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巯基试剂对λ丝氨酸/苏氨酸磷蛋白磷酸酶活性的影响及锌离子对该酶的抑制作用。

Effects of sulfhydryl regents on the activity of lambda Ser/Thr phosphoprotein phosphatase and inhibition of the enzyme by zinc ion.

作者信息

Zhuo S, Dixon J E

机构信息

Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, 48109-0606, USA.

出版信息

Protein Eng. 1997 Dec;10(12):1445-52. doi: 10.1093/protein/10.12.1445.

Abstract

Sulfhydryl reagents, such as dithiothreitol (DTT), affected the activity of Ser/Thr phosphoprotein phosphatases. Addition of DTT to the assay buffer increased the affinity of lambda Ser/Thr phosphoprotein phosphatase (lambda-PPase) for its Mn2+ cofactor. On the other hand, the enzyme was found to be inactivated simply by dilution in Tris buffer. The inactivation could be completely prevented by the presence of DTT or Mn2+ in the buffer. Further studies showed that oxidation or reduction of cysteine residues in lambda-PPase may not be the cause of the change in the enzyme activity. Without exception, mutation of all cysteine residues in lambda-PPase to serine did not convert the enzyme into a thiol-insensitive mutant. By careful examination of the effects of different sulfhydryl reagents, metal ion cofactors and substrates on lambda-PPase, it was found that the role of sulfhydryl reagents was the chelation of small amounts of inhibitory metal ions, which were present in plastic laboratory ware, such as disposable cuvets and tubes, with prevention of the enzyme from inactivation. One of the main contaminants found in plastic cuvets was Zn2+, which is a potent inhibitor of lambda-PPase. The inhibition of lambda-PPase by Zn2+ was characterized. Pre-treatment of the enzyme (1-4 nM) with 1 microM of ZnCl2 almost completely inhibited the enzymatic activity in response to 2 mM Mn2+. However, no significant inhibition was found when the enzyme was added to the assay mixture containing 1 microM Zn2+ and 2 mM Mn2+ . This confirms the sensitivity of the holoenzyme to inhibitory metal ions in vitro. The kinetic analysis indicated that the inhibitory metal ion might compete with Mn2+ to bind to the active site of lambda-PPase. This was further supported by the mutation of metal cofactor binding amino acid residues of the enzyme. Mutants which have less affinity for Mn2+ are also less sensitive to Zn2+. Our results suggest that inhibitory metal ions may induce a different structural conformation for lambda-PPase.

摘要

巯基试剂,如二硫苏糖醇(DTT),会影响丝氨酸/苏氨酸磷酸蛋白磷酸酶的活性。向测定缓冲液中添加DTT可增加λ丝氨酸/苏氨酸磷酸蛋白磷酸酶(λ-PPase)对其Mn2+辅因子的亲和力。另一方面,发现该酶仅通过在Tris缓冲液中稀释就会失活。缓冲液中存在DTT或Mn2+可完全防止这种失活。进一步研究表明,λ-PPase中半胱氨酸残基的氧化或还原可能不是酶活性变化的原因。无一例外,将λ-PPase中所有半胱氨酸残基突变为丝氨酸并不能将该酶转化为对硫醇不敏感的突变体。通过仔细研究不同巯基试剂、金属离子辅因子和底物对λ-PPase的影响,发现巯基试剂的作用是螯合存在于塑料实验室器具(如一次性比色皿和试管)中的少量抑制性金属离子,从而防止酶失活。在塑料比色皿中发现的主要污染物之一是Zn2+,它是λ-PPase的有效抑制剂。对Zn2+对λ-PPase的抑制作用进行了表征。用1μM ZnCl2预处理该酶(1-4 nM)几乎完全抑制了对2 mM Mn2+的酶活性。然而,当将该酶添加到含有1μM Zn2+和2 mM Mn2+的测定混合物中时,未发现明显抑制作用。这证实了全酶在体外对抑制性金属离子的敏感性。动力学分析表明,抑制性金属离子可能与Mn2+竞争结合到λ-PPase的活性位点。该酶金属辅因子结合氨基酸残基的突变进一步支持了这一点。对Mn2+亲和力较低的突变体对Zn2+也较不敏感。我们的结果表明,抑制性金属离子可能会诱导λ-PPase形成不同的结构构象。

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