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骺软骨中溶菌酶活性与蛋白聚糖生物合成的相关性。

Correlation of lysozyme activity with proteoglycan biosynthesis in epiphyseal cartilage.

作者信息

Schmidt A, Rodegerdts U, Buddecke E

出版信息

Calcif Tissue Res. 1978 Dec 8;26(2):163-72. doi: 10.1007/BF02013252.

Abstract

Pig epiphyseal cartilage (proximal ulna epiphysis) previously incubated into vitro in the presence of sodium [35S]sulfate or [3H]thymidine was either analyzed by autoradiography or separated into 9 morphologically defined consecutive layers and investigated for 35S-incorporation into the guanidinium chloride-extractable proteoglycans and for lysozyme activity. The lowest 35S incorporation and lysozyme activity were determined in the zone of resting cells, but there is a consecutive increase in the rate of proteoglycan synthesis and lysozyme activity toward the diaphyseal cartilage-bone junction, with the maximum at the lower columnar cell zone and a sharp reduction of both parameters at the hypertrophic zone. The maxima of 35S incorporation and [3H]thymidine incorporation do not coincide. The guanidinium chloride-soluble proteoglycans exhibit macromolecular polydispersity. Fractions excluded from as well as retarded by Sepharose 2B gel could be separated and were detected in all zones. The results indicate a correlation of proteoglycan biosynthesis and lysozyme activity in epiphyseal cartilage.

摘要

预先在含有[35S]硫酸钠或[3H]胸腺嘧啶核苷的条件下进行体外培养的猪骨骺软骨(尺骨近端骨骺),要么通过放射自显影进行分析,要么被分离成9个形态学上明确的连续层,并研究35S掺入氯化胍可提取的蛋白聚糖的情况以及溶菌酶活性。在静止细胞区测定到最低的35S掺入量和溶菌酶活性,但朝向骨干软骨 - 骨交界处蛋白聚糖合成速率和溶菌酶活性持续增加,在下柱状细胞区达到最大值,而在肥大区这两个参数都急剧降低。35S掺入量的最大值和[3H]胸腺嘧啶核苷掺入量的最大值并不一致。氯化胍可溶性蛋白聚糖表现出大分子多分散性。能分离出被琼脂糖2B凝胶排除以及滞留的组分,并且在所有区域都能检测到。结果表明骨骺软骨中蛋白聚糖生物合成与溶菌酶活性之间存在相关性。

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