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The effect of chemical agents on the turnover of the bound phosphate associated with the sodium-and-potassium ion-stimulated adenosine triphosphatase in ox brain microsomes

机译:化学试剂对牛脑微粒体中与钠钾离子刺激的腺苷三磷酸酶相关的结合磷酸盐转换的影响

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p1. The effect of chemical agents on the turnover of the Nasup+/sup-dependent bound phosphate and the simultaneous Nasup+/sup-dependent hydrolysis of ATP by a membrane preparation from ox brain was studied at an ATP/protein ratio of 12.5pmol/μg. 2. The agents were added immediately after phosphorylation of the preparation in a medium containing 50mm-sodium chloride and 2.5μm-[γ-sup32/supP]ATP. 3. Concentrations of sodium chloride above 150mm, calcium chloride to 20mm and suramin to 1.4mm inhibited both phosphorylation and dephosphorylation and concomitantly slowed ATP hydrolysis. At 125mm-sodium chloride dephosphorylation and hydrolysis were slightly slowed without affecting phosphorylation. 4. Ethanol to 1.6m concentration inhibited dephosphorylation without affecting phosphorylation; the bound phosphate was increased and ATP hydrolysis slowed. 5. Ouabain to 4mm concentration partially inhibited ATP hydrolysis and caused a transient (1–2s) rise in bound phosphate followed by a rapid fall to a lower plateau value, which eventually declined to zero by the time ATP hydrolysis was complete. 6. Of the detergents examined Lubrol W, Triton X-100 and sodium deoxycholate had no significant effect on turnover. Sodium dodecyl sulphate and sodium decyl sulphate to 3.5mm and 20mm respectively completely inhibited turnover and ATP hydrolysis and stabilized the bound phosphate./p
机译:> 1。研究了化学试剂对牛脑膜制备的Na + 依赖性结合磷酸盐的周转和同时由Na + 依赖性ATP水解的影响。 ATP /蛋白质比为12.5pmol /μg。 2.将制剂磷酸化后,将试剂立即加入含有50mm氯化钠和2.5μm-[γ- 32 P] ATP的培养基中。 3.浓度超过150mm的氯化钠,浓度为20mm的氯化钙和浓度为1.4mm的苏拉明均抑制磷酸化和去磷酸化,并同时减缓ATP水解。在125mm处,氯化钠的去磷酸化和水解略微减慢,而不会影响磷酸化。 4.乙醇至1.6m浓度可抑制去磷酸化而不影响磷酸化;结合的磷酸盐增加,ATP水解减慢。 5.哇巴因浓度达到4mm时,部分抑制了ATP水解,并引起结合磷酸盐的短暂(1-2s)上升,随后迅速下降至较低的平稳值,最终在ATP水解完成时降至零。 6.在所研究的洗涤剂中,Lubrol W,Triton X-100和脱氧胆酸钠对营业额没有显着影响。十二烷基硫酸钠和十二烷基硫酸钠分别达到3.5mm和20mm,可以完全抑制周转和ATP水解,并稳定结合的磷酸盐。

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