Amler E, Abbott A, Malak H, Lakowicz J, Ball W J
Department of Pharmacology and Cell Biophysics, University of Cincinnati, College of Medicine, Ohio 45267-0575, USA.
Biophys J. 1996 Jan;70(1):182-93. doi: 10.1016/S0006-3495(96)79562-0.
The beta-subunit associated with the catalytic (alpha) subunit of the mammalian Na+, K(+) -ATPase is a transmembrane glycoprotein with three extracellularly located N-glycosylation sites. Although beta appears to be essential for a functional enzyme, the role of beta and its sugars remains unknown. In these studies, steady-state and dynamic fluorescence measurements of the fluorophore lucifer yellow (LY) covalently linked to the carbohydrate chains of beta have demonstrated that the bound probes are highly solvent exposed but restricted in their diffusional motions. Furthermore, the probes' environments on beta were not altered by Na+ or K+ or ouabain-induced enzyme conformational changes, but both divalent cation and oligomycin addition evoked modest changes in LY fluorescence. Frequency domain measurements reflecting the Förster fluorescence energy transfer (FET) occurring between anthroylouabain (AO) bound to the cardiac glycoside receptor site on alpha and the carbohydrate-linked LY demonstrated their close proximity (18 A). Additional FET determinations made between LY as donor and erythrosin-5-isothiocyanate, covalently bound at the enzyme's putative ATP binding site domain, indicated that a distance of about 85 A separates these two regions and that this distance is reduced upon divalent cation binding and increased upon the Na+E1-->K+E2 conformational transition. These data suggest a model for the localization of the terminal moieties of the oligosaccharides that places them, on average, about 18 A from the AO binding site and this distance or less from the extracellular membrane surface.
与哺乳动物钠钾ATP酶催化(α)亚基相关的β亚基是一种跨膜糖蛋白,具有三个位于细胞外的N - 糖基化位点。尽管β亚基对于功能性酶似乎至关重要,但其作用及其糖基的作用仍不清楚。在这些研究中,对与β亚基碳水化合物链共价连接的荧光团荧光素黄(LY)进行的稳态和动态荧光测量表明,结合的探针高度暴露于溶剂中,但其扩散运动受到限制。此外,β亚基上探针的环境不会因钠、钾或哇巴因诱导的酶构象变化而改变,但添加二价阳离子和寡霉素会引起LY荧光的适度变化。反映结合在α亚基上强心苷受体位点的蒽基哇巴因(AO)与碳水化合物连接的LY之间发生的Förster荧光能量转移(FET)的频域测量表明它们距离很近(18埃)。在作为供体的LY与共价结合在酶假定的ATP结合位点结构域的异硫氰酸-5-赤藓红之间进行的额外FET测定表明,这两个区域相距约85埃,并且该距离在二价阳离子结合时减小,在钠E1→钾E2构象转变时增加。这些数据提出了一个寡糖末端部分定位的模型,该模型表明它们平均距离AO结合位点约18埃,并且距离细胞外膜表面为该距离或更小。