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An additional Meyerozyma guilliermondii IMH3 gene confers mycophenolic acid resistance in fungal CTG clade species

机译:另一个Meyerozyma guilliermondii IMH3基因赋予真菌CTG进化枝种耐霉酚酸的能力

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The fungal CTG clade comprises a number of well-known yeasts that impact human health or with high biotechnological potential. To further extend the set of molecular tools dedicated to these microorganisms, the initial focus of this study was to develop a mycophenolic acid (MPA) resistance cassette. Surprisingly, while we were carrying out preliminary susceptibility testing experiments in a set of yeast species, Meyerozyma guilliermondii, although not being a MPA producer, was found to be primarily resistant toward this drug, whereas a series of nine related species were susceptible to MPA. Using comparative and functional genomic approaches, we demonstrated that all MPA-susceptible CTG clade species display a single gene, referred to as IMH3.1, encoding the MPA target inosine monophosphate dehydrogenase (IMPDH) and that MPA resistance relies on the presence in the M. guilliermondii genome of an additional IMPDH-encoding gene (IMH3.2). The M. guilliermondii IMH3.2 gene displays marked differences compared to IMH3.1 including the lack of intron, a roughly 160-fold higher transcription level and a serine residue at position 251. Placed under the control of the M. guilliermondii actin 1 gene promoter, IMH3.2 was successfully used to transform Lodderomyces elongisporus, Clavispora lusitaniae, Scheffersomyces stipitis and Candida parapsilosis.Deciphering molecular mechanisms underlying mycophenolic acid resistance in Meyerozyma guilliermondii shed light on a new selectable marker for fungal CTG clade yeasts genetics.Deciphering molecular mechanisms underlying mycophenolic acid resistance in Meyerozyma guilliermondii shed light on a new selectable marker for fungal CTG clade yeasts genetics.
机译:真菌CTG进化枝包含许多影响人类健康或具有高生物技术潜力的酵母。为了进一步扩展专用于这些微生物的分子工具,这项研究的最初重点是开发一种对霉酚酸(MPA)的抗性盒。出乎意料的是,尽管我们正在对一组酵母菌种进行初步药敏测试实验,但尽管不是MPA生产者,但古拉耶尔酵母(Meyerozyma guilliermondii)对这种药物具有主要耐药性,而一系列9个相关菌种却对MPA敏感。使用比较和功能性的基因组方法,我们证明了所有MPA易感CTG进化枝物种均显示一个称为IMH3.1的单一基因,编码MPA目标肌苷单磷酸脱氢酶(IMPDH),而MPA的耐药性依赖于M中的存在另一个IMPDH编码基因(IMH3.2)的guilliermondii基因组。与IMH3.1相比,guilliermondii IMH3.2基因显示出显着差异,包括缺乏内含子,转录水平高约160倍和251位的丝氨酸残基。处于guilliermondii肌动蛋白1基因的控制之下IMH3.2启动子成功地用于转化长孢德罗德氏菌,卢氏克拉维氏菌,裂殖裂殖酵母和副念珠菌。破译Meyerozyma guilliermondii的霉酚酸抗性的分子机制为真菌CTG进化枝酵母遗传学的分子机制提供了新的选择标记。瓜氏耶尔酵母中对霉酚酸的抗性为真菌CTG进化枝酵母遗传学提供了新的选择标记。

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