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Biomedical subjects

S Fujibayashi

Publications and source records attributed to S Fujibayashi.

At least 37 records · Page 2Linked to original sources

Synthesis and processing of sphingolipid activator protein-2 (SAP-2) in cultured human fibroblasts.

Sphingolipid activator proteins (SAP) are relatively small molecular weight proteins that stimulate the enzymatic hydrolysis of sphingolipids in the presence of specific lysosomal hydrolases. SAP-2 has previously been demonstrated to activate the hydrolysis of glucosylceramide, galactosylceramide, and, possibly, sphingomyelin. Using monospecific rabbit antibodies against human spleen SAP-2, the synthesis and processing of SAP-2 were studied in cultured human fibroblasts. When [35S]methionine was presented in the medium to control human cells for 4 h, five major areas of radiolabeling were found. These had apparent molecular weights of 73,000, 68,000, 50,000, 12,000, and 9,000. Further studies indicated that the major extracellular product in normal cells given NH4Cl along with the [35S]methionine and in medium from cultures from patients with I cell disease had an apparent molecular weight of 73,000. The Mr = 68,000 and 73,000 species can be converted to a species with an apparent molecular weight of 50,000 by the action of endoglycosidase F. After labeling cells for 1 h followed by a 1-h chase, the Mr = 12,000 and 9,000 species appear. Treatment of the immunoprecipitated mixture with endoglycosidase F resulted in conversion of these species to one band with an apparent molecular weight of 7,600. These studies indicate that this relatively low molecular weight protein is rapidly synthesized from a relatively large molecular weight highly glycosylated precursor.

Cells, Cultured↗

Biosynthesis of the sulfatide/GM1 activator protein (SAP-1) in control and mutant cultured skin fibroblasts.

Sphingolipid activator proteins (SAP) are relatively low-molecular-mass proteins that stimulate the hydrolysis of specific sphingolipids by the required lysosomal enzymes. SAP-1 or sulfatide/GM1 ganglioside activator protein has previously been demonstrated to stimulate the enzymatic hydrolysis of sulfatide, GM1 ganglioside and globotriaosylceramide. Using monospecific rabbit antibodies against human liver sulfatide/GM1 activator, the biosynthesis and processing of this activator were studied in cultured skin fibroblasts from controls and patients with GM1 gangliosidosis and a variant form of metachromatic leukodystrophy. When [35S]methionine was presented in the medium to control human fibroblasts for 4 h, the majority of the immunoprecipitable radiolabeling was confined to bands within three regions of apparent molecular mass 65-70, 35-52 and 8-13 kDa. The only immunoprecipitable radiolabeled species excreted into the medium when NH4Cl was present had an apparent molecular mass of 70 kDa. When the excretion products were given to fresh cells followed by incubation for up to 24 h there was production of the mature species. Treatment of the 70 kDa form with endoglycosidase F resulted in production of a 53 kDa molecular mass form. Pulse-chase experiments indicated that the initial immunoprecipitable translation product was 65 kDa which increased to 70 kDa over the next hour. The 65 kDa species must result from co-translational glycosylation of the polypeptide chain. Apparently, intralysosomal processing converts the 13 kDa form to the 8-11 kDa species. The cells from the patient with GM1 gangliosidosis could not process to the smallest species found in controls due to the deficiency of acid beta-galactosidase. Patients who have a variant form of metachromatic leukodystrophy do not make any immunoprecipitable radiolabeled products in the cells or in the media. This indicates a severe mutation in the gene coding for this activator protein. The production of such small mature species from a relatively large precursor form may regulate the production of this interesting protein.

Cells, Cultured↗

Molecular cloning of the sphingolipid activator protein-1 (SAP-1), the sulfatide sulfatase activator.

A cDNA coding for SAP-1 was isolated from a lambda gt11 human hepatoma expression library using polyclonal antibodies raised against human SAP-1. Three positive clones were isolated with inserts of approximately 0.3 Kb (S1.1), 2 Kb (S1.2) and 2.2 Kb (S-1.3). The latter 2 contained an internal EcoRI site. All three clones cross-hybridized with one another, indicating sequence homology. The nucleotide sequence of S-1.1 was determined. Colinearity was established between 19 amino acids obtained by sequencing the amino terminus of pure SAP-1 and 57 bp from the 5' end of S-1.1. The open reading frame of S-1.1 coded for 67 amino acids. One glycosylation site was found 21 residues from the amino terminus, and no stop codons were found. S-1.1 codes for a mature polypeptide chain with a calculated molecular weight of 8955 daltons, corresponding to approximately 99% of mature SAP-1.

Amino Acid Sequence↗

Immunocytochemical localization of sphingolipid activator protein-1, the sulfatide/GM1 ganglioside activator, to lysosomes in human liver and colon.

Sphingolipid activator proteins (SAP) stimulate the enzymatic hydrolysis of sphingolipids. The results of biochemical studies have suggested that SAP are located within lysosomes. In this study we sought immunocytochemical verification of the lysosomal location of SAP-1, a SAP that stimulates the hydrolysis of sulfatide and GM1 ganglioside. We stained adjacent sections of normal adult liver and colon for either SAP-1, by peroxidase-labeled antibodies, or acid phosphatase, by enzyme histochemistry. At the light microscopic level, SAP-1 and acid phosphatase were present in similar cells of the colonic lamina propria and hepatic sinusoids, and in similar supranuclear sites of colonic epithelial cells. By electron microscopy, SAP-1 was present in vesicular structures morphologically similar to those containing acid phosphatase. Thus, SAP-1 is present in lysosomes of several different kinds of cells in the normal human liver and colon.

Adult↗

Studies on a sphingolipid activator protein (SAP-2) in fibroblasts from patients with lysosomal storage diseases, including Niemann-Pick disease Type C.

Sphingolipid activator protein-2 (SAP-2) has been found to stimulate the enzymatic hydrolysis of at least three sphingolipids, glucosylceramide, galactosylceramide and sphingomyelin. Using monospecific antibodies against SAP-2 the level of SAP-2 was determined in cultured skin fibroblasts by rocket immunoelectrophoresis. Extracts from 14 controls had 1.03 +/- 0.28 micrograms cross-reactive material/mg solubilized protein and extracts from 46 patients with Niemann-Pick disease Type C had 1.12 +/- 0.26. Extracts from other lysosomal storage diseases, including Gaucher disease, Krabbe disease and Niemann-Pick disease Types A, B and D, had normal or slightly elevated SAP-2 concentrations, while extracts from patients with I-Cell disease had half normal SAP-2 concentration. When the fibroblast extracts were subjected to sodium dodecylsulfate-polyacrylamide gel electrophoresis followed by electroblotting and immunochemical staining two major SAP-2 bands with estimated molecular weights of 9000 and 10000 were found. Extracts from patients with I-Cell disease showed only a faint higher molecular weight band. Isoelectric focusing followed by electroblotting and immunochemical staining demonstrated no significant difference in the charge of SAP-2 obtained from different cell lines. In this study we could not demonstrate any change in concentration, size or charge of SAP-2 in fibroblast extracts from Niemann-Pick disease Type C, and we provided evidence that SAP-2 might be subject to post-translational processing similar to that of lysosomal enzymes.

Adolescent↗

The gene coding for a sphingolipid activator protein, SAP-1, is on human chromosome 10.

SAP-1 is a sphingolipid activator protein found in human tissues required for the enzymatic hydrolysis of GM1 ganglioside and sulfatide. It appears to be missing in patients who have a genetic lipidosis resembling juvenile metachromatic leukodystrophy. Using rabbit antibodies against human SAP-1 it could be visualized in extracts from cultured human skin fibroblasts after sodium dodecylsulfate-polyacrylamide gel electrophoresis, followed by electroblotting to nitrocellulose membrane and immunochemical staining (Western blotting). A series of 23 human-Chinese hamster ovary cell hybrids containing different human chromosomes were examined. The parent Chinese hamster ovary cells did not have a reacting protein in the region of human SAP-1. Only in the eight hybrid clones containing human chromosome 10 was a reacting protein identified. Other chromosomes were excluded by this method. Therefore the gene for SAP-1 and the genetic mutation resulting in a fatal lipidosis are located on human chromosome 10.

Animals↗

Amino acids release somatostatin-like immunoreactivity from isolated rat glomeruli.

We reported recently the presence of somatostatin-like immunoreactivity (SLI) in the glomerulus of rat kidney. In the present study, we examined factors affecting SLI release from isolated rat glomeruli using a perifusion system. Perifusate containing a mixture of essential amino acids stimulated SLI release, while other hormonal agents such as parathyroid hormone, vasopressin, angiotensin II, bradykinin, epinephrine, PGE2, known to have direct actions on the glomerulus, had no discernible effect on SLI release. Addition of somatostatin to the perifusate did not affect either basal or angiotensin II-stimulated PGE2 release from isolated glomeruli. Our preliminary results demonstrate the stimulatory effect of mixed amino acids on somatostatin release from isolated glomeruli. Further studies are needed to elucidate the possible physiological significance of the present findings.

Amino Acids↗

Assignment of the gene for human sphingolipid activator protein-2 (SAP-2) to chromosome 10.

Sphingolipid activator protein-2 (SAP-2) has been found to stimulate the enzymatic hydrolysis of glucosylceramide, galactosylceramide, and sphingomyelin. When human skin fibroblast extracts were subjected to sodium dodecylsulfate-polyacrylamide gel electrophoresis followed by electroblotting and immunochemical staining using monospecific antibodies against SAP-2, two or three major bands with estimated mol. wts. of 9,000-10,000 were found. These antibodies did not crossreact with purified SAP-1, another activating protein, or with extracts of CHO-K1 cells. A series of 22 human/Chinese hamster ovary cell hybrids containing different human chromosomes were examined by this method. All eight hybrid clones containing human chromosome 10 were found to have crossreacting protein in this region. Other chromosomes could be excluded by this method. From these results, we conclude that the gene coding for human SAP-2 is located on chromosome 10.

Animals↗

Heparan sulfate and dermatan sulfate from the liver of a patient with Hurler syndrome: high performance liquid chromatography of their degradation products after incubation with alpha-L-iduronidase-deficient fibroblasts.

Using a high performance liquid chromatography method, degradation products of heparan sulfate (HS) and dermatan sulfate (DS) were investigated after incubation of control and alpha-L-iduronidase-deficient fibroblasts with HS or DS. Characteristic elution profiles of the degradation products were obtained from the respective alpha-L-iduronidase-deficient fibroblasts. Moreover, alpha-L-iduronidase in control fibroblasts was resolved into two distinct components, forms A and B, on DEAE-cellulose column chromatography. Form A alpha-L-iduronidase could degrade HS, but not DS. Conversely, form B alpha-L-iduronidase could not degrade HS, but could degrade DS.

Chondroitin↗

Properties of alpha-L-iduronidase in cultured skin fibroblasts from alpha-L-iduronidase-deficient patients.

On DEAE cellulose column chromatography, alpha-L-iduronidase in cultured skin fibroblasts was resolved into two distinct components, forms A and B. They had similar Km values for 4-methylumbelliferyl-alpha-L-iduronide, but differed in pH optima and thermal stability. Form B was more heat-stable than form A. Residual alpha-L-iduronidase activity in Hurler fibroblasts was heat-stable, while that in Scheie fibroblasts was heat-labile, and moreover, that in Hurler-Scheie compound fibroblasts lay intermediate between Hurler and Scheie syndromes. These findings demonstrated that Hurler syndrome, Scheie syndrome and Hurler-Scheie compound were enzymatically distinguishable.

Cells, Cultured↗

Activities of sulfatases for the degradation of acidic glycosaminoglycans in cultured skin fibroblasts from two siblings with multiple sulfatase deficiency.

Cultured skin fibroblasts from two siblings with multiple sulfatase deficiency (MSD) were assayed for the activities of sulfatases known to degrade acidic glycosaminoglycans (AGAG). There were iduronate sulfatase, arylsulfatase B, heparan sulfate (HS) sulfatase, N-acetylgalactosamine-6-sulfate sulfatase, HS-derived N-acetylglucosamine-6-sulfate sulfatase, and two keratan sulfate (KS)-derived N-acetylglucosamine-6-sulfate sulfatases. The activities of sulfatases required for the degradation of HS were reduced to a greater extent than those for the degradation of dermatan sulfate (DS), and those of sulfatases associated with basic defect of Morquio disease type A were moderately decreased or normal. On the other hand, urinary excretion of AGAG in both patients was increased about 10-fold compared to controls, and especially, the excretion of HS and DS was increased about 150-fold and 50-fold, respectively. Keratan sulfate was not detected. The results suggest that in patients with MSD the degradation of HS might be affected to a greater extent than that of DS.

Cells, Cultured↗

Somatostatin-like immunoreactivity in the glomerulus of rat kidney.

It has been shown that somatostatin inhibits the antidiuretic action of vasopressin in toad urinary bladder in vitro and in dogs and rats in vivo. The presence of somatostatin-like immunoreactivity (SLI) in the urinary bladder and kidney of the toad has suggested the possibility that somatostatin may act as a local paracrine hormone modulating the effect of vasopressin in the toad; however, the inability to localize SLI in mammalian kidney has raised doubt about the physiological role of somatostatin in the mammalian renal function. We identified SLI in rat kidney. Chromatography of rat kidney extracts of Sephadex G50 superfine revealed a single peak of SLI that co-eluted with somatostatin-14. Using the avidin-biotin-peroxidase conjugate technique, we localized SLI exclusively to small cells in the glomerulus with an estimated number of four to eight cells per glomerulus. Functional significance of somatostatin in the mammalian kidney is to be determined.

Animals↗

Prenatal diagnosis of Hurler's syndrome--biochemical studies on the affected fetus.

A prenatal diagnosis of Hurler's syndrome was made in a pregnancy at risk in a family with two affected children. The fetus was diagnosed as having Hurler's syndrome on the basis of a deficiency of alpha-L-iduronidase in the cultured amniotic cells. The glycosaminoglycans (GAG) content in the supernatant of the amniotic fluid was increased about 1.5 fold compared with that in the control, and increases of heparan sulfate and dermatan sulfate were observed on electrophoresis. The diagnosis could be confirmed by the deficiencies of alpha-L-iduronidase in the liver and brain from the affected fetus. GAG content in the liver from the affected fetus was increased approximately 10 fold as compared with that in the control fetal liver, and most of the GAG were degraded. The GAG content was observed to be increased two fold in the brain, and dermatan sulfate, which was not detected in normal fetal brain, was identified. beta-Galactosidase activities in the affected liver and brain were decreased to 30-50% of the control, and an altered hexosaminidase A was also observed in the liver.

Amniotic Fluid↗