Magdolen V, Klier H, Wöhl T, Klink F, Hirt H, Hauber J, Lottspeich F
Max-Planck-Institut für Biochemie, Martinsried, Germany.
Mol Gen Genet. 1994 Sep 28;244(6):646-52. doi: 10.1007/BF00282755.
The hypusine-containing protein (Hypp) is highly conserved in evolution, from man to archaebacteria, but is not found in eubacteria. Hypp is essential for the viability for yeast cells, where two forms are encoded by the genes HYP1 and HYP2. The hypusine-containing protein Hyp2p, encoded by the HYP2 gene in yeast, is present under both aerobic and anaerobic conditions, whereas Hyp1p synthesis is restricted to anaerobiosis. hyp1 disruption mutants grown under anaerobic conditions reveal no detectable alteration in phenotype relative to wild-type strains. We demonstrate that either Hyp1p or Hyp2p alone is sufficient for normal growth under both metabolic conditions. Moreover, Hypp from various eukaryotic species (slime mold, alfalfa and man) carries the lysine to hypusine modification when expressed in yeast and can substitute functionally for Hyp2p in strains disrupted for HYP2, indicating a highly conserved function of this protein. In contrast, the archaebacterial Hypp expressed in yeast is neither modified by hypusine, nor does it allow growth of cells deficient for yeast Hypp.
含hypusine蛋白(Hypp)在进化过程中高度保守,从人类到古细菌均有,但在真细菌中未发现。Hypp对酵母细胞的生存能力至关重要,酵母细胞中有两种形式由基因HYP1和HYP2编码。酵母中由HYP2基因编码的含hypusine蛋白Hyp2p,在有氧和无氧条件下均存在,而Hyp1p的合成仅限于无氧环境。在无氧条件下生长的hyp1缺失突变体与野生型菌株相比,未发现表型有可检测到的改变。我们证明,在两种代谢条件下,单独的Hyp1p或Hyp2p都足以支持正常生长。此外,来自各种真核生物(黏菌、苜蓿和人类)的Hypp在酵母中表达时会发生赖氨酸到hypusine的修饰,并且在HYP2缺失的菌株中可以在功能上替代Hyp2p,表明该蛋白具有高度保守的功能。相比之下,在酵母中表达的古细菌Hypp既不会被hypusine修饰,也不能使酵母Hypp缺陷的细胞生长。