Kimura Y, Kurzydlowski K, Tada M, MacLennan D H
Banting and Best Department of Medical Research, University of Toronto, Charles H. Best Institute, Toronto, Ontario M5G1L6, Canada.
J Biol Chem. 1997 Jun 13;272(24):15061-4. doi: 10.1074/jbc.272.24.15061.
Phospholamban (PLN), a homopentameric, integral membrane protein, reversibly inhibits cardiac sarcoplasmic reticulum Ca2+-ATPase (SERCA2a) activity through intramembrane interactions. Here, alanine-scanning mutagenesis of the PLN transmembrane sequence was used to identify two functional domains on opposite faces of the transmembrane helix. Mutations in one face diminish inhibitory interactions with transmembrane sequences of SERCA2a, but have relatively little effect on the pentameric state, while mutations in the other face activate inhibitory interactions and enhance monomer formation. Double mutants are monomeric, but loss of inhibitory function is dominant over activation of inhibitory function. These observations support the proposal that the SERCA2a interaction site lies on the helical face which is not involved in pentamer formation. Four highly inhibitory mutants are effectively devoid of pentamer, suggesting that pentameric PLN represents a less active or inactive reservoir that dissociates to provide inhibitory monomeric PLN subunits. A model is presented in which the degree of PLN inhibition of SERCA2a activity is ultimately determined by the concentration of the inhibited PLN monomer.SERCA2a heterodimeric complex. The concentration of this inhibited complex is determined by the dissociation constant for the PLN pentamer (which is mutation-sensitive) and by the dissociation constant for the PLN/SERCA2a heterodimer (which is likely to be mutation-sensitive).
受磷蛋白(PLN)是一种同五聚体整合膜蛋白,通过膜内相互作用可逆地抑制心肌肌浆网Ca2 + -ATP酶(SERCA2a)的活性。在此,利用PLN跨膜序列的丙氨酸扫描诱变来鉴定跨膜螺旋相对面上的两个功能域。其中一个面上的突变减少了与SERCA2a跨膜序列的抑制性相互作用,但对五聚体状态影响相对较小,而另一个面上的突变则激活了抑制性相互作用并增强了单体形成。双突变体是单体,但抑制功能的丧失比抑制功能的激活占主导。这些观察结果支持了SERCA2a相互作用位点位于不参与五聚体形成的螺旋面上这一观点。四个高度抑制性突变体实际上没有五聚体,这表明五聚体PLN代表了一个活性较低或无活性的储存库,其解离以提供抑制性单体PLN亚基。提出了一个模型,其中PLN对SERCA2a活性的抑制程度最终由被抑制的PLN单体的浓度决定。SERCA2a异二聚体复合物。这种被抑制复合物的浓度由PLN五聚体的解离常数(对突变敏感)和PLN / SERCA2a异二聚体的解离常数(可能对突变敏感)决定。