization was time dependent and proportional to the homogentisic acid concentration up to 100 microM. The level of degradation observed was comparable to that obtained with ascorbic acid at equivalent concentrations. The hydroxyl radical was an active intermediate in depolymerization. Thus, catalase and the hydroxyl radical scavengers, thiourea and dimethyl sulfoxide, almost completely suppressed the depolymerization reaction. The ability of homogentisic acid to generate O2-, H2O2 and OH. through autoxidation and the degradation of hyaluronic acid by homogentisic acid-mediated by OH. production suggests that oxygen radicals play a significant role in the etiology of alkaptonuric arthritis.

Alkaptonuria

Profiles in altered metabolism. II.--Accumulation of homogentisic acid in serum and urine following acetylsalicylic acid ingestion.

Homogentisic acid elevations have been found in urine and serum of patients on long term heavy salicylate therapy and those acutely intoxicated with acetylsalicylic acid. Loading of two normal volunteers with single oral acetylsalicylate doses produced transient elevations in urinary homogentisic acid excretion. These findings suggest that heavy salicylate use results in the partial inhibition of homogentisic acid oxidase in vivo.

Aspirin

In vitro inhibition of chick embryo lysyl hydroxylase by homogentisic acid. A proposed connective tissue defect in alkaptonuria.

Homogentisic acid inhibits the in vitro activity of chick embryo lysyl hydroxylase, a microsomal enzyme which catalyzes the transformation of certain lysyl residues in collagen to hydroxylysine. Chick embryo lysyl hydroxylase activity was measured as specific tritium release as tritium water from a [4,5-(3)H]lysine-labeled unhydroxylated collagen substrate prepared from chick calvaria. Kinetic studies revealed a linear, noncompetitive type of inhibition with respect to collagen substrate with a Ki of 120-180 muM. The inhibition by homogentisic acid was reversible in that enzyme activity could be restored after dialysis of preincubated mixtures of homogentisic acid with enzyme or substrate. The inhibition by homogentisic acid was competitive with respect to ascorbic acid, and the addition of reducing agents, such as ascorbic acid or 1,4-dithiothreitol, protected lysyl hydroxylase activity from homogentisic acid inhibition.In organ cultures of embryonic chick calvaria, biosynthesis of hydroxylysine-derived intermolecular collagen cross-links was inhibited in a dose-dependent manner by 0.5-5 mM homogentisic acid. Because homogentisic acid inhibits the formation of hydroxylysine in a cell-free assay and in organ cultures, this compound must pass into the cells of calvaria to inhibit intracellular hydroxylysine formation and subsequently to diminish the reducible intermolecular cross-links of the newly synthesized collagen. We propose that the inhibition of lysyl hydroxylase and the resulting hydroxylsine-deficient, structurally modified collagen may be clinically significant in the defective connective tissue found in alkaptonuric patients.

Alkaptonuria

Diagnosis of alcaptonuria: rapid analysis of homogentisic acid by HPLC.

The clinical and biochemical features of five cases of alcaptonuria were reported. The concentration of homogentisic acid was determined in urine and also in plasma using a rapid, sensitive and specific HPLC method. In all five cases, the concentrations of homogentisic acid were elevated in urine rising up to 46.5 mmol/24 h. In plasma, homogentisic acid levels ranged from 33 to 38 mumols/l. In healthy individuals, homogentisic acid was not detectable in plasma and urine. The method described represents a very useful and suitable analytical tool for the diagnosis of alcaptonuria.

Adult

Experimental studies on the pathogenesis of ochronotic arthropathy. The effects of homogentisic acid on adult and fetal articular chondrocyte morphology, proliferative capacity and synthesis of proteoglycans in vitro.

Lapine adult and fetal articular chondrocytes in monolayer culture were employed as an experimental model for studying the effects of homogentisic acid on chondrocyte morphology, proliferation and synthesis of proteoglycans. Concentrations of homogentisic acid in the range from 0.1 to 100 micrograms/ml were investigated and a cytotoxic effect was detected with concentrations of 5 micrograms/ml and above. Thus, with adult articular chondrocytes this effect was seen between 36 and 48 h of subculture with 5 micrograms/ml or more of homogentisic acid present from the beginning of subculture. In fetal articular chondrocyte cultures a concentration of 1 microgram/ml elicited a statistically significant reduction (13%) in cell proliferation without altering sulphated macromolecular synthesis. Experiments with 3H-thymidine autoradiography to measure the pulse labeling index (LI) in fetal chondrocytes in vitro showed that the 5 micrograms/ml concentration of homogentisic acid present for 21 h from the beginning of subculture gave a LI of 2%, compared with 25% for controls. Thus, homogentisic acid can reduce chondrocyte proliferative capacity before morphological alterations can be detected by light microscopy. No significant alterations in the synthesis of proteoglycans were detected at concentrations below the cytotoxic level. The homogentisic acid-induced cytotoxicity and reduction of proliferation in chondrocytes represents a possible pathway by which cartilage is damaged in ochronotic arthropathy.

Animals

A Streptomyces avermitilis gene encoding a 4-hydroxyphenylpyruvic acid dioxygenase-like protein that directs the production of homogentisic acid and an ochronotic pigment in Escherichia coli.

A 1.5-kb genomic fragment isolated from Streptomyces avermitilis that directs the synthesis of a brown pigment in Escherichia coli was characterized. Since pigment production in recombinant E. coli was enhanced by the addition of tyrosine to the medium, it had been inferred that the cloned DNA might be associated with melanin biosynthesis. Hybridization studies, however, showed that the pigment gene isolated from S. avermitilis was unrelated to the Streptomyces antibioticus melC2 determinant, which is the prototype of melanin genes in Streptomyces spp. Sequence analysis of the 1.5-kb DNA that caused pigment production revealed a single open reading frame encoding a protein of 41.6 kDa (380 amino acids) that resembled several prokaryotic and eukaryotic 4-hydroxyphenylpyruvate dioxygenases (HPDs). When this open reading frame was overexpressed in E. coli, a protein of about 41 kDa was detected. This E. coli clone produced homogentisic acid (HGA), which is the expected product of the oxidation of 4-hydroxyphenylpyruvate catalyzed by an HPD, and also a brown pigment with characteristics similar to the pigment observed in the urine of alkaptonuric patients. Alkaptonuria is a genetic disease in which inability to metabolize HGA leads to increasing concentrations of this acid in urine, followed by oxidation and polymerization of HGA to an ochronotic pigment. Similarly, the production of ochronotic-like pigment in the recombinant E. coli clone overexpressing the S. avermitilis gene encoding HPD is likely to be due to the spontaneous oxidation and polymerization of the HGA accumulated in the medium by this clone.

4-Hydroxyphenylpyruvate Dioxygenase

'Pseudohypouricosuria' in alcaptonuria: homogentisic acid interference in the measurement of urinary uric acid with the uricase-peroxidase reaction.

Urinary excretion of uric acid was found to be extremely low in a 58-year-old female patient with alcaptonuria. This was due to interference with the uricase-peroxidase method used, because analysis using high-performance liquid chromatography (HPLC) showed a normal urinary concentration of uric acid. In vitro experiments demonstrated that a high concentration of homogentisic acid in the patient's urine inhibited the peroxidase reaction, possibly due to inhibition of the colour development of 3-methyl-N-ethyl-N-(beta-hydroxyethyl)aniline (MEHA) and 4-aminoantipyrine, via the peroxidase reaction. A homogentisic acid concentration equivalent to that in plasma did not affect the uricase-peroxidase reaction. This result suggests that any assay based on a peroxidase method is affected by a high urinary concentration of homogentisic acid in patients with alcaptonuria.

Alkaptonuria

Homogentisic acid determined in biological fluids by HPLC.

In this rapid, specific, and sensitive high-performance liquid-chromatographic method of analysis for homogentisic acid in biological fluids, homogentisic acid is separated on a column of Nucleosil CN. This method, which we applied to the diagnosis of three cases of alcaptonuria, represents a suitable analytical tool for the diagnosis of alcaptonuria.

Adult

Quantitation of homogentisic acid in normal human plasma.

A new stable isotope dilution gas chromatograph-mass spectrometric method of analysis of homogentisic acid is described. Using this method, homogentisic acid is measured for the first time in normal human plasma. The assay of sera from nine normal individuals yielded a range of values from 2.4 to 12 ng/ml. The method appears to be very sensitive and may be useful in the characterization of heterozygotes for alkaptonuria and other disorders of tyrosine degradation.

Alkaptonuria

Characterization of the pigment from homogentisic acid and urine and tissue from an alkaptonuria patient.

When urine samples from alkaptonuria patients are allowed to stand, they turn black, presumably owing to the oxidation of homogentisic acid to a melanin-like substance. We report the characterization of the pigments formed by polymerization of (a) the components in the urine from a patient with alkaptonuria and (b) homogentisic acid. The absorption spectra and electron spin resonance signals of these pigments are similar to those of eumelanins. Irradiation of the pigments with nitroblue tetrazolium caused reduction of the tetrazolium; this was partially inhibited by superoxide dismutase. Irradiation of Ehrlich ascites carcinoma cells with the pigments from homogentisic acid or urine caused cell lysis. Since this lysis was inhibited by catalase, we have concluded that it was mediated by H2O2. A similar pigment was also extracted from the tissue from an alkaptonuria patient. It is suggested that the degeneration of tissue in vivo may be due to the deposition of melanin-like pigments in the tissues, probably in combination with metal ions.

Alkaptonuria

Homogentisic acid and structurally related compounds as intermediates in plasma soluble melanin formation and in tissue toxicities.

Homogentisic acid (HGA) spontaneously starts to undergo oxidation and polymerization soon after the beginning of incubation in human blood or plasma at 37 degrees C, and forms plasma soluble melanins (PSM). Haemolysis accompanies this process in blood. The addition of equimolar quantities of antioxidants delays this oxidation significantly (isoascorbic acid by 2:30-4:00 h; glutathione by 3:20-4:05 h; D-penicillamine by 5:00-5:45 h). HGA is a phenylalanine and tyrosine metabolite, related structurally to the catecholamines and other precursors of melanins. HGA is normally metabolized by the enzyme homogentisic acid oxidase. When this enzyme is genetically missing, part of HGA is excreted in the urine, another part polymerizes darkens many tissues (ochronosis), and produces widespread degenerative changes in cartilage and other connective tissues, joints, blood vessels, heart valves, kidneys and in other tissues. Collectively this disorder is known as alcaptonuria, for which no satisfactory treatment is known. The causes of both alcaptonuric arthritis and rheumatoid arthritis are thought to involve increased oxidative stress. Inflammation of joints and connective tissue damage are involved in both diseases. Oxygen radicals are suspected to cause inflammation and cellular damage. Hydroxyl radicals degrade hyaluronic acid (the viscous synovial fluid of joints). High levels of products of free radical reactions, with fluorescence excitation (ex) and emission (em) maxima in the wavelength ranges of those of PSM (ex 320-400 and em 400-470) were reported in the blood sera and synovial fluids of patients with rheumatoid arthritis.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Deficiency in homogentisic acid oxidase activity associated with the brown phenotype of Dictyostelium discoideum.

Mutations at the bwnA locus of Dictyostelium discoideum were found to result in drastically reduced levels of activity of the enzyme homogentisic acid oxidase. It is proposed that the brown phenotype associated with these mutations results from the accumulation of an intermediate in the tyrosine degradative pathway, homogentisic acid, and its subsequent spontaneous oxidation. This knowledge is used to devise improved screening procedures potentially useful in the parasexual genetics system of this organism.

Dictyostelium