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Heparan sulfate proteoglycans as extracellular docking molecules for matrilysin (matrix metalloproteinase 7).

Many matrix metalloproteinases (MMPs) are tightly bound to tissues; matrilysin (MMP-7), although the smallest of the MMPs, is one of the most tightly bound. The most likely docking molecules for MMP-7 are heparan sulfate proteoglycans on or around epithelial cells and in the underlying basement membrane. This is established by extraction experiments and confocal microscopy. The enzyme is extracted from homogenates of postpartum rat uterus by heparin/heparan sulfate and by heparinase III treatment. The enzyme is colocalized with heparan sulfate in the apical region of uterine glandular epithelial cells and can be released by heparinase digestion. Heparan sulfate and MMP-7 are expressed at similar stages of the rat estrous cycle. The strength of heparin binding by recombinant rat proMMP-7 was examined by affinity chromatography, affinity coelectrophoresis, and homogeneous enzyme-based binding assay; the K(D) is 5-10 nM. Zymographic measurement of MMP-7 activity is greatly enhanced by heparin. Two putative heparin-binding peptides have been identified near the C- and N-terminal regions of proMMP-7; however, molecular modeling suggests a more extensive binding track or cradle crossing multiple peptide strands. Evidence is also found for the binding of MMP-2, -9, and -13. Binding of MMP-7 and other MMPs to heparan sulfate in the extracellular space could prevent loss of secreted enzyme, provide a reservoir of latent enzyme, and facilitate cellular sensing and regulation of enzyme levels. Binding to the cell surface could position the enzyme for directed proteolytic attack, for activation of or by other MMPs and for regulation of other cell surface proteins. Dislodging MMPs by treatment with compounds such as heparin might be beneficial in attenuating excessive tissue breakdown such as occurs in cancer metastasis, arthritis, and angiogenesis.

Animals↗

The role of matrix metalloproteinase 7 in innate immunity.

Matrix metalloproteinase 7 (MMP-7), or matrilysin, is a secreted protease expressed by glandular and mucosal epithelial cells, keratinocytes, fibroblasts and macrophages. As with other MMPs it can act on the extracellular matrix and thereby regulate cell migration and tissue repair. In addition, MMP-7 has an important role in the maintenance of innate immunity in organs such as the lungs and intestines where it proteolytically activates anti-bacterial peptides such as pro-defensins. MMP-7 is also important for mediating proteolytic release of TNF from macrophages. Consistent with its role in innate immunity, MMP-7 is induced by microbial products and also, unexpectedly, by hypoxia.

Gene Expression Regulation↗

Increased expression of matrix metalloproteinase 7 and 9 and membrane type 1-matrix metalloproteinase in esophageal squamous cell carcinomas.

BACKGROUND: The 5-year survival rate of patients with submucosal (sm) esophageal carcinoma continues to be much worse than that with intramucosal (m) lesions. The reasons are unclear, but matrix metalloproteinases (MMPs) and membrane type matrix metalloproteinases (MT-MMPs) are known to be involved in degradation of extracellular matrix macromolecules associated with tumor cell invasion. Expression of these enzymes may have some relation to the difference in survival between patients with sm and m esophageal carcinomas. METHODS: Surgical specimens from 148 primary esophageal squamous cell carcinomas were examined for expression of MMP-1, 2, 3, 7, and 9; tissue inhibitor of MMP (TIMP)-1 and 2; MT1-MMP; and MT2-MMP by immunohistochemical staining. The results were compared with tumor progression and other clinicopathologic parameters. Localization of gelatinase activity was also confirmed in carcinoma cells by in situ zymography. RESULTS: Expression of MMP-7 and 9, expression of MT1-MMP, and gelatinase activity were elevated in the carcinomas, correlating with depth of tumor invasion. Percentages of positive sm cases were 44.0%, 51.9%, and 52.0%, respectively, significantly higher than for the m cases. Percentages of venous invasion positive cases were 61.9%, 65.1%, and 65.1%, respectively. CONCLUSIONS: Expression of MMP-7 and 9 and MT1-MMP is closely associated with invasion depth and venous invasion in esophageal squamous cell carcinomas.

Carcinoma, Squamous Cell↗

Matrix metalloproteinase 7 (matrilysin) from human rectal carcinoma cells. Activation of the precursor, interaction with other matrix metalloproteinases and enzymic properties.

Matrix metalloproteinase 7 (MMP-7) has been purified as an inactive zymogen of M(r) 28,000 (proMMP-7) from the culture medium of CaR-1 human rectal carcinoma cells. The NH2-terminal sequence of proMMP-7 is Lys-Pro-Lys-Pro-Gln-Glu, which is identical to that of matrilysin. The zymogen is activated by 4-aminophenylmercuric acetate (APMA), yielding an intermediate form of M(r) 21,000 and an active species of M(r) 19,000 which shows the new NH2-terminal sequence of Tyr78-Ser-Leu-Phe-Pro-Asn-Ser. Although trypsin fully activates the zymogen, the activation rate by plasmin or leukocyte elastase is confined to approximately 50%. ProMMP-7 can be activated by MMP-3 (stromelysin 1) to its full activity in a single-step mechanism and generates the same NH2 terminus obtained by APMA activation, whereas MMP-1 (tissue collagenase), MMP-2 (gelatinase A), and MMP-9 (gelatinase B) do not have such an effect. On the other hand, proMMP-1 is activated by MMP-7 to an activity similar to that obtained by APMA and the activation by MMP-7 is enhanced up to approximately 6.5 fold in the presence of APMA. This enhanced activity is donated by specific cleavage at the Gln80-Phe81 bond of proMMP-1. MMP-7 can also activate proMMP-9 up to approximately 50% of the full activity with a new NH2 terminus of Leu16-Arg-Thr-(Asn)-Leu. Incubation of proMMP-2 or proMMP-3 with MMP-7 results in no activation of these proMMPs. MMP-7 degrades type IV collagen, laminin-1, fibronectin, proteoglycan, type I gelatin, and insoluble elastin. These results suggest that in vivo MMP-7 may play a role in degradation of extracellular matrix macromolecules in concert with MMP-1, -3, and -9 under pathological conditions.

Collagenases↗

Inhibitory effects of green tea catechins on the activity of human matrix metalloproteinase 7 (matrilysin).

Inhibitory effects of green tea catechins and their derivatives on the matrilysin-catalyzed hydrolysis of a synthetic substrate, (7-methoxycoumarin-4-yl)acetyl-L-Pro-L-Leu-Gly-L-Leu-[N(3)-(2,4-dinitrophenyl)-L-2,3-diamino-propionyl]-L-Ala-L-Arg-NH(2) [MOCAc-PLGL(Dpa)AR], were examined. The 10 catechins examined were classified into three groups according to their inhibition potency. Catechins with a galloyl group at the 3 position, including a major component of green tea catechin, (-)-epigallo-3-catechin gallate [(-)-EGCG], were the most potent inhibitors and inhibited matrilysin in a non-competitive manner with K(i) values of 0.47-1.65 micro M. The inhibitory potency of (-)-EGCG was not influenced by the presence of an inhibitor, ZnCl(2), suggesting that the inhibitions of matrilysin by (-)-EGCG and by ZnCl(2) might be independent of each other. The inhibitory effects of green tea catechins suggest that a high intake of green tea might be effective for the prevention of tumor metastasis and invasion in which matrilysin is concerned.

Catechin↗

Inhibitory effects of alcohols on the activity of human matrix metalloproteinase 7 (matrilysin).

Aliphatic alcohols inhibited the activity of human matrix metalloproteinase 7 (matrilysin) competitively with K(i) of 6.1-19.4% (v/v) or 0.66-4.80 M. From the relationship between the structures of alcohols and their K(i) values, alcohols are considered to bind the hydrophobic S1' subsite most plausibly, and the size of the pocket was estimated to be large enough to accommodate the length of 1-butanol (4-carbon chain) and the bulk of tertiary alcohols. Alcohols might be suitable probes for exploring the active-site geometry of enzymes.

Alcohols↗

Tetraspanin CD151 is expressed in osteoarthritic cartilage and is involved in pericellular activation of pro-matrix metalloproteinase 7 in osteoarthritic chondrocytes.

OBJECTIVE: The proenzyme of matrix metalloproteinase 7 (proMMP-7), which can degrade various extracellular matrix (ECM) and non-ECM molecules after being activated, is overexpressed in osteoarthritic (OA) articular cartilage, but the process of its activation in the cartilage remains unknown. The present study was undertaken to investigate the expression of tetraspanin CD151 in OA cartilage and its involvement in proMMP-7 activation. METHODS: The expression of CD151 in articular cartilage was examined by reverse transcription-polymerase chain reaction (RT-PCR), real-time PCR, immunohistochemistry, in situ hybridization, and immunoblotting. Chondrocytes were used to study the interaction between CD151 and proMMP-7, and activation of proMMP-7. RESULTS: RT-PCR revealed expression of CD151 messenger RNA in all OA cartilage samples, but in only 30% of normal control cartilage samples. Immunohistochemistry and in situ hybridization findings indicated that CD151 was coexpressed with proMMP-7 in chondrocytes, mainly in the superficial and transitional zones of OA cartilage. CD151 immunoreactivity directly correlated with the Mankin score (r = 0.757, P < 0.0001 [n = 30]) and the degree of chondrocyte cloning (r = 0.83, P < 0.0001 [n = 30]) in the cartilage samples. Complexes CD151 and proMMP-7 and their colocalization on the cell membranes were demonstrated by immunoprecipitation and double fluorescence immunostaining of the OA chondrocytes. In situ zymography indicated that chondrocytes exhibit pericellular proteolytic activity, which was abolished by treatment with MMP inhibitors, anti-MMP-7 antibody, or anti-CD151 antibody. CONCLUSION: These data demonstrate that CD151 is overexpressed in OA cartilage and suggest that CD151 plays a role in the pericellular activation of proMMP-7, leading to cartilage destruction and/or chondrocyte cloning.

Aged↗

Interrelation between expression of matrix metalloproteinase 7 and beta-catenin in esophageal cancer.

Matrix metalloproteinase 7 (MMP-7) may play a key role in the progression of various human malignant tumors. Nuclear beta-catenin enhances the activating expression of MMP-7 genes by binding with the T-cell factor/lymphoid enhancer factor family of transcription factors. We immunohistochemically examined the expression of MMP-7 and beta-catenin to better understand the significance of these factors in the progression of esophageal squamous cell carcinoma. The entire coding region of beta-catenin exon 3 was also analyzed by direct sequencing in all cases. We found that MMP-7 was expressed in 7 (20.6%) of 34 esophageal squamous cell carcinomas. There was a significant relationship between MMP-7 expression and tumor invasion into adjacent structures (P < 0.05). Aberrant nuclear expression of beta-catenin was found in 12 of 34 (35.3%) esophageal cancers and correlated with MMP-7 expression, the statistical difference being (P < 0.05). None of the 34 esophageal cancers examined carried mutations in beta-catenin exon 3. MMP-7 expression correlates with penetrating tumor progression in esophageal cancer. Nuclear translocation of beta-catenin, without mutations in beta-catenin exon 3, is associated with MMP-7 expression.

Adult↗

Expression of matrix metalloproteinase 7 (matrilysin) in human osteoarthritic cartilage.

Matrix metalloproteinases (MMP) consisting of at least 16 different molecules are thought to be involved in the degradation of extracellular matrix (ECM) macromolecules under various pathologic conditions. Among them, MMP-7 (matrilysin) is unique in that it has high specific activity against various ECM components such as cartilage proteoglycan. In the present study, we examined the expression and tissue localization of MMP-7 in articular cartilages of human osteoarthritis (OA). Immunohistochemistry using a monoclonal antibody specific to MMP-7 demonstrated that the proteinase is localized to the OA chondrocytes mainly in the superficial and transitional zones in 92% of the OA cases examined (36 of 39 cases). On average, approximately 30% of the total chondrocytes (29.1%+/-30.2%) were immunostained in the positive OA cartilage samples. In contrast, MMP-7 staining was found in 8% of the normal cartilage cases (1 of 12 cases), and only a few chondrocytes (0.15%+/-0.67%) in the superficial zone were immunostained. There was a linear correlation between degree (%) of the immunostained chondrocytes and Mankin scores (rho [rho] = 0.84). Immunoblot analysis of the culture media from the cartilage explants demonstrated MMP-7 in 65% of the OA cases (15 of 23 cases) and 8% of the normal specimens (1 of 12 cases). Reverse transcription-PCR demonstrated the specific amplicon in 68% of the OA cartilage cases (17 of 25 cases), whereas only 18% of the control (2 of 11 cases) amplified the product. In situ hybridization revealed that the chondrocytes in OA cartilage express MMP-7 mRNA. MMP-7 gene expression in cultured OA chondrocytes was enhanced by the treatment with interleukin-1alpha and/or tumor necrosis factor-alpha. These data demonstrate for the first time that MMP-7 is overexpressed in human OA cartilage and suggest that cytokine-induced MMP-7 may play an important role in the degradation of ECM macromolecules in the OA cartilage.

Adult↗

Matrilysin (matrix metalloproteinase 7) in parturition, premature rupture of membranes, and intrauterine infection.

OBJECTIVE: Matrix metalloproteinases are enzymes capable of degrading extracellular matrix components. Matrilysin (matrix metalloproteinase 7), a novel member of this family, degrades fibronectin and proteoglycans. The objective of this study was to determine whether parturition (either term or preterm), premature rupture of the membranes, and microbial invasion of the amniotic cavity are associated with changes in the amniotic fluid concentration of matrilysin. STUDY DESIGN: A cross-sectional study was conducted with 275 women in the following categories: (1) second trimester, (2) term not in labor, (3) term in labor, (4) term with microbial invasion of the amniotic cavity, (5) preterm labor with intact membranes without microbial invasion of the amniotic cavity who delivered at term, (6) preterm labor without microbial invasion of the amniotic cavity who delivered preterm, (7) preterm labor with microbial invasion of the amniotic cavity, (8) preterm premature rupture of membranes with and without microbial invasion of the amniotic cavity, and (9) term premature rupture of membranes not in labor and without microbial invasion of the amniotic cavity. Matrilysin concentrations were measured with a sensitive specific immunoassay that was validated for amniotic fluid. RESULTS: Matrilysin was detectable in 97.4% (268/275) of the samples. The concentration of matrilysin increased with advancing gestational age (r = 0.8; P <.001). Parturition at term was not associated with a significant increase in amniotic fluid concentration of matrilysin. Preterm parturition in the absence of microbial invasion of the amniotic cavity was associated with a significant increase in amniotic fluid concentration of matrilysin (preterm labor with preterm delivery: median, 1.7 ng/mL; range, 0.45-21.6 mg/mL; vs preterm labor with term delivery: median, 1.2 ng/mL; range, 0.17-42. 1 ng/mL; P <.05). Premature rupture of membranes without microbial invasion of the amniotic cavity (either term or preterm) was not associated with a significant change in the amniotic fluid matrilysin concentration. Intra-amniotic infection was associated with a significant increase in amniotic fluid matrilysin among both patients with preterm labor and patients with preterm premature rupture of membranes (preterm labor with microbial invasion of the amniotic cavity: median, 3.2 ng/mL; range, 0.16-21.9 ng/mL; vs preterm labor and delivery without microbial invasion of the amniotic cavity: median, 1.7 ng/mL; range, 0.45-21.6 ng/mL; vs preterm labor with term delivery: median, 1.2 ng/mL; range, 0.17-42. 1 ng/mL; P <.01 for each comparison; and preterm premature rupture of membranes without microbial invasion of the amniotic cavity: median, 1.7 ng/mL; range, 0.29-13.9 ng/mL; vs preterm premature rupture of membranes with microbial invasion of the amniotic cavity: median, 3.6 ng/mL; range, 0.59-20.3 ng/mL; P <.01). CONCLUSION: Matrilysin is a physiologic constituent of amniotic fluid, and its concentration increases with advancing gestational age. Microbial invasion of the amniotic cavity in preterm gestations was associated with a significant increase in amniotic fluid concentration of matrilysin. Matrilysin therefore may play a role in the host defense mechanism.

Amnion↗

Expression of matrix metalloproteinases 7 and 9 in non-small cell lung cancer. Relation to clinicopathological factors, beta-catenin and prognosis.

Matrix metalloproteinases (MMPs) have been shown to have a significant role in determining cancer cell behaviour. The present study was undertaken to analyze the expression and prognostic value of MMP-7 and MMP-9 in non-small cell lung cancer (NSCLC). The relationship of MMP-7 with beta-catenin was also evaluated. The study consists of 212 patients with resected NSCLC. Tumour samples were stained immunohistochemically, and the expression of MMP-7 and MMP-9 was evaluated in both tumour cells and peritumoural stromal tissue. The results were compared to clinicopathological factors of the patients. A high staining of MMP-7 and MMP-9 in tumour cells was noted in 62 (30%) and 113 (57%) cases, respectively. Expression of MMP-7 was noted more often in adenocarcinomas than in other histological types (p=0.022). High cancer cell associated MMP-7 was related to lower T-factor (p=0.037), better tumour differentiation (p=0.005) and normal beta-catenin expression in tumour cells (p=0.001). A high MMP-9 expression in tumour cells was related to poor tumour differentiation (p=0.016). The stromal signal for MMP-9 was observed in 58 (32%) cases and was linked with higher tumour grade (p=0.031). In survival analyses the significant predictors of survival were histological type of tumour and tumour stage (p=0.0009 and 0.0012, respectively). MMP-7 or MMP-9 signals were not related to patient's outcome. The results show that high MMP-9 expression indicates aggressive, and high MMP-7 less aggressive tumour behaviour in NSCLC. However, MMP-7 and MMP-9 expressions had no prognostic value in NSCLC.

Adenocarcinoma↗

A one-step sandwich enzyme immunoassay for human matrix metalloproteinase 7 (matrilysin) using monoclonal antibodies.

A one-step sandwich enzyme immunoassay (EIA) system for human matrix metalloproteinase 7 (MMP-7, matrilysin, EC 3.4.24.23) was established with a pair of monoclonal antibodies prepared against the zymogen of MMP-7 (proMMP-7) purified from CaR-1 human rectal carcinoma cells and against an oligopeptide corresponding to the C-terminal domain of human proMMP-7. ProMMP-7 in samples was allowed to simultaneously react with both solid-phase and peroxidase-labeled antibodies. Sensitivity of the EIA system in the presence of EDTA was 0.05 microgram/l (1.5 pg/assay) and linearity was obtained between 0.156-10 micrograms/l (4.68-300 pg/assay). ProMMP-7 levels in human sera from healthy subjects were shown to be in the range of 10.7 +/- 18.8 micrograms/l. Gel filtration analyses indicated that proMMP-7 makes polymers after treatment with EDTA and suggested that proMMP-7 exists as polymers in normal human sera.

Amino Acid Sequence↗

Expression of matrix metalloproteinases 7 and 2 in human renal cell carcinoma.

Matrix metalloproteinases (MMPs) are associated with invasion and metastasis of several malignant tumors in human. Especially so MMP-7, as it is mainly produced by the cancer cell itself. However, the expression of MMP-7 in renal cell carcinoma (RCC) has not been investigated. We examined expressions of MMP-7 and MMP-2 in RCC, and compared them with the clinicopathological characteristics in RCC. Tumor samples from 20 patients with RCC, who had surgery performed at Osaka City University Medical School Hospital, were immunohistochemically stained. Expression of MMP-2 was significantly stronger in advanced stage and in high grade tumors than in low stage and low grade tumors. MMP-7 was also expressed in RCCs, with its expression especially and significantly stronger in high grade than in low grade tumors (p=0.004). However, there was no significant difference of MMP-7 expression between advanced and low stages (p=0.1859). This increased expression of MMP-7 in high grade RCC might be associated with tumor invasion and metastasis.

Adenocarcinoma, Clear Cell↗

Refolding and recovery of recombinant human matrix metalloproteinase 7 (matrilysin) from inclusion bodies expressed by Escherichia coli.

The recombinant prepro-form of human matrix metalloproteinase 7 (matrilysin or MMP-7) was overexpressed in Escherichia coli as insoluble inclusion bodies. The recombinant protein was refolded by 100-fold dilution after solubilization with 6 M guanidine HCl. The refolding was monitored by the recovery of matrilysin activity. The addition of either 1.0 M arginine or 0.1% Brij-35 promoted remarkably the refolding. The refolding was dependent on pH and temperature, with lower temperature (<10 degrees C) and pH 6-8 preferable. Glutathione had no effect on refolding, and it was excluded from the refolding conditions. Starting with inclusion bodies (2.0 g, wet) containing 360 mg protein, 29.5 mg of pro-matrilysin (30 kDa) was obtained after refolding with 1.0% Brij-35 at pH 7.5 and 4 degrees C for 12 h. Pro-matrilysin (24.0 mg) was purified to homogeneity by cation-exchange HPLC with a 15-fold increase in purity and an activity yield of 81.3%. Pro-matrilysin was converted entirely to matrilysin (19.0 kDa; 15.2 mg) by activation with a mercuric reagent. The activity (k(cat)/K(m)) of matrilysin was 1.7 x 10(5) M(-1) x s(-1).

Arginine↗

Expression of matrix metalloproteinase 7, laminin and type IV collagen-associated liver metastasis in human colorectal cancer: immunohistochemical approach.

BACKGROUND/AIMS: Matrix metalloproteinase 7 (MMP-7) plays an important role in vessel invasion and metastasis in human colorectal cancer. METHODOLOGY: The significance of MMP-7, laminin and type IV collagen expression in human colorectal cancer was investigated by immunohistochemical assay, and the correlation with liver metastasis was analyzed. RESULTS: In a synchronous metastasis group, 26 of 36 cases (72%) showed positive staining of MMP-7: There were 32 cases (89%) in the lymph channel and 28/32 cases (87%) in the vessels, and 17/34 cases (50%) showed a positive rate of laminin. In the metachronous metastasis group, 14 of 30 cases (47%) showed positive staining of MMP-7: There were 19 cases (63%) in the lymph channel and 13/19 cases (69%) in the vessels, and 17/30 cases (57%) showed a positive rate of laminin. In the control group, which was a 5-year disease-free group, despite there being no significant clinicopathological factors compared with the other two groups, 17 of 37 cases (51%) showed positive staining of MMP-7: There were 12 cases (37%) in the lymph channel and 6 cases (18%) in the vessels, and 2/31 cases (5%) showed a positive rate of laminin. The expression of type IV collagen attenuated in 19 out of 32 cases (59%) in Group S, 10 out of 19 cases (53%) in Group M, and 14 out of 37 cases (38%) in Group C, with no significant differences among the groups. Thus, the metastatic groups were significantly higher than the control group in terms of expression of laminin and MMP-7 in the lymph channel. CONCLUSIONS: These findings suggest that laminin and the expression of MMP-7 in the lymph channel is a useful parameter for predicting liver metastasis.

Aged↗

Expression of matrix metalloproteinases 3, 10 and 11 (stromelysins 1, 2 and 3) and matrix metalloproteinase 7 (matrilysin) by cancer cells in non-small cell lung neoplasms. Clinicopathologic studies.

Matrix metalloproteinases (MMP's) 3, 10 and 11 (also known as stromelysins 1, 2 and 3, respectively), and matrix metalloproteinase 7 (also known as matrilysin), produced by stromal fibroblast-like cells in the vicinity of various malignancies, are suspected to have an ability to degrade components of extracellular matrix, thus promoting spread of the tumor. MMP's also have been found in epithelial tumor cells in various cancers. Tissue sections from 95 cases of non-small cell lung cancer (NSCLC) were immunostained with antibodies against MMP 3, MMP 10 and MMP 11 and sections from 99 cases of NSCLC were immunostained with an antibody against MMP 7. Cytoplasmic immunoreactivity in the tumor cells was semiquantitatively scored for intensity and distribution and correlated with tumor type, tumor grade, stage, tumor size, lymph node positivity, metastasis and survival. Overexpression of MMP 10 and MMP 11 correlated with higher grade for NSCLC (p = 0.029 and p = 0.016, respectively), and also in a subset of adenocarcinomas (AC) (p = 0.015 and p = 0.009, respectively). Also, MMP 10 and MMP 11 correlated with lymph node involvement in NSCLC (p = 0.025 and p = 0.027 respectively). No correlation was found for MMP 3. Overexpression of MMP-7 correlated with tumor stage (p = 0.0001) and was associated with adverse clinical outcome (p = 0.0001) in NSCLC and also in separate squamous cell carcinoma (SCC) (p = 0.003) and AC (p = 0.004) tumor groups.

Carcinoma, Non-Small-Cell Lung↗

Plasma matrix metalloproteinases 7 and 9 in patients with metastatic breast cancer treated with marimastat or placebo: Eastern Cooperative Oncology Group trial E2196.

BACKGROUND: The purpose of this study was to evaluate the prognostic and predictive utility of measuring plasma levels of matrix metalloproteinase (MMP)-7 and MMP-9 in patients with metastatic breast cancer (MBC) treated with the oral MMP inhibitor (MMPI) marimastat or a placebo. PATIENTS AND METHODS: We measured plasma levels of MMP-7 and MMP-9 using an enzyme-linked immunoassay method in 140 evaluable patients with MBC enrolled on a multicenter clinical trial that compared the MMPI marimastat with placebo. Specimens were collected after completion of first-line chemotherapy in patients who had responding or stable disease and 3, 6, and 12 months after initiation of marimastat (10 mg orally twice daily) or placebo. RESULTS: Baseline plasma MMP-7 and MMP-9 levels did not correlate with each other or with progression-free or overall survival. In addition, serial evaluation of plasma MMP-7 and MMP-9 levels revealed no significant changes over time in the marimastat or placebo groups or any correlation with trough plasma marimastat level. CONCLUSION: We conclude that measurement of plasma MMP-7 or MMP-9 levels, as performed in our trial, was not a useful prognostic or predictive factor in patients with MBC or in patients treated with an MMPI.

Administration, Oral↗

Interactions of human matrix metalloproteinase 7 (matrilysin) with the inhibitors thiorphan and R-94138.

The effects of the metalloproteinase inhibitors thiorphan and R-94138 on the matrilysin-catalyzed hydrolysis of (7-methoxycoumarin-4-yl)acetyl-L-Pro-L-Leu-Gly-L-Leu-[N(3)-(2,4-dinitrophenyl)-L-2,3-diamino-propionyl]-L-Ala-L-Arg-NH(2) [MOCAc-PLGL(Dpa)AR] were examined. The inhibitor constants (K(i)) of thiorphan and R-94138 for matrilysin at pH 7.5, 25 degrees C were determined to be 11.2 and 7.65 microM, respectively. From the temperature dependence of the K(i) values at pH 7.5, the standard enthalpy change (Delta H degrees ') values for the binding of matrilysin with thiorphan and R-94138 were determined to be -(18.2 +/- 0.9) and (1.65 +/- 1.07) kJ x mol(-1), respectively. The binding of matrilysin to thiorphan is exothermic and the free energy change in the complex formation depends mainly on the change in enthalpy, while the binding to R-94138 is endothermic and typically entropy-driven. Hydrophobic interactions are suggested to contribute significantly to the binding of matrilysin to R-94138 as well as to the substrate. The pH dependence of the K(i) value suggests that at least two ionizing groups with pK(a) values of 4.5 and 9.1--9.3 are involved in the binding. The matrilysin activity is regulated by ionizing groups with pK(a) values of 4.3 and 9.6. Both inhibition and hydrolysis are suggested to be controlled by the same residues in matrilysin, most likely Glu 198 and Tyr 219, respectively.

Acetamides↗