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Biomedical subjects

L Risteli

Publications and source records attributed to L Risteli.

At least 199 records · Page 11Linked to original sources

Biochemical characterization of variants of the Ehlers-Danlos syndrome type VI.

Three variants of the Ehlers-Danlos syndrome type VI are described: a severe form with skeletal, dermal and ocular manifestations associated with a lack of hydroxylysine in skin and little lysyl hydroxylase activity in cultured fibroblasts; a similarly affected form with a nearly normal hydroxylsine content in skin, but with only little enzyme activity in cultured fibroblasts; and a predominantly ocular form with no biochemical abnormality in skin or cultured skin fibroblasts. The activities of prolyl 4-hydroxylase and the two hydroxylysyl glycosyltransferases were normal in all cases, and the failure to find lysyl hydroxylase activity was not due to altered solubility characteristics of the enzyme or to the presence of an enzyme inhibitor. The collagen produced in cell culture, however, was hydroxylated to a markedly higher extent than that found in skin. In both the mutant and control cells hydroxylation of lysyl residues was less sensitive to ascorbate deficiency than that of prolyl residues.

Adolescent↗

Aminoterminal propeptide of type III procollagen in serum in alcoholic liver disease.

An assay of serum antigens related to the aminoterminal propeptide of type III procollagen has been suggested for monitoring fibrotic processes in the liver. These antigens were measured here in 61 alcoholics who were divided into four groups on the basis of liver histology: normal light microscopy, fatty liver, alcoholic cirrhosis with hepatitis, and inactive cirrhosis. All the subjects having alcoholic hepatitis with cirrhosis had elevated values in the assay, whereas some of those with either fatty liver or inactive cirrhosis still had normal values. It was, therefore, not possible on the basis of this method alone to distinguish fatty liver from cirrhosis or alcoholic hepatitis, although very high values were suggestive of alcoholic hepatitis. In a follow-up study, the aminopropeptide value decreased slowly during recovery from alcoholic hepatitis and increased rapidly after a new drinking bout. The antigens detected by the assay are heterogeneous in human serum. The proportions of the three main peptide forms varied during recovery from alcoholic hepatitis, the authentic propeptide being the main one at the acute stage, but almost disappearing later. The usefulness of the assay could probably be improved if distinct assays were available for the different antigen forms.

Adult↗

Heterogeneity of the antigens related to the aminoterminal propeptide of type III procollagen in human serum.

Inhibition curves that are considerably less steep than the reference peptide curve are a constant finding when human serum samples are studied with the radioimmunoassay for the aminoterminal propeptide Col 1-3 of type III procollagen. This is due to the presence in the serum of three main peptide forms which differ in their antigenic properties and can be separated by gel filtration. Their molecular sizes are, respectively, larger than, equal to and smaller than the peptide Col 1-3. The proportions of these forms were different in a number of serum samples tested. An elevated value in the Col 1-3 radioimmunoassay need not reflect increased deposition of type III collagen in the liver, but could also be due to increased degradation of a newly-synthesized type III procollagen or degradation of a tissue form still containing the aminoterminal propeptide. This should be considered when interpreting elevated serum values.

Amino Acid Sequence↗

Laminin.

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Animals↗

Isolation and characterization of pepsin fragments of laminin from human placental and renal basement membranes.

The presence of laminin in authentic basement membranes was examined at the level of a large pepsin-resistant fragment P1. This strongly antigenic fragment has been recently isolated from a mouse tumour basement membrane. By using antibodies to mouse laminin P1 for identification it was possible to isolate a homologous fragment P1 (Mr about 250 000) and a related component Pa (Mr about 70 000--90 000) from pepsin digests of human placenta and kidney. The fragments were in half-cystine (90--130 residues/1000) and carbohydrate and showed strong binding to concanavalin A. Reduction of disulphide bonds produced several smaller peptide chains, indicating a complex pepsin cleavage. Immunological assays demonstrated partial antigenic identity between laminin fragments obtained from mouse and human tissue, and suggested that fragment Pa may originate from a protein not completely identical with laminin. The results showed that laminin is an abundant component of tissue rich in basement membranes, which has been previously suggested by immunohistological studies.

Amino Acids↗

Further characterization of collagen galactosyltransferase from chick embryos.

Optimum extraction of collagen galactosyltransferase activity from chick embryos required relatively high concentrations of detergent and salt. The activity was inhibited by concanavalin A, and the enzyme had a high affinity for columns of this lectin coupled to agarose; these results suggest the presence of carbohydrate units in the enzyme molecule. Collagen galactosyltransferase was highly labile, and only 1% of the originally bound enzyme activity could be eluted from the concanavalin A-agarose column with a buffer containing methyl glucoside and ethylene glycol. The purification of the activity over the original supernatant of chick embryo homogenate was 250-300-fold, with the optimum reaction conditions for the purified transferase differing somewhat from those for crude enzyme preparations. The reaction was inhibited by glucose-free basement-membrane collagen, UDP and galactosylhydroxylsine, and also by Co2+ and a number of compounds resembling UDP-galactose. Hydroxylysine was also a weak inhibitor. Immobilized hydroxylysine and UDP-glucuronic acid did not bind the collagen galactosyltransferase, but the enzyme was retarded in a column of UDP-galacturonic acid linked to agarose.

Animals↗

Developmental changes in collagen glycosyltransferase activities in chick embryos.

The developmental pattern of collagen galactosyltransferase and collagen glucosyltransferase activities was determined in chick embryos between the 4th and 21st day of growth. Both enzyme activities increased up to the 16th day and decreased thereafter in whole chick embryos and in most tissues studied. The highest collagen glycosyltransferase activities were found in the leg tendons of the 16-day-old embryos, and the activities found in cartilage were higher than those noted in either skin or skull, indicating that the the activities of the collagen glycosyltransferases may play a part in the regulation of the carbohydrate content of the collagen synthesized by a given tissue. The changes observed in the collagen glycosyltransferase activities agree with previous data on the development of prolyl and lysyl hydroxylase activities and also with findings on collagen turnover in the developing chick embryo.

Animals↗

Isolation of collagen glucosyltransferase as a homogeneous protein from chick embryos.

Collagen glucosyltransferase was isolated as a homogeneous protein from chick embryos by a procedure consisting of ammonium sulphate fractionation, two affinity chromatographies and two gel filtrations. The specific activity of the purified enzyme was 32,000 times that of the 15,000 x g supernatant of the embryo homogenate, and the enzyme was pure when examined by sodium dodecyl sulphate polyacrylamide gel electrophoresis using three different gel compositions. The molecular weight of the enzyme was about 72,000-78,000 by sodium dodecyl sulphate polyacrylamide gel electrophoresis, the value being dependent on the gel composition. The apparent molecular weight by gel filtration was dependent on the purity and protein concentration. The sedimentation coefficient S20,w was 4.7. The data suggest that the enzyme molecule consists of one polypeptide chain.

Animals↗

Affinity chromatography of collagen glycosyltransferases on collagen linked to agarose.

Denatured citrate-soluble collagen was coupled to agarose by the cyanogen bromide activation technique, and columns prepared from this material were studied for affinity chromatography of collagen glycosyltransferases. Both collagen glycosyltransferases became bound to the column, the degree of binding and the capacity of the column being higher with the glucosyltransferase than with the galactosyltransferase than with the galactosyltransferase. The addition of Mn2+ enhanced the binding, especially with the glucosyltransferase. The enzymes were eluted from the column with small peptides prepared from collagen, and they were separated from the peptides by gel filtration. With this procedure a collagen glucosyltransferase purification of about 5000-fold and a collagen galactosyltransferase purification of about 1000-fold was obtained from chick embryo extract by relatively simple steps.

Animals↗

Partial purification and characterization of collagen galactosyltransferase from chick embryos.

Collagen galactosyltransferase was purified 50-150-fold from chick-embryo extract. The tissue homogenate was prepared in the presence of Triton X-100, since the addition of the detergent doubled the enzyme activity in the homogenate and the extract. Three species of the enzyme activity with different molecular weights were recovered on gel filtration, the mol.wts. being about 450000, 200000 and 50000. Collagen galactosyltransferase activity was strongly inhibited by p-mercuribenzoate, and stimulated by the addition of dithiothreitol to the incubation system. Studies on substrate requirements indicated that denatured citrate-soluble collagen is a more effective substrate than gelatinized insoluble collagen, as judged from their Km values. Experiments on three peptide fractions prepared from citrate-soluble collagen indicated that a fraction with an average mol.wt. of 500-600 contained peptides large enough to meet a minimun requirement for interaction with the enzyme. However, longer peptides were clearly better substrates. When native and heat-denatured citrate-soluble collagens were compared as substrates, practically no synthesis of galactosylhydroxylysine was found with native collagen. This finding suggests that the triple-helical conformation of collagen prevents the galactosylation of hydroxylysine residues.

Ammonium Sulfate↗

Collagen glucosyltransferase. Partial purification and characterization of the enzyme from whole chick embryos and chick-embryo cartilage.

A purification of over 2000-fold is reported for collagen glucosyltransferase from Triton X-100 extract of whole chick embryos and one of about 160-fold from similar extract of chick embryo cartilage. The addition of the detergent more than doubled the enzyme activity in the homogenates. The purified enzyme preparations from whole chick embryos showed one major band and two or three minor bands in polyacrylamide gel electrophoresis and were entirely free of collagen galactosyltransferase activity. The molecular weight of collagen glucosyltransferase from both sources was about 52000 -- 54000, as determined by gel filtration. In some enzyme preparations an additional form was observed, with an elution position corresponding to a molecular weight of about 130000. Manganese was the most effective metal co-factor for the purified enzyme, but partial replacement could be obtained with Co2+, Mg2+ and Ca2+, whereas no replacement was found with other metals. The activity of the purified enzyme was stimulated by the addition of dithiothreitol to the incubation system and inhibited by preincubation with p-mercuribenzoate. UDP-glucose or the collagen substrate partially protected the enzyme against p-mercuribenzoate inactivation in the presence of Mn2+ but not in its absence. Some protection was also noted with Mn2+ alone.

Animals↗

Biosynthesis of collagen and its alterations in pathological states.

The biosynthesis of collagen involves a number of unique post-translational modifications which are catalyzed by many specific enzymes. The main steps in collagen biosynthesis are transcription and translation, hydroxylations of prolyl and lysyl residues, glycosylations of hydroxylysyl residues, chain association and disulphide bonding, triple helix formation, secretion of procollagen into the extracellular matrix, conversion of procollagen into collagen, specific aggregation of collagen molecules and crosslink formation. Information about these modifications has rapidly increased during recent years, and initial information is available about the regulation and possibilities of specific pharmacological control of collagen biosynthesis at the level of these stages. Elucidation of the biochemical defect in an inborn error of collagen biosynthesis in man was reported for the first time in 1972 and subsequently several additional defects have been characterized. Alterations in collagen biosynthesis are also found during growth and ageing, as well as in many acquired pathological states: data about the nature of such changes in now rapidly accumulating.

Aging↗