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M Yokode

Publications and source records attributed to M Yokode.

At least 37 records · Page 2Linked to original sources

Cholesterol efflux effect of high density lipoprotein is impaired by whole cigarette smoke extracts through lipid peroxidation.

It has been reported that high density lipoprotein (HDL) plays an anti-atherogenic role by stimulating cholesterol efflux from the foam cells in the atheromatous lesion. In this study, we prepared a novel modified form of HDL (CS-HDL) by incubating HDL with whole cigarette smoke (CS) extracts containing both particulate matter and gas-phase smoke, and examined its effect on cholesterol efflux. CS-HDL showed a marked increase of conjugated dienes and denaturation of apoA-I, a major protein component of HDL. The cholesterol efflux effect of CS-HDL was remarkably reduced to the same level as that of oxidatively modified HDL induced by copper ion (Ox-HDL). Addition of 20 microg/ml superoxide dismutase (SOD) during the CS-modification of HDL caused retrieval of cholesterol efflux activity by 53% and a remarkable decrease in the conjugated dienes level. SOD, however, had no ameliorative effect on apoA-I denaturation. When HDL was incubated only with gas-phase smoke (gasCS-HDL), neither increase of conjugated dienes nor impairment of the cholesterol efflux effect was observed, whereas apoA-I was denaturated to the same extent as seen in CS-HDL. These results indicate that whole CS-extracts, but not gas-phase smoke, reduces cholesterol efflux effect of HDL and that lipid peroxidation associated with superoxide anion is involved in this functional impairment.

Animals↗

Induction of endothelial platelet-derived growth factor-B-chain and intercellular adhesion molecule-1 by lysophosphatidylcholine.

Lysophosphatidylcholine (lyso-PC) is a major phospholipid component of atherogenic lipoproteins. Lyso-PC has been shown to differentially upregulate the adhesion molecules, such as VCAM-1 and ICAM-1, as well as smooth muscle growth factors, such as PDGF-A, B chains and HB-EGF gene expression in various cultured endothelial cells. In this paper, we demonstrate increased expression of cell- and matrix-associated forms of PDGF-B protein elicited by lyso-PC and further characterized potential signal transduction mechanisms responsible for lyso-PC-induced human umbilical vein endothelial cell. Cycloheximide inhibited PDGF-B but not ICAM-1 mRNA induction by lyso-PC, suggesting the dependence on de novo protein synthesis for PDGF-B, but not ICAM-1. A protein kinase C (PKC) inhibitor did not block lyso-PC-induced increases in PDGF-B or ICAM-1 mRNA. The elevated level of cAMP blocked both PDGF-B and ICAM-1 upregulation by lyso-PC. However cAMP-elevating agents did not suppress ICAM-1 upregulation by PMA. Taken together, PDGF-B and ICAM-1 gene induction by lyso-PC may involve different signaling mechanisms; however, both appear to be independent of PMA-regulatable PKC activation but are suppressed by increased levels of intracellular cAMP.

Blotting, Northern↗

Response of the extramedullary lung plasmacytoma with pleural effusion to chemotherapy.

An elderly patient with extramedullary lung plasmacytoma and subsequent pleural effusion is described. The presence of abnormal plasma cells in the pleural fluid led to diagnosis. Histologically similar conditions such as multiple myeloma and solitary myeloma of bone were ruled out by clinical evaluation. These neoplasms usually occur in the head and neck area and are not characterized by paraprotein accumulation. Few cases in the lung have been reported. We describe a case of extramedullary plasmacytoma of the lung with plasmacytoma-induced pleural effusion and the presence of monoclonal paraprotein in both the serum and urine. Chemotherapy with melphalan was effective in reducing the size of the plasmacytoma, and pleurodesis was used to manage the pleural effusion.

Aged↗

Effect of intraluminal pressure on the intimal thickening in injured rabbit carotid arteries in an organ-culture system.

We developed an organ culture system in order to examine the effect of intraluminal pressure on intimal thickening in injured arteries. After endothelial denudation, an excised rabbit common carotid artery was incubated at 37 degrees C in a glass bottle perfused with Dulbecco's modified Eagle medium containing 10% fetal calf serum at a constant flow rate of 6 ml/h at various static pressure of 60, 95, 130, 165, or 200 cmH2O. Intimal thickening, which consisted of smooth muscle cells and extracellular matrix, increased in a time- and pressure-dependent manner up to 130 cmH2O. Excessive pressured (165 and 200 cmH2O), however, caused necrosis in the media. These results suggest that a rise in intraluminal pressure accelerates intimal thickening in injured arteries.

Animals↗

Regulation of apolipoprotein B secretion in hepatocytes from Watanabe heritable hyperlipidemic rabbit, an animal model for familial hypercholesterolemia.

Regulation of apolipoprotein B-100 (apo B) secretion in the liver in familial hypercholesterolemia (FH) remains largely unknown. In a previous study, we developed a rabbit hepatocyte culture system and investigated a cellular mechanism which regulates apo B secretion from hepatocytes in response to cellular cholesteryl ester contents [18]. Using this system, in the present study, we investigated regulation of apo B secretion in hepatocytes from the Watanabe heritable hyperlipidemic (WHHL) rabbit, an animal model for FH. Incubation with low density lipoproteins (LDL) at concentrations of 50 or 200 micrograms/ml, which increased both cellular cholesteryl ester and apo B secretion significantly in normal rabbit hepatocytes, did not cause such increases in WHHL rabbit hepatocytes. However, when WHHL rabbit hepatocytes were incubated with LDL at a concentration of 500 micrograms/ml, a significant increase in cellular cholesteryl ester and apo B secretion was observed. The effect of the increase in cellular level of cholesteryl ester upon apo B secretion in WHHL rabbit hepatocytes was compatible with that in normal rabbit hepatocytes. Indeed, when WHHL rabbit hepatocytes were incubated with LDL at 1680 micrograms/ml, a concentration comparable to that of WHHL rabbit plasma, the amount of LDL degradation, cellular cholesteryl ester level, and level of apo B secretion were the same as those in normal rabbit hepatocytes that were incubated with LDL at 160 micrograms/ml, a concentration comparable to that of normal rabbit plasma. In summary, our present study suggests that, at a steady state with such a high plasma concentration of LDL, the hepatic cholesterol content in WHHL rabbits could be set at the same level as in normal rabbits. It was also shown that cellular cholesteryl ester contents had the same regulatory effect on apo B secretion in WHHL rabbit hepatocytes as in normal rabbit hepatocytes. Therefore, we conclude that in the presence of the genetic defect of the LDL receptor, plasma cholesterol in WHHL rabbit is maintained at a concentration such that apo B secretion is similar to that in normal rabbit.

Animals↗

Coexistent myelodysplastic syndrome and non-Hodgkin lymphoma. Report of a case and review of the literature.

The patients with a hematopoietic neoplasm can develop myelodysplastic syndrome following chemotherapy. We report herein a case of non-Hodgkin B-cell lymphoma and refractory anemia with ringed sideroblasts. Absence of the preceding chemotherapy establishes the true coincidence of the two disorders. We review 25 similar cases reported in the last 11 years and discuss the possible etiology of coexistence.

Aged↗

[Molecular analysis of the LDL receptor].

The LDL receptor is a cell surface glycoprotein that regulates plasma cholesterol by mediating endocytosis of LDL, the major cholesterol transport protein in human plasma. Mutations in the LDL receptor gene cause familial hypercholesterolemia (FH). The LDL receptor was purified in 1982, its cDNA was cloned in 1984 by Yamamoto et al, and its gene was isolated in 1985 by Sudhof et al. This review attempts to focus on the molecular basis of the LDL receptor pathway and its regulatory roles in cholesterol homeostasis in the body.

Animals↗

Regulation of apolipoprotein B production and secretion in response to the change of intracellular cholesteryl ester contents in rabbit hepatocytes.

In the present study, we investigated the mechanisms that regulate apolipoprotein B-100 (apoB) secretion in response to the change of intracellular cholesteryl ester contents by adding low density lipoprotein (LDL) and an inhibitor of 3-hydroxy-3-methylglutaryl-CoA reductase (pravastatin) in rabbit hepatocyte culture system. LDL caused a significant dose-dependent increase in apoB secretion. On the other hand, the addition of pravastatin decreased apoB secretion significantly. LDL caused a dose-dependent increase in cellular cholesteryl ester, while cellular cholesteryl ester was decreased by pravastatin significantly. Therefore, these results indicate that the change of apoB secretion was in parallel with the change of cellular cholesteryl ester contents. Cellular contents of free cholesterol, triglyceride, and phospholipid did not change. To investigate intracellular degradation of apoB prior to secretion, pulse-chase experiments were performed. It was shown that the addition of pravastatin accelerated intracellular degradation of apoB, while LDL slowed the apoB intracellular degradation rate. We also investigated whether the change of cellular cholesteryl ester could affect the apoB mRNA level. Northern blot analysis and solution hybridization RNase protection assay demonstrated that neither LDL nor pravastatin caused a significant change in cellular apoB mRNA level. We conclude that intracellular cholesteryl ester contents play a critical role in apoB secretion, and the intracellular apoB degradation rate could be the main mechanism that regulates apoB secretion in response to the change of intracellular cholesteryl ester level.

Acetates↗

Cytoplasmic sequence required for basolateral targeting of LDL receptor in livers of transgenic mice.

When expressed in livers of transgenic mice, the human low density lipoprotein (LDL) receptor is specifically targeted to the basolateral (sinusoidal) surface of hepatocytes as determined by immunofluorescence and immunoelectron microscopy. The COOH-terminal cytoplasmic domain of the receptor (residues 790-839) contains a signal for this targeting. A mutant receptor truncated at residue 812 was localized exclusively to the apical (bile canalicular) surface. A mutant receptor terminating at residue 829 showed the normal basolateral distribution, as did a receptor in which alanine was substituted for serine 833, which was previously shown to be a site for phosphorylation in vitro. These data localize the basolateral targeting signal to the 17-residue segment between residues 812 and 828. A 10-amino acid stretch within this segment shows a 4/10 match with a sequence within a previously identified basolateral sorting motif for the receptor for polymeric IgA/IgM in MDCK cells. The four shared residues are spaced at intervals of three, raising the possibility that they all face the same side of an alpha-helix. We conclude that this 10-amino acid stretch may contain a signal that directs certain proteins, including the LDL receptor and the polymeric IgG/IgM receptor, to the basolateral surface of polarized epithelia.

Amino Acid Sequence↗

The role of oxidized lipoproteins in the pathogenesis of atherosclerosis.

1. Oxidized low density lipoprotein (LDL) has been suggested to play an important role in atherogenesis by facilitating the accumulation of lipids in macrophages. In vitro studies from this laboratory have shown that oxidized LDL is recognized not only by the specific receptor for it, but also by the receptor which is common for oxidized LDL and acetyl LDL. Probucol, originally developed as an antioxidant, prevents the oxidative modification of LDL in vitro. Recent studies by the authors show that probucol prevents the progression of atherosclerosis in homozygous Watanabe heritable hyperlipidaemic rabbits in vivo without any changes in plasma LDL cholesterol levels. 2. These results strongly suggest that oxidative modification of LDL could occur in vivo and probucol could slow the progression of atherosclerosis, without changes in plasma cholesterol levels. 3. In addition, recently the authors demonstrated that high density lipoprotein (HDL) particles are also oxidized. Once HDL particles were oxidized, they showed a lessened effect on the decrease of cholesteryl ester in foam cells, suggesting oxidative modification of HDL may stimulate development of atherosclerosis by limiting efflux of cholesterol from foam cells. Moreover, HDL particles from probucol-treated patients are hardly oxidized; subsequently, these HDL particles caused a marked efflux of cholesterol from foam cells.

Animals↗

Diet-induced hypercholesterolemia in mice: prevention by overexpression of LDL receptors.

The current studies were designed to determine whether chronic overexpression of low density lipoprotein (LDL) receptors in the liver would protect mice from the increase in plasma LDL-cholesterol that is induced by high-fat diets. A line of transgenic mice was studied that express the human LDL receptor gene in the liver under control of the transferrin promoter. When fed a diet containing cholesterol, saturated fat, and bile acids for 3 weeks, the transgenic mice, in contrast to normal mice, did not develop a detectable increase in plasma LDL. The current data indicate that unregulated overexpression of LDL receptors can protect against diet-induced hypercholesterolemia in mice.

Animals↗