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SNF1 AMP-activated serine/threonine-protein kinase catalytic subunit SNF1 [Saccharomyces cerevisiae S288c]

Gene Symbol SNF1
Entrez Gene ID 852088
Full Name AMP-activated serine/threonine-protein kinase catalytic subunit SNF1
Synonyms CAT1, CCR1, GLC2, HAF3, PAS14
General protein information
Names
Snf1p
NP_010765.3
  • AMP-activated serine/threonine protein kinase; found in a complex containing Snf4p and members of the Sip1p/Sip2p/Gal83p family; required for transcription of glucose-repressed genes, thermotolerance, sporulation, and peroxisome biogenesis; involved in regulation of the nucleocytoplasmic shuttling of Hxk2p; regulates filamentous growth in response to starvation
Gene Type protein-coding
Organism Saccharomyces cerevisiae S288c
Genome

IV

Summary lac of sum
Disorder MIM:

Disorder Html:
CloneID RefSeq Accession Definition **Vector *Turnaround time Price
OSi01545 NM_001180785 Saccharomyces cerevisiae S288c AMP-activated serine/threonine-protein kinase catalytic subunit SNF1 (SNF1), partial mRNA. pcDNA3.1-C-(k)DYK Not in stock 7-9 Starting from $99.00

*Business Day
**You may select a custom vector to replace pcDNA3.1-C-(k)DYK after clone is added to cart.



CloneID OSi01545D
Sequence Information ORF Nucleotide Sequence (Length: 1902bp)
Protein sequence
SNP
Vector pcDNA3.1-C-(k)DYK or customized vector
Clone information Clone Map
Tag on pcDNA3.1-C-(k)DYK C terminal DYKDDDDK tags
ORF Insert Method CloneEZ® Seamless cloning technology
Structure linear
Update Date 16-JUL-2015
Organism Saccharomyces cerevisiae S288c
Product AMP-activated serine/threonine-protein kinase catalytic subunit SNF1
Comment REVIEWED REFSEQ: This record has been curated by SGD. This record is derived from an annotated genomic sequence (NC_001136). On Jul 30, 2012 this sequence version replaced gi:392859851. COMPLETENESS: incomplete on both ends.

1
61
121
181
241
301
361
421
481
541
601
661
721
781
841
901
961
1021
1081
1141
1201
1261
1321
1381
1441
1501
1561
1621
1681
1741
1801
1861
ATGAGCAGTA ACAACAACAC AAACACAGCA CCTGCCAATG CAAATTCTAG CCACCACCAC 
CACCATCACC ACCATCACCA CCACCATCAC GGTCATGGCG GAAGCAACTC GACGCTAAAC
AATCCCAAGT CGTCCTTAGC GGATGGTGCA CATATCGGGA ACTACCAAAT CGTCAAAACG
CTGGGAGAGG GGTCCTTTGG TAAAGTTAAA TTGGCATATC ATACCACTAC GGGCCAAAAA
GTTGCTCTAA AAATCATTAA TAAGAAGGTT TTGGCAAAGA GTGATATGCA GGGCAGAATT
GAAAGAGAAA TATCTTATCT GAGACTCTTA AGACACCCCC ACATCATCAA ACTGTATGAT
GTTATCAAAT CCAAAGATGA AATCATTATG GTTATAGAGT ACGCCGGGAA CGAATTGTTT
GACTATATTG TTCAGAGAGA CAAAATGAGC GAGCAAGAGG CAAGAAGATT TTTCCAGCAG
ATCATCAGTG CCGTCGAGTA CTGCCATAGG CACAAAATTG TCCATAGAGA TCTGAAGCCT
GAAAACTTAC TACTAGATGA GCATCTGAAT GTAAAGATTG CCGATTTTGG TTTGTCAAAC
ATCATGACTG ATGGTAATTT CTTAAAGACT TCTTGTGGTT CTCCCAATTA TGCGGCTCCT
GAAGTTATCA GCGGTAAGCT GTACGCAGGC CCAGAAGTGG ACGTGTGGTC ATGTGGGGTT
ATCCTTTATG TTATGCTTTG TCGTCGTCTA CCGTTTGACG ATGAAAGCAT CCCAGTGCTT
TTCAAGAATA TCAGCAACGG TGTTTACACC TTGCCTAAAT TTTTATCTCC TGGAGCTGCT
GGGCTAATCA AAAGAATGTT AATCGTTAAT CCATTGAACA GAATAAGCAT TCATGAAATT
ATGCAAGACG ATTGGTTCAA AGTTGACCTG CCAGAATATC TACTTCCACC AGATTTGAAA
CCACACCCAG AAGAAGAGAA TGAAAATAAT GACTCAAAAA AGGATGGCAG CAGCCCAGAT
AACGATGAAA TTGATGACAA CCTTGTCAAT ATTTTATCAT CGACCATGGG TTACGAAAAA
GACGAGATTT ATGAGTCCTT AGAATCATCA GAAGACACTC CTGCATTCAA CGAAATTAGG
GACGCGTACA TGTTGATTAA GGAGAATAAA TCTTTGATCA AGGATATGAA GGCAAACAAA
AGCGTCAGTG ATGAACTGGA TACCTTTCTG TCCCAGTCAC CTCCAACTTT TCAACAACAA
AGCAAATCCC ATCAAAAGAG TCAAGTAGAT CATGAAACTG CCAAGCAACA CGCAAGAAGG
ATGGCAAGTG CTATCACTCA ACAAAGGACA TATCACCAAT CACCCTTCAT GGATCAGTAT
AAAGAAGAAG ACTCTACAGT TTCCATTTTG CCTACATCTT TACCTCAGAT CCACAGAGCT
AATATGTTAG CACAAGGTTC GCCAGCTGCC TCTAAAATAT CTCCTCTTGT AACGAAAAAA
TCTAAAACGA GATGGCATTT TGGTATACGA TCTCGCTCAT ATCCATTAGA CGTTATGGGT
GAAATTTATA TTGCCTTGAA GAATTTGGGT GCCGAATGGG CCAAGCCATC TGAAGAGGAT
TTATGGACTA TCAAATTAAG GTGGAAATAT GATATTGGAA ACAAGACAAA CACTAATGAA
AAAATACCTG ATTTAATGAA AATGGTAATT CAATTATTTC AAATTGAAAC CAATAATTAT
TTGGTGGATT TCAAATTTGA CGGCTGGGAA AGTAGTTATG GAGATGATAC TACTGTTTCT
AATATTTCTG AAGATGAAAT GAGTACTTTT TCAGCCTACC CATTTTTACA TTTAACAACA
AAACTAATTA TGGAATTAGC CGTTAACAGT CAAAGCAATTT GA
The stop codons will be deleted if pcDNA3.1-C-(k)DYK vector is selected.
RefSeqNP_010765.3
CDS1..1902
Misc Feature(1)154..918(+)
Misc Feature(2)163..918(+)
Misc Feature(3)181..753(+)
Misc Feature(4)181..585(+)
Misc Feature(5)412..753(+)
Misc Feature(6)580..648(+)
Misc Feature(7)604..876(+)
Misc Feature(8)1030..1185(+)
Misc Feature(9)1504..1878(+)
Misc Feature(10)1507..1872(+)
Misc Feature(11)1648..1851(+)
Translation
Position Chain Variation Link

Target ORF information:

RefSeq Version NM_001180785
Organism Saccharomyces cerevisiae S288c
Definition Saccharomyces cerevisiae S288c AMP-activated serine/threonine-protein kinase catalytic subunit SNF1 (SNF1), partial mRNA.

Target ORF information:

Epitope DYKDDDDK
Bacterial selection AMPR
Mammalian selection NeoR
Vector pcDNA3.1-C-(k)DYK
NM_001180785

ORF Insert Sequence:

1
61
121
181
241
301
361
421
481
541
601
661
721
781
841
901
961
1021
1081
1141
1201
1261
1321
1381
1441
1501
1561
1621
1681
1741
1801
1861
ATGAGCAGTA ACAACAACAC AAACACAGCA CCTGCCAATG CAAATTCTAG CCACCACCAC 
CACCATCACC ACCATCACCA CCACCATCAC GGTCATGGCG GAAGCAACTC GACGCTAAAC
AATCCCAAGT CGTCCTTAGC GGATGGTGCA CATATCGGGA ACTACCAAAT CGTCAAAACG
CTGGGAGAGG GGTCCTTTGG TAAAGTTAAA TTGGCATATC ATACCACTAC GGGCCAAAAA
GTTGCTCTAA AAATCATTAA TAAGAAGGTT TTGGCAAAGA GTGATATGCA GGGCAGAATT
GAAAGAGAAA TATCTTATCT GAGACTCTTA AGACACCCCC ACATCATCAA ACTGTATGAT
GTTATCAAAT CCAAAGATGA AATCATTATG GTTATAGAGT ACGCCGGGAA CGAATTGTTT
GACTATATTG TTCAGAGAGA CAAAATGAGC GAGCAAGAGG CAAGAAGATT TTTCCAGCAG
ATCATCAGTG CCGTCGAGTA CTGCCATAGG CACAAAATTG TCCATAGAGA TCTGAAGCCT
GAAAACTTAC TACTAGATGA GCATCTGAAT GTAAAGATTG CCGATTTTGG TTTGTCAAAC
ATCATGACTG ATGGTAATTT CTTAAAGACT TCTTGTGGTT CTCCCAATTA TGCGGCTCCT
GAAGTTATCA GCGGTAAGCT GTACGCAGGC CCAGAAGTGG ACGTGTGGTC ATGTGGGGTT
ATCCTTTATG TTATGCTTTG TCGTCGTCTA CCGTTTGACG ATGAAAGCAT CCCAGTGCTT
TTCAAGAATA TCAGCAACGG TGTTTACACC TTGCCTAAAT TTTTATCTCC TGGAGCTGCT
GGGCTAATCA AAAGAATGTT AATCGTTAAT CCATTGAACA GAATAAGCAT TCATGAAATT
ATGCAAGACG ATTGGTTCAA AGTTGACCTG CCAGAATATC TACTTCCACC AGATTTGAAA
CCACACCCAG AAGAAGAGAA TGAAAATAAT GACTCAAAAA AGGATGGCAG CAGCCCAGAT
AACGATGAAA TTGATGACAA CCTTGTCAAT ATTTTATCAT CGACCATGGG TTACGAAAAA
GACGAGATTT ATGAGTCCTT AGAATCATCA GAAGACACTC CTGCATTCAA CGAAATTAGG
GACGCGTACA TGTTGATTAA GGAGAATAAA TCTTTGATCA AGGATATGAA GGCAAACAAA
AGCGTCAGTG ATGAACTGGA TACCTTTCTG TCCCAGTCAC CTCCAACTTT TCAACAACAA
AGCAAATCCC ATCAAAAGAG TCAAGTAGAT CATGAAACTG CCAAGCAACA CGCAAGAAGG
ATGGCAAGTG CTATCACTCA ACAAAGGACA TATCACCAAT CACCCTTCAT GGATCAGTAT
AAAGAAGAAG ACTCTACAGT TTCCATTTTG CCTACATCTT TACCTCAGAT CCACAGAGCT
AATATGTTAG CACAAGGTTC GCCAGCTGCC TCTAAAATAT CTCCTCTTGT AACGAAAAAA
TCTAAAACGA GATGGCATTT TGGTATACGA TCTCGCTCAT ATCCATTAGA CGTTATGGGT
GAAATTTATA TTGCCTTGAA GAATTTGGGT GCCGAATGGG CCAAGCCATC TGAAGAGGAT
TTATGGACTA TCAAATTAAG GTGGAAATAT GATATTGGAA ACAAGACAAA CACTAATGAA
AAAATACCTG ATTTAATGAA AATGGTAATT CAATTATTTC AAATTGAAAC CAATAATTAT
TTGGTGGATT TCAAATTTGA CGGCTGGGAA AGTAGTTATG GAGATGATAC TACTGTTTCT
AATATTTCTG AAGATGAAAT GAGTACTTTT TCAGCCTACC CATTTTTACA TTTAACAACA
AAACTAATTA TGGAATTAGC CGTTAACAGT CAAAGCAATTT GA

The stop codons will be deleted if pcDNA3.1-C-(k)DYK vector is selected.