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Biomedical subjects

J Melrose

Publications and source records attributed to J Melrose.

At least 37 records · Page 2Linked to original sources

Humanization and pharmacokinetics of a monoclonal antibody with specificity for both E- and P-selectin.

E- and P-selectin (CD62E and CD62P) are cell adhesion molecules that mediate leukocyte-endothelial cell and leukocyte-platelet interactions and are involved in leukocyte recruitment during inflammation. We previously developed a murine mAb, EP-5C7 (or mEP-5C7), that binds and blocks both E- and P-selectin. When used in humans, murine mAbs have short circulating half-lives and generally induce potent human anti-mouse Ab responses. We therefore engineered a humanized, complementarity determining region-grafted version of mEP-5C7 incorporating human gamma4 heavy and kappa light chain constant regions (HuEP5C7.g4). HuEP5C7.g4 retains the specificity and avidity of mEP-5C7, binding to human E- and P-selectin but not to human L-selectin, and blocking E- and P-selectin-mediated adhesion. Surprisingly, when administered to rhesus monkeys, HuEP5C7.g4 was eliminated from the circulation very rapidly, even faster than the original murine Ab. To isolate the cause of the short serum half-life of HuEP5C7.g4, several Ab variants were constructed. A chimeric IgG4 Ab was made by replacing the humanized V regions with murine V regions. A humanized IgG2 Ab, HuEP5C7.g2, was also made by replacing the human gamma4 with a gamma2 constant region. Results from pharmacokinetic studies in rhesus monkeys demonstrated that the chimeric IgG4 is also rapidly eliminated rapidly from serum, similar to the humanized IgG4 Ab, while the humanized IgG2 Ab displays a long circulation half-life, typical of human Abs.

Amino Acid Sequence↗

Epitope mapping of mouse monoclonal antibody EP-5C7 which neutralizes both human E- and P-selectin.

The epitope of mouse monoclonal antibody (mAb) EP-5C7, which binds to and blocks both human E- and P-selectin, was mapped onto the protein structure of E-selectin. Analyses with E- and L-selectin chimeric proteins and randomly mutagenized E-selectins demonstrated that the EP-5C7 epitope consists of the amino acid residues at positions 21, 22, 23, 119 and 120 of E-selectin. The binding of three neutralizing anti-E-selectin mAb's (E-1E4, H18/7 and CL2), whose epitopes were found to overlap with the E-selectin binding site for carbohydrate ligands, was not affected by the amino acid substitutions at these five positions. Inspection of the three-dimensional structure of E-selectin indicated that the EP-5C7 epitope is located near the junction between the lectin and EGF-like domains. The ligand binding site was distant from the EP-5C7 epitope, suggesting that the amino acid residues in the EP-5C7 epitope play an important role other than ligand binding in selectin-mediated cell adhesion.

Animals↗

Pathogenesis of abdominal aortic aneurysms: possible role of differential production of proteoglycans by smooth muscle cells.

PURPOSE: In vivo and in vitro observations strongly suggest that marked differences exist in the phenotype, growth, and matrix-producing capabilities of distinct smooth muscle cell subpopulations. An earlier study from our laboratory showed differences in matrix metalloproteinase expression patterns in cultures of medial smooth muscle cells from tissue affected by abdominal aortic aneurysm (AAA) or atherosclerotic occlusive disease and from normal arterial tissue. In this study we were interested in ascertaining whether smooth muscle cells from the same sample groups also synthesized different proteoglycan profiles that correlated with vascular disease. METHODS: Proteoglycans from smooth muscle cell monolayer cultures from tissue affected by AAA or atherosclerotic occlusive disease and from normal arterial tissue were examined by means of immunoblotting and affinity-blotting composite agarose polyacrylamide gel electrophoresis (CAPAGE) and sodium dodecyl sulphate PAGE. Enzyme-linked immunosorbent assay (ELISA) was used to quantitate perlecan levels in smooth muscle cell monolayer media samples. RESULTS: Versican, perlecan, and biglycan levels were significantly elevated in AAA smooth muscle cell cultures. Two populations of smooth muscle cell versican were identified by means of CAPAGE-immunoblotting and by means of a novel affinity-blotting technique with biotinylated hyaluronan. A small keratan sulfate-substituted proteoglycan was present in similar levels in all smooth muscle cell cultures. This proteoglycan had a free core protein of about 55 kd after keratanase digestion and had a relatively high charge-to-mass ratio, as was evident from its electrophoretic mobility in CAPAGE; this proteoglycan was tentatively identified as keratocan. Immunoblotting with monoclonal antibodies 3-G-10 (anti-delta heparan sulfate, heparan sulfate stubs generated by heparitinase treatment) and 10-E-4 (anti-native heparan sulfate chains) helped identify several smooth muscle cell heparan sulfate-substituted proteoglycans. Elevated levels of intact and processed perlecan core protein were identified in AAA cultures by means of immunoblotting with a monoclonal antibody to perlecan core protein (A76). ELISA measurements confirmed that perlecan levels were significantly higher in AAA smooth muscle cell cultures compared with the normal arterial tissue and tissue affected by atherosclerotic occlusive disease. CONCLUSIONS: Because heparan sulfate proteoglycans can bind growth factors, their elevated synthesis by AAA smooth muscle cells in combination with an increased expression of matrix metalloproteinases may at least partly explain the differential proliferative capacity of the AAA smooth muscle cells examined and may govern the pattern of abnormal cellular proliferation and matrix protein synthesis observed in the pathogenesis of vascular disease.

Aged↗

The serine proteinase inhibitory proteins of the chondrodystrophoid (beagle) and non-chondrodystrophoid (greyhound) canine intervertebral disc.

Trypsin inhibitory proteins of low buoyant density (p < or = 1.35 g/mL) fractions were prepared by CsCl density gradient ultracentrifugation of 4 M guanidinium hydrochloride extracts of lumbar beagle and greyhound annulus fibrosus and nucleus pulposus from animals aged 1 to 6 years. Affinity blotting with biotinylated trypsin was used to identify active trypsin inhibitory protein species; these species were also identified immunologically by Western blotting using antibodies against bovine pancreatic trypsin inhibitor (BPTI), and human inter-alpha-trypsin inhibitor (ITI). None of the trypsin inhibitory species evident in Western blots were reactive with anti-human alpha1-proteinase inhibitor (alpha-1-PI), alpha2-macroglobulin or secretory leucocyte proteinase inhibitor. The greyhound intervertebral disc samples generally had higher levels of active trypsin inhibitor species per unit weight of tissue extracted, and a more extensive range of inhibitor species. Inhibitor species of 30, 32, 34 kDa were identified in both beagle and greyhound intervertebral disc samples; these species were generally most prominent in the annulus fibrosus samples. In contrast, the nucleus pulposus samples contained relatively large trypsin inhibitor species; the anti-BPTI detected an inhibitor species of approximately 85-90 kDa; anti-ITI detected species of 120-250 kDa; biotinylated trypsin detected species of 60-110 kDa. A small molecular mass trypsin inhibitor species of 6 kDa, which was of similar mobility to BPTI, was also detected in annulus fibrosus samples; however, this species did not react with anti-BPTI.

Age of Onset↗

Elevated synthesis of biglycan and decorin in an ovine annular lesion model of experimental disc degeneration.

The aim of this study was to extend our earlier observations on the changes that occur in the proteoglycans (PGs) of discs subjected to experimental injury to the annulus fibrosus (AF). We employed the alginate bead culture method to examine the metabolism of the dermatan sulphate (DS) containing PGs by cells derived from different regions of ovine discs that had been subjected to experimental annular injury. This was compared with the metabolism of the DS-PGs by cells isolated from equivalent regions of normal sham-operated discs. Six months after induction of the annular lesion, AF cells isolated from the lesion produced significantly higher levels of decorin and biglycan in alginate bead culture than did cells from equivalent zones of the controls. Decorin and biglycan were identified in culture media samples by immunoblotting, using specific antibodies (6-B-6, LF-96), and also by positive identification of their de-glycosylated core proteins. The core protein of the DS-PGs has been shown to inhibit type I/II collagen fibrillogenesis, to negatively regulate the action of transforming growth factor-beta (TGF-beta) and to diminish cellular proliferation in vitro; events which may be detrimental to tissue repair. The findings are therefore consistent with our previous observation the annular lesions in the avascular inner annulus have no capacity to heal.

Animals↗

Topographical variation in the catabolism of aggrecan in an ovine annular lesion model of experimental disc degeneration.

An established model of experimental disc degeneration (Osti et al., Spine 15:762, 1990; Melrose et al., J Orthop Res 10:655, 1992) was used in this study. Four 2-year-old sheep received anterolateral incisions (4 x 10 mm) in the outer one-third of the annulus fibrosus of their L2-L3 and L4-L5 discs (lesion group). The annulus was not incised in another four sham-operated animals. After 6 months the sheep were killed, lumbar discs were dissected into lateral halves of the annulus fibrosus and the nucleus pulposus. Cells were isolated from disc tissues enzymatically and were grown in alginate bead culture to examine the proteoglycan metabolism of cells from lesion and control zones. The media of lesion zone cultures contained relatively high levels (compared with sham cultures) of catabolic fragments of the large, high-buoyant-density proteoglycans as demonstrated by Western blotting using monoclonal antibodies (5-D-4, 3-B-3, 1-C-6) and biotinylated hyaluronan and also by gel chromatography. Furthermore, cells from the vicinity of the lesion site also synthesized significantly lower levels (compared with sham cultures) of aggrecan that was retained within the alginate beads. Collectively, these data indicated that focal depletion of large, high-buoyant-density proteoglycans was evident within lesion sites in this model of experimental disc degeneration. The introduction of an annular lesion therefore significantly affected the proteoglycan metabolism of endogenous disc cell populations. The unique hydrodynamic and viscoelastic properties of the intervertebral disc are dependent to a large degree on the tissue levels of aggrecan. The focal depletion of aggrecan by annular lesions therefore may represent an important predisposing factor to the subsequent degeneration of these intervertebral discs.

Aggrecans↗

Intervertebral disc reconstitution after chemonucleolysis with chymopapain is dependent on dosage.

STUDY DESIGN: The current report describes a study in beagles in which the effects of intradiscal injection of three doses of chymopapain were evaluated with respect to the reduction of disc width and reconstitution of the nucleus pulposus. OBJECTIVES: To establish an intradiscal dose of chymopapain that would achieve optimal reduction in disc height followed by maximum reconstitution of the nucleus pulposus. SUMMARY OF BACKGROUND DATA: Earlier reports of the efficacy of high and low doses of chymopapain for chemonucleolysis have provided conflicting data, and a scientific basis for an appropriate dose is lacking. METHODS: Four mature, female beagles were subjected to chemonucleolysis using three doses of chymopapain as Chymodiactin (31, 63 and 125 picokatals/disc) injected into the L2-L3, L1-L2, and L3-L4 discs. Disc widths were monitored radiographically over 32 weeks. Proteoglycans were radiolabeled by intravenous injection with Na2 35SO4 (1 mCi/kg) 24 hours before sacrifice, and their specific activities (disintegrations per minute/mg proteoglycan), hydrodynamic size, and ability to aggregate determined. RESULTS: Sixty-three picokatals of Chymodiactin produced optimal disc reconstitution after chemonucleolysis. A reduction in disc height of approximately 35% was evident within 1 month and this slowly returned to approximately 90% of the preinjection value after 32 weeks. The nucleus pulposus contained approximately 75% of the proteoglycan content of control tissues, and most of these formed aggregates with hyaluronan. Disc collagen levels remained relatively unaffected by treatment. CONCLUSIONS: This study demonstrates that an effective reduction in disc width compatible with later reconstitution of the nucleus pulposus can be achieved experimentally with an appropriate dose of chymopapain. These data clearly indicate that an optimal dose of chymopapain for chemonucleolysis in humans needs to be established.

Animals↗

Biotinylated hyaluronan: a versatile and highly sensitive probe capable of detecting nanogram levels of hyaluronan binding proteins (hyaladherins) on electroblots by a novel affinity detection procedure.

Hyaluronan influences cellular proliferation and migration in developing, regenerating and remodelling tissues and in tissues undergoing malignant tumour-cell invasion. The widespread occurrence of hyaluronan-binding proteins indicates that the recognition of hyaluronan is important to tissue organisation and the control of cellular behaviour. A number of extracellular matrix and cellular proteins, which have been termed the hyaladherins, have specific affinities for hyaluronan. These include cartilage link-protein, hyaluronectin, neurocan, versican and aggrecan, which all bind to HA within the extracellular matrix. Cellular receptors for hyaluronan such as CD44 and RHAMM (receptor for hyaluronate-mediated motility) have also been identified. In the present study biotinylated hyaluronan (bHA) was prepared by reacting adipic dihydrazide with a 170 kDa hyaluronan sample using the bifunctional reagent 1-ethyl-3-[3-(dimethylamino) propyl] carbodiimide. The resultant free amine moeity of the hydrazido-hyaluronan was then reacted with biotin succinimidyl ester (sulfo-NHS-biotin) to prepare the bHA. After 4-20% gradient sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and electroblotting to nitrocellulose membranes, bHA and avidin alkaline phosphatase conjugate could be used in conjunction with nitroblue tetrazolium/5-bromo-4-chloro-3-indolyl phosphate substrates to specifically visualise with high sensitivity (> or = 2 ng), bovine nasal cartilage link-protein, aggrecan hyaluronan binding region, and human fibroblast hyaluronan receptors such as CD-44. Conventional Western blotting using specific monoclonal antibodies to these proteins was also used to confirm the identities of these proteins.

Aggrecans↗

Biotinylated trypsin and its application as a sensitive, versatile probe for the detection and characterisation of an ovine chondrocyte serine proteinase inhibitor using Western blotting.

Biotinylated trypsin (bT) was used as a probe on Western blots of 10-20% polyacrylamide gradient Tris-Tricine gels for the detection of serine proteinase inhibitors (SPIs) isolated from extracts of ovine articular cartilage and from chondrocyte conditioned culture medium. The major cartilage SPI, a 58 kDa glycoprotein, was purified by sequential Sephacryl S--300 gel permeation, concanavalin A affinity, anion exchange and Superose 12 fast protein liquid chromatography (FPLC). A low molecular weight SPI of approximately 6 kDa was also detectable in cartilage extracts after prolonged storage at 4 degrees C and following affinity chromatography on immobilised chymotrypsin, suggesting that the 6 kDa inhibitor may have arisen from proteolytic modification of the 58 kDa SPI. Analysis of chondrocyte conditioned culture medium using the bT detection system revealed that the major SPI present was the 6 kDa species although a small amount of the 58 kDa SPI was also detectable. The large molecular weight 'native' cartilage SPI was distinct from ovine alpha1-proteinase inhibitor (alpha1-PI) when examined by native polyacrylamide gel electrophoresis (PAGE) and isoelectric focusing (IEF). The 6 kDa cartilage SPI was indistinguishable from basic pancreatic trypsin inhibitor (BPTI, aprotinin) following sodium dodecyl sulfate (SDS)-PAGE under reduced and nonreduced conditions. Amino terminal sequencing of the 6 kDa cartilage SPI revealed a strong (90%) homology with BPTL.

Amino Acid Sequence↗

Increased synthesis of matrix metalloproteinases by aortic smooth muscle cells is implicated in the etiopathogenesis of abdominal aortic aneurysms.

PURPOSE: The objective of this study was to identify the metalloproteinases elaborated by medial smooth muscle cells (SMCs) isolated from abdominal aortic aneurysm (AAA) and control arterial tissues and to ascertain if the levels produced by AAA SMCs were elevated. METHODS: SMC monolayers cultured from the outgrowth cells of tunica media explants were established, and their identity was determined by fluorescent microscopy by using a fluorescein isothiocyanate conjugated anti-SMC alpha-actin antibody. Matrix metalloproteinases (MMPs) produced by SMC monolayers in serum-free culture were examined by gelatin zymography and Western blotting with monoclonal antibodies to MMP-2, 3, and 9. RESULTS: Serum-free media from AAA SMCs contained metal-dependent elastolytic activity that cleaved the synthetic substrate succinyl trialanyl 4-nitroanilide (pH optima 7.2) and also 14C-insoluble elastin. The level of proteolytic activity found in these cultures was significantly greater than from control SMC media. Zymography established that AAA SMC media samples contained metal-dependent gelatinases of 50 to 64 and 92 kDa, which were identified respectively as MMP-2 and 9 by Western blotting by using monoclonal antibodies to these proteases. CONCLUSION: Medial SMCs isolated from AAA tissue produce significantly higher levels of MMP-9 and 2 than SMCs from control arterial tissues. These proteinases have the capacity to degrade elastin and a range of extracellular matrix proteins. From these data, we suggest SMCs may be involved in the abnormal degradation of the aortic wall in AAA through the excessive metalloproteinase activity produced by SMCs.

Adult↗

Smooth muscle cell migration and proliferation is enhanced in abdominal aortic aneurysms.

BACKGROUND: The aetiology of abdominal aortic aneurysms (AAA) is as yet undetermined. Smooth muscle cells (SMC) have been implicated in the pathogenesis of AAA as a result of their ability to produce elastin degrading proteases. The present study was undertaken to examine AAA SMC and aortic occlusive disease (AOD) SMC in terms of their respective migration and proliferation in vitro, in order to identify intrinsic differences between these cells. METHODS: Five AAA specimens, four AOD and five inferior mesenteric artery (IMA) specimens were established in culture. The cultures were examined for the extent and the rate of SMC outgrowth and proliferation. Cells were counted following trypsinization using a haemocytometer. RESULTS: For the AAA explants, the cellular outgrowths were first seen at 6.7 days, after culture initiation, while the corresponding outgrowth in the AOD group required 8.8 days (P < 0.05) and the IMA group 11.4 days (P < 0.05). AAA cells reached confluency at a mean of 22.4 days while AOD SMC required 28.6 days (P < 0.05) and IMA 31 days (P < 0.05). In the first passage, the time for AAA SMC doubling was 5.3 days compared to 6.2 days for AOD (P < 0.05) and 8.1 days for the IMA group (P < 0.05). Greater than 98% of the cells, in both groups, stained positive to SMC alpha-actin. CONCLUSION: From these data it is clear that there are intrinsic differences in cellular kinetics between SMC from the two disease states, supporting the hypothesis that AAA are not the result of atherosclerosis.

Aged↗

Variation in intervertebral disc serine proteinase inhibitory proteins with ageing in a chondrodystrophoid (beagle) and a non-chondrodystrophoid (greyhound) canine breed.

Intervertebral disc (IVD) proteoglycans (PGs) and trypsin inhibitory protein levels were assessed for groups of beagles and greyhounds aged between 4 and 80 months. A significant age-dependent decline in PGs and in trypsin inhibitory protein levels was evident in extracts of the beagle nucleus pulposus (NP). This was confirmed for the semi-purified trypsin inhibitor, using Western blotting. These age changes, however, were not evident in the greyhound NP. Furthermore, no significant ageing trends in PG or trypsin inhibitory protein levels were evident in extracts of the annulus fibrosus of either animal. The early onset of IVD degeneration in the beagle, a canine breed of the chondrodystrophoid (achondroplastic) classification, may be related to this decline in the anti-catabolic effects of the endogenous serine proteinase inhibitory proteins.

Aging↗

Purification and characterisation of 6 and 58 kDa forms of the endogenous serine proteinase inhibitory proteins of ovine articular cartilage.

The major ovine articular cartilage (AC) serine proteinase inhibitory protein (SPI), a 58 kDa glycoprotein (SPI-58), was purified to homogeneity by sequential Sephacryl S-300 gel permeation, concanavalin A affinity, Mono Q anion exchange and Superose 12 FPLC. If precautions to prevent degradation of the native 58 kDa SPI were not undertaken during the early stages of its purification a SPI of approximately 6 kDa (SPI-6) was generated. SPI-6 could also be generated from SPI-58 by chymotrypsin affinity chromatography, suggesting that SPI-6 could be produced from SPI-58 in vivo by proteolytic processing within the tissue. SPI-6 was indistinguishable from the Kunitz inhibitor, bovine pancreatic trypsin inhibitor (BPTI) by SDS-PAGE under both reducing and non reducing conditions and showed a strong homology to BPTI in N-terminal sequence. These data suggest that the BPTI-like 6 kDa SPI constituted the inhibitory domain of the native 58 kDa SPI of ovine AC. Detection of [14C]-lysine-SPI-6 and SPI-58 in the serum free culture medium from ovine chondrocytes cultured in alginate beads in the presence of [14C]-lysine indicated that these SPIs were chondrocyte biosynthetic products. The inhibitory profiles of SPI-58 and SPI-6 differed somewhat suggesting that each may have an independent role in vivo.

Animals↗

Biotin-labeled potato chymotrypsin inhibitor-1: a useful probe for the detection and quantitation of chymotrypsin-like serine proteinases on western blots and its application in the detection of a serine proteinase synthesised by articular chondrocytes.

Potato chymotrypsin inhibitor-1 (pCTI-1) was biotinylated by reaction with sulfosuccinimidyl-6-(biotinamido)hexanoate. This derivative was used as a probe on Western blots for the detection and quantitation of chymotrypsin and the detection of a chymotrypsin-like serine proteinase synthesized by ovine chondrocytes in alginate bead culture. Densitometric analysis demonstrated that there was a linear relationship between the amount of chymotrypsin electrophoresed, over the range 0.1 to 10 ng, and the intensity of the band detected on Western blots using biotinylated pCTI-1 as probe, indicating that the technique could be used for the quantification of active proteinases. The biotinylated pCTI-1 detection technique was convenient to use, reproducible, and more sensitive than zymography.

Animals↗

Antibodies cross-reactive with E- and P-selectin block both E- and P-selectin functions.

E- and P-selectin are inflammation-induced cell adhesion molecules that mediate leukocyte-endothelial cell and leukocyte-platelet interactions. Monoclonal antibodies (MoAbs) specific for either E-selectin or P-selectin are protective in several animal models of inflammatory disease. To generate an MoAb with broader therapeutic potential, MoAbs that bind to both E- and P-selectin were generated by immunization of mice with mouse pre-B cell lines transfected with human E- and P-selectin. Interestingly, although the only selection criterion was the ability to bind both E- and P-selectin, all three antibodies obtained efficiently block both E- and P-selectin-mediated functions. The inhibited functions include neutrophil or HL-60 cell binding to tumor necrosis factor-alpha-activated human umbilical vein endothelial cells, E- or P-selectin transfectant cell lines, and platelet-HL-60 rosetting. These antibodies, EP-5C7, EP-2C9, and EP-1D8, recognize the same or overlapping epitope within the lectin domains of E- and P-selectin. The data suggest that functionally important epitopes of homologous proteins can be targeted by selecting for antibodies with reactivity toward both proteins. Furthermore, a potent blocking antibody specific for both E- and P-selectin may provide a more effective and broadly useful reagent for treating acute and potentially certain chronic inflammatory conditions.

Animals↗

Evaluation of digestive proteinases from the Antarctic krill Euphasia superba as potential chemonucleolytic agents. In vitro and in vivo studies.

Chemonucleolysis is a therapeutic procedure whereby a degradative enzyme is injected intradiscally to reduce disc height/width by depolymerisation of extracellular matrix components. This process is considered to diminish disc pressure on inflamed nerve roots, resulting in the alleviation of sciatic pain. In the present study two krill (Euphasia superba) enzyme preparations, a proteinase and an esterase preparation, were evaluated for their potential as chemonucleolytic agents. Initially, their ability to degrade several protein (azocoll, casein, proteoglycans, PGs) and peptide (CBZ-arg-4-nitroanilide, CBZ-lys-thiobenzyl ester) substrates was assessed in vitro. The krill proteinase preparation rapidly converted azocoll, casein and PGs to small peptides. Furthermore, when this degradative enzyme preparation was evaluated in vivo, a relatively low intradiscal dose (0.54 mg/disc) was found to reduce intervertebral disc widths in beagles to 48% +/- 10.5% (mean +/- SEM) of their pre-injection values within 2 weeks of administration. Moreover, the discs injected with this proteinase had reconstituted up to 80% +/- 9% (mean +/- SEM) of their pre-injection widths at the termination of the experiment (32 weeks). These data suggest that the krill protease preparation has potential as a chemonucleolytic agent which would allow disc matrix reconstitution. Conversely, the krill esterase preparation also degraded PGs, but into relatively large fragments. This limited digestion of PGs indicates that the krill esterase would be a less effective chemonucleolytic agent than the corresponding proteinase.

Animals↗

Biotinylated aprotinin: a versatile probe for the detection of serine proteinases on western blots.

The present study was undertaken to provide a highly sensitive detection system for the identification and characterisation of serine proteinases separated by sodium dodecyl sulphate polyacrylamide gel electrophoresis. Biotinylated aprotinin of high specific activity (88-92% active) was prepared (i) by reaction of aprotinin directly with N-hydroxy sulfosuccinimidyl-6-(biotinamido) hexanoate, and (ii) by reaction of aprotinin-trypsin complex with N-hydroxy succinimidobiotin. Both biotinylated aprotinin samples were suitable as probes for the detection of the serine proteinases, neutrophil elastase and cathepsin G, pancreatic trypsin and chymotrypsin and plasmin on nitrocellulose blots. Specific irreversible chloromethyl ketone proteinase inhibitors used in combination with this detection system enabled respective proteinases to be selectively inactivated and thus positively identified. The biotinylated aprotinin detection system was highly sensitive and could detect as little as 0.2 ng (8.5 fmol) of active proteinase (trypsin). In summary, a method has been developed for the sensitive detection of serine proteinases separated by SDS-PAGE. The method is more sensitive and convenient to perform than conventional zymography and significantly, when used in conjunction with specific serine proteinase inhibitors or specific antibodies can yield appreciable information on the identity of the respective serine proteinases being examined. Furthermore the molecular mass of the serine proteinase may be reliably obtained by this method. This method should find application in identifying the role that serine proteinases play in the etiopathogenesis of connective tissue disorders.

Amino Acid Sequence↗

The preparation and use of biotinylated trypsin in western blotting for the detection of trypsin inhibitory proteins.

Methods were developed for the preparation of biotinylated trypsin of high specific activity. This was used as a probe for the detection of serine proteinase inhibitory proteins which had been separated by sodium dodecyl sulfate-polyacrylamide gradient slab gel electrophoresis and electroblotted to nitrocellulose. The method was extremely sensitive and specific and could detect 0.15 ng of the serine proteinase inhibitor, trasylol (0.023 pmol active inhibitor). The method was also widely applicable and could be used to detect a range of serine proteinase inhibitors in human serum with molecular weights of 50 to approximately 180 kDa, soybean trypsin inhibitor variants, and secretory leukocyte proteinase inhibitor extracted from human intervertebral disc and articular cartilage. The identity of several of the serine proteinase inhibitors detected using biotinylated trypsin was verified by Western blotting using specific antibodies. Under the conditions used, electrotransfer of trasylol was quantitative; densitometric examination of blots indicated that there was a linear relationship between the amount of active trasylol electrophoresed (1-50 ng) and the intensity of the blot obtained with biotinylated trypsin as probe, indicating that serine proteinase inhibitory proteins may also be quantified by this technique using densitometric scanning.

Animals↗