Harashima S, Hannig E M, Hinnebusch A G
Laboratory of Molecular Genetics, National Institute of Child Health and Human Development, Bethesda, Maryland 20892.
Genetics. 1987 Nov;117(3):409-19. doi: 10.1093/genetics/117.3.409.
The GCN4 gene encodes a transcriptional activator in yeast whose expression is regulated at the translational level in response to amino acid availability. gcn3 mutations block derepression of GCN4 expression in starvation conditions. gcd1 and gcd12 mutations restore derepression of GCN4 expression in gcn3 deletion mutants, suggesting that GCN3 positively regulates GCN4 indirectly by antagonism of these GCD functions. gcd1 and gcd12 mutations also lead to temperature-sensitive arrest in the G1 phase of the cell cycle in gcn3 deletion mutants. The GCN3 allele completely suppresses both derepression of GCN4 expression and the temperature-sensitive growth conferred by gcd 12 mutations and partially suppresses these phenotypes in gcd1 mutants. This suggests that the GCN3 product can promote or provide GCD function in nonstarvation conditions even though it opposes GCD function when cells are starved for amino acids. The gcn3-102 allele is completely defective for positive regulation of GCN4 expression; however, it mimics GCN3 in suppressing gcd1 and gcd12 mutations and thus retains the ability to restore GCD function in nonstarvation conditions. These data suggest that GCN3, GCD1 and GCD12 have closely related functions required for regulation of GCN4 expression and entry into the cell cycle. We suggest that GCN3 antagonizes the regulatory functions of GCD1 and GCD12 in starvation conditions either by competing with these factors for the same sites of action or by modifying their structures by physical interaction.
GCN4基因在酵母中编码一种转录激活因子,其表达在翻译水平上受氨基酸可用性的调节。gcn3突变可阻止在饥饿条件下GCN4表达的去阻遏。gcd1和gcd12突变可恢复gcn3缺失突变体中GCN4表达的去阻遏,这表明GCN3通过拮抗这些GCD功能间接正向调节GCN4。gcd1和gcd12突变还导致gcn3缺失突变体在细胞周期的G1期出现温度敏感型停滞。GCN3等位基因完全抑制GCN4表达的去阻遏以及由gcd 12突变赋予的温度敏感型生长,并部分抑制gcd1突变体中的这些表型。这表明GCN3产物在非饥饿条件下可以促进或提供GCD功能,尽管在细胞缺乏氨基酸时它与GCD功能相反。gcn3 - 102等位基因在GCN4表达的正向调节方面完全有缺陷;然而,它在抑制gcd1和gcd12突变方面模仿GCN3,因此在非饥饿条件下保留恢复GCD功能的能力。这些数据表明GCN3、GCD1和GCD12具有调节GCN4表达和进入细胞周期所需的密切相关功能。我们认为,在饥饿条件下,GCN3通过与这些因子竞争相同的作用位点或通过物理相互作用修饰它们的结构来拮抗GCD1和GCD12的调节功能。