Hasler U, Crambert G, Horisberger J D, Geering K
Institut de Pharmacologie et Toxicologie de l'Université, rue du Bugnon 27, CH 1005-Lausanne, Switzerland.
J Biol Chem. 2001 May 11;276(19):16356-64. doi: 10.1074/jbc.M008778200. Epub 2001 Feb 13.
In oligomeric P2-ATPases such as Na,K- and H,K-ATPases, beta subunits play a fundamental role in the structural and functional maturation of the catalytic alpha subunit. In the present study we performed a tryptophan scanning analysis on the transmembrane alpha-helix of the Na,K-ATPase beta1 subunit to investigate its role in the stabilization of the alpha subunit, the endoplasmic reticulum exit of alpha-beta complexes, and the acquisition of functional properties of the Na,K-ATPase. Single or multiple tryptophan substitutions in the beta subunits transmembrane domain had no significant effect on the structural maturation of alpha subunits expressed in Xenopus oocytes nor on the level of expression of functional Na,K pumps at the cell surface. Furthermore, tryptophan substitutions in regions of the transmembrane alpha-helix containing two GXXXG transmembrane helix interaction motifs or a cysteine residue, which can be cross-linked to transmembrane helix M8 of the alpha subunit, had no effect on the apparent K(+) affinity of Na,K-ATPase. On the other hand, substitutions by tryptophan, serine, alanine, or cysteine, but not by phenylalanine of two highly conserved tyrosine residues, Tyr(40) and Tyr(44), on another face of the transmembrane helix, perturb the transport kinetics of Na,K pumps in an additive way. These results indicate that at least two faces of the beta subunits transmembrane helix contribute to inter- or intrasubunit interactions and that two tyrosine residues aligned in the beta subunits transmembrane alpha-helix are determinants of intrinsic transport characteristics of Na,K-ATPase.
在寡聚体P2 - ATP酶(如钠钾ATP酶和氢钾ATP酶)中,β亚基在催化α亚基的结构和功能成熟过程中发挥着重要作用。在本研究中,我们对钠钾ATP酶β1亚基的跨膜α螺旋进行了色氨酸扫描分析,以研究其在α亚基稳定、α - β复合物的内质网输出以及钠钾ATP酶功能特性获得中的作用。β亚基跨膜结构域中的单个或多个色氨酸取代对非洲爪蟾卵母细胞中表达的α亚基的结构成熟以及细胞表面功能性钠钾泵的表达水平均无显著影响。此外,在跨膜α螺旋中含有两个GXXXG跨膜螺旋相互作用基序或一个半胱氨酸残基(可与α亚基的跨膜螺旋M8交联)的区域进行色氨酸取代,对钠钾ATP酶的表观钾离子亲和力没有影响。另一方面,在跨膜螺旋的另一面上,两个高度保守的酪氨酸残基Tyr(40)和Tyr(44)被色氨酸、丝氨酸、丙氨酸或半胱氨酸取代(但不是苯丙氨酸),会以累加的方式扰乱钠钾泵的转运动力学。这些结果表明,β亚基跨膜螺旋的至少两个面有助于亚基间或亚基内的相互作用,并且在β亚基跨膜α螺旋中排列的两个酪氨酸残基是钠钾ATP酶内在转运特性的决定因素。