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新鲜分离的肌腱细胞分泌前胶原的动力学

Kinetics for the secretion of procollagen by freshly isolated tendon cells.

作者信息

Kao W W, Berg R A, Prockop D J

出版信息

J Biol Chem. 1977 Dec 10;252(23):8391-7.

PMID:562877
Abstract

Fibroblasts isolated by enzymic digestion of chick embryo tendons were incubated for several hours in suspension under conditions in which they were in steady state in terms of the synthesis and secretion of procollagen. Under these conditions, the cells synthesized and secreted about 630 microgram of procollagen/10(9) cells/h. The cells were labeled with [14C]proline for 15 to 120 min and then the kinetics of secretion were followed by chasing the label and assaying the 14C-peptides digestible by collagenase in the cells and in the medium. The results demonstrated that secretion of collagenase-digestible peptides did not follow the kinetics of a single first order process but suggested at least two pseudo-first order process with half-times of 14 and 115 min. The [14C]procollagen secreted during 0 to 30 min and 90 to 120 min of chase was the same in terms of the ratio of pro-alpha1 to pro-alpha2 chains, the size of the pro-alpha chains, the extent of interchain disulfide bonding, the extent of prolyl hydroxylation, and the degree of helicity as tested by resistance to pepsin digestion. Addition of ascorbic acid to the incubation medium increased slightly the extent of prolyl hydroxylation but did not alter the kinetics of secretion. The results suggested that the kinetics of secretion are influenced by a two-compartment system in which at least one metabolic pool contributing to the secretory process is present as a "side pocket."

摘要

通过酶解鸡胚肌腱分离得到的成纤维细胞,在悬浮状态下培养数小时,此时它们在前胶原的合成和分泌方面处于稳定状态。在这些条件下,细胞每小时每10⁹个细胞合成并分泌约630微克前胶原。用[¹⁴C]脯氨酸标记细胞15至120分钟,然后通过追踪标记并测定细胞和培养基中可被胶原酶消化的¹⁴C肽来跟踪分泌动力学。结果表明,可被胶原酶消化的肽的分泌不遵循单一的一级过程动力学,而是提示至少有两个假一级过程,半衰期分别为14分钟和115分钟。在追踪的0至30分钟和90至120分钟期间分泌的[¹⁴C]前胶原,就前α1链与前α2链的比例、前α链的大小、链间二硫键的程度、脯氨酰羟化的程度以及通过对胃蛋白酶消化的抗性测试的螺旋度而言是相同的。向孵育培养基中添加抗坏血酸会略微增加脯氨酰羟化的程度,但不会改变分泌动力学。结果表明,分泌动力学受双室系统影响,其中至少有一个对分泌过程有贡献的代谢池以“侧袋”形式存在。

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