Farcasanu I C, Mizunuma M, Hirata D, Miyakawa T
Department of Molecular BioTechnology, Graduate School of Engineering, Hiroshima University, Higashi-Hiroshima, Japan.
Mol Gen Genet. 1998 Sep;259(5):541-8. doi: 10.1007/s004380050846.
In a search for components involved in Mn2+ homeostasis in the budding yeast Saccharomyces cerevisiae, we isolated a mutant with modifications in Mn2+ transport. The mutation was found to be located in HIP1, a gene known to encode a high-affinity permease for histidine. The mutation, designated hip1-272, caused a frameshift that resulted in a stop codon at position 816 of the 1812-bp ORF. This mutation led to Mn2+ resistance, whereas the corresponding null mutation did not. Both hip1-272 cells and the null mutant exhibited low tolerance to divalent cations such as Co2+, Ni2+, Zn2+, and Cu2+. The Mn2+ phenotype was not influenced by supplementary histidine in either mutant, whereas the sensitivity to other divalent cations was alleviated by the addition of histidine. The cellular Mn2+ content of the hip1-272 mutant was lower than that of wild type or null mutant, due to increased rates of Mn2+ efflux. We propose that Hiplp is involved in Mn2+ transport, carrying out a function related to Mn2+ export.
在寻找参与出芽酵母酿酒酵母中锰离子稳态的成分时,我们分离出了一个锰离子转运发生改变的突变体。发现该突变位于HIP1基因,已知该基因编码一种组氨酸高亲和力通透酶。该突变被命名为hip1 - 272,导致移码突变,在1812 bp的开放阅读框的第816位产生一个终止密码子。此突变导致对锰离子产生抗性,而相应的缺失突变则没有这种抗性。hip1 - 272细胞和缺失突变体对二价阳离子如钴离子、镍离子、锌离子和铜离子均表现出低耐受性。在这两种突变体中,锰离子表型均不受补充组氨酸的影响,而添加组氨酸可减轻对其他二价阳离子的敏感性。由于锰离子外流速率增加,hip1 - 272突变体的细胞锰离子含量低于野生型或缺失突变体。我们提出Hiplp参与锰离子转运,执行与锰离子输出相关的功能。