首页> 美国卫生研究院文献>Biochemical Journal >Characterization of chicken-liver glutathione S-transferase (GST) A1-1 and A2-2 isoenzymes and their site-directed mutants heterologously expressed in Escherichia coli: identification of Lys-15 and Ser-208 on cGSTA1-1 as residues interacting with ethacrynic acid.
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Characterization of chicken-liver glutathione S-transferase (GST) A1-1 and A2-2 isoenzymes and their site-directed mutants heterologously expressed in Escherichia coli: identification of Lys-15 and Ser-208 on cGSTA1-1 as residues interacting with ethacrynic acid.

机译:鸡肝谷胱甘肽S-转移酶(GST)A1-1和A2-2同工酶及其在大肠杆菌中异源表达的定点突变体的表征:鉴定cGSTA1-1上的Lys-15和Ser-208为与乙炔相互作用的残基酸。

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摘要

Escherichia coli-expressed chicken-liver glutathione S-transferase, cGSTA1-1, displays high ethacrynic acid (EA)-conjugating activity. Molecular modelling of cGSTA1-1 with EA in the substrate binding site reveals that the side chain of Phe-111 protrudes into the substrate binding site and possibly interacts with EA. Replacement of Phe-111 with alanine resulted in an enzyme (F111A mutant) with a 4.5-fold increase in EA-conjugating activity (9.2 mmol/min per mg), and an incremental Gibbs free energy (DeltaDeltaG) of 4.0 kJ/mol lower than that of the wild-type cGSTA1-1. Two other amino acid residues that possibly interact with EA are Ser-208 and Lys-15. Substitution of Ser-208 with methionine generated a cGSTA1-1(F111AS208M) double mutant that has low EA-conjugating activity (2.0 mmol/min per mg) and an incremental Gibbs free energy of +3.9 kJ/mol greater than the cGSTA1-1(F111A) single mutant. The cGSTA1-1(F111A) mutant, with an additional Lys-15-to-leucine substitution, lost 90% of the EA-conjugating activity (0.55 mmol/min per mg). The Km values of the cGSTA1-1(F111A) and cGSTA1-1(F111AK15L) mutants for EA are nearly identical. The wild-type cGSTA2-2 isoenzyme has a low EA-conjugating activity (0.56 mmol/min per mg). The kcat of this reaction can be increased 2. 5-fold by substituting Arg-15 and Glu-104 with lysine and glycine respectively. The KmEA of the cGSTA2-2(R15KE104G) double mutant is nearly identical with that of the wild-type enzyme. Another double mutant, cGSTA2-2(E104GL208S), has a KmEA that is 3.3-fold lower and a kcat that is 1.8-fold higher than that of the wild-type enzyme. These results, taken together, illustrate the interactions of Lys-15 and Ser-208 on cGSTA1-1 with EA.
机译:大肠杆菌表达的鸡肝谷胱甘肽S-转移酶cGSTA1-1具有高乙炔酸(EA)结合活性。在底物结合位点具有EA的cGSTA1-1的分子模型表明,Phe-111的侧链伸入底物结合位点,并可能与EA相互作用。用丙氨酸替代Phe-111产生的酶(F111A突变体)的EA结合活性提高了4.5倍(9.2 mmol / min / mg),吉布斯自由能增量(DeltaDeltaG)降低了4.0 kJ / mol比野生型cGSTA1-1可能与EA相互作用的另外两个氨基酸残基是Ser-208和Lys-15。用蛋氨酸取代Ser-208产生了一个cGSTA1-1(F111AS208M)双突变体,该双突变体的EA结合活性低(2.0 mmol / min / mg),并且比cGSTA1-1的吉布斯自由能增加+3.9 kJ / mol。 (F111A)单突变体。 cGSTA1-1(F111A)突变体具有额外的Lys-15亮氨酸取代,失去了90%的EA结合活性(0.55 mmol / min / mg)。 EA的cGSTA1-1(F111A)和cGSTA1-1(F111AK15L)突变体的Km值几乎相同。野生型cGSTA2-2同工酶具有低的EA缀合活性(0.56 mmol / min / mg)。通过分别用赖氨酸和甘氨酸取代Arg-15和Glu-104,该反应的kcat可以提高2. 5倍。 cGSTA2-2(R15KE104G)双突变体的KmEA与野生型酶几乎相同。另一个双重突变体cGSTA2-2(E104GL208S)的KmEA比野生型酶低3.3倍,kcat比野生型酶高1.8倍。这些结果加在一起说明了cGSTA1-1上Lys-15和Ser-208与EA的相互作用。

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