Kurbatova E M, Dutova T A, Serkova N N, Rabinovich Ia M, Trotsenko Iu A
Genetika. 2004 May;40(5):592-8.
After exposure of cells of the methylotrophic yeast Hansenula polymorpha HF246 leu1-1 to N-nitro-N-nitrosoguanidine, a collection of 227 mutants unable to grow on methanol at elevated temperature (45 degrees C) was obtained. Ninety four ts mutants (35% of the total number of mutants), which were unable to grow on methanol only at 45 degrees C but could grow at optimal temperature (37 degrees C), were isolated. Complementation analysis of mutants using 12 deletion mutants for genes of peroxisome biogenesis (PEX) (available in this yeast species by the beginning of our work) allowed to assign 51 mutants (including 16 ts) to the separate group of mutants unable to complement deletion mutants with defects in eight PEX genes. These mutants were classified into three groups: group 1 contained 10 pex10 mutants (4 ts mutants among them); group 2 included 19 mutants that failed to complement other pex testers: 1 pex1; 2 pex4 (1 ts); 6 pex5 (5 ts); 3 pex8; 6 (3ts)- pex19; group 3 contained 22 "multiple" mutants. In mutants of group 3, hybrids with several testers do not grow on methanol. All mutants (51) carried recessive mutations, except for mutant 108, in which the mutation was dominant only at 30 degrees C, which suggests that it is ts-dominant. Recombination analysis of mutants belonging to group 2 revealed that only five mutants (two pex5 and three pex8) carried mutations for the corresponding PEX genes. The remaining 14 mutants yielded methanol-utilizing segregants in an arbitrarily chosen sample of hybrids with the pex tester, which indicates mutation location in other genes. In 19 mutants, random analysis of ascospores from hybrids obtained upon crossing mutants of group 3 with a strain lacking peroxisomal disorders (ade11) revealed a single mutation causing the appearance of a multiple phenotype. A more detailed study of two mutants from this group allowed the localization of this mutation in the only PEX gene (PEX or PEX2). The revealed disorder of complementation interactions between nonallelic genes is under debate.
将多形汉逊酵母HF246 leu1-1的细胞暴露于N-硝基-N-亚硝基胍后,获得了一组227个在高温(45℃)下无法在甲醇上生长的突变体。分离出94个温度敏感(ts)突变体(占突变体总数的35%),它们仅在45℃时无法在甲醇上生长,但在最适温度(37℃)下能够生长。利用12个过氧化物酶体生物发生(PEX)基因的缺失突变体(在我们开展工作之初,该酵母物种中已有这些突变体)对突变体进行互补分析,结果发现51个突变体(包括16个ts突变体)属于无法互补8个PEX基因存在缺陷的缺失突变体的另一组突变体。这些突变体分为三组:第1组包含10个pex10突变体(其中4个ts突变体);第2组包括19个无法互补其他pex测试菌株的突变体:1个pex1;2个pex4(1个ts);6个pex5(5个ts);3个pex8;6个(3个ts)-pex19;第3组包含22个“多重”突变体。在第3组突变体中,与多个测试菌株的杂交体在甲醇上无法生长。除了突变体108外,所有51个突变体都携带隐性突变,在突变体108中,该突变仅在30℃时为显性,这表明它是ts显性的。对属于第2组的突变体进行重组分析发现,只有5个突变体(2个pex5和3个pex8)携带了相应PEX基因的突变。其余14个突变体在与pex测试菌株杂交的任意样本中产生了利用甲醇的分离子,这表明突变位于其他基因中。在19个突变体中,对第3组突变体与缺乏过氧化物酶体缺陷(ade11)的菌株杂交获得的杂交体的子囊孢子进行随机分析,发现一个单一突变导致了多重表型的出现。对该组中的两个突变体进行更详细的研究,使得该突变定位在唯一的PEX基因(PEX或PEX2)中。非等位基因之间互补相互作用的这种紊乱仍在讨论之中。