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[Effect of progesterone on the secretion of matrix metalloproteinase-2 and matrix metalloproteinase-9 in human ectopic endometrial stromal cells].

OBJECTIVE: To determine the effect of progesterone on the secretion of matrix metalloproteinase-2 (MMP-2) and matrix metalloproteinase-9 (MMP-9) in ectopic endometrial stromal cells. METHODS: Ectopic endometrial stromal cells were obtained from 17 patients with endometriosis. Endometrial stromal cells were obtained from 12 patients with endometriosis and 14 cases of controls. Ectopic endometrial stromal cells of 15 cases were treated with progesterone. Culture supernatants of these stromal cells were analyzed for MMP-2 and MMP-9 by zymography. RESULTS: Endometriotic stromal cells released significantly higher levels of MMP-2 and MMP-9 than endometrial stromal cells from women with and without endometriosis. Progesterone at 10(-9) mol/L caused endometriotic stromal cells a significant reduction MMP-2 and MMP-9 levels. When progesterone concentration was increased from 10(-9) mol/L to 10(-7) mol/L, the release of MMP-9 was almost completely inhibited, wherease that of MMP-2 was not completely inhibited. CONCLUSION: Progesterone may inhibit the secretion of MMP-2 and MMP-9 in ectopic endometrial stromal cells, especially MMP-9.

Adult↗

[Expression of mRNA of matrix metalloproteinase and tissue inhibitor of matrix metalloproteinase after cardiopulmonary resuscitation for asphyxial cardiac arrest in rat].

OBJECTIVE: To study the change in mRNA expression of matrix metalloproteinase (MMPs) and tissue inhibitor-1 of matrix metalloproteinase (TIMP-1) in brain after cardiopulmonary resuscitation (CPR) for asphyxial cardiac arrest in rat. METHODS: The animal model of cardiac arrest was reproduced by clamping endotracheal tube at the expiration. Eighty male SD rats were randomly divided into two groups: control group and resuscitation group, and they were again divided into 0, 0.5, 3, 6, 9 hours subgroups (n=8). Evans blue content and mRNA expressions of MMPs and TIMP-1 in the brain after CPR were determined respectively. RESULTS: The mRNA expression of MMP-9 and TIMP-1 was up-regulated 3 hours after restoration of spontaneous circulation (ROSC). At 6 hours after ROSC, they were markedly high, and the ratio of MMP-9/TIMP-1 was higher too. The mRNA expression of MMP-2 showed no significant change at 9 hours after ROSC. CONCLUSION: The mRNA expression of MMP-9 and TIMP-1 and MMP-9/TIMP-1 are increased at early stage after CPR, but the mRNA expression of MMP-2 shows no significant change.

Animals↗

[Recent findings on scleral extracellular matrix and matrix metalloproteinases in the development of myopia].

Myopia is the most common eye disorder worldwide. So far there is no effective treatment for the disease. Recent findings indicated that the remodeling of scleral extracellular matrix (ECM) plays an important role in the development of myopia. The dynamic changes of matrix metalloproteinases in myopia (MMPs) activity, one of the most important enzymes that regulates the ECM, has a significant correlation with myopia. This review gives the latest findings about ECM and MMPs in the development of myopia.

Animals↗

[Effects of tissue inhibitor of matrix metalloproteinases-4 on the activities of matrix metalloproteinases and collagen of artery: experiment with rats].

OBJECTIVE: To investigate the effects of tissue inhibitor of matrix metalloproteinases-4 (TIMP-4) on the activities of matrix metalloproteinases (MMPs) and the collagen deposition. METHODS: Vascular smooth muscle cells (VSMCs) of rat thoracic aorta were cultured and divided into 3 groups: 2 groups to be transfected with adenovirus vector containing green fluorescence protein (AdGFP) or adenovirus vector containing TIMP-4 (AdTIMP-4), and one group un-transfected. Zymography and reverse zymography were used to detect the activities of MMP-2, MMP-9 and TIMP-4 in the supernatants. Male Wistar rats underwent balloon injury of common carotid artery and then divided into 3 groups: pure injury group, AdGFP transfection group, and AdTIMP-4. transfection group. Four and 28 days later 3 and 6 rats were killed in each group respectively to undergo microscopy and examination of the activities of MMP-2, MMP-9, and TIMP-4, and collagen quantity. RESULTS: The MMP-2 activity in the VSMC culture fluid supernatant of the AdTIMP-4 group was decreased dose-dependently, however, the activity of MMP-9 did not changed significantly among the 3 groups. Bands of activated MMP-2 and MMP-9 could not be examined in the normal vessel tissues. Four hours after the injury, the activity of MMP-2 was significantly increased in the pure injury group and AdGFP group, however, was significantly decreased in the AdTIMP-4 group. Four days later no MMP activity could be detected in either group. The neoformation of tunica intima was inhibited by 66% in the AdTIMP-4 group, The collagen quantity per vessel cell was 12.1 +/- 1.0 in the AdGFP group, not significantly different from that of in the AdTIMP-4 group (11.9 +/- 1, P > 0.05), and the collagen quantity per tunica adventitia cell in the AdTIMP-4 group was 118 +/- 13, not significantly different from that of the pure injury group (135 +/- 11, P > 0.05). CONCLUSION: The regulation of MMP/TIMP balance by TIMP-4 may control the metabolism of collagen and play an important role in the vascular repair process.

Adenoviridae↗

The role of matrix metalloproteinases and tissue inhibitors of matrix metalloproteinase in microcystic meningiomas.

We studied the expression of matrix metalloproteinases (MMP) and tissue inhibitors of matrix metalloproteinase (TIMP) in microcystic meningiomas to investigate a possible underlying mechanism for the development of microcysts and of peritumoral edema, which are frequent characteristics of this rare subtype. Between October 1995 and June 2004, 10 of 19 patients who had histologically confirmed pure microcystic meningiomas were enrolled in the study. Six patients with meningothelial meningiomas, three with atypical meningiomas, and one with a transitional meningioma were included as a control group. Immunohistochemistry with paraffin blocks and real-time RT-PCR analysis for MMP-2, MMP-9, TIMP-1, TIMP-2 and vascular endothelial growth factor (VEGF) were performed using stored frozen tissues. Compared with the control group, MMP-9 was invariably and highly expressed in immunohistochemical staining of microcystic meningiomas. MMP-2, TIMP-1, TIMP-2 and VEGF were weakly expressed or not expressed in both microcystic and non-microcystic meningiomas. Real-time RT-PCR showed increased ratios of MMP-9 to TIMP-1 in microcystic meningiomas compared with the control group (55.855 +/- 106.353 vs. 1.858 +/- 2.575, respectively; p = 0.00). The expression of MMP-2 (0.72 +/- 1.20 vs. 2.54 +/- 3.01, p = 0.01) and TIMP-2 (1.22 +/- 1.67 vs. 1.61 +/- 1.82, p = 0.02) was higher in the control group. The results suggested that the increased ratio of MMP-9 to TIMP-1 might be associated with the formation of microcysts and peritumoral edema in microcystic meningioma.

Adult↗

Synovial extracellular matrix: partial characterization of matrix components and identification of type VI collagen molecular forms.

Alterations in the synovial extracellular matrix (ECM) in chronic inflammatory arthritis may affect synoviocyte adhesion and may be important in the regulation of pannus growth and invasion. Immunohistochemical examination of synovium has revealed enhanced deposition of fibronectin and collagen in interstitial areas consistent with expansion of the ECM in inflammatory arthritis. In order to functionally characterize the ECM of synovium, synovial extracellular matrix was purified from pannus removed at joint replacement surgery. A prominent 140 Kd 6M guanidine extractable component was found to mediate synoviocyte adhesion in a cell-blotting assay. This 140 Kd component was identified as a form of type VI collagen. Type VI collagen appears to be a significant component of synovial ECM.

Cell Adhesion Molecules↗

Complex regulation of membrane-type matrix metalloproteinase expression and matrix metalloproteinase-2 activation by concanavalin A in MDA-MB-231 human breast cancer cells.

Matrix Metalloproteinase-2 (MMP-2) is secreted as a zymogen, the activation of which has been associated with metastatic progression in human breast cancer (HBC). Concanavalin A (Con A) has been found to induce activation of MMP-2 in invasive HBC cell lines. Con A effects on the expression of mRNA for membrane-type matrix metalloproteinase (MT-MMP), a newly described cell surface-associated MMP, showed a close temporal correlation with induction of MMP-2 activation. It is surprising that MT-MMP mRNA is constitutively present in the uninduced MDA-MB-231 cell, despite a lack of MMP-2 activation. We have used actinomycin D to demonstrate a partial requirement for de novo gene expression in the induction of MMP-2 activation by Con A in MDA-MB-231 HBC cells. Furthermore, this transcriptional response to Con A appeared to require the continued presence of Con A for its manifestation. The nontranscriptional component of the Con A induction manifests rapidly, is quite substantial, and persists strongly despite actinomycin D abrogation of both constitutive and Con A-induced MT-MMP. Cycloheximide analyses suggest that protein synthesis may be involved in this rapid transcription-independent response. These studies suggest that Con A induces MMP-2-activation in part by up-regulation of MT-MMP expression but has a more complicated mode of action, involving additional nontranscriptional effects, which apparently require protein synthesis.

Breast Neoplasms↗

Differential expression of matrix metalloproteinase and tissue inhibitor of matrix metalloproteinase genes in the mouse central nervous system in normal and inflammatory states.

Matrix metalloproteinases (MMPs) are implicated in the pathogenesis of inflammatory disorders of the central nervous system (CNS) whereas the contribution of the major endogenous counter-regulators of MMPs, the tissue inhibitors of the matrix metalloproteinases (TIMPs), is unclear. We investigated the temporal and spatial expression patterns in the CNS of nine MMP genes and three TIMP genes in normal mice, in mice with EAE, and in transgenic mice with astrocyte (glial fibrillary acidic protein)-targeted expression of the cytokines interleukin-3 (macrophage/microglial demyelinating disease), interleukin-6 (neurodegenerative disease), or tumor necrosis factor-alpha (lymphocytic encephalomyelitis). In normal mice, the MMPs MT1-MMP, stromelysin 3, and gelatinase B were expressed at low levels, whereas high expression of TIMP-2 and TIMP-3 was observed predominantly in neurons and in the choroid plexus, respectively. In EAE and the transgenic mice, significant induction or up-regulation of various MMP genes was observed, the pattern of which was somewhat specific for each of the models, and there was significant induction of TIMP-1. In situ localization experiments revealed a dichotomy between MMP expression that was restricted to leukocytes and possibly microglia within inflammatory lesions and TIMP-1 expression that was observed in activated astrocytes circumscribing the lesions. These findings demonstrate specific spatial and temporal regulation in the expression of individual MMP and TIMP genes in the CNS in normal and inflammatory states. The distinct localization of TIMP-1 and MMP expression during CNS inflammation suggests a dynamic state in which the interplay between these gene products may determine both the size and resolution of the destructive inflammatory focus.

Animals↗

Limited cleavage of extracellular matrix protein BM-40 by matrix metalloproteinases increases its affinity for collagens.

The 33-kDa matrix protein BM-40 (SPARC, osteonectin) consists of an acidic N-terminal domain I, a central cysteine-rich follistatin-like module, and a C-terminal extracellular calcium-binding (EC) module. Previous studies attributed collagen IV and high affinity calcium binding of BM-40 to its EC module, which was shown by x-ray crystallography to consist of an EF-hand pair surrounded by several alpha-helical and loop segments. This module was now shown by surface plasmon resonance assay to bind with similar affinities to collagens I, III, and V. Cleavage of recombinant BM-40 and its EC module by collagenase-3, gelatinases A and B, matrilysin, and stromelysin-1 showed similar fragment patterns, whereas collagenase-1 was inactive. Some differences were, however, observed in cleavage rates and the preference of certain cleavage sites. Edman degradation of fragments demonstrated only three to four major cleavage sites in the central region of domain I and a single uniform cleavage in helix C of the EC module. Cleavage is accompanied by a 7-20-fold increase in binding activity for collagens I, IV, and V but revealed only small effects on calcium-dependent alpha-helical changes in the EC module. The data were interpreted to indicate that helix C cleavage is mainly responsible for enhancing collagen affinity by exposing the underlying helix A of the EC module. A similar activation may also occur in situ as indicated previously for tissue-derived BM-40.

Amino Acid Sequence↗

Capillary electrophoresis combined with matrix-assisted laser desorption/ionization mass spectrometry; continuous sample deposition on a matrix-precoated membrane target.

Capillary electrophoresis (CE) and matrix-assisted laser desorption/ionization mass spectrometry (MALDI/MS) were combined in an off-line arrangement to provide separation and mass analysis of peptide and protein mixtures in the attomole range. A membrane target, precoated with MALDI matrix, was used for the continuous deposition of effluent exiting from a CE device. A sample track was produced by linear movement of the target during the electrophoretic separation and this track was subsequently analyzed by MALDI/MS. The technique is effective for peptides and proteins, having limits of detection (signal-to-noise >3) of about 50 amol for neurotensin (1673 Da) and 250 amol for cytochrome c (12361 Da) and apomyoglobin (16951 Da). The electrophoretic separation achieved from the membrane target, as measured by theoretical plate numbers from the mass spectrometric data, can be as high as 80-90% of that achieved by on-line UV detection under optimal conditions, although band broadening occurs and with some loss of separation efficiency. Non-volatile buffers such as 10-50 mM phosphate can also be used in the electrophoresis process and directly deposited on the membrane. The use of post-source decay techniques is shown for peptides in the CE sample track in order to obtain sequence verification. The effectiveness of this method of integration of CE and MALDI/MS is demonstrated with both peptide and protein mixtures and with the analysis of a tryptic digest of a protein.

Apoproteins↗

Excess salt removal with matrix rinsing: direct peptide profiling of neurons from marine invertebrates using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry.

Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI/TOF-MS) is a viable technique for the examination of biological environments. Clearly, sample preparation plays a pivotal role in the ability to obtain mass spectra from samples as complex as biological cells. The physiological salt concentrations associated with neurons from marine specimens interfere with MALDI analysis. A unique and simple rinsing procedure allows cellular clusters, individual neurons and connective tissues to be directly assayed for peptides with minimal sample handling. Isolated cells and tissues, including egg-laying hormone-releasing cells, from the central nervous systems of the model marine molluscs Aplysia californica and Pleurobranchaea californica are used to demonstrate the salt removal method. In addition to facilitating sample ionization, the MALDI matrix 2,5-dihydroxybenzoic acid serves to (i) aid in microdissections by stabilizing cell membranes, (ii) deactivate endogenous proteolytic enzymes and (iii) reduce high salt concentrations in order to improve spectral quality. Representative MALDI mass spectra are presented which indicate the presence of several neuroactive peptides previously characterized by conventional biochemical methods. More than ten individual peptides can be detected in a single cell. In spite of the chemically complex sample, the mass spectra are surprisingly free of extraneous peaks. Furthermore, both mass resolution and mass accuracy are similar to those encountered with more common MALDI samples and protocols.

Animals↗

Localization and quantification of mRNA for matrix metalloproteinase-2 (MMP-2) and tissue inhibitor of matrix metalloproteinase-2 (TIMP-2) in human benign and malignant prostatic tissue.

BACKGROUND: The family of matrix metalloproteinases (MMPs) has been shown to be involved in proteolytic degradation of the extracellular matrix, which is an essential step in tumor invasion and metastasis. MMPs are tightly regulated by the levels of active enzymes and their inhibitors, the tissue inhibitors of metalloproteinases (TIMPs). MMP-2 and its ratio to TIMP-2 have been associated with tumor recurrence and progression in a number of human malignancies. METHODS: We examined the relationship between MMP-2 and TIMP-2 mRNA expression in 42 men with malignant (n = 32) and benign (n = 10) prostates using nonisotopic in situ hybridization and Northern blot analysis. RESULTS: mRNA for MMP-2 and TIMP-2 was localized to the malignant epithelial cells of both high- and low-grade tumors in the periphery of the glands and in areas of extracapsular involvement, and to the glandular epithelium in the benign prostates. Using Northern blot analysis, the mean MMP-2 to TIMP-2 ratio was approximately one in the benign prostates and low-grade and -stage cancers. The MMP-2 to TIMP-2 ratio increased to 3.3 in the high-grade and 2.8 in the high-stage tumors. CONCLUSIONS: The results suggest a close association between MMP-2/TIMP-2 expression and local tumor invasion, with a disruption in expression of the two genes leading to disease progression. Future studies should focus on the activity of these enzymes and on the ratio of enzyme/inhibitor expression, which may become a useful prognostic marker in prostate cancer.

Blotting, Northern↗

Matrix performance in matrix-assisted laser desorption/ionization for molecular weight determination in sialyl and non-sialyl oligosaccharide proteins.

Matrix-assisted laser desorption/ionization (MALDI) mass spectrometry relies on the formation of intact molecular ions to determine molecular weight. In biochemical research, conventional methods of protein analysis at picomol to fentomol sensitivity, such as sodium dodecyl sulphate polyacrylamide gel electrophoresis, have been replaced by this new ionization method. Unfortunately, problems caused by the mass accuracy and low resolution restrict the use of this ionization technique, particularly when a high mass accuracy in a high mass range is required. In this paper it is shown that the appropriate choice of parameters which determine the desorption/ionization of glycoproteins can improve the quality of MALDI mass spectra as well as mass reproducibility and resolution. The study of sample-matrix solution composition, pH and instrumental conditions allow the molecular weight determination of highly glycosylated proteins with a high percentage of sialic acid, e.g. erythropoietin. The glycosylation of this molecule which interferes with the production of multiply charged ions in electrospray ionization does not affect the desorption/ionization in MALDI analysis. We report the best operating conditions used to establish the degree of heterogeneity of erythropoietin.

Acetophenones↗

Disrupted expression of matrix genes in the growth plate of the mouse cartilage matrix deficiency (cmd) mutant.

Chondrodysplasia in the autosomal recessive cartilage matrix deficiency (cmd) mutant is caused by lack of the proteoglycan aggrecan arising from a mutation in the gene. Homozygous cmd/cmd mice are characterized by disorganisation of chondrocytes in the growth plate, disproportionate dwarfism, cleft palate, and perinatal lethality. We have studied the impact of the aggrecan deficiency on the expression of other matrix genes during the differentiation of chondrocytes in the growth plate of cmd/cmd 18.5 day fetuses. Compared with the wild-type, there are significant differences in the growth plates of cmd mutants in the combinations of co-expression of genes encoding the glycoprotein link protein, proteoglycan syndecan 3, collagens alpha 1 (X) [Col10a1], alpha 2(XI) [Col11a2], and the alternative transcripts of alpha 1 (II) [Col2a1 type IIA form], and alpha 1 (IX) [Col9a1 long and short forms]. The discordance of gene expression in cmd chondrocytes may be additional factors contributing to the disrupted cellular architecture of the growth plate resulting from the primary absence of aggrecan.

Aggrecans↗

Analysis of the chicken DNA fragments that contain structural sites of attachment to the nuclear matrix: DNA-matrix interactions and replication.

Ten short DNA fragments have been selected from a library of the nuclear matrix-attached DNA (nmDNA) from chicken erythrocytes by their ability to hybridize with the fraction of chicken replication origins isolated by nascent DNA strand extrusion. The primary structure of these fragments has been determined. Five of the sequences contained a topoisomerase II recognition site. Most of the studied DNA fragments also have a common eight-nucleotide motif, GCAGACCG/A. A sequence-specific DNA-binding protein with a MW of 55 kDa that interacted with this motif has been identified. Some of the cloned DNA fragments promoted an increased level of transient plasmid replication in transfected chicken cells. The ability of plasmid bearing nmDNA fragments to replicate correlated directly with their ability to target plasmids to the nuclear matrix compartment.

Animals↗

Sequence-specific binding of a c-myc nuclear-matrix-associated region shows increased nuclear matrix retention after leukemic cell (HL-60) differentiation.

HL-60 cells, a human promyelocytic leukemia cell line, contain amplified c-myc DNA sequences and mRNA transcripts. These cells can be induced to undergo macrophage differentiation by phorbol esters, which results in suppression of c-myc expression and cessation of cell proliferation. The nuclear matrix (NM), a nuclear skeleton resistant to DNase I digestion and high salt extraction, is proposed to be involved in DNA replication, gene regulation, and the correct distribution of DNA at mitosis. We have previously identified a nuclear-matrix-associated region (MAR) of the c-myc protooncogene to reside in a 1.4-kb region between Cla I and Eco RI restriction sites at the 3'-end of the gene. A 172-bp Dra I/Dra I subfragment of the 1.4-kb region was shown to be a major component of the MAR (myc-MAR), and this subfragment was demonstrated to be recognized by a nuclear protein (p25). In this report we demonstrate that phi X174 DNA, or the synthetic copolymers poly[d(G.C)] and poly[d(A.T)], are not effective suppressors of the binding of the myc-MAR to isolated NM, indicating that the binding sequence(s) are unique. We find that the addition of partially purified protein p25 increases the relative affinity of the myc-MAR for HL-60 NM in an in vitro assay system. NM isolated from HL-60 macrophages induced by phorbol esters retains significantly more myc-MAR DNA fragment in the presence of an excess amount of competitor DNA than does NM from untreated HL-60 cells. These data suggest that a change of the myc-MAR association with the NM occurs after monocytic differentiation of HL-60 cells.

Base Composition↗

Extracellular matrix components of the mouse thymus microenvironment. IV. Modulation of thymic nurse cells by extracellular matrix ligands and receptors.

Extracellular matrix (ECM) proteins can influence cell migration and differentiation in a variety of cell systems. Within the thymus, these molecules are heterogeneously distributed, and their physiological role is poorly understood. This prompted us to carry out in vitro studies using the thymic nurse cell (TNC) model. We observed that fibronectin and laminin accelerate spontaneous in vitro release of thymocytes from TNC, whereas anti-ECM antibodies exhibited a blocking effect. Similar results were obtained with anti-ECM receptor reagents. Moreover, these antibodies abrogated in vitro reconstitution of TNC complexes and thymocyte adhesion to TNC-derived epithelial cultures. Our results indicate that lymphocyte traffic in TNC (comprising both entrance into and exit from the epithelial structure) is affected by interactions involving extracellular matrix ligands and receptors. In this respect, the dynamic analysis of thymic nurse cell complexes should be regarded as a relevant in vitro tool for functional studies of distinct adhesion molecules in intrathymic lymphocyte traffic.

Animals↗

Localization of cellular transglutaminase on the extracellular matrix after wounding: characteristics of the matrix bound enzyme.

Extending our previous observation that tissue transglutaminase (TGase) binds to extracellular matrix (ECM) fibronectin, we report here that endogenous tissue TGase is localized on the adjacent ECM after puncture wounding embryonic human lung fibroblasts (WI-38). The bound TGase persisted at the wound site for many hours, demonstrated by immunofluorescence and by catalytic activity using an overlay assay. The binding characteristics of TGase with ECM were studied further by the addition of exogenous TGase to cell monolayers and monitoring by immunofluorescence or overlay catalytic activity assays. Binding occurred equally well at 4 degrees C or 37 degrees C. Prior incubation of exogenous TGase with guanosine 5'-triphosphate (GTP), guanosine 5'-diphosphate (GDP), or adenosine triphosphate (ATP) had little effect on the amount bound to matrix, but prior treatment with calcium, magnesium, strontium, or manganese ions enhanced binding 2- to 3-fold. The Ca(++)-dependent change was a concentration-dependent effect on soluble exogenous TGase, rather than an effect on ECM. Immunofluorescent techniques showed that binding of exogenous TGase to ECM was prevented by prior mixing with fibronectin or collagen, but not with several other ECM components, including laminin, elastin, chondroitin sulfate, heparan sulfate, and hyaluronic acid. ECM-bound TGase was released by 2 M potassium thiocyanate (KSCN) treatment but was not released by treatment with a variety of amino acids, salts, reducing agents, glycerol, or other chaotropic agents.

Adenosine Triphosphate↗