首页> 美国卫生研究院文献>Biochemical Journal >Structure and metabolism of sulphated glycosaminoglycans in cultures of human fibroblasts. Structural characteristics of co-polymeric galactosaminoglycans in sequential extracts of fibroblasts during pulse-chase experiments.
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Structure and metabolism of sulphated glycosaminoglycans in cultures of human fibroblasts. Structural characteristics of co-polymeric galactosaminoglycans in sequential extracts of fibroblasts during pulse-chase experiments.

机译:人成纤维细胞培养物中硫酸糖胺聚糖的结构和代谢。脉冲追逐实验过程中成纤维细胞顺序提取物中共聚半乳糖胺聚糖的结构特征。

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摘要

1. Human embryonic lung and skin fibroblasts were allowed to incorporate 32SO42- or 35SO42- and D-[1-3H]glucosamine. After removal of the medium the monolayer was subjected to sequential extractions by using EDTA, brief trypsin digestion, extraction with dithiothreitol ofllowed by freeze--thawing and extraction with trichloroacetic acid. The heparan sulphate and galactosaminoglycan contents of the various extracts were estimated after deaminative cleavage of the former component. Heparan sulphate was the major component of the trypsin digest, whereas galactosaminoglycans were the dominant component of other fractions. 2. Galactosaminoglycans of the various fractions were subjected to chemical (periodate oxidation/alkaline elimination) and enzymic (chondroitinase-AC and -ABC, as well as testicular hyaluronidase) degradations. Galactosaminoglycans from the insoluble cell fraction and the dithiothreitol extract contained larger amounts of L-iduronic acid than did those of other fractions. 3. Pulse-chase experiments were performed with and without replating of the cells at the start of the chase period. Radioactive glycans were isolated from the various extracts during the chase period. The half-lives of glycans of the insoluble cell fraction and the dithioreitol extract were shorter (5--8h) than were those of the trypsin digest and the EDTA extract (22h and 11h respectively). After replating of the cells in chase medium, radioactive cell-associated glycans were secreted from the cells and could be recovered in the trypsin digest, the EDTA extract and the medium. Furthermore, 35S/3H ratios of glycans from all these fractions decreased during the chase period. The following conclusions were reached. The insoluble cell fraction contains the synthesis pool and some structural material, whereas the soluble cell fraction is the storage and degradation pool. The dithiothreitol extract appears to contain the immediate precursors of secreted material. The trypsin-released glycans comprise structural components as well as material destined for pinocytosis or secretion into the medium. The EDTA extract is considered to consist of glycans en route to the medium. 4. The two presumptive precursor pools were preferentially depleted of L-iduronic acid-rich galactosaminoglycans during the chase. Glycans recovered from the trypsin digest, the EDTA extract and the medium during the chase contained larger amounts of periodate-resistant uronic acid residues (D-glucuronic acid and/or L-iduronic acid O-sulphate) than did their precursors. It is proposed that polymer-level modifications of secreted glycans are partly responsible for the results.
机译:1.允许人类胚胎肺和皮肤成纤维细胞掺入32SO42-或35SO42-和D- [1-3H]葡糖胺。除去培养基后,通过使用EDTA,短暂的胰蛋白酶消化,用二硫苏糖醇提取,然后冷冻-解冻和用三氯乙酸提取对单层进行顺序提取。在对前一种组分进行脱氨基裂解后,估算了各种提取物中的硫酸乙酰肝素和半乳糖胺聚糖含量。硫酸乙酰肝素是胰蛋白酶消化的主要成分,而半乳糖胺聚糖是其他馏分的主要成分。 2.将各个部分的半乳糖氨基聚糖进行化学降解(高碘酸盐氧化/碱性消除)和酶降解(软骨素酶-AC和-ABC以及睾丸透明质酸酶)。来自不溶细胞级分和二硫苏糖醇提取物的半乳糖胺聚糖比其他级分含有的半乳糖苷含量更高。 3.在追逐阶段开始时进行脉冲追踪实验,有或没有更换电池。在追踪期间,从各种提取物中分离出放射性聚糖。不溶性细胞级分和二硫苏糖醇提取物的聚糖的半衰期(5--8h)比胰蛋白酶消化液和EDTA提取物的聚糖的半衰期短(分别为22h和11h)。将细胞重铺在追逐培养基中后,放射性细胞相关的聚糖从细胞中分泌出来,可以在胰蛋白酶消化液,EDTA提取物和培养基中回收。此外,在追逐期间,所有这些馏分的聚糖的35S / 3H比降低。得出以下结论。不溶性细胞部分包含合成库和一些结构材料,而可溶细胞部分是存储库和降解库。二硫苏糖醇提取物似乎含有分泌物质的直接前体。胰蛋白酶释放的聚糖包含结构成分以及旨在通过胞饮作用或分泌到培养基中的物质。 EDTA提取物被认为是途经培养基的聚糖组成。 4.在追逐过程中,两个假定的前体库优先消耗了富含L-艾杜糖酸的半乳糖胺聚糖。追逐过程中从胰蛋白酶消化物,EDTA提取物和培养基中回收的聚糖比其前体含有更多的抗高碘酸盐的尿酸残基(D-葡萄糖醛酸和/或L-艾杜糖酸O-硫酸盐)。有人提出,分泌聚糖的聚合物水平修饰是造成结果的部分原因。

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