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Mechanism of Ca-ATPase inhibition by melittin in skeletal sarcoplasmic reticulum.

机译:蜂毒肽抑制骨骼肌质网Ca-ATPase的作用机理。

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We have previously shown that the basic, amphipathic peptide melittin inhibits the Ca-ATPase of the sarcoplasmic reticulum membrane by inducing large-scale aggregation of the enzyme via electrostatic cross-linking. To better understand the physical mechanism by which melittin-induced Ca-ATPase aggregation inhibits the enzyme, we have performed time-resolved phosphorescence anisotropy (TPA) and steady-state fluorescence experiments in combination with enzyme kinetic assays, utilizing (1) native and charge-modified melittin in order to characterize the peptide charge dependence of the melittin-SR interaction, and (2) various calcium levels in order to define the effect of melittin on the enzyme's E1 and E2 conformational equilibrium. TPA results showed that decreasing melittin's positive charge dramatically decreases the ability of the peptide to aggregate the enzyme, which correlates with a reduced potency of the modified peptide to inhibit enzymatic activity. Steady-state fluorescence of fluorescein isothiocyanate-labeled Ca-ATPase showed that melittin reduces Ca-ATPase affinity for calcium by shifting the enzyme's E1-E2 conformational equilibrium toward E2, but increasing calcium progressively reverses this shift. Kinetic experiments showed that melittin does not prevent ATP-dependent enzyme phosphorylation, but it completely inhibits Pi-dependent EP formation and substantially slows Pi release during steady-state cycling. We conclude that melittin-induced aggregation of the Ca-ATPase depends on the electrostatic interaction of the peptide with cytoplasmic Ca(2+)-dependent sites on the enzyme, and that enforced Ca-ATPase protein-protein interactions inhibit the conformational transitions that facilitate phosphoenzyme hydrolysis.
机译:先前我们已经表明,碱性两亲肽蜂毒肽通过经由静电交联诱导酶的大规模聚集,从而抑制了肌质网膜的Ca-ATPase。为了更好地了解蜂毒肽诱导的Ca-ATPase聚集抑制酶的物理机制,我们利用时间分辨的磷光各向异性(TPA)和稳态荧光实验与酶动力学测定相结合,利用了(1)天然和电荷-修饰的蜂毒蛋白以表征蜂毒蛋白-SR相互作用的肽电荷依赖性,以及(2)各种钙水平以定义蜂毒蛋白对酶的E1和E2构象平衡的影响。 TPA结果表明,降低蜂毒肽的正电荷会显着降低肽聚集酶的能力,这与修饰肽抑制酶活性的能力降低有关。荧光素异硫氰酸酯标记的Ca-ATPase的稳态荧光表明,蜂毒肽通过将酶的E1-E2构象平衡移向E2来降低Ca-ATPase对钙的亲和力,但增加钙会逐渐逆转这种变化。动力学实验表明,蜂毒肽不能阻止ATP依赖的酶磷酸化,但可以完全抑制Pi依赖的EP的形成,并在稳态循环中显着减慢Pi的释放。我们得出结论,蜂毒素诱导的Ca-ATPase的聚集取决于该肽与酶上胞质Ca(2+)依赖位点的静电相互作用,并且强制Ca-ATPase蛋白质-蛋白质相互作用抑制了构象转变,从而促进了磷酸酶水解。

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