Literature DB >> 10463156

Restoration of inositol prototrophy in the fission yeast Schizosaccharomyces pombe.

Susham S Ingavale, Anand K Bachhawat.   

Abstract

The biosynthesis of inositol requires only two enzymes, inositol-1-phosphate synthase (encoded by INO1) and an inositol monophosphatase, but the regulation of inositol biosynthesis is under multiple controls and is exquisitely regulated. In the budding yeast Saccharomyces cerevisiae, mutations in any of 26 different genes lead to inositol auxotrophy. The fission yeast Schizosaccharomyces pombe, however, is a natural inositol auxotroph. An investigation has been initiated to examine the possible reasons that might have led to inositol auxotrophy in Sch. pombe. Complementation with a genomic library of an inositol prototrophic yeast indicated that a Pichia pastoris INO1 gene alone could confer inositol prototrophy to Sch. pombe and that the gene was absent in Sch. pombe. To investigate possible reasons for the loss of INO1 gene in Sch. pombe, an attempt was made to disrupt inositol homeostasis in Sch. pombe by overproduction of intracellular inositol, but this did not lead to any discernible adverse effects. The sources of inositol in the natural environment of Sch. pombe were also examined. As the natural environment of Sch. pombe contains significant amounts of phytic acid (inositol hexaphosphate), an investigation was carried out and it was discovered that Sch. pombe can utilize phytic acid as a source of inositol under very specific conditions.

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Year:  1999        PMID: 10463156     DOI: 10.1099/13500872-145-8-1903

Source DB:  PubMed          Journal:  Microbiology        ISSN: 1350-0872            Impact factor:   2.777


  7 in total

1.  sll1981, an acetolactate synthase homologue of Synechocystis sp. PCC6803, functions as L-myo-inositol 1-phosphate synthase.

Authors:  Anirban Chatterjee; Krishnarup Ghosh Dastidar; Susmita Maitra; Aparajita Das-Chatterjee; Hassan Dihazi; Klaus Eschrich; Arun Lahiri Majumder
Journal:  Planta       Date:  2006-02-02       Impact factor: 4.116

2.  An insight into the molecular basis of salt tolerance of L-myo-inositol 1-P synthase (PcINO1) from Porteresia coarctata (Roxb.) Tateoka, a halophytic wild rice.

Authors:  Krishnarup Ghosh Dastidar; Susmita Maitra; Lily Goswami; Debjani Roy; Kali Pada Das; Arun Lahiri Majumder
Journal:  Plant Physiol       Date:  2006-02-24       Impact factor: 8.340

3.  Inositol depletion regulates phospholipid metabolism and activates stress signaling in HEK293T cells.

Authors:  Mahmoud Suliman; Kendall C Case; Michael W Schmidtke; Pablo Lazcano; Chisom J Onu; Miriam L Greenberg
Journal:  Biochim Biophys Acta Mol Cell Biol Lipids       Date:  2022-03-03       Impact factor: 5.228

4.  Increase in cellular triacylglycerol content and emergence of large ER-associated lipid droplets in the absence of CDP-DG synthase function.

Authors:  Yue He; Candice Yam; Kyle Pomraning; Jacqueline S R Chin; Joanne Y Yew; Michael Freitag; Snezhana Oliferenko
Journal:  Mol Biol Cell       Date:  2014-10-15       Impact factor: 4.138

Review 5.  The Unfolded Protein Response Pathway in the Yeast Kluyveromyces lactis. A Comparative View among Yeast Species.

Authors:  Mariana Hernández-Elvira; Francisco Torres-Quiroz; Abril Escamilla-Ayala; Eunice Domínguez-Martin; Ricardo Escalante; Laura Kawasaki; Laura Ongay-Larios; Roberto Coria
Journal:  Cells       Date:  2018-08-14       Impact factor: 6.600

6.  Calnexin regulates apoptosis induced by inositol starvation in fission yeast.

Authors:  Renée Guérin; Pascale B Beauregard; Alexandre Leroux; Luis A Rokeach
Journal:  PLoS One       Date:  2009-07-16       Impact factor: 3.240

7.  Co-culturing experiments reveal the uptake of myo-inositol phosphate synthase (EC 5.5.1.4) in an inositol auxotroph of Saccharomyces cerevisiae.

Authors:  Erika Steele; Hana D Alebous; Macy Vickers; Mary E Harris; Margaret D Johnson
Journal:  Microb Cell Fact       Date:  2021-07-19       Impact factor: 5.328

  7 in total

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