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正常I型前胶原的A片段和B片段对蛋白酶消化具有相似的热稳定性,但会因结构突变而选择性地失稳。

The A and B fragments of normal type I procollagen have a similar thermal stability to proteinase digestion but are selectively destabilized by structural mutations.

作者信息

Constantinou C D, Vogel B E, Jeffrey J J, Prockop D J

出版信息

Eur J Biochem. 1987 Mar 2;163(2):247-51. doi: 10.1111/j.1432-1033.1987.tb10794.x.

Abstract

Previous studies demonstrated that the thermal stability of the procollagen triple helix can be assayed by digesting the protein for short periods with high concentrations of trypsin and chymotrypsin. Here we cleaved human type I procollagen or collagen with vertebrate collagenase to generate A fragments from the three-quarter amino termini and B fragments from the one-quarter carboxy termini of the molecules. The thermal stabilities of the fragments were then assayed by rapid trypsin/chymotrypsin digestion. Both fragments were resistant up to 36 degrees C and completely degraded between 37 degrees C and 39 degrees C. In subsequent experiments the same assay was carried out with type I procollagens synthesized by fibroblasts from two patients with lethal variants of osteogenesis imperfecta. With one, the A fragments were selectively destabilized, an observation consistent with previous data indicating that the mutation in the patient produced a deletion of 84 amino acids from the middle of the alpha 1(I) chain. With procollagen synthesized by fibroblasts from the second patient the B fragments were selectively destabilized, an observation consistent with preliminary data indicating a mutation that alters the primary structure of the carboxy-terminal region of the alpha 1(I) chain. Therefore, the procedures described here present a simple and direct method for locating mutations that destabilize the collagen triple helix.

摘要

先前的研究表明,原胶原三螺旋的热稳定性可以通过用高浓度的胰蛋白酶和糜蛋白酶短时间消化该蛋白来测定。在这里,我们用脊椎动物胶原酶切割人I型原胶原或胶原,从分子的四分之三氨基末端产生A片段,从四分之一羧基末端产生B片段。然后通过快速胰蛋白酶/糜蛋白酶消化来测定片段的热稳定性。两种片段在高达36℃时都具有抗性,在37℃至39℃之间完全降解。在随后的实验中,对两名患有致死性成骨不全变体的患者的成纤维细胞合成的I型原胶原进行了相同的测定。对于其中一名患者,A片段选择性地不稳定,这一观察结果与先前的数据一致,表明该患者的突变导致α1(I)链中间缺失84个氨基酸。对于第二名患者的成纤维细胞合成的原胶原,B片段选择性地不稳定,这一观察结果与初步数据一致,表明存在改变α1(I)链羧基末端区域一级结构的突变。因此,这里描述的方法提供了一种简单直接的方法来定位使胶原三螺旋不稳定的突变。

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