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在无ATP的情况下,Cd2+对质膜(Ca2++Mg2+)ATP酶进行渐进性失活作用,且在催化过程中产生可逆性抑制。

Progressive inactivation of plasma membrane (Ca2++Mg2+)ATPase by Cd2+ in the absence of ATP and reversible inhibition during catalysis.

作者信息

Toledo-Maciel A, Gonçalves-Gomes S, de Gouveia Castex M, Vieyra A

机构信息

Departamento de Bioquímica Médica, Universidade Federal do Rio de Janeiro, Brasil.

出版信息

Biochemistry. 1998 Nov 3;37(44):15261-5. doi: 10.1021/bi980793q.

Abstract

The influence of Cd2+ ions on plasma membrane (Ca2++Mg2+)ATPase activity from red cells was investigated. When the membranes were preincubated with Cd2+ in the absence of ATP, basal (Ca2++Mg2+)ATPase activity (no calmodulin) was slowly and irreversibly inhibited (inactivated) following first-order kinetics (k/Ki = 0.0057 microM-1 min-1 at [Cd2+] = 0.25-1 microM). However, preincubation with Cd2+ did not affect the degree of stimulation by calmodulin added to the assay medium together with ATP. Inactivation was not released by prolonged exposure of membranes to EGTA prior to catalysis, but it was strongly attenuated when the pH in the preincubation medium was lowered from 7.2 to 6.4. When the reaction was started by supplying membranes simultaneously with Cd2+ and ATP (no preincubation), (Ca2++Mg2+)ATPase was inhibited by increasing concentrations of the CdATP complex ([CdATP]50 = 7.2 microM). In this condition, however, even total inhibition of the pump was almost completely released after addition of enough EGTA to decrease CdATP concentrations to the nanomolar range. These results, taken together, indicate that inactivation of the unphosphorylated enzyme by Cd2+ is influenced by dissociation of amino acid residues exhibiting pK between 6.0 and 7.0, and that recognition by the pump of the physiological modulator calmodulin is preserved in the preincubated pump molecules which did not undergo inactivation. In addition, they show that the catalytic site is a target for reversible inhibition of the pump by CdATP and that occupancy of the nucleotide binding site prevents inactivation.

摘要

研究了Cd2+离子对红细胞质膜(Ca2++Mg2+)ATP酶活性的影响。当膜在无ATP的情况下与Cd2+预孵育时,基础(Ca2++Mg2+)ATP酶活性(无钙调蛋白)按照一级动力学缓慢且不可逆地受到抑制(失活)(在[Cd2+]=0.25 - 1 microM时,k/Ki = 0.0057 microM-1 min-1)。然而,与Cd2+预孵育并不影响与ATP一起添加到测定介质中的钙调蛋白的刺激程度。在催化之前,将膜长时间暴露于EGTA并不能解除失活,但当预孵育介质的pH从7.2降至6.4时,失活会大大减弱。当通过同时向膜供应Cd2+和ATP来启动反应(无预孵育)时,(Ca2++Mg2+)ATP酶会被浓度不断增加的CdATP复合物抑制([CdATP]50 = 7.2 microM)。然而在这种情况下,在添加足够的EGTA将CdATP浓度降低至纳摩尔范围后,即使泵的完全抑制也几乎完全解除。综合这些结果表明,Cd2+对未磷酸化酶的失活受到pK在6.0至7.0之间的氨基酸残基解离的影响,并且在未经历失活的预孵育泵分子中,泵对生理调节因子钙调蛋白的识别得以保留。此外,结果表明催化位点是CdATP对泵进行可逆抑制的靶点,并且核苷酸结合位点的占据可防止失活。

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