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胰蛋白酶消化揭示的膜结合型(Na⁺ - K⁺)-ATP酶的构象变化

Conformational changes of membrane-bound (Na+--K+)-ATPase as revealed by trypsin digestion.

作者信息

Koepsell H

出版信息

J Membr Biol. 1979 Jun 29;48(1):69-94. doi: 10.1007/BF01869257.

Abstract

To distinguish ligand-induced structural states of the (Na+--K+)-ATPase, the purified membrane-bound enzyme isolated from rat kidneys was digested with trypsin in the presence of various combinations of Na+, K+, Mg++ and ATP. It was found that first the large and then the small polypeptide chain of the (Na+--K+)-ATPase was degraded, indicating that the lysine and arginine residues of the large chain are more exposed than are those of the small one. The (Na+--K+)-ATPase activity was inactivated in parallel with the degradation of the large polypeptide chain. After the degradation of the large polypeptide chain, about 75% of the (Na+--K+)-ATPase protein remained bound to the membrane, demonstrating that the split protein segments were only partially released. It was found that the combinations of ATP, Mg++, Na+ and K+ present during trypsin digestion influenced the time course and degree of degradation of the (Na+--K+)-ATPase protein. The degradations of the large and the small polypeptide chain were affected in parallel. Thus, certain ATP and ligand combinations influenced neither the degradation of the large nor the degradation of the small polypeptide chain, whereas by other combinations of ATP and ligands the degree of susceptibility of both polypeptide chains to trypsin was equally increased or reduced. In the absence of ATP the time course of trypsin digestion of the (Na+--K+)-ATPase was the same, whether Na+ or K+ was present. With low ATP concentrations (e.g., 0.1 mM), however, binding of Na+ or K+ led to different degradation patterns of the enzyme. If a high concentration of ATP (e.g. 10 mM) was present, Na+ and K+ also influenced the degradation pattern of the (Na+--K+)-ATPase, but differentially compared to that at low ATP concentrations, since the effects of Na+ and K+ were reversed. Furthermore, it was found that the degradation of the small chain was only influenced by certain combinations of ATP, Mg++, Na+ and K+ if the large chain was intact when the ligands were added to the enzyme. The described results demonstrate structural alterations of the (Na+--K+)-ATPase complex which are supposed to include a synchronous protrusion or retraction of both (Na+--K+)-ATPase subunits. The data further suggest that ATP and other ligands primarily alter the structure of the large (Na+--K+)-ATPase subunit. This structural alteration is presumed to lead to a synchronous movement of the small subunit of the enzyme. The structural state of the (Na+--K+)-ATPase is regulated by binding of Na+ or K+ to the enzyme-ATP complex. The effects of Na+ and K+ on the (Na+--K+)-ATPase structure are modulated by the ATP binding to "high affinity" and to "low affinity" ATP binding sites.

摘要

为了区分(Na⁺ - K⁺)-ATP酶的配体诱导结构状态,从大鼠肾脏分离得到的纯化膜结合酶在存在Na⁺、K⁺、Mg²⁺和ATP的各种组合的情况下用胰蛋白酶进行消化。结果发现,(Na⁺ - K⁺)-ATP酶的大多肽链先被降解,然后小多肽链被降解,这表明大链中的赖氨酸和精氨酸残基比小链中的更易暴露。(Na⁺ - K⁺)-ATP酶活性与大多肽链的降解同时失活。大多肽链降解后,约75%的(Na⁺ - K⁺)-ATP酶蛋白仍与膜结合,表明裂解的蛋白片段仅部分释放。研究发现,胰蛋白酶消化过程中存在的ATP、Mg²⁺、Na⁺和K⁺的组合影响(Na⁺ - K⁺)-ATP酶蛋白的降解时间进程和程度。大、小多肽链的降解受到平行影响。因此,某些ATP和配体组合既不影响大多肽链的降解,也不影响小多肽链的降解,而通过ATP和配体的其他组合,两条多肽链对胰蛋白酶的敏感程度同等增加或降低。在没有ATP的情况下,无论存在Na⁺还是K⁺,(Na⁺ - K⁺)-ATP酶的胰蛋白酶消化时间进程是相同的。然而,在低ATP浓度(例如0.1 mM)下,Na⁺或K⁺的结合导致酶的不同降解模式。如果存在高浓度的ATP(例如10 mM),Na⁺和K⁺也会影响(Na⁺ - K⁺)-ATP酶的降解模式,但与低ATP浓度下的情况不同,因为Na⁺和K⁺的作用发生了逆转。此外,研究发现,只有当在向酶中添加配体时大链完整时,小链的降解才会受到ATP、Mg²⁺、Na⁺和K⁺的某些组合的影响。上述结果表明(Na⁺ - K⁺)-ATP酶复合物的结构改变,推测这包括两个(Na⁺ - K⁺)-ATP酶亚基的同步突出或缩回。数据进一步表明,ATP和其他配体主要改变大的(Na⁺ - K⁺)-ATP酶亚基的结构。这种结构改变被认为会导致酶的小亚基同步移动。(Na⁺ - K⁺)-ATP酶的结构状态由Na⁺或K⁺与酶 - ATP复合物的结合来调节。Na⁺和K⁺对(Na⁺ - K⁺)-ATP酶结构的影响通过ATP与“高亲和力”和“低亲和力”ATP结合位点的结合来调节。

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