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Query: UNIPROT:P01034 (
cystatin C
)
3,397
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Cystatin C, a low Mr
cysteine proteinase inhibitor
was isolated from bovine parotid glands by a procedure which includes alkaline treatment of the homogenate, affinity chromatography, gel filtration and ion exchange chromatography. The purified inhibitor has a pl of 8.0 and Mr of 14500. The identity with bovine
cystatin C
from colostrum was confirmed by N-terminal sequence of the inhibitor and amino acid composition. Cystatin C rapidly (kass = 5.5 x 10(7) M-1s-1) and tightly inhibits papain (Ki = 0.02 nM), whereas its interaction with bovine cathepsin B is substantially weaker (Ki = 4.4 nM). Bovine
cystatin C
also shows a weak antiviral effect on poliovirus infected human Hela cells.
...
PMID:Characterization of cystatin C from bovine parotid glands: cysteine proteinase inhibition and antiviral properties. 892 10
A new member of the human cystatin superfamily, called
cystatin E
, has been found by expressed sequence tag (EST) sequencing in amniotic cell and fetal skin epithelial cell cDNA libraries. The sequence of a full-length amniotic cell cDNA clone contained an open reading frame encoding a putative 28-residue signal peptide and a mature protein of 121 amino acids, including four cysteine residues and motifs of importance for the inhibitory activity of Family 2 cystatins like
cystatin C
. Recombinant
cystatin E
was produced in a baculovirus expression system and isolated. An antiserum against the recombinant protein could be used for affinity purification of
cystatin E
from human urine, as confirmed by N-terminal sequencing. The mature recombinant protein processed by insect cells started at amino acid 4 (
cystatin C
numbering), and displayed reversible inhibition of papain and cathepsin B (Ki values of 0.39 and 32 nM, respectively), in competition with substrate. Cystatin E is thus a functional
cysteine proteinase inhibitor
despite relatively low amino acid sequence similarities with human cystatins (26-34% identity with sequences for the Family 2 cystatins C, D, S, SN, and SA; <30% with the Family 1 cystatins, A and B, and domains 2 and 3 of the Family 3 cystatin, kininogen). Unlike other human low Mr cystatins,
cystatin E
is a glycoprotein, carrying an N-linked carbohydrate chain at position 108. Northern blot analysis revealed that the
cystatin E
gene is expressed in most human tissues, with the highest mRNA amounts found in uterus and liver. A strikingly high incidence of
cystatin E
clones in cDNA libraries from fetal skin epithelium and amniotic membrane cells (>0.5% of clones sequenced) indicates a protective role of
cystatin E
during fetal development.
...
PMID:Cystatin E is a novel human cysteine proteinase inhibitor with structural resemblance to family 2 cystatins. 909 41
Although increased expression of cysteine proteinases has been shown to be correlated with increased metastasis for a wide variety of tumours, the contribution of cysteine proteinases to the metastatic spread of tumour cells is not well understood. In order to examine this question we have overexpressed a specific
cysteine proteinase inhibitor
,
cystatin C
, by stable transfection of B16F10 melanoma. Increased expression of
cystatin C
inhibited motility and in vitro invasiveness of B16 melanoma by 50% in both stimulated (autocrine motility factor, laminin) and unstimulated cells. These results suggest that cysteine proteinases are involved in B16 melanoma motility and invasion.
...
PMID:Inhibition of motility and invasion of B16 melanoma by the overexpression of cystatin C. 916 74
Human
cystatin C
undergoes dimerization before unfolding. Dimerization leads to a complete loss of its activity as a
cysteine proteinase inhibitor
. A similar process of dimerization has been observed in cells, and may be related to the amyloid formation seen for the L68Q variant of the protein. Dimerization is barrier controlled, and no dimer/monomer interconversion can be observed at physiological conditions. As a consequence, very stable, "trapped" dimers can be easily separated from monomers. A study of the structural aspects of
cystatin C
dimer formation was undertaken using NMR spectroscopy. The monomer/dimer model was verified by (pulse field gradient NMR) self-diffusion molecular mass measurements. Complete backbone resonance assignments and secondary structure determination were obtained for the monomer using data from triple resonance experiments performed on 13C/15N doubly labeled protein. A marked similarity of the
cystatin C
secondary structure to that of chicken cystatin was observed. Using uniformly and amino-acid-specific 15N-enriched protein, backbone NH signals were assigned for
cystatin C
in its dimeric state. Comparison of 1H -15N correlation NMR spectra of the monomer and dimer shows that the three-dimensional structure remains unchanged in the dimer and that only local perturbations occur. These are localized to the amino acid residues comprising the cysteine proteinase binding site. Such a mode of dimerization readily explains the complete loss of the inhibitory activity in the dimer. The NMR results also demonstrate that the dimer is symmetric.
...
PMID:NMR structural studies of human cystatin C dimers and monomers. 926 58
The human squamous cell carcinoma antigens (SCCA) 1 and 2 are tandemly arrayed genes that encode two high-molecular-weight serine proteinase inhibitors (serpins). Although these proteins are 92% identical, differences in their reactive site loops suggest that they inhibit different types of proteinases. Our previous studies show that SCCA2 inhibits chymotrypsin-like serine proteinases [Schick et al. (1997) J. Biol. Chem. 272, 1849-1855]. We now show that, unlike SCCA2, SCCA1 lacks inhibitory activity against any of the more common types of serine proteinases but is a potent cross-class inhibitor of the archetypal lysosomal cysteine proteinases cathepsins K, L, and S. Kinetic analysis revealed that SCCA1 interacted with cathepsins K, L, and S at 1:1 stoichiometry and with second-order rate constants >/= 1 x 10(5) M-1 s-1. These rate constants were comparable to those obtained with the prototypical physiological
cysteine proteinase inhibitor
,
cystatin C
. Also relative to
cystatin C
, SCCA1 was a more potent inhibitor of cathepsin K-mediated elastolytic activity by forming longer lived inhibitor-proteinase complexes. The t1/2 of SCCA1-cathepsin S complexes was >1155 min, whereas that of
cystatin C
-cathepsin complexes was 55 min. Cleavage between the Gly and Ser residues of the reactive site loop and detection of a stable SCCA1-cathepsin S complex by sodium dodecyl sulfate-polyacrylamide gel electrophoresis suggested that the serpin interacted with the cysteine proteinase in a manner similar to that observed for typical serpin-serine proteinase interactions. These data suggest that, contingent upon their reactive site loop sequences, mammalian serpins, in general, utilize their dynamic tertiary structure to trap proteinases from more than one mechanistic class and that SCCA1, in particular, may be involved in a novel inhibitory pathway aimed at regulating a powerful array of lysosomal cysteine proteinases.
...
PMID:Cross-class inhibition of the cysteine proteinases cathepsins K, L, and S by the serpin squamous cell carcinoma antigen 1: a kinetic analysis. 954 57
In hereditary
cystatin C
amyloid angiopathy (HCCAA), presence of the Leu68 --> Gln substitution in
cystatin C
is coupled to a decreased concentration of this major
cysteine proteinase inhibitor
in cerebrospinal fluid and leads to its amyloid deposition in the brain. We established a high-yield expression system for L68Q
cystatin C
in Escherichia coli resulting in inclusion body accumulation at a level of 40% of the total cellular protein. Refolding of protein from purified inclusion bodies yielded a pure, almost completely monomeric and active inhibitor. CD and NMR spectroscopy demonstrated that so produced L68Q
cystatin C
is folded, conformationally homogeneous, and structurally very similar to wild-type
cystatin C
. Incubation at pH 7.0-5.5 caused the
cystatin C
variant to dimerize rapidly. The molecular form present at pH 6.0 displayed a slightly increased amount of hydrophobic parts on the surface as measured by 1-anilinonaphthalene-8-sulfonic acid (ANS) binding. NMR results showed that the dimer has a structure similar to that of the wild-type
cystatin C
dimer formed as a result of slight denaturation. Under more acidic conditions, at pH 4.5, another stable unfolding intermediate of L68Q
cystatin C
was identified. This molecular form exists in a monomeric state, is characterized by changes in secondary structure according to far UV CD spectroscopy, and shows an altered ANS binding resembling that of a molten globule state. The acidic pH also caused an almost complete monomerization of preformed dimers. The state of denaturation of L68Q
cystatin C
in vivo is thus a critical factor for the concentration of active
cysteine proteinase inhibitor
in cerebrospinal fluid and likely also for the development of amyloidosis, in HCCAA patients.
...
PMID:Two stable unfolding intermediates of the disease-causing L68Q variant of human cystatin C. 986 Aug 45
Recent studies have shown that the bovine
cysteine proteinase inhibitor
,
cystatin C
, is synthesized as a preprotein containing a 118-residue mature protein. However, the forms of the inhibitor isolated previously from bovine tissues had shorter N-terminal regions than expected from these results, and also lower affinity for proteinases than human
cystatin C
. In this work, we report the properties of recombinant, full-length bovine
cystatin C
having a complete N-terminal region. The general characteristics of this form of the inhibitor, as reflected by the isoelectric point, the far-ultraviolet circular dichroism spectrum, the thermal stability and the changes of tryptophan fluorescence on interaction with papain, resembled those of human
cystatin C
. The affinity and kinetics of inhibition of papain and cathepsins B, H and L by the bovine inhibitor were also comparable with those of the human inhibitor, although certain differences were apparent. Notably, the affinity of bovine
cystatin C
for cathepsin H was somewhat weaker than that of human
cystatin C
, and bovine
cystatin C
bound to cathepsin L with about a four-fold higher association rate constant than the human inhibitor. This rate constant is comparable with the highest values reported previously for cystatin-cysteine proteinase reactions. The full-length, recombinant bovine
cystatin C
bound appreciably more tightly to proteinases than the shorter form characterized previously. Digestion of the recombinant inhibitor with neutrophil elastase resulted in forms with truncated N-terminal regions and appreciably decreased affinity for papain, consistent with the forms of bovine
cystatin C
isolated previously having arisen by proteolytic cleavage of a mature, full-length inhibitor.
...
PMID:The affinity and kinetics of inhibition of cysteine proteinases by intact recombinant bovine cystatin C. 1036 30
Progression to metastasis has been correlated with increased cysteine proteinase activity for a number of tumour types. One mechanism of cysteine proteinase regulation in normal cells is by natural protease inhibitors, the cystatins. Here we further characterize a transfected cell line showing increased
cystatin C
transcription driven by cytomegalovirus (CMV) promoter/enhancer sequences. Properties of this
cystatin C
altered cell line such as growth in vitro, lung colonization after tail vein injection in mice, production of cystatin, and
cysteine proteinase inhibitor
activities were examined. Although there was no difference between the growth rate of the cystatin transfected cell line and that of the control, there was a substantial difference in metastatic ability. No increase was noted in
cystatin C
secretion into the media for the
cystatin C
transfected cell line compared with the control transfected cell line. There was, however, a difference in cysteine protease inhibitor activity in the cell-free extracts. These results show that alteration of
cystatin C
levels by overexpression in B16 melanoma alters properties associated with metastasis.
...
PMID:Inhibition of B16 melanoma metastasis by overexpression of the cysteine proteinase inhibitor cystatin C. 1050 55
Human
cystatin C
is a
cysteine proteinase inhibitor
belonging to the cystatin superfamily, which previously has been shown to inhibit bone resorption in bone organ culture. The aminoterminal segment, Arg(8)-Leu(9)-Val(10)-Gly(11) (RLVG), of the single polypeptide chain of
cystatin C
constitutes an essential part of its inhibitory center. In the present study, the effect of benzyloxycarbonyl-Arg(8)-Leu(9)-Val(10)-Gly(11)-diazomethane (Z-RLVG-CHN(2)) on bone resorption in vitro was compared with the effects of
cystatin C
and calcitonin. Bone resorption was assessed by the release of (45)Ca and (3)H from mouse calvarial bones prelabeled with [(45)Ca]CaCl(2) and [(3)H]-proline, respectively. Z-RLVG-CHN(2) concentration-dependently inhibited the release of (45)Ca and (3)H in bones stimulated by parathyroid hormone (PTH), with half-maximal inhibition obtained at 1 micromol/L. The inhibitory actions of Z-RLVG-CHN(2) and
cystatin C
were persistent, whereas action induced initially by calcitonin was lost with time. The inhibition caused by Z-RLVG-CHN(2) and
cystatin C
on PTH-stimulated (45)Ca release was observed after 6 h, whereas inhibition by calcitonin was seen already after 2 h. In contrast, the inhibitory effects of Z-RLVG-CHN(2) and
cystatin C
, as well as that of calcitonin, on (3)H release was seen already after 2 h. Z-RLVG-CHN(2), in which the reactive carboxyterminal diazomethane was substituted by nonreactive groups [-OH, -NH(2), or -N(CH(3))(2)], resulted in peptidyl derivatives, which, in contrast to Z-RLVG-CHN(2) and
cystatin C
, inhibited neither cysteine proteinases nor bone resorption. In contrast to wild-type
cystatin C
, recombinant human
cystatin C
with Gly substitutions for residues Arg(8), Leu(9), Val(10), and Trp(106), and with low or nonexistent affinity for cysteine proteinases, did not display any inhibitory effect on bone resorption. These data strongly indicate that Z-RLVG-CHN(2) inhibits bone resorption in vitro by a mechanism that seems primarily to be due to an inhibition of bone matrix degradation via cysteine proteinases. The data also corroborate the hypothesis that
cystatin C
inhibits bone resorption by virtue of its cysteine proteinase inhibitory capacity.
...
PMID:A peptidyl derivative structurally based on the inhibitory center of cystatin C inhibits bone resorption in vitro. 1077 84
Serum
cystatin C
, a
cysteine proteinase inhibitor
, has been proposed as a marker of glomerular filtration rate (GFR). Serum
cystatin C
, serum creatinine and creatinine clearance were measured in 226 patients with various nephropathies, covering the entire range of renal function, to evaluate the efficacy of
cystatin C
as a screening test to detect reduced creatinine clearance in comparison to creatinine. Subgroups of 53 patients with glomerular and 26 patients with tubular impairment were compared to assess whether
cystatin C
performed differently in either glomerular or tubular impairment. Cystatin C detected reduced creatinine clearance with higher sensitivity (97 vs. 83%), and higher negative predictive value (96 vs. 87%) compared to creatinine. In parallel, 95% sensitivity of
cystatin C
as derived from receiver-operating characteristic plot was significantly higher (p < 0.05). In the subgroups with glomerular or tubular impairment,
cystatin C
and creatinine did not significantly differ with regard to efficacy. Serum
cystatin C
is as efficacious as serum creatinine to detect reduced GFR as measured by creatinine clearance. The efficacy of
cystatin C
as a screening test may even be superior compared to creatinine. In addition, the efficacy of
cystatin C
is independent of either glomerular or tubular impairment.
...
PMID:Cystatin C: efficacy as screening test for reduced glomerular filtration rate. 1077 8
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