Literature DB >> 2405251

HOL1 mutations confer novel ion transport in Saccharomyces cerevisiae.

R F Gaber1, M C Kielland-Brandt, G R Fink.   

Abstract

Saccharomyces cerevisiae histidine auxotrophs are unable to use L-histidinol as a source of histidine even when they have a functional histidinol dehydrogenase. Mutations in the hol1 gene permit growth of His- cells on histidinol by enhancing the ability of cells to take up histidinol from the medium. Second-site mutations linked to HOL1-1 further increase histidinol uptake. HOL1 double mutants and, to a lesser extent, HOL1-1 single mutants show hypersensitivity to specific cations added to the growth medium, including Na+, Li+, Cs+, Be2+, guanidinium ion, and histidinol, but not K+, Rb+, Ca2+, or Mg2+. The Na(+)-hypersensitive phenotype is correlated with increased uptake and accumulation of this ion. The HOL1-1-101 gene was cloned and used to generate a viable haploid strain containing a hol1 deletion mutation (hol1 delta). The uptake of cations, the dominance of the mutant alleles, and the relative inability of hol1 delta cells to take up histidinol or Na+ suggest that hol1 encodes an ion transporter. The novel pattern of ion transport conferred by HOL1-1 and HOL1-1-101 mutants may be explained by reduced selectivity for the permeant ions.

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Year:  1990        PMID: 2405251      PMCID: PMC360862          DOI: 10.1128/mcb.10.2.643-652.1990

Source DB:  PubMed          Journal:  Mol Cell Biol        ISSN: 0270-7306            Impact factor:   4.272


  21 in total

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Journal:  Mol Cell Biol       Date:  1988-07       Impact factor: 4.272

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Journal:  Gene       Date:  1982-04       Impact factor: 3.688

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Journal:  J Bacteriol       Date:  1984-09       Impact factor: 3.490

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Journal:  Biochem J       Date:  1971-02       Impact factor: 3.857

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  10 in total

1.  Revisiting purine-histidine cross-pathway regulation in Saccharomyces cerevisiae: a central role for a small molecule.

Authors:  Karine Rébora; Benoît Laloo; Bertrand Daignan-Fornier
Journal:  Genetics       Date:  2005-03-02       Impact factor: 4.562

2.  TRK1 and TRK2 encode structurally related K+ transporters in Saccharomyces cerevisiae.

Authors:  C H Ko; R F Gaber
Journal:  Mol Cell Biol       Date:  1991-08       Impact factor: 4.272

3.  A Western blot-based investigation of the yeast secretory pathway designed for an intermediate-level undergraduate cell biology laboratory.

Authors:  Jennifer K Hood-Degrenier
Journal:  CBE Life Sci Educ       Date:  2008       Impact factor: 3.325

4.  Amiloride uptake and toxicity in fission yeast are caused by the pyridoxine transporter encoded by bsu1+ (car1+).

Authors:  Jürgen Stolz; Heike J P Wöhrmann; Christian Vogl
Journal:  Eukaryot Cell       Date:  2005-02

5.  Phenotypic effects of membrane protein overexpression in Saccharomyces cerevisiae.

Authors:  Marie Osterberg; Hyun Kim; Jonas Warringer; Karin Melén; Anders Blomberg; Gunnar von Heijne
Journal:  Proc Natl Acad Sci U S A       Date:  2006-07-17       Impact factor: 11.205

6.  Amino acid substitutions in membrane-spanning domains of Hol1, a member of the major facilitator superfamily of transporters, confer nonselective cation uptake in Saccharomyces cerevisiae.

Authors:  M B Wright; E A Howell; R F Gaber
Journal:  J Bacteriol       Date:  1996-12       Impact factor: 3.490

7.  Translational autoregulation of the S. cerevisiae high-affinity polyamine transporter Hol1.

Authors:  Arya Vindu; Byung-Sik Shin; Kevin Choi; Eric T Christenson; Ivaylo P Ivanov; Chune Cao; Anirban Banerjee; Thomas E Dever
Journal:  Mol Cell       Date:  2021-08-09       Impact factor: 19.328

8.  Genomic landscape of the DHA1 family in Candida auris and mapping substrate repertoire of CauMdr1.

Authors:  Rosy Khatoon; Suman Sharma; Poonam Vishwakarma; Amandeep Saini; Parth Aggarwal; Andrew M Lynn; Amresh Prakash; Rajendra Prasad; Atanu Banerjee
Journal:  Appl Microbiol Biotechnol       Date:  2022-10-03       Impact factor: 5.560

9.  Dimorphism-associated changes in plasma membrane H(+)-ATPase activity of Candida albicans.

Authors:  S Kaur; P Mishra
Journal:  Arch Microbiol       Date:  1991       Impact factor: 2.552

10.  Yeast ubiquitin-like genes are involved in duplication of the microtubule organizing center.

Authors:  S Biggins; I Ivanovska; M D Rose
Journal:  J Cell Biol       Date:  1996-06       Impact factor: 10.539

  10 in total

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