Sychrová H, Chevallier M R, Horák J, Kotyk A
Department of Membrane Transport, Czechoslovak Academy of Sciences, Prague.
Curr Genet. 1992 Apr;21(4-5):351-5. doi: 10.1007/BF00351694.
Mutants defective in lysine transport were isolated and characterized. After UV-mutagenesis colonies resistant to thialysine, a toxic analogue of lysine, were isolated and L-lysine uptake into the mutant strains was analyzed. Among the thialysine-resistant strains a group of mutants was found, where the half-saturation constant, KT, of the high-affinity transport system for lysine was higher than in the wild-type, the high-affinity transport system for basic amino acids being specifically affected. This was confirmed by a complementation test in which all the thialysine-resistant strains with a higher KT for lysine uptake belonged to one complementation group. Kinetic and genetic analysis showed that our mutants were identical with can1-1 mutants, showing that a single high-affinity system for the transport of basic amino acids exists in S. pombe.
分离并鉴定了赖氨酸转运缺陷型突变体。经紫外线诱变后,分离出对赖氨酸的毒性类似物硫代赖氨酸具有抗性的菌落,并分析了突变菌株对L-赖氨酸的摄取情况。在硫代赖氨酸抗性菌株中发现了一组突变体,其中赖氨酸高亲和力转运系统的半饱和常数KT高于野生型,碱性氨基酸的高亲和力转运系统受到特异性影响。通过互补试验证实了这一点,在该试验中,所有赖氨酸摄取KT较高的硫代赖氨酸抗性菌株都属于一个互补组。动力学和遗传学分析表明,我们的突变体与can1-1突变体相同,这表明粟酒裂殖酵母中存在一个单一的碱性氨基酸高亲和力转运系统。