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磷脂在钠钾离子依赖的三磷酸腺苷酶反应中间步骤中的作用。

Role of phospholipid in the intermediate steps of the sodium-plus-potassium ion-dependent adenosine triphosphatase reaction.

作者信息

Wheeler K P

出版信息

Biochem J. 1975 Mar;146(3):729-38. doi: 10.1042/bj1460729.

Abstract

The phosphorylation and dephosphorylation steps of the (Na-++K-+)-dependent ATPase (adenosine triphosphatase) (EC 3.6.1.3) reaction have been compared in 'normal', lipid-depleted and 'restored' membrane ATPase preparations. Partial lipid depletion was achieved by a single extraction with Lubrol W, and 'restoration' by adding pure phosphatidylserine. Gamma-32-P-labelled ATP was used for phosphorylation. The main findings were as follows. (1) Partial lipid depletion decreased but did not prevent Na-+-dependent phosphorylation, although it virtually abolished both Na-+-dependent and (Na-++K-+)-dependent ATPase activities. (2) 'Restoration' with phosphatidylserine produced an increment in phosphorylation that was the same in the presence and absence of added Na-+. (3) K-+ decreased the extent of Na-+-dependent phosphorylation of the depleted enzyme without producing a corresponding release of Pi. (4) K-+ rapidly decreased the extent of phosphorylation of the 'restored' enzyme to near-background value, with a concomitant release of Pi. (5) Na-+-dependent ATP hydrolysis was not restored. (6) The turnover of the 'restored' enzyme seemed to be higher than that of the 'normal' enzyme. The reaction sequence is discussed in relation to these results and the fact that the depleted enzyme retained about 50% of K-+-dependent phosphatase activity.

摘要

已在“正常”、脂质耗尽和“恢复”的膜ATP酶制剂中比较了(Na⁺+K⁺)依赖性ATP酶(腺苷三磷酸酶)(EC 3.6.1.3)反应的磷酸化和去磷酸化步骤。通过用Lubrol W单次提取实现部分脂质耗尽,通过添加纯磷脂酰丝氨酸实现“恢复”。使用γ-³²P标记的ATP进行磷酸化。主要发现如下:(1)部分脂质耗尽降低但未阻止Na⁺依赖性磷酸化,尽管它实际上消除了Na⁺依赖性和(Na⁺+K⁺)依赖性ATP酶活性。(2)用磷脂酰丝氨酸“恢复”使磷酸化增加,在添加或未添加Na⁺的情况下增加量相同。(3)K⁺降低了耗尽酶的Na⁺依赖性磷酸化程度,而没有产生相应的Pi释放。(4)K⁺迅速将“恢复”酶的磷酸化程度降低至接近背景值,同时伴有Pi释放。(5)Na⁺依赖性ATP水解未恢复。(6)“恢复”酶的周转率似乎高于“正常”酶。结合这些结果以及耗尽酶保留约50%的K⁺依赖性磷酸酶活性这一事实讨论了反应序列。

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Reactivation of a phospholipid-depleted sodium, potassium-stimulated ATPase.
Biochim Biophys Acta. 1972 Nov 2;288(2):413-22. doi: 10.1016/0005-2736(72)90262-3.

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