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1.
Journal of Korean Medical Science ; : 300-306, 2012.
Article in English | WPRIM | ID: wpr-73176

ABSTRACT

Glycosaminoglycans are important structural components in the skin and exist as various proteoglycan forms, except hyaluronic acid. Heparan sulfate (HS), one of the glycosaminoglycans, is composed of repeated disaccharide units, which are glucuronic acids linked to an N-acetyl-glucosamine or its sulfated forms. To investigate acute ultraviolet (UV)-induced changes of HS and HS proteoglycans (HSPGs), changes in levels of HS and several HSPGs in male human buttock skin were examined by immunohistochemistry and real-time quantitative polymerase chain reaction (qPCR) after 2 minimal erythema doses (MED) of UV irradiation (each n = 4-7). HS staining revealed that 2 MED of UV irradiation increased its expression, and staining for perlecan, syndecan-1, syndecan-4, CD44v3, and CD44 showed that UV irradiation increased their protein levels. However, analysis by real-time qPCR showed that UV irradiation did not change mRNA levels of CD44 and agrin, and decreased perlecan and syndecan-4 mRNA levels, while increased syndecan-1 mRNA level. As HS-synthesizing or -degrading enzymes, exostosin-1 and heparanase mRNA levels were increased, but exostosin-2 was decreased by UV irradiation. UV-induced matrix metalloproteinase-1 expression was confirmed for proper experimental conditions. Acute UV irradiation increases HS and HSPG levels in human skin, but their increase may not be mediated through their transcriptional regulation.


Subject(s)
Adult , Humans , Male , Young Adult , Agrin/genetics , Hyaluronan Receptors/genetics , Base Sequence , DNA Primers/genetics , Gene Expression/radiation effects , Glucuronidase/genetics , Heparan Sulfate Proteoglycans/genetics , Heparitin Sulfate/metabolism , Matrix Metalloproteinase 1/genetics , N-Acetylglucosaminyltransferases/genetics , RNA, Messenger/genetics , Skin/metabolism , Skin Aging/genetics , Syndecan-1/genetics , Syndecan-4/genetics , Ultraviolet Rays/adverse effects
2.
Journal of Korean Medical Science ; : 245-252, 2004.
Article in English | WPRIM | ID: wpr-67698

ABSTRACT

The presence of heparan sulfate proteoglycan (HSPG) in anionic sites in the lamina rara interna of glomerular basement membrane suggests that the proteoglycan may be deposited by the glomerular endothelial cells (GEndo). We have previously demonstrated that bovine GEndo in vitro synthesize perlecan, a species of glomerular basement membrane HSPG. In this study we examined whether high glucose medium regulates the GEndo metabolism of glycopeptides including perlecan. Metabolic labeling of glycoconjugates with 35S-SO4, sequential ion exchange and Sepharose CL-4B chromatography of labeled glycoconjugates, and northern analysis were performed. Incubation of GEndo for 8 to 14 weeks (but not for 1-2 weeks) in medium containing 30 mM glucose resulted in nearly 50% reduction in the synthesis of cell layer and medium 35SO4-labeled low anionic glycoproteins and proteoglycans, including that of basement membrane HSPG (Kav 0.42) compared to GEndo grown in 5 mM glucose medium; no changes in anionic charge density or hydrodynamic size of proteoglycans were noted. Northern analysis demonstrated that the mRNA abundance of perlecan was reduced by 47% in cells incubated with 30 mM glucose. Our data suggest that high glucose medium reduces the GEndo synthesis of perlecan by regulating its gene expression. Reduced synthesis of perlecan by GEndo may contribute to proteinuria seen in diabetic nephropathy.


Subject(s)
Animals , Cattle , Basement Membrane/drug effects , Cells, Cultured , Diabetic Nephropathies/metabolism , Endothelial Cells/cytology , Gene Expression/drug effects , Glucose/pharmacology , Heparan Sulfate Proteoglycans/genetics , Kidney Glomerulus/cytology , Sulfur Radioisotopes
3.
Rev. Col. Bras. Cir ; 30(2): 134-141, mar.-abr. 2003. ilus, tab
Article in Portuguese | LILACS | ID: lil-512524

ABSTRACT

OBJETIVO: Avaliar, de maneira quantitativa, as proteoglicanas na fáscia transversal e na bainha anterior do músculo reto abdominal de pacientes homens, adultos, portadores de hérnia inguinal tipo II e IIIA de NYHUS. MÉTODO: Foram constituídos três grupos de estudo: um grupo controle, composto por dez cadáveres com óbito até 24 horas e de dois grupos, cada um com vinte pacientes, portadores de hérnias tipo II e IIIA de NYHUS. Foram retiradas amostras da fáscia transversal e da bainha anterior do músculo reto abdominal que foram coradas com Alcian Blue, pH 2,5. As lâminas foram analisadas no programa IMAGELAB de avaliação histológica informatizada. RESULTADOS: Observou-se menor quantidade de proteoglicanas nos pacientes com hérnia inguinal, em relação ao grupo controle. Essa diferença foi estatisticamente significante. CONCLUSÃO: A concentração de proteoglicanas na matriz extracelular está diminuída na fáscia transversal e na bainha anterior do músculo reto abdominal de pacientes homens adultos, portadores de hérnia inguinal tipo II e IIIA de NYHUS, em relação ao grupo controle, constituído por cadáveres não portadores de hérnia inguinal.


BACKGROUND: To quantify the presence of proteoglycans in fascia transversalis and anterior sheath of the abdominal rectus muscle, from males, adults, with Nyhus type II and IIIA inguinal hernia. METHODS: The samples were divided in three groups: Group I - twenty patients with Nyhus type II inguinal hernia; Group II - twenty patients with Nyhus type IIIa inguinal hernias. Group III - control comprised of ten cadavers with no more than 24 hours death and no hernias; Fascia transversalis and anterior sheath of the abdominal rectus muscle samples were collected and stained with alcian blue pH2,5. Computerized hystological evaluation (IMAGELAB) was used to analyse the samples prepared as described above. RESULTS: A smaller quantity of proteoglycan was found in patients with inguinal hernia as compared to control group and this was stastically significant. CONCLUSION: Patient with Nyhus type II and IIIa inguinal hernias had a smaller amount of proteoglycans in fascia transversalis and anterior sheath of the abdominal rectus muscle. The role of these findings regardind the etiology of inguinal hernias remains to be better evaluated by further research.

4.
Korean Journal of Nephrology ; : 22-30, 2000.
Article in Korean | WPRIM | ID: wpr-56211

ABSTRACT

HSPG, a component of size-and charge-selective barrier of glomerular basement membrane, is one of important matrix proteins which has been known to be reduced in the kidney of diabetic patients or animals. To examine the effects of glucose and AGE on the HSPG production by cultured GEC, we cultured rat GEC on the AGE- or BSA-coated plate under normal(5mM) and high glucose.(30mM) conditions and measured the change of HSPG production by sandwich-ELISA assay and northern blot analysis at 2 days and one week incubation periods. There was no difference in proliferation between 2 different conditions of culture plate surface. We measured the relative amount of the extracted HSPC and observed significant decreases in high glucose condition at one week incubation, and particularly on the AGE-coated surface as compared to the results of BSA-coated condition, by 22% and 5%, respectively. The expression of mRNA for perlecan promoter was decreased in condition of high glucose and AGE-coated surface by 20Yo at 2 days and 61i at one week. Even in normal glucose condition, the expression of mRNA was reduced by 30Yo at one week if the plate was coated with AGE. In conclusion, both high glucose and AGE have reducing effects on the production of HSPG by GEC in vitro. Their effects seem to be additive, however, the role of AGE is greater than that of glucose, This means that the effort to inhibit AGE formation is more important than short-term glucose control for the prevention of diabetic proteinuria.


Subject(s)
Animals , Humans , Rats , Blotting, Northern , Diabetic Nephropathies , Glomerular Basement Membrane , Glucose , Heparan Sulfate Proteoglycans , Heparitin Sulfate , Kidney , Proteinuria , RNA, Messenger
5.
Journal of the Korean Society for Microbiology ; : 435-443, 1999.
Article in Korean | WPRIM | ID: wpr-15622

ABSTRACT

Orientia tsutsugamushi is obligate intracellular bacterium that grows within the cytoplasm of the eukaryotic host cells. Therefore capability of the attachment, entry into the host cell and intracellular survival should be critical process for oriential infection. In this study we investigated the cellular invasion mechanism of Orientia tsutsugamushi and the role of transmembrane heparan sulfate proteoglycan, which binds diverse components at the cellular microenvironment and is implicated as host cell receptors for a variety of microbial pathogens. First of all Orientia tsutsugamushi can invade a wide range of nonprofessional phagocytic cells including fibroblast, epithelial cells a#nd endothelial cells of various host species, including B and T lymphocytes. Thus, it was postulated that the attachment of O. tsutsugamushi requires the recognition of ubiquitous surface structures of many kinds of host cells. Treatments with heparan sulfate and heparin inhibited the infection of Orientia tsutsugamushi in dose-dependent manner for L cell, mouse fibroblast, whereas other glycosaminoglycans such as chondroitin sulfate had no effect. Collectively, these findings provide strong evidence that initial interaction with heparan sulfate proteoglycan is required for the oriential invasion into host cells.


Subject(s)
Animals , Mice , Cellular Microenvironment , Chondroitin Sulfates , Cytoplasm , Endothelial Cells , Epithelial Cells , Eukaryotic Cells , Fibroblasts , Glycosaminoglycans , Heparan Sulfate Proteoglycans , Heparin , Heparitin Sulfate , Orientia tsutsugamushi , Phagocytes , T-Lymphocytes
6.
Korean Journal of Nephrology ; : 1-7, 1998.
Article in Korean | WPRIM | ID: wpr-200830

ABSTRACT

It is well known that the glomerular basement membrane heparan sulfate proteoglycan(GBM HSPG) synthesized by glomerular epithelial cell(GEC) has an important role in the permeability of glomerular basement membrane and cyclic AMP(cAMP) is involved in regulation of a wide variety of genes maybe including GBM HSPG gene. The direct effect of cAMP on GBM HSPG gene expression and metabolism was not evaluated as yet. Proteinuria represents an impairment of permselectivity function of glomerular basement membrane regulated by GBM HSPG and could be associated with increased glomerular level of cAMP in nephrotic syndrome of diverse causes. RPD-I(rat GBM HSPG core protein domain-I) detected a >9.5kb transcript of GBM HSPG in RNA of rat GEC. Emp1oying a riboprobe synthesized from RPD-I in RNase protection assay, we examined whether cAMP regulated perlecan expression in the GEC. At l, 6, 24 and 48 hrs of incubation, l mM cAMP caused 43%, 32%, 47% and 40% reduction in mRNA expression of perlecan, respectively. Immunoprecipitation showed a corresponding reduction of 51%, 70% and 68% in the synthesis of 35SO4 labeled GBM HSPG by the GEC fol1owing l2, 24 and 48 hrs of incubation with cAMP. Our results show that decrease in GBM HSPG gene expression and synthesis by cAMP may be of relevance to proteinuric states characterized by activation of these mediators.


Subject(s)
Animals , Rats , Cyclic AMP , Epithelial Cells , Gene Expression , Glomerular Basement Membrane , Heparan Sulfate Proteoglycans , Heparitin Sulfate , Immunoprecipitation , Metabolism , Nephrotic Syndrome , Permeability , Proteinuria , Ribonucleases , RNA , RNA, Messenger
7.
Chinese Journal of Diabetes ; (12)1994.
Article in Chinese | WPRIM | ID: wpr-582062

ABSTRACT

0.025) was found.Conclusion Our study showed the lack of association between HSPG polymorphism and diabetic nephropathy in Chinese type 2 diabetics.There may be association between genotype frequencies of HSPG polymorphism and diabetes in statistics.

8.
Chinese Journal of Pathophysiology ; (12)1989.
Article in Chinese | WPRIM | ID: wpr-519089

ABSTRACT

Dynamic interactions between cells and underlying extracellular matrices are crucial for development, maintenance of cellular function, and response of tissure to injury and infection. Heparan sulfate proteoglycans(HSPG)are found in extracellular matrices and on the surface of most nuclrarated cells, and play critical roles in cell-cell and cell-matrix signal transduction by binding many molecules, such as growth factors and cytokines. Most of the biological properties of HSPG are conferred by heparan sulfate side chains, which can be degraded by heparanase. Changes of heparanase expression and activity may affect the biological processes above, which enables extravasation of inflammation cells, metastasis and neoangiogenesis of tumor cells invasion.

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