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Biomedical subjects

S Osada

Publications and source records attributed to S Osada.

At least 91 records · Page 5Linked to original sources

A new protein kinase C, nPKC eta', and nPKC theta are expressed in human platelets: involvement of nPKC eta' and nPKC theta in signal transduction stimulated by PAF.

We have detected in human platelets two protein kinase C isozymes that have not been reported previously. Using an anti-nPKC theta antibody and Western blotting, we calculated the molecular weight of platelet nPKC theta as 79K. This molecular weight is identical to that described for nPKC theta in skeletal muscle and in COS cells transfected with the nPKC theta-cDNA. Using an anti-nPKC eta antibody, we determined the molecular weight of an immunoreactive protein, which we called nPKC eta', to be 95K. This molecular weight is higher than that of nPKC eta found in lung and skin tissue of 82K and 78K, and it is higher than nPKC eta of COS cells transfected with the nPKC eta-cDNA expression plasmid. Together with previous reports, these findings make the total number of PKC isozymes in human platelets equal to six. These are the PKC isozymes: alpha, beta, delta and zeta, which have been previously described, and eta' and theta which we describe here. To assess the functionality of these new PKC isoforms, we stimulated platelets with PAF. We found a 200% and 175% increase in the levels of membrane-bound nPKC eta' and nPKC theta, respectively, in human platelets stimulated by PAF. A concomitant decrease in the level of these isoforms in the cytoplasm was observed. This PAF-induced translocation was time-dependent, and it reached its peak after a 1 minute incubation of human platelets with PAF for nPKC theta and 30 seconds for nPKC eta'.

Amino Acid Sequence↗

Tyrosine phosphorylation of phospholipase C gamma in c-met/HGF receptor-stimulated hepatocytes: comparison with HepG2 hepatocarcinoma cells.

Hepatocyte growth factor (HGF) stimulates inositol 1,4,5-trisphosphate (InsP3) formation in rat primary cultured hepatocytes, which is inhibited by the pretreatment with a tyrosine kinase inhibitor, genistein. This InsP3 production was coincident with tyrosine phosphorylation of phospholipase C gamma (PLC gamma), detected in immunoprecipitates with anti-PLC gamma, suggesting activation mechanism of PLC gamma by tyrosine phosphorylation. However, in human hepatocarcinoma HepG2 cells, HGF, which suppresses cell growth, causes neither phosphorylation of PLC gamma nor InsP3 formation. The results suggests that PLC gamma in normal hepatocytes was activated by HGF through tyrosine kinase of HGF receptor.

Animals↗

Messenger RNA expression for growth factors in glomeruli from focal glomerular sclerosis.

Focal glomerular sclerosis was induced in rats by chronic injections of puromycin aminonucleoside (PAN) on Days 0, 27, 34, and 41 and by unilateral nephrectomy on Day 22. Rats were sacrificed on Days 0, 8, and 20 (acute phase) and on Days 48, 60, and 80 (sclerotic phase). The percentage of sclerosing glomeruli was 16.6% on Day 48 and increased significantly to 72.8% on Day 80. We examined glomerular mRNA levels for proliferating cell nuclear antigen (PCNA), platelet-derived growth factor (PDGF)-A and B chains, transforming growth factor (TGF)-beta, epidermal growth factor (EGF), insulin-like growth factor (IGF)-I, and basic fibroblast growth factor (bFGF) on Days 0, 8, 20, 48, 60, and 80. Although these growth factor mRNA levels showed little change in glomeruli until Day 20, all growth factor mRNA levels increased in glomeruli during the sclerotic phase of PAN nephrosis as glomerular sclerosis progressed. On Day 80, mRNA levels for PCNA, PDGF-A and B chains, TGF-beta, EGF, IGF-I, and bFGF increased 12-, 10-, 12-, 15-, 2-, 2-, and 8-fold, respectively, in the glomeruli of PAN-treated rats with marked glomerular sclerosis when compared with control rats. Unilateral nephrectomy without PAN administration did not cause glomerular sclerosis up to Day 80 and mRNA levels for PCNA, PDGF-A and -B chains, TGF-beta, EGF, IGF-I, and bFGF in this group were almost the same as those in the normal sham-operated group. These data suggest that changes in growth factor mRNA levels in glomeruli may contribute to the development of PAN-induced glomerular sclerosis.

Animals↗

PKC gamma gene expression is delayed in postnatal central nervous system of mi/mi mice.

In the central nervous system (CNS), the expression of protein kinase C (PKC) genes is strictly controlled by the developmental stage. We have examined the expression of PKC genes (cPKC alpha, beta, gamma, and nPKC delta, epsilon) in the process of the postnatal development in normal (+/+) C57BL/6 and microphthalmic (mi/mi) C57BL/6 mouse brains by Northern blotting and in situ hybridization. By Northern blotting, the expression level of cPKC gamma mRNA in mi/mi mice was significantly lower than that in +/+ littermates at d 9, 13, and 17. By in situ hybridization analysis, cPKC gamma mRNA-positive cells were detected in hippocampal and Purkinje cells in +/+ and mi/mi mice, but the magnitude of the signals in mi/mi mice was lower than that of +/+ mice, and the number of positive cells was smaller, whereas other isozymes (cPKC alpha, beta, and nPKC delta, epsilon) showed no significant difference between normal and mi/mi mice. The neuronal morphometric analysis by anti-P400 antibody revealed the same number and expression level of P400 protein in cerebellar Purkinje cells compared with +/+ mice. These results indicate that the deficiency of mi gene product causes the delayed expression of the cPKC gamma gene.

Animals↗

Gene expression of metalloproteinases and their inhibitor in renal tissue of New Zealand black/white F1 mice.

1. The present study was carried out to determine how levels of the mRNA of metalloproteinases (metalloproteinase-1, 72 kDa type IV collagenase, metalloproteinase-3 and 92 kDa type IV collagenase) and tissue inhibitor of metalloproteinases are regulated in the renal tissues of New Zealand Black/White F1 mice. 2. mRNA levels for metalloproteinase-1, 72 kDa type IV collagenase, metalloproteinase-3 and tissue inhibitor of metalloproteinases increased significantly with the progression of nephritis in New Zealand Black/White F1 mice. 3. At 48 weeks of age, the levels of mRNA for metalloproteinase-1, 72 kDa type IV collagenase, metalloproteinase-3 and tissue inhibitor of metalloproteinases increased by 8-, 4-, 8- and 15-fold, respectively, in the renal tissues of New Zealand Black/White F1 mice compared with New Zealand White mice. 4. In the kidneys of New Zealand White mice, however, the mRNA levels of these proteins changed little throughout the experimental period. 5. We could not detect expression of mRNA for 9 2 kDa type IV collagenase in the renal tissue of New Zealand Black/White F1 mice at 8 weeks of age or in New Zealand White mice at 8, 24 or 48 weeks of age, whereas we could detect expression of mRNA for this protein in New Zealand Black/White F1 mice at 24 and 48 weeks of age when mononuclear cells had infiltrated the interstitium and surrounding blood vessels. 6. At 24 weeks of age, New Zealand Black/White F1 mice were divided into two groups and received either methylprednisolone or saline injection for 24 weeks.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Differentiation-associated localization of nPKC eta, a Ca(++)-independent protein kinase C, in normal human skin and skin diseases.

The expression of nPKC eta, a Ca(++)-independent isoform of protein kinase C in normal human skin, and skin from patients with psoriasis, squamous cell carcinoma, basal cell epithelioma, nevus pigmentosus, and seborrheic keratosis, were examined by immunohistochemical staining using a polyclonal antibody raised against a synthetic peptide at a diverse region of the nPKC eta molecule. In normal epidermis, the strongest staining was observed in the uppermost granular layer with no staining of the spinous or basal layers. The inner layer of the intra-epidermal eccrine duct was also strongly stained. Weak staining was observed in several layers of the outer root sheath of the follicular infundibulum. No staining was detected in the inner root sheath of the hair follicles, hair matrix, sebaceous gland, eccrine gland, intradermal eccrine duct, arrectores pilorum, melanocytes, Langerhans cells, fibroblasts, or blood vessels. In psoriatic skin, stained keratinocytes were distributed in the suprabasal layers with the most being observed in the uppermost layer and the least in layers closed to the basal layer. In squamous cell carcinoma, weak staining was observed in the keratotic cells around horny pearls. In the basal cell epithelioma and nevus pigmentosus, the cells were not stained, whereas in seborrheic keratosis, cells that stained were located in the granular layer. We conclude from the evidence presented above that nPKC eta is expressed in close association with epidermal differentiation in normal skin and skin diseases.

Adult↗

Increased endothelin and endothelin receptor mRNA expression in polycystic kidneys of cpk mice.

The renal mRNA levels of endothelin (ET)-1 and ET-3 and for ET receptors A and B were measured in the cystic kidneys of cpk/cpk mice at 1, 2, and 3 wk of age. At 1 wk of age, renal ET-1 mRNA was 3.2-fold greater in cystic mice than in controls and continued to increase with the progression of cyst formation to reach 10.4-fold more than controls at 3 wk. ET-3 mRNA levels did not differ between cystic and control mice. Renal ETA and ETB receptor mRNA increased gradually in cystic mice with the progression of their cysts, reaching 4.2- and 6.3-fold increases over controls, respectively, at 3 wk. Proliferating cell nuclear antigen mRNA expression was also examined, and proliferating cell nuclear antigen mRNA levels were found to be significantly increased in the kidneys of cystic mice compared with controls: 2. 1-fold at 1 wk, 4.5-fold at 2 wk, and 7.8-fold at 3 wk. The mRNA levels for transforming growth factor beta (TGF-beta) and tumor necrosis factor alpha (TNF-alpha) in the kidneys of cystic mice were also examined and were found to be increased progressively with age (TGF-beta, 2.1-fold at 1 wk, 4.2-fold at 2 wk, and 6.2-fold at 3 wk; TNF-alpha, 2.2-fold at 1 wk, 3.8-fold at 2 wk, and 5.4-fold at 3 wk).(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors↗

mRNA expression of growth factors in glomeruli from diabetic rats.

Evaluations of glomerular mRNA levels encoding for PCNA, TNF-alpha, PDGF-A and -B chains, TGF-beta, IGF-I, bFGF, and EGF were made at 4, 12, and 24 wk after injection of STZ in Sprague-Dawley rats. The mRNA levels for PCNA, TNF-alpha, PDGF-B chain, TGF-beta, and bFGF increased with age in STZ-induced diabetic rats. At 24 wk after STZ injection, mRNA levels for PCNA, TNF-alpha, PDGF-B chain, TGF-beta, and bFGF were increased 3.8-fold, (P < 0.01), 4.2-fold (P < 0.01), 4.0-fold (P < 0.01), 5.2-fold (P < 0.001), and 3.6-fold (P < 0.01), respectively, in the glomeruli of diabetic rats when compared with control rats. In contrast, mRNA levels for IGF-I, PDGF-A chain, and EGF were not altered in glomeruli from diabetic and control rats throughout the experimental period. Insulin treatment partially ameliorated the increase in mRNA levels for PCNA, TNF-alpha, PDGF-B chain, TGF-beta, and bFGF in the glomeruli of diabetic rats. These data indicate that alterations in growth factor mRNA levels in glomeruli may be a manifestation of diabetic nephropathy, and that hyperglycemia or insulin deficiency may play a role in abnormal growth factor gene regulation.

Animals↗

Gene expression for endothelins and their receptors in glomeruli of diabetic rats.

The present study was designed to assess levels of messenger RNA encoding for endothelin-1, endothelin-3, and endothelin receptors A and B in glomeruli of rats with streptozotocin-induced diabetes at 4, 12, and 24 weeks of age. In addition, streptozotocin-induced rats with diabetes were either treated with 8 to 14 units neutral protamine Hagedorn insulin daily to maintain moderate hyperglycemia (approximately 200 mg/dl) or left untreated to produce severe hyperglycemia (more than 400 mg/dl) during the 4-week study period. The messenger RNA levels for endothelin-1 in glomeruli of diabetic rats increased with the progression of diabetic nephropathy (4 weeks, 2.5 times control level, p < 0.01; 12 weeks, 3.8 times, p < 0.01; and 24 weeks, 5.3 times, p < 0.001. In contrast, messenger RNA levels for endothelin receptors A and B were not altered in glomeruli from diabetic and control rats throughout the experimental period. Messenger RNA for endothelin-3 in glomeruli from diabetic and control rats was not detected until 24 weeks of age. Insulin treatment partially ameliorated the increase in messenger RNA for endothelin-1 in the glomeruli of diabetic rats (0.3 times compared with diabetic rats without insulin treatment, p < 0.01), whereas insulin treatment did not affect messenger RNA for endothelin receptors A and B in diabetic glomeruli. These findings indicate that increased endothelin-1 messenger RNA in glomeruli may be a manifestation of diabetic nephropathy, and hyperglycemia or insulin-deficiency may play a role in abnormal endothelin-1 gene regulation.

Animals↗

Predominant expression of nPKC eta, a Ca(2+)-independent isoform of protein kinase C in epithelial tissues, in association with epithelial differentiation.

Of the nine known members of the protein kinase C (PKC) family, we found that novel (n-) PKC eta, a newly isolated Ca(2+)-independent isoform, was expressed at the highest level in the epidermis of mouse skin and epithelia of the digestive and respiratory tracts including the tongue, esophagus, forestomach, glandular stomach, intestine, colon, trachea, and bronchus. Expression of nPKC eta mRNA in these epithelial tissues was 3-10 times that in the brain and was especially high in squamous epithelium. Two other PKC isoforms, conventional (c-) PKC alpha and nPKC delta, were also expressed in these epithelial tissues, but no cPKC gamma was detected. In situ hybridization and immunohistochemical analyses demonstrated the localization of nPKC eta in suprabasal layers of the skin, tongue, esophagus, and forestomach. In the intestine, it was expressed in the epithelial cells of villi, but not of crypts. In the lung, only bronchial epithelium expressed nPKC eta. The localization of nPKC eta in differentiating or differentiated epithelial cells, rather than in proliferating basal cells, suggests the involvement of nPKC eta in epithelial differentiation.

Amino Acid Sequence↗

Increased mRNA expression encoding for medullasin in peripheral blood mononuclear cells from patients with IgA nephropathy.

We investigated mRNA expression for medullasin (an inflammatory serine protease in bone marrow cells) in peripheral blood mononuclear cells (PBMC) obtained from 36 patients with primary IgA nephropathy (IgAN), 30 patients with other types of primary glomerular disease, 18 patients with secondary IgA nephritis including lupus nephritis and hepatic glomerulosclerosis and 24 healthy age-matched controls. The majority of patients with IgAN (86%) showed elevated medullasin expression in PBMC, while no medullasin mRNA expression was detected in PBMC obtained from patients with other types of primary glomerular disease, secondary IgA nephritis or normal healthy controls. A positive correlation was noted between mRNA levels and urinary protein excretion. The medullasin mRNA expression in PBMC also correlated with the severity of the histopathologic changes in renal tissue obtained from patients with IgAN. All the patients with severe proteinuria (more than 3.0 g/day) showed strong [more than (++)] medullasin mRNA expression in their PBMC. In addition, all the patients with more than (++) medullasin mRNA expression are grade III or IV histopathological findings. These studies suggest that abnormally regulated medullasin gene expression in PBMC may be associated with the progression of primary IgAN.

Adult↗

Cytosolic calcium oscillations induced by hepatocyte growth factor (HGF) in single fura-2-loaded cultured hepatocytes: effects of extracellular calcium and protein kinase C.

Hepatocyte growth factor (HGF) induced the periodic fluctuations of cytosolic calcium concentration ([Ca2+]i) in primary cultured rat hepatocytes, which were dependent on extracellular calcium. The HGF-induced [Ca2+]i oscillations were suppressed by the pretreatment with phorbol 12-myristate 13-acetate (PMA). Administration of PMA during oscillations also caused their blockade, but the subsequent addition of protein kinase C (PKC) inhibitor H-7 reversed the inhibitory effects of PMA, thereby resulting in the resumption of the oscillatory responses. Moreover, the prior exposure to H-7 caused apparent increases in [Ca2+]i spike peaks elicited by HGF. These results suggest a negative modulation via PKC in HGF-induced repetitive [Ca2+]i transients. The absence of HGF-induced oscillations after the thapsigargin treatment indicates that the agonist-sensitive intracellular Ca2+ pool plays a crucial role in the [Ca2+] oscillations.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Hepatocyte growth factor (HGF) mediates the sustained formation of 1,2-diacylglycerol via phosphatidylcholine-phospholipase C in cultured rat hepatocytes.

The addition of hepatocyte growth factor (HGF) to rat hepatocytes in primary culture resulted in the formation of inositol 1,4,5-trisphosphate (Ins(1,4,5)P3) and 1,2-diacylglycerol (DG) by a phosphoinositide-specific phospholipase C (PI-PLC). DG showed a biphasic increase; the first phase, corresponding with the peak of Ins(1,4,5)P3 and a second larger and prolonged phase. The HGF stimulates the phosphatidylcholine (PC)-derived prolonged DG formation by a phospholipase C pathway (PC-PLC) but not by a phospholipase D pathway. HGF also was found to elicit [Ca2+] oscillations which may be associated with the prolonged DG production from PC via the PC-PLC phospholipase C pathway.

Animals↗

Purification and characterization of protein kinase C epsilon from rabbit brain.

Protein kinase C epsilon was chromatographically purified from rabbit brain to electrophoretic homogeneity. We identified the enzyme as the epsilon species of novel-type protein kinase C (nPKC epsilon), originally discovered and defined by cDNA cloning [Ohno, S., et al. (1988) Cell 53, 731-741], on the basis of the following observations: (i) the enzyme reacts specifically with an antipeptidic antiserum to nPKC epsilon but not with antisera to any of the other molecular species of PKC thus far known; (ii) it exhibits enzymatic behavior essentially identical to that of a recombinant nPKC epsilon purified from transfected COS cells [Konno, Y., et al. (1989) J. Biochem. 106, 673-678] and distinct from that of conventional PKC (alpha, beta I/II, and gamma) in its dependence on magnesium concentration and cofactors such as phospholipids, calcium, and phorbol ester; and (iii) it has an apparent molecular weight of 95.7K +/- 0.4K on SDS-PAGE, significantly greater than the other conventional and novel PKCs thus far identified. Notably, calcium exhibits a complex effect, both positive and negative, on the kinase activity of epsilon depending on the kind of substrate and the coexisting phospholipid, calling for a modification of the current notion that epsilon is a kinase unresponsive to calcium. The amount of epsilon species in the brain was estimated to be comparable to that of each conventional species, indicating that epsilon stands as one of the major PKC family members in brain. Furthermore, the enzyme shows a broader substrate spectrum than conventional PKC when examined with endogenous substrates, implying that it may cover a wider or different range of physiological functions.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Perforin gene expression in T lymphocytes correlates with disease activity in immunoglobulin A nephropathy.

1. We studied perforin gene expression in T lymphocytes obtained from 26 patients with IgA nephropathy and from 15 healthy age-matched control subjects. 2. The majority of patients with IgA nephropathy (96%) had elevated perforin mRNA expression, whereas no perforin mRNA expression was detected in the T lymphocytes of normal control subjects. 3. A positive correlation was noted between perforin mRNA expression and urinary protein excretion. 4. Perforin mRNA expression correlated also with the histopathology in the renal tissue of patients with IgA nephropathy. 5. Sixty per cent of patients with grade III or IV histopathology had high perforin mRNA expression in T lymphocytes [more than (++)]. 6. These studies suggest that disregulation of perforin gene expression in T lymphocytes may be associated with the progression of IgA nephropathy and could be used as an indicator of disease activity.

Adolescent↗

A new member of the protein kinase C family, nPKC theta, predominantly expressed in skeletal muscle.

A new protein kinase C (PKC)-related cDNA with unique tissue distribution has been isolated and characterized. This cDNA encodes a protein, nPKC theta, which consists of 707 amino acid residues and showed the highest sequence similarity to nPKC delta (67.0% in total). nPKC theta has a zinc-finger-like cysteine-rich sequence (C1 region) and a protein kinase domain sequence (C3 region), both of which are common in all PKC family members. However, nPKC theta lacks a putative Ca2+ binding region (C2 region) that is seen only in the conventional PKC subfamily (cPKC alpha, -beta I, -beta II, and -gamma) but not in the novel PKC subfamily (nPKC delta, -epsilon, -zeta, and -eta). Northern (RNA) blot analyses revealed that the mRNA for nPKC theta is expressed predominantly in skeletal muscle. Furthermore, nPKC theta mRNA is the most abundantly expressed PKC isoform in skeletal muscle among the nine PKC family members. nPKC theta expressed in COS1 cells serves as a phorbol ester receptor. By the use of an antipeptide antibody specific to the D2-D3 region of the nPKC theta sequence, nPKC theta was recognized as a 79-kDa protein upon sodium dodecyl sulfate-polyacrylamide gel electrophoresis in mouse skeletal muscle extract and also in an extract from COS1 cells transfected with an nPKC theta cDNA expression plasmid. Autophosphorylation of immunoprecipitated nPKC theta was observed; it was enhanced by phosphatidylserine and 12-O-tetradecanoylphorbol-13-acetate but attenuated by the addition of Ca2+. These results clearly demonstrate that nPKC theta should be considered a member of the PKC family of proteins that play crucial roles in the signal transduction pathway.

Amino Acid Sequence↗

A Ca(2+)-independent protein kinase C, nPKC eta: its structure, distribution and possible function.

Protein kinase C consists of a protein family which can be classified into two major groups: Ca(2+)-dependent conventional protein kinase C and Ca(2+)-independent novel protein kinase C (nPKC). Among eight known members of protein kinase C family, we found that nPKC eta (eta) isolated from cDNA library of mouse skin, is most abundant in epithelial tissues including skin and epithelia of digestive and respiratory tracts. These data suggest potential role of this isoform in growth, differentiation and carcinogenesis of epithelial tissues.

Animals↗

Structure and properties of a ubiquitously expressed protein kinase C, nPKC delta.

cDNA clones coding for novel protein kinase C delta (nPKC delta) were isolated from a mouse brain cDNA library. Mouse nPKC delta consists of 674 amino acid residues and has sequence identity of 95% with rat nPKC delta. Antiserum raised against a C-terminal peptide of rat nPKC delta identified a 79-kDa protein in COS cells transfected with a mouse nPKC delta cDNA expression plasmid. nPKC delta expressed in COS1 cells had phorbol-ester-binding activity and protein kinase activity in a phorbol-ester- or diacylglycerol-dependent manner, like conventional protein kinase C (cPKC) isozymes and nPKC epsilon. However, nPKC delta, like nPKC epsilon, is not activated by Ca2+, a known activator of cPKCs, and requires lower concentrations of Mg2+ for full activation than cPKCs. Moreover, apparent kinetic constants for synthetic oligopeptides (MBP4-14, EGFR peptide and epsilon-peptide) were quite different between nPKC delta and cPKC in two different conditions. Among various phospholipids tested, phosphatidylinositol is the most potent activator of nPKC delta, in clear contrast to cPKCs and nPKC epsilon. Limited proteolysis of nPKC delta generated a C-terminal active fragment with a cofactor-independent kinase activity. Northern blot analysis indicated that nPKC delta, like cPKC alpha, is widely distributed in almost all the tissues and cells examined and, in some cases such as fibroblast cells, exists as a major PKC type. These results suggest that nPKC delta is involved in fundamental cellular functions regulated by diacylglycerols and mimicked by phorbol esters.

Amino Acid Sequence↗