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Phenotypic comparison of samdc and spe mutants reveals complex relationships of polyamine metabolism in Ustilago maydis

机译:SAMDC和SPE突变体的表型比较揭示了Ustilago Maydis中多胺代谢的复杂关系

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Synthesis of spermidine involves the action of two enzymes, spermidine synthase (Spe) and S-adenosylmethionine decarboxylase (Samdc). Previously we cloned and disrupted the gene encoding Spe as a first approach to unravel the biological function of spermidine in Ustilago maydis. With this background, the present study was designed to provide a better understanding of the role played by Samdc in the regulation of the synthesis of this polyamine. With this aim we proceeded to isolate and delete the gene encoding Samdc from U. maydis, and made a comparative analysis of the phenotypes of samdc and spe mutants. Both spe and samdc mutants behaved as spermidine auxotrophs, and were more sensitive than the wild-type strain to different stress conditions. However, the two mutants displayed significant differences: in contrast to spe mutants, samdc mutants were more sensitive to LiCl stress, high spermidine concentrations counteracted their dimorphic deficiency, and they were completely avirulent. It is suggested that these differences are possibly related to differences in exogenous spermidine uptake or the differential location of the respective enzymes in the cell. Alternatively, since samdc mutants accumulate higher levels of S-adenosylmethionine (SAM), whereas spe mutants accumulate decarboxylated SAM, the known opposite roles of these metabolites in the processes of methylation and differentiation offer an additional attractive hypothesis to explain the phenotypic differences of the two mutants, and provide insights into the additional roles of polyamine metabolism in the physiology of the cell.
机译:亚硫酸盐的合成涉及两种酶,亚精氨酸合酶(SPE)和S-腺苷甲基硫甲硫醚(SAMDC)的作用。以前我们克隆并破坏了编码SPE的基因,作为解开乌斯特拉戈霉菌的亚胺的生物学功能的第一种方法。在这种背景下,本研究旨在提供更好地理解SAMDC在该多胺的合成调节中的作用。通过这种目的,我们进行了分离和删除编码SAMDC的基因,从U. maydis中进行了对比较分析Samdc和Spe突变体的表型。 SPE和SAMDC突变体的表现为亚精牙龈滋巢,并且比野生型菌株更敏感到不同的应力条件。然而,两个突变体显示出显着的差异:与SPE突变体形成鲜明对比,SAMDC突变体对LiCl应激更敏感,高亚精霉素浓度抵消了它们的二态缺乏,并且它们是完全无毒的。建议这些差异可能与细胞中各种酶的外源性偏颗粒的差异有关。或者,由于SAMDC突变体积累了更高水平的S-腺苷甲硫氨酸(SAM),而SPE突变体积累脱羧化的SAM,因此这些代谢物在甲基化和分化过程中的已知相反的作用提供了额外的有吸引力的假设,以解释两者的表型差异突变体,并提供对多胺代谢在细胞生理学中的额外作用的见解。

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