Zenke F T, Kapp L, Breunig K D
Institut für Mikrobiologie, Heinrich-Heine-Universität Düsseldorf, Germany.
Biol Chem. 1999 Apr;380(4):419-30. doi: 10.1515/BC.1999.056.
The yeast Gal80 protein inhibits the transcription activation function of Gal4p by physically interacting with the activation domain (Gal4-AD). Gal80p interaction with Gal1p or Gal3p is required to relieve Gal4p inhibition in response to galactose. Gal80p orthologs of Saccharomyces cerevisiae and Kluyveromyces lactis, ScGal80p and KIGal80p, can also inhibit the heterologous Gal4p variants; however, heterologous Gal3p/Gal1p only regulate ScGal80p but not KIGal80p. To compare KIGal80p and ScGal80p, point mutations known to affect ScGal80p function were introduced at corresponding positions in KIGal80p, and Gal4p regulation in vivo and KIGal80p-binding to Gst-Gal1p and Gst-Gal4-AD in vitro were analysed. The in vitro binding properties of the KIGal80p mutants were similar to those of ScGal80p, but two out of four mutants differed in Gal4p regulation. E. g. KIGAL80s-0(G302R) but not ScGAL80s-0 (G301R) alleviates Gal4p inhibition. Possibly, this difference is related to a role of phosphorylation in the regulation of Gal80p function in K. lactis. Wild-type and mutant forms of KIGal80p are shown to be subject to carbon source regulated phosphorylation whereas no evidence for ScGal80p phosphorylation exists. (Hyper-)phosphorylation of KIGal80p is strongly reduced in galactose-containing medium. This reduction requires KIGal1p but no interaction with KIGal4p. The inhibition deficient KIGal80s-0p (G302R) variant is under-phosphorylated. We thus propose that phosphorylation of Gal80p in Kluyveromyces lactis contributes to the regulation of Gal4p mediated transcription.
酵母Gal80蛋白通过与激活域(Gal4-AD)物理相互作用来抑制Gal4p的转录激活功能。Gal80p与Gal1p或Gal3p的相互作用是解除Gal4p在半乳糖应答中的抑制作用所必需的。酿酒酵母和乳酸克鲁维酵母的Gal80p直系同源物,即ScGal80p和KIGal80p,也能抑制异源Gal4p变体;然而,异源Gal3p/Gal1p仅调节ScGal80p,而不调节KIGal80p。为了比较KIGal80p和ScGal80p,将已知影响ScGal80p功能的点突变引入KIGal80p的相应位置,并分析了体内Gal4p的调控以及体外KIGal80p与Gst-Gal1p和Gst-Gal4-AD的结合。KIGal80p突变体的体外结合特性与ScGal80p相似,但四个突变体中有两个在Gal4p调控方面存在差异。例如,KIGAL80s-0(G302R)而非ScGAL80s-0 (G301R)可缓解Gal4p的抑制作用。这种差异可能与磷酸化在乳酸克鲁维酵母Gal80p功能调控中的作用有关。已证明KIGal80p的野生型和突变形式受碳源调节的磷酸化作用,而没有证据表明ScGal80p存在磷酸化。在含半乳糖的培养基中,KIGal80p的(过度)磷酸化作用显著降低。这种降低需要KIGal1p,但不需要与KIGal4p相互作用。抑制缺陷型KIGal80s-0p (G302R)变体磷酸化不足。因此,我们提出乳酸克鲁维酵母中Gal80p的磷酸化作用有助于Gal4p介导的转录调控。