Evolutionary relationship and secondary structure predictions in four transport proteins ofSaccharomyces cerevisiae

Author:

Weber Elisabeth,Chevallier Marie-Renée,Jund Richard

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference28 articles.

1. Ahmad M, Bussey H (1986) Yeast arginine permease: nucleotide sequence of theCAN1 gene. Curr Genet 10:587–592

2. Barker WC, Dayhoff MO (1972) Detecting distant relationships: computer methods and results. In: Dayhoff MO (ed) Atlas of protein sequence and structure, vol 5. National Biomedical Research Foundation, Washington DC, pp 101–110

3. Cooper TG (1982) Transport inSaccharomyces cerevisiae. In: Strathern JN, Jones EW, Broach JR (eds) Molecular biology of the yeastSaccharomyces cerevisiae. Metabolism and gene expression. Cold Spring Harbor Laboratory, Cold Spring Harbor NY, pp 399–461

4. Dayhoff MO, Eck RV, Park CM (1972) A model of evolutionary change in proteins. In: Dayhoff MO (ed) Atlas of protein sequence and structure, vol 5. National Biomedical Research Foundation, Washington DC, pp 89–99

5. Dayhoff MO, Schwartz RM, Orcutt BC (1978) A model of evolutionary change in proteins. In: Dayhoff MO (ed) Atlas of protein sequence and structure, vol 5, suppl 3. National Biomedical Research Foundation, Washington DC, pp 345–352

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