Moebius F F, Bermoser K, Reiter R J, Hanner M, Glossmann H
Institut für Biochemische Pharmakologie, Universität Innsbruck, Austria.
Biochemistry. 1996 Dec 24;35(51):16871-8. doi: 10.1021/bi961996m.
The yeast gene ERG2 encodes a sterol C8-C7 isomerase and is essential for ergosterol synthesis and cell proliferation. Its striking homology with the so-called sigma1 receptor of guinea pig brain, a polyvalent steroid and drug binding protein, suggested that the yeast sterol C8-C7 isomerase (ERG2) carries a similar high affinity drug binding domain. Indeed the sigma ligands [3H]haloperidol (Kd = 0.3 nM) and [3H]ifenprodil (Kd = 1.4 nM) bound to a single population of sites in ERG2 wild type yeast microsomes (Bmax values of 77 and 61 pmol/mg of protein, respectively), whereas binding activity was absent in strains carrying ERG2 gene mutations or disruptions. [3H]Ifenprodil binding was inhibited by sterol isomerase inhibitors such as fenpropimorph (Ki = 0.05 nM), tridemorph (Ki = 0.09 nM), MDL28,815 (Ki = 0.44 nM), triparanol (Ki = 1.5 nM), and AY-9944 (Ki = 5.8 nM). [3H]Haloperidol specifically photoaffinity-labeled a protein with an apparent molecular weight of 27400, in agreement with the molecular mass of the sterol C8-C7 isomerase (24900 Da). 9E10 c-myc antibodies specifically immunoprecipitated the c-myc tagged protein after [3H]haloperidol photolabeling, unequivocally proving that the drug binding site is localized on the ERG2 gene product. Haloperidol, trifluperidol, and ifenprodil inhibited the growth of Saccharomyces cerevisiae and reduced the ergosterol content of cells grown in their presence. Our results demonstrate that the yeast sterol C8-C7 isomerase has a polyvalent high-affinity drug binding site similar to mammalian sigma receptors and that in yeast sigma ligands inhibit sterol biosynthesis.
酵母基因ERG2编码一种甾醇C8 - C7异构酶,对麦角甾醇合成和细胞增殖至关重要。它与豚鼠脑内所谓的sigma1受体(一种多价类固醇和药物结合蛋白)具有显著的同源性,这表明酵母甾醇C8 - C7异构酶(ERG2)带有类似的高亲和力药物结合结构域。实际上,sigma配体[3H]氟哌啶醇(Kd = 0.3 nM)和[3H]艾芬地尔(Kd = 1.4 nM)与ERG2野生型酵母微粒体中的单一类位点结合(Bmax值分别为77和61 pmol/mg蛋白质),而在携带ERG2基因突变或缺失的菌株中则不存在结合活性。[3H]艾芬地尔的结合受到甾醇异构酶抑制剂如粉锈宁(Ki = 0.05 nM)、十三吗啉(Ki = 0.09 nM)、MDL28,815(Ki = 0.44 nM)、曲帕拉醇(Ki = 1.5 nM)和AY - 9944(Ki = 5.8 nM)的抑制。[3H]氟哌啶醇特异性地用光亲和标记了一种表观分子量为27400的蛋白质,这与甾醇C8 - C7异构酶的分子量(24900 Da)相符。在[3H]氟哌啶醇光标记后,9E10 c - myc抗体特异性地免疫沉淀了c - myc标记的蛋白质,明确证明药物结合位点位于ERG2基因产物上。氟哌啶醇、三氟哌多和艾芬地尔抑制酿酒酵母的生长,并降低在其存在下生长的细胞的麦角甾醇含量。我们的结果表明,酵母甾醇C8 - C7异构酶具有类似于哺乳动物sigma受体的多价高亲和力药物结合位点,并且在酵母中sigma配体抑制甾醇生物合成。