Vorob'ev M M, Dalgalarrondo M, Chobert J M, Haertlé T
Institute of Elementoorganic Compounds, RAS, Vavilova ul. 28, 117813, Moscow, Russia.
Biopolymers. 2000 Oct 15;54(5):355-64. doi: 10.1002/1097-0282(20001015)54:5<355::AID-BIP60>3.0.CO;2-H.
Apparent rate constants of tryptic hydrolysis of amide bonds containing Arg and Lys residues in beta-casein were determined by the analysis of kinetics of accumulation of 17 major peptide components revealed by high performance liquid chromatography. When studying pH influence on Arg/Lys bond cleavage preference, averaged rate constants over several Arg&bond;X and Lys&bond;X bonds were used for analysis of kinetics of wild-type trypsin, K188H, K188F, K188Y, K188W, and of K188D/D189K mutants. The pK(a1) value of 6.5 was found for all studied trypsins. For wild-type trypsin and its K188D/D189K mutant, pK(a2) was found to be 10. The lowest among studied engineered trypsins pK(a2) = 9.3 was determined for K188Y mutant. Considerable preference for the cleavage of Arg over Lys containing peptide bonds was demonstrated for all trypsins with engineered S2 site except for K188H and K188F. The comparison of individual rate constants for various bonds showed that during the hydrolysis by wild-type trypsin, the probabilities of splitting depend on secondary specificity and local hydrophobicity of amino acid residues, which are nearest to the hydrolyzed peptide bond (P2 site). The improvement of prediction of hydrolysis rates performed by the used program was achieved after considering the presence of hydrophobic neighborhood of Lys48--Ile49 and Arg202--Gly203 bonds.
通过对高效液相色谱揭示的17种主要肽组分积累动力学的分析,测定了β-酪蛋白中含精氨酸(Arg)和赖氨酸(Lys)残基的酰胺键的胰蛋白酶水解表观速率常数。在研究pH对Arg/Lys键切割偏好的影响时,使用了几个Arg&bond;X和Lys&bond;X键的平均速率常数来分析野生型胰蛋白酶、K188H、K188F、K188Y、K188W以及K188D/D189K突变体的动力学。所有研究的胰蛋白酶的pK(a1)值均为6.5。对于野生型胰蛋白酶及其K188D/D189K突变体,pK(a2)为10。K188Y突变体的pK(a2) = 9.3,是所研究的工程化胰蛋白酶中最低的。除K188H和K188F外,所有具有工程化S2位点的胰蛋白酶对含Arg的肽键的切割偏好均明显高于含Lys的肽键。各种键的个别速率常数比较表明,在野生型胰蛋白酶水解过程中,断裂概率取决于最接近水解肽键(P2位点)的氨基酸残基的二级特异性和局部疏水性。在考虑了Lys48--Ile49和Arg202--Gly203键的疏水邻域存在后,所使用程序对水解速率的预测得到了改进。