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1.
Braz. j. med. biol. res ; 39(2): 157-167, Feb. 2006. tab
Article Dans Anglais | LILACS | ID: lil-420266

Résumé

The syndecans, heparan sulfate proteoglycans, are abundant molecules associated with the cell surface and extracellular matrix and consist of a protein core to which heparan sulfate chains are covalently attached. Each of the syndecan core proteins has a short cytoplasmic domain that binds cytosolic regulatory factors. The syndecans also contain highly conserved transmembrane domains and extracellular domains for which important activities are becoming known. These protein domains locate the syndecan on cell surface sites during development and tumor formation where they interact with other receptors to regulate signaling and cytoskeletal organization. The functions of cell surface heparan sulfate proteoglycan have been centered on the role of heparan sulfate chains, located on the outer side of the cell surface, in the binding of a wide array of ligands, including extracellular matrix proteins and soluble growth factors. More recently, the core proteins of the syndecan family transmembrane proteoglycans have also been shown to be involved in cell signaling through interaction with integrins and tyrosine kinase receptors.


Sujets)
Animaux , Humains , Adhérence cellulaire/physiologie , Protéoglycanes à sulfate d'héparane/physiologie , Glycoprotéines membranaires/physiologie , Protéoglycanes/physiologie , Transduction du signal/physiologie , Protéines de la matrice extracellulaire/physiologie , Protéoglycanes à sulfate d'héparane/composition chimique , Glycoprotéines membranaires/composition chimique , Liaison aux protéines/physiologie , Protéoglycanes/composition chimique , Récepteurs de surface cellulaire/physiologie , Syndécanes
2.
Braz. j. med. biol. res ; 36(8): 1055-1059, Aug. 2003. tab
Article Dans Anglais | LILACS | ID: lil-340782

Résumé

Human plasma kallikrein, a serine proteinase, plays a key role in intrinsic blood clotting, in the kallikrein-kinin system, and in fibrinolysis. The proteolytic enzymes involved in these processes are usually controlled by specific inhibitors and may be influenced by several factors including glycosaminoglycans, as recently demonstrated by our group. The aim of the present study was to investigate the effect of glycosaminoglycans (30 to 250 æg/ml) on kallikrein activity on plasminogen and factor XII and on the inhibition of kallikrein by the plasma proteins C1-inhibitor and antithrombin. Almost all available glycosaminoglycans (heparin, heparan sulfate, bovine and tuna dermatan sulfate, chondroitin 4- and 6-sulfates) reduced (1.2 to 3.0 times) the catalytic efficiency of kallikrein (in a nanomolar range) on the hydrolysis of plasminogen (0.3 to 1.8 æM) and increased (1.9 to 7.7 times) the enzyme efficiency in factor XII (0.1 to 10 æM) activation. On the other hand, heparin, heparan sulfate, and bovine and tuna dermatan sulfate improved (1.2 to 3.4 times) kallikrein inhibition by antithrombin (1.4 æM), while chondroitin 4- and 6-sulfates reduced it (1.3 times). Heparin and heparan sulfate increased (1.4 times) the enzyme inhibition by the C1-inhibitor (150 nM)


Sujets)
Animaux , Humains , Bovins , Facteur XII , Fibrinolytiques , Glycosaminoglycanes , Kallicréine plasmatique , Plasminogène , Inhibiteurs de la cystéine protéinase , Kallicréine plasmatique , Inhibiteur de la protéine C
3.
Braz. j. med. biol. res ; 34(8): 971-975, Aug. 2001. ilus
Article Dans Anglais | LILACS | ID: lil-290144

Résumé

We have examined the role of cell surface glycosaminoglycans in cell division: adhesion and proliferation of Chinese hamster ovary (CHO) cells. We used both wild-type (CHO-K1) cells and a mutant (CHO-745) which is deficient in the synthesis of proteoglycans due to lack of activity of xylosyl transferase. Using different amounts of wild-type and mutant cells, little adhesion was observed in the presence of laminin and type I collagen. However, when fibronectin or vitronectin was used as substrate, there was an enhancement in the adhesion of wild-type and mutant cells. Only CHO-K1 cells showed a time-dependent adhesion on type IV collagen. These results suggest that the two cell lines present different adhesive profiles. Several lines of experimental evidence suggest that heparan sulfate proteoglycans play a role in cell adhesion as positive modulators of cell proliferation and as key participants in the process of cell division. Proliferation and cell cycle assays clearly demonstrate that a decrease in the amount of glycosaminoglycans does not inhibit the proliferation of mutant CHO-745 cells when compared to the wild type CHO-K1, in agreement with the findings that both CHO-K1 and CHO-745 cells take 8 h to enter the S phase


Sujets)
Animaux , Cricetinae , Cellules CHO/cytologie , Matrice extracellulaire/physiologie , Protéoglycanes à sulfate d'héparane/physiologie , Adhérence cellulaire/physiologie , Division cellulaire , Collagène/physiologie , Fibronectines/physiologie , Laminine/physiologie , Vitronectine/physiologie
4.
Braz. j. med. biol. res ; 34(6): 699-709, Jun. 2001. ilus, tab, graf
Article Dans Anglais | LILACS | ID: lil-285842

Résumé

The anticlotting and antithrombotic activities of heparin, heparan sulfate, low molecular weight heparins, heparin and heparin-like compounds from various sources used in clinical practice or under development are briefly reviewed. Heparin isolated from shrimp mimics the pharmacological activities of low molecular weight heparins. A heparan sulfate from Artemia franciscana and a dermatan sulfate from tuna fish show a potent heparin cofactor II activity. A heparan sulfate derived from bovine pancreas has a potent antithrombotic activity in an arterial and venous thrombosis model with a negligible activity upon the serine proteases of the coagulation cascade. It is suggested that the antithrombotic activity of heparin and other antithrombotic agents is due at least in part to their action on endothelial cells stimulating the synthesis of an antithrombotic heparan sulfate.


Sujets)
Humains , Animaux , Bovins , Anticoagulants/pharmacologie , Endothélium vasculaire/cytologie , Fibrinolytiques/pharmacologie , Héparine/pharmacologie , Héparitine sulfate/pharmacologie , Anticoagulants/composition chimique , Anticoagulants/métabolisme , Crustacea , Fibrinolytiques/composition chimique , Fibrinolytiques/métabolisme , Glycosaminoglycanes/métabolisme , Glycosaminoglycanes/pharmacologie , Héparine bas poids moléculaire/composition chimique , Héparine bas poids moléculaire/métabolisme , Héparine bas poids moléculaire/pharmacologie , Héparine/métabolisme , Héparitine sulfate/biosynthèse , Thon
5.
Braz. j. med. biol. res ; 34(5): 621-626, May 2001. ilus
Article Dans Anglais | LILACS | ID: lil-285875

Résumé

Fucans, a family of sulfated polysaccharides present in brown seaweed, have several biological activities. Their use as drugs would offer the advantage of no potential risk of contamination with viruses or particles such as prions. A fucan prepared from Spatoglossum schröederi was tested as a possible inhibitor of cell-matrix interactions using wild-type Chinese hamster ovary cells (CHO-K1) and the mutant type deficient in xylosyltransferase (CHO-745). The effect of this polymer on adhesion properties with specific extracellular matrix components was studied using several matrix proteins as substrates for cell attachment. Treatment with the polymer inhibited the adhesion of fibronectin to both CHO-K1 (2 x 10(5))()and CHO-745 (2 x 10(5) and 5 x 10(5)) cells. No effect was detected with laminin, using the two cell types. On the other hand, adhesion to vitronectin was inhibited in CHO-K1 cells and adhesion to type I collagen was inhibited in CHO-745 cells. In spite of this inhibition, the fucan did not affect either cell proliferation or cell cycle. These results demonstrate that this polymer is a new anti-adhesive compound with potential pharmacological applications


Sujets)
Animaux , Cricetinae , Anticoagulants/composition chimique , Adhérence cellulaire/effets des médicaments et des substances chimiques , Protéines de la matrice extracellulaire/composition chimique , Polyosides/composition chimique , Algue marine/composition chimique , Anticoagulants/pharmacologie , Cycle cellulaire , Division cellulaire/effets des médicaments et des substances chimiques , Cellules CHO , Protéines de la matrice extracellulaire/antagonistes et inhibiteurs , Polyosides/pharmacologie , Thymidine/métabolisme
6.
Braz. j. med. biol. res ; 32(5): 529-38, May 1999.
Article Dans Anglais | LILACS | ID: lil-233471

Résumé

The distribution and structure of heparan sulfate and heparin are briefly reviewed. Heparan sulfate is a ubiquitous compound of animal cells whose structure has been maintained throughout evolution, showing an enormous variability regarding the relative amounts of its disaccharide units. Heparin, on the other hand, is present only in a few tissues and species of the animal kingdom and in the form of granules inside organelles in the cytoplasm of special cells. Thus, the distribution as well as the main structural features of the molecule, including its main disaccharide unit, have been maintained through evolution. These and other studies led to the proposal that heparan sulfate may be involved in the cell-cell recognition phenomena and control of cell growth, whereas heparin may be involved in defense mechanisms against bacteria and other foreign materials. All indications obtained thus far suggest that these molecules perform the same functions in vertebrates and invertebrates


Sujets)
Animaux , Phénomènes physiologiques cellulaires , Héparine , Héparitine sulfate , Glycosaminoglycanes , Héparine/physiologie , Héparitine sulfate/biosynthèse , Héparitine sulfate/physiologie , Invertébrés , Mollusca , Vertébrés
7.
Braz. j. med. biol. res ; 32(5): 539-44, May 1999.
Article Dans Anglais | LILACS | ID: lil-233472

Résumé

Heparan sulfate is a component of vertebrate and invertebrate tissues which appears during the cytodifferentiation stage of embryonic development. Its structure varies according to the tissue and species of origin and is modified during neoplastic transformation. Several lines of experimental evidence suggest that heparan sulfate plays a role in cellular recognition, cellular adhesion and growth control. Heparan sulfate can participate in the process of cell division in two distinct ways, either as a positive or negative modulator of cellular proliferation, or as a response to a mitogenic stimulus


Sujets)
Animaux , Division cellulaire , Héparitine sulfate , Cycle cellulaire , Substances de croissance , Protéoglycanes à sulfate d'héparane/biosynthèse , Protéoglycanes à sulfate d'héparane/physiologie , Héparitine sulfate/biosynthèse , Héparitine sulfate/physiologie , Protéine kinase C/métabolisme , Récepteur facteur croissance fibroblaste
8.
Braz. j. med. biol. res ; 29(9): 1221-6, Sept. 1996. ilus, graf
Article Dans Anglais | LILACS | ID: lil-186129

Résumé

The synthesis of glycosaminoglycans and acidic polysaccharides during embryonic and fetal development in mammals and molluscs is briefly reviewed. A sequential order of appearance of each of the acidic polysaccharides was observed, coinciding with the major processes of the ontogeny. In mammals, hyaluronic acid is the first glycosaminoglycan synthesized at the beginning of morphogenesis. This glycosaminoglycan is then replaced by chondroitin 6-sulfate during the migration of the mesenchymal cells. Heparan sulfate, dermatan sulfate and chondroitin 4-sulfate are synthesized only during cell differentiation. The synthesis of heparin, on the other hand, is confined to mast cells in a few tissues and is a late event in the differentiation process. The same general pattern is also observed in molluscs except that hyaluronic acid is replaced by an acidic galactan in the morphogenetic process. The activity of the degrading enzymes responsible for the disappearance of hyaluronic acid, chondroitin sulfate and the acidic galactan in each phase of embryonic development is also reviewed.


Sujets)
Animaux , Chondroïtines sulfate/biosynthèse , Chondroïtine sulfate B/biosynthèse , Héparine/biosynthèse , Héparitine sulfate/biosynthèse , Acide hyaluronique/biosynthèse , Morphogenèse/physiologie , Glycosaminoglycanes/biosynthèse , Mammifères/croissance et développement , Mollusca/croissance et développement
9.
Braz. j. med. biol. res ; 27(9): 2097-102, Sept. 1994. ilus
Article Dans Anglais | LILACS | ID: lil-144462

Résumé

The sequence of the disacharide units of eight heparan sulfate proteoglycans of different origins is described. All heparan sulfates contain 5 variable regions made of oligosaccharide blocks of disaccharides, namely GlcUA(1-4) GlcNAc, GlcUA(1-4)GlcNS, IdoUA (104)GlcNS) and monosaccharides (GlcNS, and GlcNS,65) at the non-reducing terminal. The N-acetylated region of the heparan sulfates is linked to the serine of the protein core through a trisaccharide of Xyl-Gal-Gal. Heparan sulfates differ from one another in terms of the number of disaccharides that compose each block


Sujets)
Bovins , Chiens , Lapins , Animaux , Héparitine sulfate/composition chimique , Oligosaccharides/composition chimique , Protéoglycanes/composition chimique , Acétylation , Séquence glucidique , Fractionnement chimique , Diholoside/composition chimique , Données de séquences moléculaires , Polysaccharide-lyases/analyse , Analyse de séquence
10.
Braz. j. med. biol. res ; 27(9): 2163-7, Sept. 1994. graf
Article Dans Anglais | LILACS | ID: lil-144468

Résumé

1. In platelet rich plasma (PRP), chondroitin 4-sulfate release from platelets occurred after stimulation with ADP (5µM), collagen (5-10µM). Release started within 60 s and maximum release (0.7-2.0 mg/l) was reached within 180 s. TXA2 formation and dense granule release reached a maximum within 90 s after stimulation. 2. Using washed platelets (1.5 x 10**8 cells/ml), the platelet responses were faster. Release of chondroitin 4-sulfate and TXA2 started within 20-30 s after thrombin addition (100 mU/ml). Maximum release was reached within 60 s in both cases. Dense granule release started in the first 5 s of stimulation (34.6 ñ 12.4 por cento) reaching maximum secretion (74.4 ñ 8.7 por cento) within 60 s. 3. Our results demonstrate that maximal chondroitin 4-sulfate release occurs after the dense granule release reaction in both PRP and washed platelets. This observation suggests that chondroitin 4-sulfates is unlikely to be stored in the dense granules but may be stored in the alfagranules


Sujets)
Humains , Plaquettes/composition chimique , Chondroïtines sulfate/métabolisme , Granulations cytoplasmiques , Thromboxane A2/biosynthèse , ADP/pharmacologie , Agrégation plaquettaire , Plaquettes/effets des médicaments et des substances chimiques , Collagène/pharmacologie , Thrombine/pharmacologie , Facteurs temps
11.
Braz. j. med. biol. res ; 27(9): 2185-290, Sept. 1994. graf
Article Dans Anglais | LILACS | ID: lil-144471

Résumé

The effect of phorbol 12-myristate-13-acetate (PMA), a tumor-promoting phorbol ester, on the synthesis of proteoglycans of endothelial cells in culture was investigated. This phorbol activates protein kinase C (PKC) when added to cells in culture. PKC, in turn, modulates the activity of growth factors. Using [35S]-sulfate or [3H]-glucosamine to label the proteglycans we have observed a 4-24-fold increase of the heparan sulfate (HS) synthesis in a dose-dependent manner (0-100 ng/ml). Chondroitin sulfate (CS) synthesis was not affected by PMA. The effect of PMA could be completely abolished by a calcium ionophore (A23187). By the use of synchronized cells and PMA pulses at different periods of the cell cycle, as well as [3H]-thymidine incorporation, we were able to show that the enhancement of heparan sulfate synthesis is most prominent during G1. Our data suggest that the release of HS to the medium could be one of the responses of the cell to a mitogenic stimulus


Sujets)
Lapins , Animaux , Phase G1/effets des médicaments et des substances chimiques , Héparitine sulfate/biosynthèse , Protéoglycanes/biosynthèse , 12-Myristate-13-acétate de phorbol/pharmacologie , A-23187/pharmacologie , Cycle cellulaire/effets des médicaments et des substances chimiques , Lignée cellulaire , Endothélium vasculaire/cytologie , Endothélium vasculaire/métabolisme , Glycosaminoglycanes/biosynthèse , Facteurs temps
12.
Braz. j. med. biol. res ; 27(9): 2191-5, Sept. 1994. graf
Article Dans Anglais | LILACS | ID: lil-144472

Résumé

The mechanism by which heparin and antithrombotic agents, including a cyclic octaphenolsufonic acid (compound Y), stimulate the synthesis of an antithrombotic heparan sulfate by endothelial cells in culture was investigated. Compound Y increases the amount of heparan sulfate from the cell surface and secreted to the endothelial cell receptors at a concentration of 0.16µM for heparin and 2.7µM for compound Y. The kinetic binding constants (Ks) for compound Y and heparin were 1,333 nM and 42 nM, respectively. It was also shown that both compounds bind to the same receptors. The Scatchard plots indicated that 1,319 nmoles compound Y and 35 nmoles heparin bound per microgram cell protein, indicating that 40-fold more molecules of compound Y bound to the receptors when compared to heparin. No significant internalization of the compounds was observed


Sujets)
Cochons d'Inde , Lapins , Animaux , Endothélium vasculaire/métabolisme , Héparine/pharmacologie , Héparitine sulfate/biosynthèse , Protéoglycanes/biosynthèse , Lignée cellulaire , Cellules cultivées , Endothélium vasculaire/cytologie , Température élevée , Liaison aux protéines , Facteurs temps
13.
Braz. j. med. biol. res ; 27(9): 2253-8, Sept. 1994. ilus, tab
Article Dans Anglais | LILACS | ID: lil-144477

Résumé

The glycosaminoglycans of the tumor mass and from the urine of patients with a nephroblastoma of embryonic origin (Wilms' tumor) and hypernephroma were analyzed. The urine of patients with Wilms/ tumors prior to treatment, and two patients with metastasis contained high levels of hyaluronic acid (2-5 mg/l of urine) when compared to patients after surgery or chemotherapy where the content of hyaluronic acid was less than 0.1 mg/l. Urine of patients with hypernephroma and normal individuals contained even smaller amounts of hyaluronic acid. Normal kidneys contain mainly dermatan sulfate and heparan sulfate, while the hypernephroma and Wilms' tumor contain substantial amounts of chondroitin sulfate. The amount of glycosaminoglycans isolated from Wilms' tumor and hypernephroma were 10 times and 3 times, respectively, greater than normal kidneys. The amonunts of hyaluronic acid in Wilms' tumor varied from 56 to 73 per cent whereas normal kidneys contained about 13 per cent. Chondroitin sulfate was also increased in Wilms' tumor and hypernephroma. It corresponded to 11 per cent and 42 per cent, respectively, of the total glycosaminoglycans. These and other findings indicate that the glycosaminoglycans of Wilms' tumors resemble those present during embryonic development of normal tissues whereas those in hypernephroma are typical of other carinomas of different origins


Sujets)
Humains , Néphrocarcinome/urine , Glycosaminoglycanes/composition chimique , Tumeurs du rein/urine , Tumeur de Wilms/urine , Acide hyaluronique/urine , Chondroïtine sulfate B/urine , Diholoside/composition chimique , Diholoside/urine , Glycosaminoglycanes/urine , Héparitine sulfate/urine
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