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来自极端耐盐的韦内克短梗霉菌的新型3'-磷酸腺苷-5'-磷酸酶揭示了对黑酵母耐盐性分子决定因素的见解。

Novel 3'-phosphoadenosine-5'-phosphatases from extremely halotolerant Hortaea werneckii reveal insight into molecular determinants of salt tolerance of black yeasts.

作者信息

Vaupotic Tomaz, Gunde-Cimerman Nina, Plemenitas Ana

机构信息

Institute of Biochemistry, University of Ljubljana, Faculty of Medicine, Vrazov Trg 2, SI-1000 Ljubljana, Slovenia.

出版信息

Fungal Genet Biol. 2007 Nov;44(11):1109-22. doi: 10.1016/j.fgb.2007.02.005. Epub 2007 Feb 21.

Abstract

The 3'-phosphoadenosine-5'-phosphatase encoded by HAL2 gene, is a ubiquitous enzyme required for the removal of the cytotoxic 3'-phosphoadenosine-5'-phosphate produced during sulfur assimilation in eukaryotes. Salt toxicity in yeast and plants results from Hal2 inhibition by sodium or lithium ions. Two novel HAL2-like genes, HwHAL2A and HwHAL2B, have been cloned from saltern-inhabited extremely halotolerant black yeast Hortaea werneckii. Expression of both HwHAL2 isoforms was differentially inducible upon salt. When the HwHAL2 genes were transferred from such a halotolerant species into the salt sensitive Saccharomyces cerevisiae, the resulting organism can tolerate 1.8M NaCl or 0.8M LiCl, the highest reported salt concentrations at which S. cerevisiae can grow. With genetic and biochemical validation we demonstrated the critical HwHal2B sequence motif--the META sequence--common only to Dothideales fungi, with evident effect on the HwHal2B-dependent salt tolerance. These results may have significance for biosaline agriculture in coastal environments.

摘要

由HAL2基因编码的3'-磷酸腺苷-5'-磷酸酶是一种普遍存在的酶,真核生物在硫同化过程中产生具有细胞毒性的3'-磷酸腺苷-5'-磷酸时,该酶是清除这种物质所必需的。酵母和植物中的盐毒性是由钠离子或锂离子抑制Hal2所致。从栖息于盐田的极端耐盐黑酵母沃尔尼枝孢菌中克隆出了两个新的类HAL2基因,即HwHAL2A和HwHAL2B。两种HwHAL2同工型的表达在盐胁迫下具有不同的诱导性。当将HwHAL2基因从这样一个耐盐物种转移到盐敏感型酿酒酵母中时,得到的生物体能够耐受1.8M NaCl或0.8M LiCl,这是报道的酿酒酵母能够生长的最高盐浓度。通过遗传学和生物化学验证,我们证明了关键的HwHal2B序列基序——META序列——仅在座囊菌纲真菌中存在,对依赖HwHal2B的耐盐性有明显影响。这些结果可能对沿海环境中的盐碱农业具有重要意义。

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