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Accession Number: | Q03770 |
Protein Name: | Ssy1 aka SHR10 aka YDR160W aka YD8358.14 |
Length: | 852 |
Molecular Weight: | 95744.00 |
Species: | Saccharomyces cerevisiae (Baker's yeast) [4932] |
Number of TMSs: | 11 |
Location1 / Topology2 / Orientation3: | Cell membrane1 / Multi-pass membrane protein2 |
Substrate | leucine |
Cross database links:
DIP: | DIP-2920N |
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RefSeq: | NP_010444.1 |
Entrez Gene ID: | 851738 |
Pfam: | PF00324 |
KEGG: | sce:YDR160W |
Gene Ontology
GO:0016021
C:integral to membrane
GO:0005886
C:plasma membrane
GO:0015171
F:amino acid transmembrane transporter activity
GO:0006865
P:amino acid transport
GO:0043200
P:response to amino acid stimulus
GO:0055085
P:transmembrane transport
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References (12)[1] “The nucleotide sequence of Saccharomyces cerevisiae chromosome IV.” Jacq C.et.al. 9169867 [2] “The permease homologue Ssy1p controls the expression of amino acid and peptide transporter genes in Saccharomyces cerevisiae.” Didion T.et.al. 9489675 [3] “Mutations in five loci affecting GAP1-independent uptake of neutral amino acids in yeast.” Joergensen M.U.et.al. 9483800 [4] “Amino acid signaling in Saccharomyces cerevisiae: a permease-like sensor of external amino acids and F-Box protein Grr1p are required for transcriptional induction of the AGP1 gene, which encodes a broad-specificity amino acid permease.” Iraqui I.et.al. 9891035 [5] “Ssy1p and Ptr3p are plasma membrane components of a yeast system that senses extracellular amino acids.” Klasson H.et.al. 10409731 [6] “Genetic and biochemical analysis of the yeast plasma membrane Ssy1p-Ptr3p-Ssy5p sensor of extracellular amino acids.” Forsberg H.et.al. 11154269 [7] “The role of the yeast plasma membrane SPS nutrient sensor in the metabolic response to extracellular amino acids.” Forsberg H.et.al. 11679080 [8] “Genome-wide expression analysis of genes affected by amino acid sensor Ssy1p in Saccharomyces cerevisiae.” Kodama Y.et.al. 12073087 |
External Searches:
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Analyze:
Predict TMSs (Predict number of transmembrane segments) | ||||
FASTA formatted sequence |
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1: MSSVNQIYDL FPNKHNIQFT DSHSQEHDTS SSLAKNDTDG TISIPGSIDT GILKSIIEEQ 61: GWNDAELYRS SIQNQRFFLT DKYTKKKHLT MEDMLSPEEE QIYQEPIQDF QTYNKRVQRE 121: YELRERMEEF FRQNTKNDLH ILNEDSLNQQ YSPLGPADYV LPLDRYSRMK HIASNFFRKK 181: LGIPRKLKRR SHYNPNAEGH TKGNSSILSS TTDVIDNASY RNIAIDENVD ITHKEHAIDE 241: INEQGASGSE SVVEGGSLLH DIEKVFNRSR ATRKYHIQRK LKVRHIQMLS IGACFSVGLF 301: LTSGKAFSIA GPFGTLLGFG LTGSIILATM LSFTELSTLI PVSSGFSGLA SRFVEDAFGF 361: ALGWTYWISC MLALPAQVSS STFYLSYYNN VNISKGVTAG FITLFSAFSI VVNLLDVSIM 421: GEIVYVAGIS KVIIAILMVF TMIILNAGHG NDIHEGVGFR YWDSSKSVRN LTYGLYRPTF 481: DLADAGEGSK KGISGPKGRF LATASVMLIS TFAFSGVEMT FLASGEAINP RKTIPSATKR 541: TFSIVLISYV FLIFSVGINI YSGDPRLLSY FPGISEKRYE AIIKGTGMDW RLRTNCRGGI 601: DYRQISVGTG YSSPWVVALQ NFGLCTFASA FNAILIFFTA TAGISSLFSC SRTLYAMSVQ 661: RKAPPVFEIC SKRGVPYVSV IFSSLFSVIA YIAVDQTAIE NFDVLANVSS ASTSIIWMGL 721: NLSFLRFYYA LKQRKDIISR NDSSYPYKSP FQPYLAIYGL VGCSLFVIFM GYPNFIHHFW 781: STKAFFSAYG GLMFFFISYT AYKVLGTSKI QRLDQLDMDS GRREMDRTDW TEHSQYLGTY 841: RERAKKLVTW LI