Homandberg G A, Komoriya A, Chaiken I M
Biochemistry. 1982 Jul 6;21(14):3385-9. doi: 10.1021/bi00257a021.
We have tested the feasibility of achieving protease-catalyzed condensation between nonassociating peptide fragments through mediation of a molecular trap. In this study, two subfragments of bovine pancreatic ribonuclease S-peptide, containing residues 1-10 and 11-15, were rejoined by clostripain catalysis to form the 1-15 peptide. The extent of this stereospecific condensation was enhanced by adding ribonuclease S-protein (residues 21-124), which acts as a trap in binding 1-15 but not 1-10 or 11-15 and which thus shifts the equilibrium to favor 1-15 formation. The resultant (1-15) X (21-124) noncovalent complex, defined as [des-16-20]ribonuclease S, was detected by the enzymatic activity characteristic of the naturally derived ribonuclease S complex. Reaction of 1 mM S-protein and 20 mM fragments leads to 80% of the ribonuclease activity expected from the amount of 21-124 present. This indicates that 4% of the fragments 1-10 and 11-15 were condensed, compared to a maximal condensation of 5% based on the amount of trap. The less than theoretical yield is due largely to slow proteolytic degradation of 21-124 to a form which is no longer able to bind the condensation product 1-15. Yields were increased to 15% by addition of further trap. The successful synthesis of 1-15 emphasizes the usefulness of molecular traps to promote stereospecific fragment condensation between nonassociating peptide fragments for the synthesis and semisynthesis of polypeptides.
我们已经测试了通过分子陷阱介导实现非缔合肽片段之间蛋白酶催化缩合的可行性。在本研究中,牛胰核糖核酸酶S肽的两个亚片段(包含残基1 - 10和11 - 15)通过梭菌蛋白酶催化重新连接形成1 - 15肽。添加核糖核酸酶S蛋白(残基21 - 124)可增强这种立体特异性缩合的程度,该蛋白作为一种陷阱,可结合1 - 15但不结合1 - 10或11 - 15,从而使平衡向有利于1 - 15形成的方向移动。通过天然来源的核糖核酸酶S复合物的酶活性特征检测到所得的(1 - 15)×(21 - 124)非共价复合物,定义为[去16 - 20]核糖核酸酶S。1 mM S蛋白与20 mM片段的反应产生的核糖核酸酶活性达到基于存在的21 - 124量预期的80%。这表明1 - 10和11 - 15片段中有4%发生了缩合,相比基于陷阱量的最大缩合率5%而言。低于理论产率主要是由于21 - 124缓慢地蛋白水解降解为不再能够结合缩合产物1 - 15的形式。通过添加更多的陷阱,产率提高到了15%。1 - 15的成功合成强调了分子陷阱在促进非缔合肽片段之间的立体特异性片段缩合以用于多肽合成和半合成方面的有用性。