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The influence of normobaric hyperoxia on hydroxyproline content and collagenase and elastase activities in rat lung.

The influence of 12, 24 and 48 hrs of normobaric hyperoxia on hydroxyproline content and both collagenase and elastase activities in rat lung was investigated. The rise in hydroxyproline level in lung after only 24 hrs of hyperoxia was observed. In bronchoalveolar lavage, however, the level of this amino acid remains unchanged during the whole time of the experiment. Collagenase activity decreased significantly after 12 hrs of hyperoxia, and then decreased gradually. Elastase activity was diminished after 48 hrs of hyperoxia. It is suggested that breathing with pure oxygen induce changes in collagenase activity long before the changes in elastase activity or hydroxyproline content.

Animals↗

[Hydroxyproline fractions in blood (author's transl)].

Modified methods for the determination of bound hydroxyproline in blood are presented. The fractionated and hydrolyzed samples are separated from interfering material by ion exchange chromatography. Internal standards are used to correct for recovery. After a several fold concentration of samples it is possible to work with reduced blood volumes. Up to 6.12 mumol/l of free and peptide-bound and 11.5 mumol/l of protein-bound hydroxyproline are detectable. Using the described methods hydroxyproline was determined in a pooled human plasma and in the sera of rats.

Animals↗

The appearance of free hydroxyproline as the major product of degradation of newly synthesized collagen in cell culture.

Embryonic lung fibroblasts and rabbit vascular smooth muscle cells have the ability to degrade newly synthesized collagen. Analysis of 24-h pulse media from cultures given [14C]proline demonstrates that greater than 90% of the degraded collagen is represented by free hydroxyproline rather than the peptide-bound imino acid. The addition of cycloheximide or alpha-alpha-dipyridyl to the culture medium during the pulse period severely diminished the formation of the free hydroxyproline demonstrating its enzymatic and protein (collagen) origin. It is proposed that assessment of free hydroxyproline formation may allow us to distinguish between intracellular and extracellular collagen degradation.

Animals↗

Chlamydomonas agglutinin is a hydroxyproline-rich glycoprotein.

The mt(+) sexual agglutinin from Chlamydomonas reinhardi is shown to contain approximately 12% hydroxyproline, and two inhibitors of hydroxyproline formation, alpha,alpha'-dipyridyl and 3,4-dehydroproline, are shown to block the production of agglutinin activity in an in vivo bioassay system. These results indicate that the agglutinin glycoprotein may be related to a class of hydroxyproline-rich glycoproteins found in the extracellular matrix of higher plants, several of which have been shown to have lectin activity.

Journal Article↗

Specific and abundant secretion of a novel hydroxyproline-rich glycoprotein from salt-adapted winged bean cells.

Winged bean callus was adapted to increasing concentrations of NaCl by sequential transfer to medium with 0, 0.5, 1.0, 1.5, and 2.0% (w/v) NaCl. When the culture media, after cell suspension cultures of callus adapted to 0.5 (SA-0.5), 1.0 (SA-1.0), 1.5 (SA-1.5), or 2.0% (w/v) NaCl (SA-2.0), were analyzed by sodium dodecylsulfate-polyacrylamide gel electrophoresis, six specific or enhanced polypeptide bands (SAP1, -2, -3, -4, -5, and -6) were observed. SAP1, with a molecular weight of 84,000, was abundantly secreted in suspension cultures of SA-1.0 and SA-1.5, and was observed as the most striking polypeptide band. The SAP1 yield was about 4 mg/g cells fresh weight. SAP1 was abundantly secreted after the suspension culture of SA-1.0 in the presence of AlCl(3), but little was secreted in the presence of KCl, LiCl, CaCl(2), MgCl(2), mannitol, sucrose, or abscisic acid. SAP1 was purified from the culture medium after suspension culture of SA-1.0 in the presence of 1.0% (w/v) NaCl. Two steps, ammonium sulfate fractionation and CM-cellulose chromatography, were sufficient for purification to homogeneity. Finally, about 5 mg of SAP1 could be isolated from 7 g of fresh callus cells. Of the amino-terminal 32 amino acid residues of SAP1, 10 and 5 were found to be hydroxyproline and proline, respectively. SAP1 on an acrylamide gel was stained by the periodic acid-Schiff method. It is interesting that SAP1 has pentahydroxyproline blocks (Hyp(5)) instead of tetrahydroxyproline blocks (Hyp(4)) common to many hydroxyproline-rich glycoproteins in dicotyledons. Thus, this novel hydroxyproline-rich glycoprotein was shown to be abundantly secreted from NaCl-adapted winged bean cells.

Journal Article↗

A Novel Hydroxyproline-Deficient Arabinogalactan Protein Secreted by Suspension-Cultured Cells of Daucus carota (Purification and Partial Characterization).

Arabinogalactan proteins (AGPs) are secreted or membrane-associated glycoproteins that have been operationally defined as binding to [beta]-glucosyl Yariv artificial antigen, being rich in arabinose and galactose, and containing high levels of alanine, serine, and hydroxyproline. Using an anti-AGP monoclonal antibody (MAC 207) bound to cyanogen bromide-activated Sepharose 4B, we have purified by immunoaffinity chromatography an extracellular AGP from the culture medium of suspension-cultured cells of carrot (Daucus carota). The apparent molecular mass of this highly glycosylated proteoglycan is 70 to 100 kD as judged by sodium dodecyl sulfate-polyacrylamide gels. Although its sugar analysis, [beta]-glucosyl Yariv binding, and high alanine, serine, and proline content are consistent with it being an AGP, the amino acid composition unexpectedly revealed this molecule to have no detectable hydroxyproline. This suggests that this glycoprotein is not a "classical" AGP, but represents the first example of a new class of hydroxyproline-poor AGPs. Deglycosylation of the AGP with anhydrous hydrogen fluoride revealed that the purified proteoglycan contains probably a single core protein with an apparent molecular mass of 30 kD. Direct visualization of the native AGP in the electron microscope showed ellipsoidal putative AGP monomers, approximately 25 nm by 15 nm, that showed a strong tendency to self assemble into higher-order structures. Upon desiccation, the glycosylated AGP formed paracrystalline arrays visible in the light microscope. Polarized Fourier transform infrared microspectroscopy of these arrays demonstrated a high degree of polarization of the sugar moieties under these conditions. These results put possible constraints on current models of AGP structure; a putative role for these novel AGPs as pectin-binding proteins is discussed.

Journal Article↗

Dipyridyl-induced Cell Elongation and Inhibition of Cell Wall Hydroxyproline Biosynthesis.

Incubation of soybean hypocotyl sections with 0.1 millimolar 2,2'-dipyridyl in the absence of auxin results in increases in growth rate and in cell wall extensibility lasting for about 3 hours. This is accompanied by greatly decreased biosynthesis of hydroxyproline, which ultimately appears in the wall, and in slightly reduced oxygen uptake, both of which continue for at least 9 hours. Continuous synthesis of hydroxyproline which appears in the cell wall is thus not necessary for short term growth. The decrease in growth and cell wall extensibility that occurs between the 3rd and 9th hours of dipyridyl inhibition cannot be attributed to cross-linking of newly synthesized hydroxyproline, since its synthesis is still inhibited.

Journal Article↗

Phytochrome Control of Cell Wall-bound Hydroxyproline Content in Etiolated Pea Epicotyls.

The red light inhibition of growth of the intact pea (Pisum sativum L. cv. Alaska) third internode was correlated with an increase in the content of cell wall-bound hydroxyproline. These changes were detected 3 hours after irradiation, and possibly at 1 hour. Far red light reversed the effects of red light. The iron chelator alpha,alpha'-dipyridyl reversed the red light effects on both growth and hydroxyproline content. Using segments incubated in vitro, no phytochrome-mediated change in hydroxyproline content could be observed, perhaps because of an overwhelming wounding response. If plants were irradiated in situ and grown for 8 hours before excision and incubation of segments, some enhancement of hydroxylation by red light was detectable both colorimetrically and radioisotopically. The red light inhibition of segment growth was reversed by alpha,alpha'-dipyridyl. These results are examined in reference to the role of extensin in normal and induced growth cessation.

Journal Article↗

Hydroxyproline Enhancement as a Primary Event in the Successful Development of Erysiphe graminis in Wheat.

Host cell wall hydroxyproline enhancement was observed in the successful development of the parasite Erysiphe graminis DC. f. sp. tritici em Marchal (MS-1) on wheat (em Thell). Hydroxyproline enhancement, which was observed only in susceptible hosts, was detected as early as 25 hours after infection. This observation suggests that the increase in cell wall hydroxyproline is a primary event in the host-pathogen interaction of Erysiphe graminis in wheat.

Journal Article↗

Hydroxyproline Glycosides in Secretory Arabinogalactan-Protein of Phaseolus vulgaris L.

The carbohydrate moiety of secretory arabinogalactan protein in bean seedlings (Phaseolus vulgaris L. cv. Prélude) is attached to the peptide backbone through hydroxyproline, serine, and threonine. Hydroxyproline-linked side chains, consisting of arabinose, galactose, glucose, and rhamnose, comprise the major part of the sugar residues. These hydroxyproline glycosides differ from those in non-extractable cell wall protein but show similarities with those in wall protein of the alga Chlamydomonas.

Journal Article↗

Oxygen fixation into hydroxyproline in etiolated maize seedlings : verification by tandem mass spectrometry.

Etiolated maize (Zea mays L.) seedlings were grown in the dark for 5 days in an atmosphere enriched with 10.0 atom% (18)O(2). Hydroxyproline was isolated from root and shoot tissues, purified, and methylated. It was not possible to determine (18)O incorporation into hydroxyproline by conventional mass spectrometry because the final product was not sufficiently pure. The final product was analyzed successfully by tandem mass spectrometry. The (18)O content of the hydroxyl oxygen atom was 10 +/- 0.7 atom%. This result demonstrates that the hydroxyl oxygen atom in hydroxyproline was derived exclusively from molecular oxygen.

Journal Article↗

A second extensin-like hydroxyproline-rich glycoprotein from carrot cell walls.

The insoluble extensin matrix of dicot cell walls has been studied most fruitfully by examining the salt-extractable precursors to this matrix. Multiple extensin-like hydroxyproline-rich glycoproteins (HRGPs) have been isolated, or their existence inferred, from tomato, potato, bean, soybean, melon, carrot, and other plants. We and others previously have studied a carrot extensin which we call extensin-1. Here we report on the properties of extensin-2, a second salt-extractable hydroxyproline-rich glycoprotein from carrot. Like extensin-1, extensin-2 contains large amounts of hydroxyproline, serine, histidine, and lysine. In contrast, its tyrosine content is only about one-third that of extensin-1. Arabinose and galactose are the most abundant neutral sugars in both proteins, and nearly identical buoyant densities in CsCl suggest a similar proportion of carbohydrate in each. The size of extensin-2 is about half the size of extensin-1 based on: (a) the measured lengths of shadowed molecules (about 40 versus 84 nanometers); (b) the migration of extensin-2 in acid-urea gels relative to monomers, dimers, and trimers of extensin-1; and (c) the Stokes' radii of these molecules as determined by gel filtration chromatography. Electron microscopy of shadowed extensin-2 molecules indicates that they contain kinks, which may indicate the presence of intramolecular isodityrosine cross-links, but intermolecular cross-links, either with other extensin-2 molecules or extensin-1 molecules, are observed rarely if ever.

Journal Article↗

Purification and Partial Characterization of a Hydroxyproline-Rich Glycoprotein in a Graminaceous Monocot, Zea mays.

Graminaceous monocots generally contain low levels of hydroxyproline-rich Glycoproteins (HRGPs). As HRGPs are often at the cell surface, we used the intact cell elution technique (100 millimolar AlCl(3)) to isolate soluble surface proteins from Zea mays cell suspension cultures. Further fractionation of the trichloroacetic acid-soluble eluate on the cation exchangers phospho-cellulose and BioRex-70 gave several retarded, hence presumably basic fractions, which also contained hydroxyproline (Hyp). One of these fractions yielded a pure HRGP after a final purification step involving Superose-6 gel filtration. As this HRGP was unusually rich in threonine, (25 mole%) we designated it as a threonine-hydroxyproline-rich glycoprotein (THRGP); it contained about 27% carbohydrate occurring exclusively as arabinosylated Hyp, predominantly as the monosaccharide (15%), and trisaccharide (25%) with 48% Hyp nonglycosylated-a characteristically graminaceous monocot profile. Amino acid analysis confirmed the basic character, and gave a low alanine content. Reaction with Yariv artificial antigen was negative. These characteristics show that the THRGP is not an arabinogalactan protein. On the other hand, antibodies raised against tomato extensin P1 cross-reacted significantly with the THRGP; this cross-reactivity and the above analytical data provide the best evidence to date for the presence of extensin in a graminaceous monocot.

Journal Article↗

Total and nondialyzable hydroxyproline excretion in Stage D2 prostate cancer.

Hydroxyproline is excreted in urine as a breakdown product of normal bone turnover: A dialyzable (D) fraction (90% of total) reflects active bone destruction and a nondialyzable (ND) fraction reflects bone growth/regrowth. In metastatic prostate cancer where blastic osseous metastases predominate, disease progression on bone scan correlated with elevation of both total hydroxyproline excretion (7.84 + 1.28, P less than 0.001) and the ND urinary level (0.94 +/- 0.20, P less than 0.01). In patients with a serially stable/improving scan, urinary excretion of each fraction (2.18 + 0.27 and 0.27 +/- 0.01) was similar to that of men with no evidence of disease. For Stage D2 prostate cancer, these two markers satisfactorily monitor osseous activity in the intervals between serial bone scintigraphy.

Adenocarcinoma↗

The integrated value of serum procollagen III peptide over time predicts hepatic hydroxyproline content and stainable collagen in a model of dietary cirrhosis in the rat.

To determine whether a serum parameter of collagen metabolism, serum procollagen type III peptide, correlated with hepatic collagen in a model of diet-induced fibrosis, rats were fed a control or cirrhogenic diet for 6 months and treated with either subcutaneous vehicle or the hepatoprotective prostaglandin 16,16-dimethyl prostaglandin E2 (100 micrograms per kg) twice daily. Pair-fed rats from each group were killed after 2, 4 or 6 months. The value of serum procollagen type III peptide to body weight integrated over time (Kt) correlated linearly with hepatic hydroxyproline content (r = 0.97) at killing time t. Good correlations were also seen between Kt and histopathological assessment of aniline blue-stainable collagen (r = 0.93) and between the histopathology and hydroxyproline content (r = 0.97). Rats receiving 16,16-dimethyl prostaglandin E2 had lower values of all three parameters compared to rats receiving vehicle, confirming the previously demonstrated hepatoprotective effect of 16,16-dimethyl prostaglandin E2. The excellent correlation between Kt and the two other traditional parameters of hepatic collagen suggest that sequential measurements of serum procollagen type III peptide can be used to predict alterations in liver collagen deposition in rats.

16,16-Dimethylprostaglandin E2↗

Quantum mechanical study of the conformational behavior of proline and 4R-hydroxyproline dipeptide analogues in vacuum and in aqueous solution.

The conformational behavior of the title compounds has been investigated by Hartree-Fock, MP2, and DFT computations on the most significant structures related to variations of the backbone dihedral angles, cis/trans isomerism around the peptide bond, and diastereoisomeric puckering of the pyrrolidine ring. In vacuum the reversed gamma turn (gammal), characterized by an intramolecular hydrogen bridge, corresponds to the absolute energy minimum for both puckerings (up and down) of the pyrrolidine ring. An additional energy minimum is found in the helix region, but only for an up puckering of the pyrrolidine ring. When solvent effects are included by means of the polarizable continuum model the conformer observed experimentally in condensed phases becomes the absolute minimum. The down puckering is always favored over its up counterpart, albeit by different amounts (0.4-0.5 kcal/mol for helical structures and about 2 kcal/mol for gammal structures). In helical structures cis arrangements of the peptide bond are only slightly less stable than their trans counterparts. This is no longer true for gammal structures, because the formation of an intramolecular hydrogen bond is possible only for trans peptide bonds. In most cases, proline and hydroxyproline show the same general trends; however, the electronegative 4(R) substituent of hydroxyproline leads to a strong preference for up puckerings irrespective of the backbone conformation.

Dipeptides↗

A new set of molecular mechanics parameters for hydroxyproline and its use in molecular dynamics simulations of collagen-like peptides.

Recently, the importance of proline ring pucker conformations in collagen has been suggested in the context of hydroxylation of prolines. The previous molecular mechanics parameters for hydroxyproline, however, do not reproduce the correct pucker preference. We have developed a new set of parameters that reproduces the correct pucker preference. Our molecular dynamics simulations of proline and hydroxyproline monomers as well as collagen-like peptides, using the new parameters, support the theory that the role of hydroxylation in collagen is to stabilize the triple helix by adjusting to the right pucker conformation (and thus the right phi angle) in the Y position.

Collagen↗

Measurement of histidinohydroxylysinonorleucine and hydroxyproline in skin collagen by reversed-phase high-performance liquid chromatography after 9-fluorenylmethyl chloroformate labeling.

A novel, highly sensitive method to quantify histidinohydroxylysinonorleucine (HHL), a trifunctional type of cross-link in skin collagen, was developed. HHL in skin hydrolysates labeled with 9-fluorenylmethyl chloroformate (FMOC-Cl) was separated by reversed-phase high-performance liquid chromatography. Mass spectrometric analysis revealed that two FMOCs were bound to two primary amino acid residues, histidine and hydroxylysine, but not to lysine residue in one HHL molecule. Hydroxyproline was simultaneously measured to express the molar ratio of HHL to collagen. The detection range of HHL was from 1 to 10 pmol and that of hydroxyproline from 1 to 50 pmol. A 6-mm punch-biopsied human skin sample contained 0.40 to 0.69 mol of HHL per one molecule of collagen. This sensitive method is useful as it is rapid and can be used to examine the aging process or the change of HHL content in skin collagens of various pathologic states.

Chromatography, High Pressure Liquid↗