Wright H T
Eur J Biochem. 1977 Mar 1;73(2):567-78. doi: 10.1111/j.1432-1033.1977.tb11352.x.
Specific and non-specific trypsin substrates of known structure have been examined for common features. This analysis suggests that trypsin has a specificity for a particular conformation near the scissile bond which I denote as a conformational specificity. This conformation is a bent left-handed helix at the third and fourth (P3 and P4) amino acid positions toward the amino terminus from the scissile bond which I denote as a conformational specificity. This conformation is a bent left-handed show a high frequency of proline and glycine at these positions consistent with the left-handed helical conformation. This apparent secondary specificity for a particular substrate residue other than that at the primary position is not related to the nature of the residues at the third and fourth positions. Rather, these residues determine the bend of left-handed helix which has the effect of exposing main chain hydrogen-bonding groups of the substrate peptide chain to hydrogen-bonding groups on the enzyme. Thus, the secondary specificity of trypsin is not sequence-specific, but is for peptide main chain in the third and fourth positions and is determined by the tertiary structure of the substrate. This hypothesis for conformational and secondary specificity in trypsin can be extended to chymotrypsin. It also provides a means for the regulation of certain processes in vivo catalyzed by other proteases.
已对具有已知结构的特异性和非特异性胰蛋白酶底物进行了共同特征研究。该分析表明,胰蛋白酶对裂解键附近的特定构象具有特异性,我将其称为构象特异性。这种构象是在从裂解键向氨基末端的第三和第四(P3和P4)氨基酸位置处的左旋弯曲螺旋,我将其称为构象特异性。这种构象是左旋弯曲的,在这些位置脯氨酸和甘氨酸的频率较高,这与左旋螺旋构象一致。除了一级位置的残基外,对特定底物残基的这种明显的二级特异性与第三和第四位置残基的性质无关。相反,这些残基决定了左旋螺旋的弯曲,其作用是使底物肽链的主链氢键基团暴露于酶上的氢键基团。因此,胰蛋白酶的二级特异性不是序列特异性的,而是针对第三和第四位置的肽主链,并且由底物的三级结构决定。胰蛋白酶中构象和二级特异性的这一假设可以扩展到胰凝乳蛋白酶。它还为体内由其他蛋白酶催化的某些过程的调节提供了一种手段。