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体外I型胶原纤维生成。组装机制的更多证据。

Type I collagen fibrillogenesis in vitro. Additional evidence for the assembly mechanism.

作者信息

Silver F H

出版信息

J Biol Chem. 1981 May 25;256(10):4973-7.

PMID:7228864
Abstract

The intensity of scattered light at angles between 30 degrees and 120 degrees has been measured during the heat gelation lag phase of rat tail tendon collagen. As previously reported, the intensity at a scattering angle of 90 degrees does not change during the lag phase of gelation, whereas during this period, the intensity extrapolated to zero degrees more than doubles. Based on measurement of the Rayleigh factor at low angles, it is concluded that the lag phase terminates when the molecular weight is greater than 930,000 which is consistent with the formation of a linear 4D staggered trimer as previously proposed. Once lateral growth begins, the molecular weight continues to increase approximately linearly with time until a molecular weight of 4 X 10(6) (5 +/- 1 trimers) is reached, at which time the rate of increase of molecular weight increases significantly. It is concluded that a trimer with about 5 strands forms during the early phases of lateral growth and appears similar to the microfibrillar unit proposed based on x-ray diffraction modeling. Further growth occurs by linear and lateral addition of the trimeric units in a manner still under investigation.

摘要

在大鼠尾腱胶原蛋白的热凝胶化延迟阶段,已测量了30度至120度之间角度的散射光强度。如先前报道,在凝胶化延迟阶段,90度散射角处的强度不变,而在此期间,外推至零度的强度增加了一倍多。基于低角度瑞利因子的测量,得出结论:当分子量大于930,000时,延迟阶段终止,这与先前提出的线性4D交错三聚体的形成一致。一旦横向生长开始,分子量继续随时间近似线性增加,直到达到4×10(6)(5±1个三聚体)的分子量,此时分子量的增加速率显著增加。得出结论:在横向生长的早期阶段形成了具有约5条链的三聚体,并且看起来类似于基于X射线衍射建模提出的微纤维单元。三聚体单元以线性和横向方式进一步添加从而发生进一步生长,其方式仍在研究中。

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