Chaibi E B, Péduzzi J, Farzaneh S, Barthélémy M, Sirot D, Labia R
Museum National d'Histoire Naturelle, CNRS URA 401, Paris, France.
Biochim Biophys Acta. 1998 Jan 15;1382(1):38-46. doi: 10.1016/s0167-4838(97)00127-1.
The kinetic parameters of three IRT (Inhibitor-Resistant-TEM-derived-) beta-lactamases (IRT-5, IRT-6 and IRT-I69) were determined for substrates and the beta-lactamase inhibitors: clavulanic acid, sulbactam and tazobactam, and compared with those of TEM-1 beta-lactamase. The catalytic behaviour of the beta-lactamases towards substrates and inhibitors was correlated with the properties of the amino acid at position ABL69. The three IRT beta-lactamases contain at that position a residue Ile, Leu and Val, amino acids whose side-chain are branched. Molecular modelling shows that the methyl groups of Ile-69 (C gamma 2) and Val-69 (C gamma 1) produced steric constraints with the side chain of Asn-170 as well as the main chain nitrogen of Ser-70, a residue contributing to the oxyanion hole. We suggest that hydrophobicity could be the main factor responsible for the kinetic properties of Met69Leu (IRT-5), as no steric effects could be detected by molecular modelling. Hydrophobicity and steric constraints are combined in Met69Ile and Met69Val, IRT-I69 and IRT-6, respectively.
测定了三种IRT(耐抑制剂的TEM衍生型)β-内酰胺酶(IRT-5、IRT-6和IRT-I69)对底物以及β-内酰胺酶抑制剂(克拉维酸、舒巴坦和他唑巴坦)的动力学参数,并与TEM-1β-内酰胺酶的动力学参数进行了比较。β-内酰胺酶对底物和抑制剂的催化行为与ABL69位氨基酸的性质相关。这三种IRTβ-内酰胺酶在该位置分别含有异亮氨酸、亮氨酸和缬氨酸残基,这些氨基酸的侧链是分支的。分子模拟表明,Ile-69(Cγ2)和Val-69(Cγ1)的甲基与Asn-170的侧链以及Ser-70的主链氮产生了空间位阻,Ser-70是构成氧负离子洞的一个残基。我们认为,疏水性可能是导致Met69Leu(IRT-5)动力学性质的主要因素,因为分子模拟未检测到空间效应。疏水性和空间位阻分别在Met69Ile和Met69Val(IRT-I69和IRT-6)中共同存在。