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Query: EC:3.4.21.73 (
urokinase-type plasminogen activator
)
10,685
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The role of tumor suppressor proteins in the development of malignancy has made the understanding of their molecular mechanisms of action of great importance. Maspin is a tumor suppressor produced by a number of cell types of epithelial origin. Exogenous recombinant
maspin
has been shown to block the growth, motility, and invasiveness of breast tumor cell lines in vitro and in vivo. Although belonging to the the serine proteinase inhibitor (serpin) superfamily of proteins, the molecular mechanism of
maspin
is currently unknown. Here we show that the reactive site loop of
maspin
exists in an exposed conformation that does not require activation by cofactors. The reactive site loop of
maspin
, however, does not act as an inhibitor of proteinases such as chymotrypsin, elastase, plasmin, thrombin, and trypsin but rather as a substrate. Maspin is also unable to inhibit tissue and
urokinase
type plasminogen activators. Stability studies show that
maspin
cannot undergo the stressed-relaxed transition typical of proteinase-inhibitory serpins, and the protein is capable of spontaneous polymerization induced by changes in pH. It is likely, therefore, that
maspin
is structurally more closely related to ovalbumin and angiotensinogen, and its tumor suppressor activity is independent of a latent or intrinsic trypsin-like serine proteinase-inhibitory activity.
...
PMID:The tumor suppressor maspin does not undergo the stressed to relaxed transition or inhibit trypsin-like serine proteases. Evidence that maspin is not a protease inhibitory serpin. 779 87
The
maspin
protein has tumor suppressor activity in breast and prostate cancers. It inhibits cell motility and invasion in vitro and tumor growth and metastasis in nude mice. Maspin is structurally a member of the serpin (serine protease inhibitors) superfamily but deviates somewhat from classical serpins. We find that single-chain tissue plasminogen activator (sctPA) specifically interacts with the
maspin
reactive site loop peptide and forms a stable complex with recombinant
maspin
[rMaspin(i)]. Major effects of rMaspin(i) are observed on plasminogen activation by sctPA. First, rMaspin(i) activates free sctPA. Second, it inhibits sctPA preactivated by poly-D-lysine. Third, rMaspin(i) exerts a biphasic effect on the activity of sctPA preactivated by fibrinogen/gelatin, acting as a competitive inhibitor at low concentrations (< 0.5 microM) and as a stimulator at higher concentrations. Fourth, 38-kDa C-terminal truncated rMaspin(i) further stimulates fibrinogen/gelatin-associated sctPA. rMaspin(i) acts specifically; it does not inhibit
urokinase-type plasminogen activator
, plasmin, chymotrypsin, trypsin, or elastase. Our kinetic data are quantitatively consistent with a model in which two segregated domains of
maspin
interact with the catalytic and activating domains of sctPA. These complex interactions between
maspin
and sctPA in vitro suggest a mechanism by which
maspin
regulates plasminogen activation by sctPA bound to the epithelial cell surface.
...
PMID:Tissue-type plasminogen activator is a target of the tumor suppressor gene maspin. 943 20
Maspin is a novel serine protease inhibitor (serpin) with tumor suppressive potential in breast and prostate cancer, acting at the level of tumor invasion and metastasis. It was subsequently demonstrated that
maspin
inhibits tumor invasion, at least in part, by inhibiting cell motility. Interestingly, in cell-free solutions,
maspin
does not inhibit several serine proteases including tissue-type plasminogen activator and
urokinase-type plasminogen activator
(
uPA
). Despite the recent biochemical evidence that
maspin
specifically inhibits tissue-type plasminogen activator that is associated with fibrinogen or poly-L-lysine, the molecular mechanism underlying the tumor-suppressive effect of
maspin
remains elusive. The goal of this study was to investigate the effect of
maspin
on cell surface-associated
uPA
. In our experimental system, we chose prostate carcinoma DU145 cells because these cells mediate plasminogen activation primarily by
uPA
, as shown by two different colorimetric enzyme activity assays. Purified recombinant
maspin
produced in baculovirus-infected Spodoptera frugiperda Sf9 insect cells [rMaspin(i)] binds specifically to the surface of DU145 cells, inhibits the DU145 cell surface-bound
uPA
, and forms a stable complex with the
uPA
in DU145 cell lysate. The inhibitory effect of rMaspin(i) on cell surface-bound
uPA
was similar to that of an
uPA
-neutralizing antibody and was reversed by a polyclonal antibody against the reactive site loop sequence of
maspin
. The Ki value for rMaspin(i) in cell surface-mediated plasminogen activation was 20 nM, which was comparable to the Ki values for plasminogen activator inhibitor 1 and plasminogen activator inhibitor 2, respectively. Furthermore, the proteolytic inhibitory effect of rMaspin(i) was quantitatively consistent with its inhibitory effect on the motility of DU145 cells in vitro. Our data demonstrate an important role for the prostate carcinoma cell surface in mediating the inhibitory interaction between rMaspin(i) and
uPA
. Thus, future
maspin
-based therapeutic strategies may prove useful in blocking the invasion and metastasis of
uPA
-positive prostate carcinoma.
...
PMID:The surface of prostate carcinoma DU145 cells mediates the inhibition of urokinase-type plasminogen activator by maspin. 1098 85
Maspin is a novel serine protease inhibitor with tumor suppressive activity, inhibiting tumor invasion and metastasis. To date, the underlying molecular mechanism of
maspin
remains elusive. Recombinant
maspin
has been shown to specifically inhibit cell surface-associated
urokinase-type plasminogen activator
(
uPA
) and fibrinogen-bound tissue-type plasminogen activator. However, the role of endogenous
maspin
in plasminogen activation is totally unknown. To address this issue, we generated stable
maspin
-expressing transfectants using prostate carcinoma cells DU145 as the parental cell line. We report here that endogenous
maspin
exerts pleiotropic inhibitory effects on the pericellular
uPA
system. Maspin expression led to a significantly reduced level of cell surface-bound
uPA
and
uPA
receptor proteins without altering the steady-state levels of the respective mRNAs. Treatment with receptor-associated protein (RAP), a specific inhibitor of low-density lipoprotein receptor-related protein, lead to a significantly increased level of secreted
uPA
and cell surface uPAR in
maspin
transfectants but not in the mock control cells. A combination of enzymatic and molecular analyses revealed that
maspin
inhibits the cell surface-mediated plasminogen activation by forming an SDS-resistant complex with cell surface-bound
uPA
. In addition,
maspin
expression led to a dramatic reduction in the release of active
uPA
, both high molecular weight and the low molecular weight, into the conditioned culture medium. Consistently, the conditioned medium of
maspin
transfectant clones had a significantly reduced activity in converting plasminogen to plasmin. The inhibitory effect of
maspin
on pericellular
uPA
correlates with significantly decreased cell invasion potential and motility in vitro. The
maspin
-neutralizing antibody (Abs4A) reversed the subdued invasive potential of
maspin
transfectant cells in a dose-dependent manner. In summary, this study provides the first evidence that endogenous
maspin
is a potent inhibitor of pericellular
uPA
. Furthermore, our results support a current hypothesis that
maspin
blocks tumor invasion and motility by inhibiting localized pericellular proteolysis.
...
PMID:Pleiotrophic inhibition of pericellular urokinase-type plasminogen activator system by endogenous tumor suppressive maspin. 1175 84
Maspin is a member of the serpin family of protease inhibitors and is a tumor suppressor gene acting at the level of tumor invasion and metastasis. This in vivo activity correlates with the ability of
maspin
to inhibit cell migration in vitro. This behavior suggests that
maspin
inhibits matrix-degrading proteases, such as those of the plasminogen activation system, in a similar manner to the serpin PAI-1. However, there is controversy concerning the protease inhibitory activity of
maspin
. It is devoid of activity against a wide range of proteases, in common with other non-inhibitory serpins, but has recently been reported to inhibit plasminogen activators associated with cells and other biological surfaces (Sheng, S. J., Truong, B., Fredrickson, D., Wu, R. L., Pardee, A. B., and Sager, R. (1998) Proc. Natl. Acad. Sci. U. S. A. 95, 499-504; McGowen, R., Biliran, H., Jr., Sager, R., and Sheng, S. (2000) Cancer Res. 60, 4771-4778). We have compared the effects of
maspin
with those of PAI-1 in a range of situations in which plasminogen activation is potentiated, reflecting the biological context of this proteolytic system:
urokinase-type plasminogen activator
bound to its receptor on the surface of tumor cells, tissue-type plasminogen activator specifically bound to vascular smooth muscle cells, fibrin, and the prion protein. Maspin was found to have no inhibitory effect in any of these situations, in contrast to the efficient inhibition observed with PAI-1, but nevertheless
maspin
inhibited the migration of both tumor and vascular smooth muscle cells. We conclude that
maspin
is a non-inhibitory serpin and that protease inhibition does not account for its activity as a tumor suppressor.
...
PMID:Maspin inhibits cell migration in the absence of protease inhibitory activity. 1238 13
Emerging evidence indicates that tumor-associated proteolytic remodeling of bone matrix may underlie the capacity of tumor cells to colonize and survive in the bone microenvironment. Of particular importance,
urokinase-type plasminogen activator
(
uPA
) has been shown to correlate with human prostate cancer (PC) metastasis. The importance of this protease may be related to its ability to initiate a proteolytic cascade, leading to the activation of multiple proteases and growth factors. Previously, we showed that
maspin
, a serine protease inhibitor, specifically inhibits PC-associated
uPA
and PC cell invasion and motility in vitro. In this article, we showed that
maspin
-expressing transfectant cells derived from PC cell line DU145 were inhibited in in vitro extracellular matrix and collagen degradation assays. To test the effect of tumor-associated
maspin
on PC-induced bone matrix remodeling and tumor growth, we injected the
maspin
-transfected DU145 cells into human fetal bone fragments, which were previously implanted in immunodeficient mice. These studies showed that
maspin
expression decreased tumor growth, reduced osteolysis, and decreased angiogenesis. Furthermore, the
maspin
-expressing tumors contained significant fibrosis and collagen staining, and exhibited a more glandular organization. These data represent evidence that
maspin
inhibits PC-induced bone matrix remodeling and induces PC glandular redifferentiation. These results support our current working hypothesis that
maspin
exerts its tumor suppressive role, at least in part, by blocking the pericellular
uPA
system and suggest that
maspin
may offer an opportunity to improve therapeutic intervention of bone metastasis.
...
PMID:Maspin expression inhibits osteolysis, tumor growth, and angiogenesis in a model of prostate cancer bone metastasis. 1278 77
Maspin, a unique serine proteinase inhibitor (serpin), plays a key role in mammary gland development and is silenced during breast cancer progression. Maspin has been shown to inhibit tumor cell motility and invasion in cell culture, as well as growth and metastasis in animal models. In this study, we investigated the effect of
maspin
on the regulation of hypoxia-induced expression of
urokinase-type plasminogen activator
(
uPA
) and its receptor (uPAR), with respect to invasive potential in metastatic breast cells MDA-MB-231. We hypothesized that
maspin
can neutralize or mitigate hypoxia-induced expression of
uPA
/uPAR in metastatic breast cancer cells, resulting in suppression of their invasive potential. To test our hypothesis, we employed the highly invasive MDA-MB-231 breast cancer cells that are devoid of
maspin
, and transfected them with the
maspin
gene, and then determined the effect of hypoxia on
uPA
/uPAR expression. Normal mammary epithelial cells 1436N1 were used as a control. Our findings demonstrate that
maspin
downregulated the basal and hypoxia-induced
uPA
/uPAR expression and reduced the stimulatory effect of hypoxia on the in vitro invasive ability of MDA-MB-231-cells. In addition,
maspin
also inhibited the enzymatic activity of secreted and cell associated
uPA
in MDA-MB-231 cells. These results indicate that
maspin
inhibits hypoxia-induced invasion of metastatic breast cancer cells by blocking the
uPA
system, thus illuminating an important molecular pathway for therapeutic consideration.
...
PMID:Maspin regulates hypoxia-mediated stimulation of uPA/uPAR complex in invasive breast cancer cells. 1612 83
Extracellular proteases of the matrix metalloproteinase (MMP) and serine protease families participate in many aspects of tumour growth and metastasis. Using quantitative real-time RT-PCR analysis, we have undertaken a comprehensive survey of the expression of these enzymes and of their natural inhibitors in 44 cases of human prostate cancer and 23 benign prostate specimens. We found increased expression of MMP10, 15, 24, 25 and 26,
urokinase plasminogen activator
-receptor (uPAR) and plasminogen activator inhibitor-1 (PAI1), and the newly characterised serine proteases hepsin and matriptase-1 (MTSP1) in malignant tissue compared to benign prostate tissue. In contrast, there was significantly decreased expression of MMP2 and MMP23,
maspin
, and the protease inhibitors tissue inhibitor of metalloproteinase 3 (TIMP3), TIMP4 and RECK (reversion-inducing cysteine-rich protein with Kazal motifs) in the cancer specimens. The expression of MMP15 and MMP26 correlated positively with Gleason score, whereas TIMP3, TIMP4 and RECK expression correlated negatively with Gleason score. The cellular localisation of the expression of the deregulated genes was evaluated using primary malignant epithelial and stromal cell cultures derived from radical prostatectomy specimens. MMP10 and 25, hepsin, MTSP1 and
maspin
showed predominantly epithelial expression, whereas TIMP 3 and 4, RECK, MMP2 and 23, uPAR and PAI1 were produced primarily by stromal cells. These data provide the first comprehensive and quantitative analysis of the expression and localisation of MMPs and their inhibitors in human prostate cancer, leading to the identification of several genes involved in proteolysis as potential prognostic indicators, in particular hepsin, MTSP1, MMP26, PAI1, uPAR, MMP15, TIMP3, TIMP4,
maspin
and RECK.
...
PMID:Identification of degradome components associated with prostate cancer progression by expression analysis of human prostatic tissues. 1592 70
The serpin family of serine protease inhibitors has generated a lot of interest in the past few years. One member in particular,
maspin
, has been under intense scrutiny as of late due to its seemingly growing potential in the cancer field as a therapeutic agent for breast and prostate cancers. Originally identified in a subtractive hybridization screen of breast cancer cells,
maspin
has since been classified as a putative tumor suppressor. In the April (2005) issue of Cancer Biology & Therapy, Amir et al report on the novel role
maspin
plays in the regulation of the
urokinase-type plasminogen activator
(
uPA
) and receptor (uPAR) protein system as it relates to hypoxia thereby illustrating yet another potential therapeutic pathway involving
maspin
.
...
PMID:Hypoxia effects: implications for maspin regulation of the uPA/uPAR complex. 1584 59
It is well documented that tumor suppressive
maspin
inhibits tumor cell invasion and extracellular matrix remodeling. Maspin is a cytosolic, cell surface-associated, and secreted protein in the serine protease inhibitor superfamily. Although several molecules have been identified as candidate intracellular
maspin
targets, the extracellular
maspin
target(s) remains elusive. Although
maspin
does not directly inhibit
urokinase-type plasminogen activator
(
uPA
) activity, we have shown evidence that
maspin
may block the pericellular proteolysis mediated by cell surface-associated
uPA
. In the current study,
maspin
significantly inhibited the Ca2+ reduction-induced detachment of DU145 cells. This
maspin
effect was associated with increased and sustained levels of mature focal adhesion contacts (FAC). We noted that
maspin
(a) colocalized with
uPA
and
uPA
receptor (uPAR), (b) enhanced the interaction between uPAR and low-density lipoprotein receptor related protein, and (c) induced rapid internalization of
uPA
and uPAR. The
maspin
effects on surface-associated
uPA
and uPAR required the interaction between
uPA
and uPAR. Further biochemical and biophysical analyses revealed that
maspin
specifically bound to pro-
uPA
with a deduced K(d) of 270 nmol/L and inhibited the plasmin-mediated pro-
uPA
cleavage. Interestingly, substitution of
maspin
p1' site Arg340 in the reactive site loop (RSL) with alanine not only abolished the binding to pro-
uPA
but also diminished the
maspin
effects on pro-
uPA
cleavage and cell detachment. These data show an important role of
maspin
RSL in regulating the
uPA
/uPAR-dependent cell detachment. Together, our data led to a new hypothesis that
maspin
may stabilize mature FACs by quenching localized
uPA
/uPAR complex before
uPA
activation.
...
PMID:Maspin retards cell detachment via a novel interaction with the urokinase-type plasminogen activator/urokinase-type plasminogen activator receptor system. 1661 39
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