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磷酸饥饿应答(PHO)途径的核心调控组件在甲基营养型酵母多形汉逊酵母中是保守的。

Core regulatory components of the PHO pathway are conserved in the methylotrophic yeast Hansenula polymorpha.

作者信息

Zhou Ying, Yuikawa Naoya, Nakatsuka Hiroki, Maekawa Hiromi, Harashima Satoshi, Nakanishi Yoichi, Kaneko Yoshinobu

机构信息

Yeast Genetic Resources Laboratory, Graduate School of Engineering, Osaka University, Osaka, 565-0871, Japan.

Department of Biotechnology, Graduate School of Engineering, Osaka University, Osaka, 565-0871, Japan.

出版信息

Curr Genet. 2016 Aug;62(3):595-605. doi: 10.1007/s00294-016-0565-7. Epub 2016 Jan 21.

Abstract

To gain better understanding of the diversity and evolution of the gene regulation system in eukaryotes, the phosphate signal transduction (PHO) pathway in non-conventional yeasts has been studied in recent years. Here we characterized the PHO pathway of Hansenula polymorpha, which is genetically tractable and distantly related to Saccharomyces cerevisiae and Schizosaccharomyces pombe, in order to get more information for the diversity and evolution of the PHO pathway in yeasts. We generated several pho gene-deficient mutants based on the annotated draft genome of H. polymorpha BY4329. Except for the Hppho2-deficient mutant, these mutants exhibited the same phenotype of repressible acid phosphatase (APase) production as their S. cerevisiae counterparts. Subsequently, Hppho80 and Hppho85 mutants were isolated as suppressors of the Hppho81 mutation and Hppho4 was isolated from Hppho80 and Hppho85 mutants as the sole suppressor of the Hppho80 and Hppho85 mutations. To gain more complete delineation of the PHO pathway in H. polymorpha, we screened for UV-irradiated mutants that expressed APase constitutively. As a result, three classes of recessive constitutive mutations and one dominant constitutive mutation were isolated. Genetic analysis showed that one group of recessive constitutive mutations was allelic to HpPHO80 and that the dominant mutation occurred in the HpPHO81 gene. Epistasis analysis between Hppho81 and the other two classes of recessive constitutive mutations suggested that the corresponding new genes, named PHO51 and PHO53, function upstream of HpPHO81 in the PHO pathway. Taking these findings together, we conclude that the main components of the PHO pathway identified in S. cerevisiae are conserved in the methylotrophic yeast H. polymorpha, even though these organisms separated from each other before duplication of the whole genome. This finding is useful information for the study of evolution of the PHO regulatory system in yeasts.

摘要

为了更好地理解真核生物基因调控系统的多样性和进化,近年来对非常规酵母中的磷酸信号转导(PHO)途径进行了研究。在这里,我们对多形汉逊酵母的PHO途径进行了表征,它在遗传上易于操作,并且与酿酒酵母和裂殖酵母的亲缘关系较远,以便获取更多关于酵母中PHO途径多样性和进化的信息。我们基于多形汉逊酵母BY4329的注释草图基因组生成了几个pho基因缺陷型突变体。除了Hppho2缺陷型突变体,这些突变体表现出与酿酒酵母对应突变体相同的可抑制酸性磷酸酶(APase)产生的表型。随后,分离出Hppho80和Hppho85突变体作为Hppho81突变的抑制子,并且从Hppho80和Hppho85突变体中分离出Hppho4作为Hppho80和Hppho85突变的唯一抑制子。为了更全面地描绘多形汉逊酵母中的PHO途径,我们筛选了组成型表达APase的紫外线照射突变体。结果,分离出了三类隐性组成型突变和一类显性组成型突变。遗传分析表明,一组隐性组成型突变与HpPHO80等位,并且显性突变发生在HpPHO81基因中。Hppho81与其他两类隐性组成型突变之间的上位性分析表明,相应的新基因PHO51和PHO53在PHO途径中位于HpPHO81的上游起作用。综合这些发现,我们得出结论,酿酒酵母中鉴定出的PHO途径的主要成分在甲基营养型酵母多形汉逊酵母中是保守的,尽管这些生物体在全基因组复制之前就已彼此分离。这一发现为酵母中PHO调控系统的进化研究提供了有用信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8485/4929164/0c63d18a3107/294_2016_565_Fig1_HTML.jpg

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