Mutational analysis of conserved glutamic acids of Pho89, a Saccharomyces cerevisiae high-affinity inorganic phosphate:Na+ symporter

Author:

Andersson Michael R.,Samyn Dieter R.,Persson Bengt L.

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Plant Science,Genetics,Molecular Biology,Animal Science and Zoology,Biochemistry,Ecology, Evolution, Behavior and Systematics

Reference27 articles.

1. Bernsel A., Wiklund H., Hennerdal A. & Elofson A. 2009. TOPCONS: consensus prediction of membrane protein topology. Nucleic Acids Res. 37(Web Server issue): W465–W468.

2. Bøttger P. & Pedersen L. 2002. Two highly conserved glutamate residues critical for type III sodium-dependent phosphate transport revealed by uncoupling transport function from retroviral receptor function. J. Biol. Chem. 277: 42741–42747.

3. Bøttger P. & Pedersen L. 2011. Mapping of the minimal inorganic phosphate transporting unit of human PiT2 suggests a structure universal to PiT-related proteins from all kingdoms of life. BMC Biochem. 17: 12–21.

4. Bun-ya M., Shikata K., Nakade S., Yompakdee C., Harashima S. & Oshima Y. 1996. Two new genes, PHO86 and PHO87, involved in inorganic phosphate uptake in Saccharomyces cerevisiae. Curr. Genet. 29: 344–351.

5. Bun-ya M., Nishimura M., Harashima S. & Oshima Y. 1991. The Pho84 gene of Saccharomyces cerevisiae encodes an inorganic phosphate transporter. Mol. Cell. Biol. 11: 3229–3238.

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