Pedemonte C H, Kaplan J H
Department of Physiology, University of Pennsylvania School of Medicine, Philadelphia 19104-6085.
Biochemistry. 1988 Oct 4;27(20):7966-73. doi: 10.1021/bi00420a056.
Treatment of purified renal Na,K-ATPase with dihydro-4,4'-diisothiocyanatostilbene-2,2'-disulfonate (H2DIDS) produces both reversible and irreversible inhibition of the enzyme activity. The reversible inhibition is unaffected by the presence of saturating concentrations of the sodium pump ligands Na+,K+, Mg2+, and ATP, while the inactivation is prevented by either ATP or K+. The kinetics of protection against inactivation indicate that K+ binds to two sites on the enzyme with very different affinities. Na+ ions with high affinity facilitate the inactivation by H2DIDS and prevent the protective effect of K+ ions. The H2DIDS-inactivated enzyme no longer exhibits a high-affinity nucleotide binding site, and the covalent binding of fluorescein isothiocyanate is also greatly reduced, but phosphorylation by Pi is unaffected. The kinetics of inactivation by H2DIDS were first order with respect to time and H2DIDS concentration. The enzyme is completely inactivated by the covalent binding of one H2DIDS molecule at pH 9 per enzyme phosphorylation site, or two H2DIDS molecules at pH 7.2. H2DIDS binds exclusively to the alpha-subunit of the Na,K-ATPase, locking the enzyme in an E2-like conformation. The profile of radioactivity, following trypsinolysis and SDS-PAGE, showed H2DIDS attachment to a 52-kDa fragment which also contains the ATP binding site. These results suggest that H2DIDS treatment modifies a specific conformationally sensitive amino acid residue on the alpha-subunit of the Na,K-ATPase, resulting in the loss of nucleotide binding and enzymatic activity.
用二氢 - 4,4'-二异硫氰酸根合芪 - 2,2'-二磺酸(H2DIDS)处理纯化的肾钠钾ATP酶会对该酶活性产生可逆和不可逆的抑制作用。可逆抑制不受钠泵配体Na⁺、K⁺、Mg²⁺和ATP饱和浓度存在的影响,而失活则可被ATP或K⁺阻止。防止失活的动力学表明,K⁺以非常不同的亲和力与酶上的两个位点结合。具有高亲和力的Na⁺离子促进H2DIDS引起的失活,并阻止K⁺离子的保护作用。H2DIDS失活的酶不再表现出高亲和力的核苷酸结合位点,异硫氰酸荧光素的共价结合也大大减少,但Pi的磷酸化不受影响。H2DIDS失活的动力学在时间和H2DIDS浓度方面是一级的。在pH 9时,每个酶磷酸化位点通过一个H2DIDS分子的共价结合,或在pH 7.2时通过两个H2DIDS分子的共价结合可使酶完全失活。H2DIDS仅与钠钾ATP酶的α亚基结合,将酶锁定在类似E2的构象中。胰蛋白酶消化和SDS - PAGE后的放射性分布显示H2DIDS附着在一个52 kDa的片段上,该片段也包含ATP结合位点。这些结果表明,H2DIDS处理修饰了钠钾ATP酶α亚基上一个特定的构象敏感氨基酸残基,导致核苷酸结合和酶活性丧失。