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β-Carbonic Anhydrases Play a Role in Fruiting Body Development and Ascospore Germination in the Filamentous Fungus Sordaria macrospora

机译:β-碳酸酐酶在丝状真菌Sordaria macrospora的子实体发育和子囊萌发中起作用

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摘要

Carbon dioxide (CO2) is among the most important gases for all organisms. Its reversible interconversion to bicarbonate (HCO3 ) reaches equilibrium spontaneously, but slowly, and can be accelerated by a ubiquitous group of enzymes called carbonic anhydrases (CAs). These enzymes are grouped by their distinct structural features into α-, β-, γ-, δ- and ζ-classes. While physiological functions of mammalian, prokaryotic, plant and algal CAs have been extensively studied over the past years, the role of β-CAs in yeasts and the human pathogen Cryptococcus neoformans has been elucidated only recently, and the function of CAs in multicellular filamentous ascomycetes is mostly unknown. To assess the role of CAs in the development of filamentous ascomycetes, the function of three genes, cas1, cas2 and cas3 (carbonic anhydrase of Sordaria) encoding β-class carbonic anhydrases was characterized in the filamentous ascomycetous fungus Sordaria macrospora. Fluorescence microscopy was used to determine the localization of GFP- and DsRED-tagged CAs. While CAS1 and CAS3 are cytoplasmic enzymes, CAS2 is localized to the mitochondria. To assess the function of the three isoenzymes, we generated knock-out strains for all three cas genes (Δcas1, Δcas2, and Δcas3) as well as all combinations of double mutants. No effect on vegetative growth, fruiting-body and ascospore development was seen in the single mutant strains lacking cas1 or cas3, while single mutant Δcas2 was affected in vegetative growth, fruiting-body development and ascospore germination, and the double mutant strain Δcas1/2 was completely sterile. Defects caused by the lack of cas2 could be partially complemented by elevated CO2 levels or overexpression of cas1, cas3, or a non-mitochondrial cas2 variant. The results suggest that CAs are required for sexual reproduction in filamentous ascomycetes and that the multiplicity of isoforms results in redundancy of specific and non-specific functions.
机译:二氧化碳(CO2)是所有生物最重要的气体之一。其可逆的相互转化为碳酸氢盐(HCO3 -)自发地达到平衡,但速度很慢,并且可以被称为碳酸酐酶(CAs)的无处不在的一组酶加速。这些酶根据其独特的结构特征分为α-,β-,γ-,δ-和ζ-类。尽管在过去几年中对哺乳动物,原核,植物和藻类CA的生理功能进行了广泛研究,但直到最近才阐明了β-CA在酵母和人类病原体新隐球菌中的作用,而CA在多细胞丝状子囊菌中的功能几乎是未知的。为了评估CA在丝状子囊菌的发育中的作用,在丝状子囊菌Sordaria macrospora中鉴定了编码β-类碳酸酐酶的三个基因cas1,cas2和cas3(Sordaria的碳酸酐酶)的功能。荧光显微镜用于确定GFP和DsRED标签的CA的定位。虽然CAS1和CAS3是细胞质酶,但CAS2定位于线粒体。为了评估这三种同工酶的功能,我们为所有三个cas基因(Δcas1,Δcas2和Δcas3)以及双突变体的所有组合生成了敲除菌株。缺少cas1或cas3的单个突变株对营养生长,子实体和子囊孢子的发育没有影响,而单个突变株Δcas2在营养生长,子实体发育和子囊芽的发芽以及双突变株Δcas1/ 2中受到影响。是完全无菌的。缺少cas2引起的缺陷可以通过提高CO2水平或过表达cas1,cas3或非线粒体cas2变体来部分弥补。结果表明,在丝状子囊菌中进行有性生殖需要CA,并且同工型的多样性导致特定和非特定功能的冗余。

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