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邻苯二甲醛对酵母己糖激酶的失活作用:活性位点处或其附近存在半胱氨酸和赖氨酸的证据

Inactivation of yeast hexokinase by o-phthalaldehyde: evidence for the presence of a cysteine and a lysine at or near the active site.

作者信息

Puri R N, Bhatnagar D, Roskoski R

机构信息

Department of Biochemistry and Molecular Biology, Louisiana State University Medical Center, New Orleans.

出版信息

Biochim Biophys Acta. 1988 Nov 2;957(1):34-46. doi: 10.1016/0167-4838(88)90154-9.

Abstract

Yeast hexokinase (ATP:D-hexose 6-phosphotransferase, EC 2.7.1.1), a homodimer, was rapidly and irreversibly inactivated by o-phthalaldehyde at 25 degrees C (pH 7.3). The reaction followed pseudo-first-order kinetics over a wide range of the inhibitor concentration. The second-order-rate constant for the inactivation of hexokinase was estimated to be 45 M-1.s-1. Hexokinase was protected more by sugar substrates than by nucleoside triphosphates during inactivation by o-phthalaldehyde. Absorption spectrum (lambda max 338 nm), and fluorescence excitation (lambda max 363 nm) and emission (lambda max 403 nm) spectra of the hexokinase-o-phthalaldehyde adduct were consistent with the formation of an isoindole derivative. These results also suggest that sulfhydryl and epsilon-amino functions of the cysteine and lysine residues, respectively, participating in the isoindole formation are about 3 A apart in the native enzyme. About 2 mol of the isoindole per mol of hexokinase dimer were formed following complete loss of the phosphotransferase activity. Chemical modification of hexokinase by iodoacetamide in the presence of mannose resulted in the modification of six sulfhydryl groups per mol of hexokinase with retention of the phosphotransferase activity. Subsequent reaction of the iodoacetamide modified hexokinase with o-phthalaldehyde resulted in complete loss of the phosphotransferase activity with concomitant modification of the remaining two sulfhydryl groups of hexokinase. Chemical modification of hexokinase by iodoacetamide in the absence of mannose resulted in complete inactivation of the enzyme. The iodoacetamide inactivated hexokinase failed to react with o-phthalaldehyde as evidenced by the absence of a fluorescence emission maximum characteristic of the isoindole derivative. The holoenzyme failed to react with [5'-(p-fluorosulfonyl)benzoyl]adenosine. The dissociated hexokinase could be inactivated by [5'-(p-fluorosulfonyl)benzoyl]adenosine; the degree of inactivation paralleled the extent of reaction between o-phthalaldehyde and the nucleotide-analog modified enzyme. Thus, it is concluded that two cysteines and lysines at or near the active site of the hexokinase were involved in reaction with o-phthalaldehyde following complete loss of the phosphotransferase activity. An important finding of this investigation is that the lysines, involved in isoindole formation, located at or near the active site are probably buried.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

酵母己糖激酶(ATP:D-己糖6-磷酸转移酶,EC 2.7.1.1)是一种同型二聚体,在25℃(pH 7.3)下被邻苯二甲醛迅速且不可逆地失活。该反应在很宽的抑制剂浓度范围内遵循假一级动力学。己糖激酶失活的二级速率常数估计为45 M⁻¹·s⁻¹。在邻苯二甲醛失活过程中,糖底物对己糖激酶的保护作用比对核苷三磷酸的保护作用更强。己糖激酶 - 邻苯二甲醛加合物的吸收光谱(λmax 338 nm)、荧光激发光谱(λmax 363 nm)和发射光谱(λmax 403 nm)与异吲哚衍生物的形成一致。这些结果还表明,参与异吲哚形成的半胱氨酸残基的巯基和赖氨酸残基的ε-氨基官能团在天然酶中相距约3 Å。在磷酸转移酶活性完全丧失后,每摩尔己糖激酶二聚体形成约2摩尔异吲哚。在甘露糖存在下,碘乙酰胺对己糖激酶进行化学修饰,导致每摩尔己糖激酶有六个巯基被修饰,同时保留了磷酸转移酶活性。随后,碘乙酰胺修饰的己糖激酶与邻苯二甲醛反应,导致磷酸转移酶活性完全丧失,同时己糖激酶其余的两个巯基被修饰。在没有甘露糖的情况下,碘乙酰胺对己糖激酶进行化学修饰导致酶完全失活。碘乙酰胺失活的己糖激酶未能与邻苯二甲醛反应,这可通过缺乏异吲哚衍生物特有的荧光发射最大值来证明。全酶未能与[5'-(对氟磺酰基)苯甲酰基]腺苷反应。解离的己糖激酶可被[5'-(对氟磺酰基)苯甲酰基]腺苷失活;失活程度与邻苯二甲醛和核苷酸类似物修饰的酶之间的反应程度平行。因此,可以得出结论,在磷酸转移酶活性完全丧失后,己糖激酶活性位点或其附近的两个半胱氨酸和赖氨酸参与了与邻苯二甲醛的反应。这项研究的一个重要发现是,参与异吲哚形成的位于活性位点或其附近的赖氨酸可能被掩埋。(摘要截短至400字)

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