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The hydrating effect of lathyrogenic compounds on chick-embryo cartilage in vivo.

1. Treatment of the chick embryo with the lathyrus factor, beta-aminopropionitrile, produces inhibition of polymerization of newly synthesized collagen at the interand intra-molecular level (Levene & Gross, 1959; Martin, Gross, Piez & Lewis, 1961); this is manifest as an increase in the fragility and solubility of collagen from the connective tissues. 2. This treatment simultaneously produced increased hydration of the tissues, particularly noticeable in the swollen long-bone cartilages. 3. This increased hydration of cartilage was found to result from treatment with any of the known lathyrogenic compounds, but not with any of the structurally related but non-lathyrogenic analogues. 4. The hydration effect paralleled the collagen solubility effect, both being dosage-dependent at the lower levels. 5. The hydration effect could not be reversed by treatment in vivo with either pyridoxal or glyceraldehyde, or by Benadryl, an antihistamine that inhibits cell water movement. 6. The possible causes of this effect have been considered in the light of the known properties of cartilage.

Aminopropionitrile↗

Studies on the assembly of the rat lens capsule. Biosynthesis and partial characterization of the collagenous components.

1. Isolated rat lens capsules synthesized hydroxy[3H]proline-containing polypeptides when incubated with [3H]proline. 2. The collagenous polypeptides synthesized during a 2 h incubation were analyzed by both gel-filtration chromatography and sodium dodecyl sulphate/polyacrylamide-gel electrophoresis and shown to have an apparent mol.wt. of approx. 180,000. 3. No evidence was obtained for conversion of these polypeptides into a lower-molecular-weight species in experiments where capsules were labelled for 2 h and chased with non-radioactive proline for up to 22 h. However, a time-dependent incorporation of the 180,000-mol.wt. species into a larger collagenous component was observed and this could be prevented by the inclusion of beta-aminopropionitrile in the incubation medium. 4. The radioactive components synthesized by the capsules correspond to subunits of the intact lens capsule and the direct incorporation of the polypeptide of mol.wt. 180,000 into deoxycholate-insoluble basement membrane was demonstrated.

Aminopropionitrile↗

Native cross-links in collagen fibrils induce resistance to human synovial collagenase.

A model system consisting of highly purified lysyl oxidase and reconstituted lathyritic chick bone collagen fibrils was used to study the effect of collagen cross-linking on collagen degradation by mammalian collagenase. The results indicate that synthesis of approx. 0.1 Schiff-base cross-link per collagen molecule results in a 2--3-fold resistance to human synovial collagenase when compared with un-cross-linked controls or samples incubated in the presence of beta-aminopropionitrile to inhibit cross-linking. These results confirm previous studies utilizing artificially cross-linked collagens, or collagens isolated as insoluble material after cross-linking in vivo, and suggest that increased resistance to collagenase may be one of the earliest effects of cross-linking in vivo. The extent of intermolecular cross-linking among collagen fibrils may provide a mechanism for regulating the rate of collagen catabolism relative to synthesis in normal and pathological conditions.

Aminopropionitrile↗

The inhibition of protein-lysine 6-oxidase by various lathyrogens. Evidence for two different mechanisms.

Lathyrogens decrease collagen and elastin cross-linking by inhibiting lysine oxidase. The lathyrogens isoniazid and semicarbazide decrease liver pyridoxal phosphate and are teratogenic; all their effects are reversed by pyridoxal. beta-Aminopropionitrile, another lathyrogen, does not affect liver pyridoxal phosphate, and its lathyrogenic and teratogenic effects are not reversed by pyridoxal. Time courses of these effects differ greatly, suggesting enzyme inhibition by different mechanisms.

Amino Acid Oxidoreductases↗

Biochemical characterization of the native tissue form of type X collagen from embryonic chick sternal cartilage and identification of a chymotrypsin-sensitive site within its triple-helical domain.

We isolated and characterized the intact native tissue form of type X collagen from the presumptive calcification region of lathyritic chick-embryo sterna and from organ cultures incubated in the presence of beta-aminopropionitrile (beta APN). The administration of beta-APN in vivo greatly increased the solubility of type X collagen and allowed the extraction of quantitative amounts of these molecules under non-denaturing non-proteolytic conditions. Biosynthetic studies in vitro showed that the addition of beta APN during labelling resulted in a 4-fold increase in the extractability of the newly synthesized type X collagen. Biochemical characterization of the intact type X collagen extracted from the tissues or biosynthesized in the organ cultures showed that type X collagen is composed of 59,000-Mr chains that do not undergo conversion into shorter polypeptides. Despite the marked solubilization of type X collagen upon administration of beta APN, a substantial proportion remained tissue-bound and could only be extracted by employing proteolytic digestion followed by disulphide bond reduction. These findings indicate that type X collagen in the tissues is stabilized by at least two different mechanisms, one involving beta APN-sensitive cross-links and the second through interactions with disulphide-bonded proteins. Limited proteolytic digestion with chymotrypsin of tissues containing 1.0 M-NaCl-insoluble type X collagen resulted in its complete solubilization. The majority of type X collagen molecules extracted with chymotrypsin were approx. 10% shorter than those obtained after limited pepsin digestion (Mr 40,000 versus Mr 45,000) and showed the selective loss of a single CNBr-cleavage peptide. These findings indicate the existence of chymotrypsin-sensitive sites within the triple-helical domain of the molecules.

Aminopropionitrile↗

Purification and characterization of an alpha-macroglobulin proteinase inhibitor from the mollusc Octopus vulgaris.

The cell-free haemolymph of the mollusc Octopus vulgaris inhibited the proteolytic activity of the thermolysin against the high-molecular-mass substrate hide powder azure. The purified inhibitor was a glycoprotein composed of two identical 180 kDa disulphide-linked subunits. In addition to the inhibition of the metalloproteinase thermolysin, the protein inhibited the serine proteinases human neutrophil elastase, pig pancreatic elastase, bovine chymotrypsin, bovine trypsin and the cysteine proteinase papain. A fraction of the proteinase-inhibitor complex resisted dissociation after denaturation indicating that some of the proteinase molecules became covalently bound. The nucleophile beta-aminopropionitrile decreased the covalent binding of proteinases to the Octopus vulgaris protein, suggesting that this interaction is mediated by an internal thiol ester; the reactivity and the amino acid sequence flanking the reactive residues of the putative thiol ester were consistent with this hypothesis. Bound trypsin remained active against the low-molecular-mass chromatogenic substrate H-D-Pro-Phe-Arg p-nitroanilide and was protected from inhibition by active-site-directed protein inhibitors of trypsin; however, the bound trypsin was readily inhibited by small synthetic inhibitors. This indicates that the inhibition of proteinases is accomplished by steric hindrance. The proteinase-inhibitory activity of this protein is characteristic of inhibition by mammalian alpha-macroglobulins and the presence of a putative thiol ester suggests that the Octopus vulgaris proteinase inhibitor is a homologue of human alpha 2-macroglobulin.

Amino Acid Sequence↗

Effect of defective connective tissue on the formation of aneurysmal-like structures in the rat testicular artery.

Microscopic aneurysmal-like structures (ALS) develop spontaneously in the convoluted rat testicular artery and have been previously proposed as a model relevant to cerebral aneurysms. The effect of defects in connective tissue fibres on ALS formation was investigated by microscopy using two approaches: (i) the study of the effect of beta-aminopropionitrile (BAPN), an inhibitor of the cross-linking of elastic and collagen fibres, on the incidence, size and morphology of ALS in spontaneously hypertensive rats (SHR) and their normotensive controls (WKY). The straight spermatic artery was studied for comparison. (ii) The determination of the incidence of spontaneous ALS in Brown Norway (BN) and Long Evans (LE) rats which are highly susceptible (BN) or resistant (LE) to the spontaneous rupture of the arterial internal elastic lamina. (i) BAPN increased the number and size of ALS in SHR and WKY rats and had no effect on the straight spermatic artery and (ii) ALS were more numerous and of greater size in BN than in LE rats. Taken together, these results show that defective connective tissue fibres may favour the formation and induce the enlargement of aneurysmal-like structures. By analogy, these data suggest that a lack of connective tissue fibre integrity may be of importance in cerebral aneurysm formation and development.

Aminopropionitrile↗

Amine oxidase-like activity of polyphenols. Mechanism and properties.

Polyphenols in several oxidation systems gained amine oxidase-like activity, probably due to the formation of the corresponding quinones. In the presence of Cu(II), o- and p-phenolic compounds exhibited amine oxidase-like activity, whereas only the o-phenolic compounds showed the activity in the presence of 1,1-diphenyl-2-picrylhydrazyl radical. The activity was determined by measuring the conversion of benzylamine to benzaldehyde by HPLC. Moreover, gallic acid, chlorogenic acid, and caffeic acid, which are plant polyphenols, converted the lysine residue of bovine serum albumin to alpha-amino-adipic semialdehyde residue, indicating lysyl oxidase-like activity. We also characterized the activity of pyrocatechol, hydroquinone, and pyrogallol in the presence of Cu(II). The oxidative deamination was accelerated at a higher pH, and required O2 and transition metal ions. Furthermore, EDTA markedly inhibited the reaction but not beta-aminopropionitrile, which is a specific inhibitor of lysyl oxidase. Catalase significantly inhibited the oxidation, implying the participation of hydroxyl radical in the reaction, but superoxide dismutase stimulated the oxidation, probably due to its radical formation activity. We discussed the mechanism of the oxidative deamination by polyphenols and the possible significance of the activity for biological systems.

Amine Oxidase (Copper-Containing)↗

Treatment of acute schistosomiasis mansoni with praziquantel and an antifibrotic agent in mice. Maintenance of resistance to infection.

This work is a trial to evaluate the effect of the combination of the anthelmintic drug praziquantel (CAS 55268-74-1, PZQ, EMBAY 8440, Biltricide) with the antifibrotic agent beta-aminopropionitrile-monofumarate salt (BAPN, CAS 2079-89-2). It is also a trial to elucidate the repercussions of this drug combination upon worm and tissue egg loads and oogram pattern. Moreover, it aims to study their effects on the hepatic granuloma size and the resistance to reinfection in experimental murine schistosomiasis mansoni. A group of 120 Swiss albino mice was used. This group was further subdivided into six small subgroups. Subgroup I comprised infected untreated control mice. Subgroup II comprised infected untreated challenged control mice. Subgroup III comprised challenged control mice. Subgroup IV comprised infected mice treated with PZQ 500 mg/kg b. w. orally for two successive days. Subgroup V comprised infected mice given BAPN daily as 5 mg powder in 0.5 ml saline for 14 successive days. Subgroup VI comprised mice given both PZQ + BAPN. Animals were sacrificed 12 weeks post primary infection. Mice given the combination regimen PZQ + BAPN, compared to those given each drug solely, revealed absence of worm recovery at perfusion and only dead ova in the oogram (99.2 + 0.6). Inspite of the marked reduction in the hepatic and intestinal tissue egg loads recorded, this drug combination revealed the highest score of percent resistance to reinfection (91.2 + 0.5%). The data were less salient in mice given PZQ or BAPN alone.

Acute Disease↗

Functional importance of connective tissue repair during the development of experimental abdominal aortic aneurysms.

BACKGROUND: Abdominal aortic aneurysms (AAAs) involve an unfavorable balance between the destruction and the repair of connective tissue proteins. The purpose of this study was to assess the functional importance of connective tissue repair during experimental aneurysmal degeneration. METHODS: Male Wistar rats (n = 70) underwent transient intraluminal perfusion of the abdominal aorta with porcine pancreatic elastase. In Study I, the aortic diameter was measured before elastase perfusion and at days 0, 2, 7, and 14 (n = 6 rats at each interval). Aortic wall concentrations of desmosine (Des) and hydroxyproline (OHP) were measured at each interval, and the expression of tropoelastin (TE), alpha1(I) procollagen (PC), and lysyl oxidase genes was evaluated by reverse transcription-polymerase chain reaction. In Study II, 22 rats were treated with beta-aminopropionitrile (BAPN) to block connective tissue repair. In Study III (n = 30), rats were treated with doxycycline, a matrix metalloproteinase inhibitor, beginning 7 days after elastase perfusion. RESULTS: AAAs consistently developed between 7 and 14 days after elastase perfusion. Aortic wall Des concentration decreased markedly during aneurysm development, reaching 3% of normal by day 14 (377 +/- 22 pmol of Des/sample on day 0 vs 9 +/- 1 pmol of Des/sample on day 14; P <.05). Aortic wall OHP decreased to only 68% of normal at the same interval (121 +/- 10 nmol of OHP/sample on day 0 vs 82 +/- 14 nmol of OHP/sample on day 14; P <.05). TE and PC expression was undetectable in healthy aorta, but they both increased by day 7 (P <.05); while TE expression decreased again by day 14, PC continued to rise. Lysyl oxidase expression progressively decreased at all intervals after elastase perfusion. Treatment with beta-aminoproprionitrile resulted in acute aortic dissection in 81% of the rats (50% mortality). These early deaths occurred between days 3 and 6, coinciding with aortic infiltration by proteinase-secreting inflammatory cells. Delayed treatment with doxycycline suppressed the progression of aneurysmal dilatation between days 7 and 21 (P <.05 vs untreated controls). CONCLUSIONS: The development of elastase-induced AAAs is accompanied by an active process of connective tissue repair. While this reparative process is necessary to stabilize the developing aneurysm wall, it is insufficient to prevent aneurysm progression. In contrast, reducing the proteolytic destruction of connective tissue proteins promotes stabilization of the aneurysmal aorta.

Aminopropionitrile↗

The nature of the collagen synthesized by cultured human fibroblasts.

The hydroxyproline-containing proteins (hyproproteins) synthesized by cultured human fibroblasts have been partially characterized. The hyproprotein extracted from the cell layer was found to be similar to the collagen extracted from skin in the ratio of hydroxyproline to proline, chain composition, solubility, and resistance to proteolytic digestion.The hyproproteins isolated from the medium were different. About 20% of the peptide-bound hydroxyproline was found in randomly coiled chains. The alpha2 chains were present in considerable excess over the alpha1 chains, suggesting that the alpha2 chain may be synthesized in quantities greater than required to form a collagen molecule with a chain composition (alpha1)(2)alpha2. The remaining medium hyproprotein appeared to be an unusual form of native collagen which, unlike typical native collagen, was soluble under physiological conditions. This hyproprotein did not yield alpha chains when denatured and contained material that had a molecular weight greater than alpha chains. A similar size distribution was observed in the protein synthesized in the presence of beta-aminopropionitrile, a specific inhibitor of collagen cross-linking. After treatment with pepsin, typical alpha1 and alpha2 chains were obtained from the protein in a 2:1 ratio. Since the medium protein is soluble and has properties different from the typical collagen molecule, it may represent a modified form that functions in the transport of collagen from the cell to the fiber.

Aminopropionitrile↗

Lysyl oxidase activates the transcription activity of human collagene III promoter. Possible involvement of Ku antigen.

Lysyl oxidase is an extracellular enzyme that controls the maturation of collagen and elastin. Lysyl oxidase and collagen III often show similar expression patterns in fibrotic tissues. Therefore, we investigated the influence of lysyl oxidase overexpression on the promoter activity of human COL3A1 gene. Our results showed that when COS-7 cells overexpressed the mature form of lysyl oxidase, the activity of the human COL3A1 promoter was increased up to an average of 12 times when tested by luciferase reporter assay. The effect was specific, because other promoters were not affected. Moreover, lysyl oxidase effect was abolished by beta-aminopropionitrile, a specific inhibitor of its catalytic activity. Electrophoretic mobility shift assay showed a binding activity in the region from -101 to -77 that was significantly increased by lysyl oxidase overexpression. The binding was specifically competed by the cold probe, and the mutagenesis of this region abolished both the binding activity in gel retardation and lysyl oxidase stimulation of COL3A1 promoter in transfection experiments. We identified the binding activity as Ku antigen in its two components: Ku80 and Ku70. This study suggests a new coordinated mechanism by which lysyl oxidase might control the development of fibrosis.

Aminopropionitrile↗

Expression and purification of enzymatically active forms of the human lysyl oxidase-like protein 4.

The lysyl oxidase-like protein 4 (LOXL4) is the latest member of the emerging family of lysyl oxidases, several of which were shown to function as copper-dependent amine oxidases catalyzing lysine-derived cross-links in extracellular matrix proteins. LOXL4 contains four scavenger receptor cysteine-rich domains in addition to the characteristic domains of the LOX family, including the copper-binding domain, the cytokine receptor-like domain, and the residues of the lysyl-tyrosyl quinone cofactor. In an effort to assess its amine oxidase activity, we expressed LOXL4 as recombinant forms attached with hexa-histidine residues at the carboxyl terminus by using an Escherichia coli expression system. The recombinant proteins were purified with nickel-chelating affinity chromatography and converted into enzymatically active forms by stepwise dialysis. The purified LOXL4 proteins showed beta-aminopropionitrile-inhibitable activity of 0.022-0.032 units/mg toward a nonpeptidyl substrate, benzylamine. These results indicate that LOXL4, with the four scavenger receptor cysteine rich domains, may also function as an active amine oxidase. Availability of the pure and active forms of LOXL4 will be significantly helpful in functional studies related to substrate specificity and crystal structure of this amine oxidase, which should provide significant insights into functional differences within the LOX family members.

Amine Oxidase (Copper-Containing)↗

The propeptide domain of lysyl oxidase induces phenotypic reversion of ras-transformed cells.

Lysyl oxidase is an extracellular enzyme critical for the normal biosynthesis of collagens and elastin. In addition, lysyl oxidase reverts ras-mediated transformation, and lysyl oxidase expression is down-regulated in human cancers. Since suramin inhibits growth factor signaling pathways and induces lysyl oxidase in ras-transformed NIH3T3 cells (RS485 cells), we sought to investigate the effects of suramin on the phenotype of transformed cells and the role of lysyl oxidase in mediating these effects. Suramin treatment resulted in a more normal phenotype as judged by growth rate, cell cycle parameters, and morphology. beta-aminopropionitrile, the selective inhibitor of lysyl oxidase enzyme activity, was remarkably unable to block suramin-induced reversion. By contrast, ectopic antisense lysyl oxidase demonstrated that lysyl oxidase gene expression mediated phenotypic reversion. Since lysyl oxidase is synthesized as a 50 kDa precursor and processed to a 30 kDa active enzyme and 18 kDa propeptide, the effects of these two products on the transformed phenotype of RS485 cells were then directly assessed in the absence of suramin. Here we report, for the first time, that the lysyl oxidase propeptide, and not the lysyl oxidase enzyme, inhibits ras-dependent transformation as determined by effects on cell proliferation assays, growth in soft agar, and Akt-dependent induction of NF-kappaB activity. Thus, the lysyl oxidase propeptide, which is released during extracellular proteolytic processing of pro-lysyl oxidase, functions to inhibit ras-dependent cell transformation.

Aminopropionitrile↗

Experimental schistosomiasis mansoni: modulation of granulomas by inhibition of collagen cross-link formation. Preliminary report.

beta-Aminopropionitrile (BAPN) is an inhibitor of the lysyl oxidase required for cross-link formation in collagen maturation. The efficacy of BAPN, alone or in association with the anti-schistosomal drug, praziquantel (PZQ), was primarily assessed by measuring the reduction in liver and intestinal egg loads in murine schistosomiasis mansoni. Depending on the treatment group (PZQ, BAPN, BAPN + PZQ), organ-specific effects were observed using microscope image analysis. Most notable was the relatively small size of granulomas in the livers of BAPN-treated mice, which contrasted with the relatively large size and irregular shape of the granulomas in the intestinal tissues of these mice. Mice treated with the combination of BAPN and PZQ had decreased liver and spleen weights, and a significant reduction in the number of eggs trapped in both the liver (86%) and the intestine (99.1%), compared with untreated mice and those given PZQ alone. The lowest number of living eggs/g of tissue in both the liver and intestine was recorded in the combined BAPN + PZQ-treated group. These results suggest that the concurren treatment of infected mice with PZQ and BAPN enhances the release of eggs trapped in the intestine and also results in a significant reduction of liver egg load. The mechanism by which BAPN reduces the number of liver granulomas in PZQ-treated mice is currently being investigated.

Aminopropionitrile↗

Immune response of mice infected with Schistosoma mansoni is modulated by antifibrotic treatment.

Mice infected with Schistosoma mansoni treated with beta-aminopropionitrile (BAPN), an antifibrotic agent, and the antischistosomal drug praziquantel (PZQ) were resistant to challenge for up to 5 weeks post-treatment. The combined treatment resulted in profound changes to the liver granuloma cell matrix and the composition and function of the cellular infiltrate. Although granulocytes always predominated in the infiltrate, the proportion of the cells which were macrophages was higher in mice treated with BAPN alone (39.2%) than in infected mice which were untreated (15.2%) or treated with PZQ alone (12.4%), and much higher than in mice given the combined treatment (1.8%). Two products associated with macrophage activation and cytotoxicity [tumour necrosis factor-alpha (TNF-alpha) and nitric oxide] were only detected in mice harbouring a patent infection and there was a strong positive correlation between the concentrations of each. The relatively low TNF-alpha concentrations in BAPN-treated mice seemed to be associated with the relatively small granulomas observed in these mice. BAPN treatment also led to changes in the proliferative response of the treated mice's macrophages to mitogen and soluble schistosome-egg antigen and in spleen cellularity; these changes are probably associated with the resistance to challenge infection observed in mice given BAPN with PZQ. It is clear that BAPN treatment changes the dynamics of the delayed-type hypersensitivity response within the granuloma and that this impacts on other immunological sites. How this relates to the maintenance of post-treatment resistance to a challenge infection has still to be elucidated.

Aminopropionitrile↗

Influence of dietary osteolathyrogens on the ultrastructure of shell and membranes of eggs from laying hens.

1. Laying hens were fed osteolathyrogens, either semicarbazide hydrochloride at 0.3 g/kg or beta-aminopropionitrile fumarate at 0.6 g/kg, to examine their effects upon the ultrastructure of shell and shell membranes by scanning electron microscopy. 2. Effects of the 2 lathyrogens were similar. Compared with the highly-branched network of fine fibres in normal membranes, there is widespread lack of separation of fibres in lathyritic specimens and hence, uneven distribution of nucleation sites. Pores are also uneven in size and distribution, which can account for increased permeability. 3. Establishment between shell and membranes is reduced. Within the cone layer both type A and type B mammillary bodies occur. Large interstitial spaces and late fusion of the palisade layer indicate reduced resistance to fracture.

Aminopropionitrile↗

Influence of dietary osteolathyrogens on the eggshell quality of laying hens.

1. Laying hens were fed osteolathyrogens, either semicarbazide hydrochloride at 0.3 or 0.4 g/kg or beta-aminopropionitrile fumarate at 0.5 or 0.6 g/kg diet to examine their effects on eggshell quality. 2. Shell quality characteristics considered for evaluation were shell surface area, shell thickness, shell weight, percentage shell, shape index and the specific gravity of eggs. Measurement of shell quality traits revealed that the hens fed osteolathyrogens laid eggs with significantly lower specific gravities and proportion of shell by weight. These differences were not explained by differences in shell thickness or weight or the shape index of eggs. 3. It was concluded that osteolathyrogens cause hens to lay eggs with poor shell quality and such eggs are weak and fragile.

Aminopropionitrile↗