Sanchez Raylene J, Srinivasan Chandra, Munroe William H, Wallace Matthew Alan, Martins Jacob, Kao Tina Y, Le Kate, Gralla Edith Butler, Valentine Joan Selverstone
Department of Chemistry and Biochemistry, UCLA, 607 Charles E. Young Drive, East, Los Angeles, CA 90095-1569, USA.
J Biol Inorg Chem. 2005 Dec;10(8):913-23. doi: 10.1007/s00775-005-0044-y. Epub 2005 Nov 8.
Yeasts lacking copper-zinc superoxide dismutase (sod1Delta) exhibit a broad range of phenotypes, many of which can be rescued by growth in the presence of high levels of ionic manganese. We undertook a comprehensive survey of the effects of manganese on wild-type and sod1Delta yeasts and found that 5 mM Mn2+ rescued all known growth-related phenotypes, such as slow growth in air, temperature sensitivity, specific amino acid auxotrophies, no growth in high oxygen, poor growth in nonfermentable carbon sources, and decreased stationary-phase survival. Iron-related phenotypes-elevated electron paramagnetic resonance detectable ("free") iron, decreased aconitase activity, and fragmenting vacuoles-as well as zinc sensitivity were also rescued. The activity of manganese superoxide dismutase remained constant or was reduced when the yeasts were grown in the presence of MnCl2, indicating that induction of this alternative superoxide dismutase is not the explanation. In contrast to MnCl2 treatment, addition of two manganese-containing superoxide dismutase mimetic compounds to the growth medium did not provide any rescue of sod1Delta yeast growth but rather had an sod1Delta-selective inhibitory effect at micromolar concentrations. Mechanisms by which ionic manganese can effect this rescue, while the mimetic compounds do not, are discussed.
缺乏铜锌超氧化物歧化酶(sod1Delta)的酵母表现出广泛的表型,其中许多表型可以通过在高浓度离子锰存在下生长来挽救。我们对锰对野生型和sod1Delta酵母的影响进行了全面调查,发现5 mM Mn2+挽救了所有已知的与生长相关的表型,如在空气中生长缓慢、温度敏感性、特定氨基酸营养缺陷型、在高氧环境中不生长、在非发酵碳源中生长不良以及稳定期存活率降低。与铁相关的表型——电子顺磁共振可检测到的(“游离”)铁升高、乌头酸酶活性降低和液泡碎片化——以及锌敏感性也得到了挽救。当酵母在MnCl2存在下生长时,锰超氧化物歧化酶的活性保持不变或降低,这表明诱导这种替代超氧化物歧化酶并不是其原因。与MnCl2处理相反,向生长培养基中添加两种含锰的超氧化物歧化酶模拟化合物并不能挽救sod1Delta酵母的生长,反而在微摩尔浓度下对sod1Delta有选择性抑制作用。本文讨论了离子锰能够实现这种挽救而模拟化合物却不能的机制。