Hcfc1 (BC053742) Mouse Untagged Clone
CAT#: MC206414
Hcfc1 (untagged) - Mouse host cell factor C1 (cDNA clone MGC:59358 IMAGE:6509535), (10ug)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Hcfc1 |
Synonyms | HCF1, HCF-1 |
Vector | PCMV6-Kan/Neo |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>BC053742
GCCTCCTGCTCGAGGTTCTAAGCGGGAACACCCAGGCAAATAGTTAGAGCGACGGCGCTCAGTGGCCTCC AGCTTCTCGGGAATAGGTGCTCTGCAGTTCTGAGAAGCTTTTAAGGATACGAGCTGAGTGAGAAGGGGGG GAAGAGCCAAAGGAAGGAGGATAGTTAAGATGGCGGCCTCCATGGAGTCGTCCACCGCTGTGTAAGGAGC CGCTTCTTCGTGAGAGCTGCCTTAGACGAAAGGGGGTGTGTGAAGAATTAAGGGTATCCTCCCATTCAGT GACCTCTTCCCACTGCATCCTTAACCGGAACTATGGCTTCGGCTGTGTCTCCCGCAAACTTGCCAGCGGT GCTTCTGCAGCCCCGCTGGAAACGGGTGGTGGGCTGGTCGGGTCCCGTGCCCCGACCCCGCCACGGCCAC CGTGCAGTGGCTATCAAGGAGCTTATAGTGGTGTTTGGCGGCGGCAACGAGGGGATAGTGGACGAACTAC ACGTGTACAACACTGCAACCAACCAGTGGTTCATCCCAGCTGTGAGAGGGGATATCCCTCCAGGGTGTGC AGCCTATGGCTTTGTGTGTGATGGTACTCGCCTATTGGTGTTTGGTGGAATGGTAGAGTATGGAAAATAC AGCAACGACCTCTATGAACTCCAGGCAAGTCGTTGGGAATGGAAGAGACTGAAGGCAAAGACACCCAAAA ATGGGCCTCCTCCATGTCCTCGGCTTGGACATAGCTTCTCCCTTGTGGGCAACAAATGTTACCTGTTTGG GGGTCTGGCCAATGATAGTGAGGACCCCAAGAACAACATTCCGAGGTACCTGAATGACTTATATATTCTC GAACTACGGCCAGGCTCTGGAGTGGTAGCTTGGGACATCCCCATCACTTACGGTGTCCTGCCTCCACCCC GGGAGTCACATACTGCTGTGGTCTACACTGAAAAAGATAACAAGAAATCCAAGCTGGTGATCTATGGAGG GATGAGTGGCTGCAGGCTAGGGGACCTTTGGACCCTGGACATTGAGACACTGACATGGAATAAGCCCAGC CTTAGTGGGGTGGCACCCCTTCCTCGCAGCCTCCACTCTGCAACCACCATAGGAAACAAAATGTATGTAT TTGGTGGCTGGGTGCCCCTTGTCATGGACGATGTCAAAGTGGCCACACACGAGAAGGAGTGGAAGTGTAC CAACACACTGGCTTGTCTCAACCTGGATACCATGGCCTGGGAAACCATCCTGATGGATACATTGGAGGAC AACATTCCTCGAGCTCGAGCAGGCCACTGTGCTGTTGCCATCAATACTCGTCTGTATATTTGGAGTGGCC GTGATGGCTACCGCAAGGCCTGGAACAACCAGGTCTGCTGCAAGGACTTGTGGTATTTGGAGACAGAAAA GCCACCACCCCCAGCCCGAGTACAACTAGTACGAGCCAACACCAACTCACTGGAGGTTAGCTGGGGTGCA GTGGCAACAGCTGACAGTTACCTTCTACAACTCCAGAAATATGACATTCCTGCCACAGCTGCTACGGCTA CCTCCCCCACTCCCAATCCAGTCCCGTCTGTGCCTGCCAACCCTCCCAAGAGCCCTGCGCCAGCAGCAGC TGCACCTGCTGTACAGCCACTGACCCAAGTAGGCATCACACTTGTGCCCCAGGCTGCCACTGCACCCCCA AGCACAACCACCATCCAGGTCTTGCCGACAGTGCCAGGCAGCTCCATTTCTGTGCCCACTGCAGCCAGGA CTCAAGGTGTCCCTGCTGTTCTCAAAGTGACTGGTCCTCAAGCTACAACAGGAACACCACTGGTTACCAT GAGACCTGCAAGCCAGGCTGGAAAAGCTCCTGTCACTGTGACTTCCCTGCCTGCCAGTGTTCGAATGGTT GTACCCACACAGAGTGCCCAGGGGACGGTGATCGGCAGCAACCCACAGATGAGTGGGATGGCCGCATTGG CTGCTGCTGCTGCTGCCACACAGAAAATCCCTCCATCCTCAGCACCCACGGTGCTGAGTGTCCCAGCAGG GACCACCATCGTCAAGACAGTGGCTGTGACACCTGGCACGACCACTCTTCCAGCCACTGTGAAGGTGGCC TCCTCCCCTGTCATGGTGAGCAACCCAGCCACTCGAATGCTAAAGACTGCAGCTGCCCAAGTGGGGACAT CTGTGTCCTCTGCTGCCAACACATCTACTCGCCCTATCATCACAGTACACAAATCAGGAACTGTAACAGT GGCCCAGCAAGCCCAGGTGGTGACCACGGTGGTAGGTGGAGTCACCAAGACCATCACCCTAGTGAAGAGC CCCATCTCTGTCCCAGGAGGCAGTGCTCTGATTTCCAATCTGGGAAAAGTGATGTCGGTGGTCCAGACCA AACCAGTTCAGACATCAGCAGTGACAGGCCAAGCATCTACAGGTCCTGTGACTCAGATCATCCAGACCAA AGGACCCCTGCCAGCGGGGACTATCCTGAAGCTGGTGACATCAGCAGATGGCAAGCCCACAACCATCATT ACCACCACACAGGCTAGTGGGGCAGGGACCAAGCCCACTATCCTGGGCATCAGTAGTGTTTCTCCCAGCA CCACCAAACCTGGCACAACTACCATTATTAAGACCATTCCTATGTCGGCCATTATCACCCAGGCAGGTGC CACAGGTGTTACCAGCAGTCCTGGCATTAAGTCCCCAATTACAATTATCACCACCAAAGTGATGACTTCA GGAACAGGAGCGCCTGCTAAAATCATCACTGCTGTCCCCAAGATTGCTACTGGCCATGGGCAACAAGGAG TGACCCAGGTGGTGCTAAAGGGGGCCCCTGGACAACCAGGCACCATCCTCCGTACTGTGCCTATGGGCGG CGTTCGCCTGGTCACCCCTGTCACCGTCTCTGCTGTCAAGCCAGCTGTCACCACATTGGTTGTGAAGGGT ACCACAGGTGTTACAACGCTAGGCACAGTGACAGGCACTGTCTCCACCAGCCTGGCCGGAGCTGGGGCAC ATAGCACCAGTGCTTCCCTGGCTACACCTATCACTACCTTGGGCACTATTGCTACGCTCTCAAGCCAGGT GATCAACCCTACTGCTATCACAGTGTCAGCTGCACAGACTACACTAACAGCTGCTGGTGGGCTTACCACA CCCACAATCACAATGCAGCCTGTCTCCCAGCCTACCCAGGTCACTCTGATTACAGCACCCAGTGGGGTTG AAGCACAGCCTGTACATGACCTTCCTGTATCCATTTTGGCCTCACCTACTACAGAGCAGCCCACAGCAAC AGTCACCATCGCTGACTCAGGCCAGGGTGATGTGCAGCCCGGCACTGTGACACTGGTGTGTTCCAACCCA CCCTGTGAAACCCATGAAACAGGCACCACCAACACAGCTACCACCACTGTTGTGGCTAACCTTGGTGGAC ATCCTCAACCTACCCAGGTGCAGTTTGTTTGTGACAGACAGGAGACAGCTGCTTCACTTGTGACCTCAGC TGTAGGACAACAGAATGGTAATGTGGTCCGTGTCTGTTCAAACCCCCCCTGTGAGACCCATGAGACGGGC ACTACCAACACTGCCACAACAGCCACCTCCAACATGGCTGGGCAGCATGGCTGCTCGAACCCCCCCTGTG AGACTCATGAGACAGGCACCACCAGCACTGCCACTACAGCAATGTCCAGCATGGGCACTGGGCAGCAGCG AGACACTCGTCGTACCACTAACACCCCCACTGTAGTGCGGATCACTGTGGCTCCTGGGGCATTGGAGAGA GTCCAGGGTACCGTGAAGCCTCAGTGCCAAACCCAGCAGACCAACATGACCACCACCACCATGACTGTGC AGGCCACTGGAGCTCCATGCTCAGCTGGCCCCCTGCTTAGGCCAAGTGTGGCACTGGAGTCTGGGAGCCA CAGCCCTGCCTTTGTGCAACTAGCCCTTCCAAGTGTCAGAGTTGGGCTAAGTGGCCCCAGCAGCAAGGAC ATGCCCACAGGGCGCCAACCAGAGACATATCATACTTACACAACTAATACCCCAACCACAACCCGCTCTA TCATGGTTGCTGGGGAGCTTGGTGCAGCTCGGGTGGTCCCCACATCTACATATGAGAGCCTCCAGGCAAG CTCTCCTAGCAGCACCATGACTATGACAGCCCTAGAGGCACTGCTGTGCCCTTCGGCTACTGTCACCCAA GTCTGCTCCAACCCGCCATGTGAGACCCATGAGACGGGTACCACCAACACCGCCACTACCTCCAATGCGG GCAGTGCTCAGCGAGTATGCTCCAACCCGCCTTGTGAGACTCATGAGACGGGCACCACACACACAGCTAC CACTGCCACATCAAATGGAGGTGCAGGCCAGCCTGAGGGTGGACAACAGCCTGCCAGTGGCCATCCCTGC GAGACACACCAGACCACTTCCACTGGCACCACTATGTCAGTCAGTGTGGGTACCCTGATTCCTGATGCTA CTTCCTCTCATGGAACCCTGGAGTCGGGCTTAGAGGTGGTAGCAGTGCCCACTGTCACCTCCCAGGCTGG TTCCACATTGCTGGCCTCTTTCCCAACACAGAGGGTATGCTCCAACCCTCCTTGCGAGACCCACGAGACA GGTACCACGCACACAGCCACCACTGTCACCTCTAACATGAGCTCAAACCAAGACCCTCCACCAGCTGCCA GTGACCAAGGAGAGGTGGCAAGCACCCAAGGTGACAGCACAAATATCACCAGTGCCAGTGCTATCACTAC AAGTGTGTCTTCTACATTGCCACGAGCAGTGACCACTGTGACACAGTCTACACCAGTCCCTGGTCCCTCT GTGCCGCCCCCAGAGGAACTCCAGGTCTCACCAGGGCCTCGCCAGCAGCTGCCTCCACGGCAACTCCTGC AGTCTGCCTCCACACCCCTGATGGGGGAGTCTACTGAGGTCCTGTCAGCCTCCCAGACCCCTGAGCTCCA GGCCGCCGTGGATCTGAGCAGCACTGGGGACCCATCTTCAGGCCAGGAGCCTACCACCTCTGCTGTCGTG GCCACTGTGGTGGTCCAACCACCCCCACCCACACAGTCTGAAGTAGACCAGTTATCACTTCCCCAAGAGC TGATGGCTGAAGCCCAGGCGGGCACCACAACCCTTATGGTAACAGGGCTCACTCCAGAGGAGCTGGCAGT GACTGCTGCTGCTGAAGCAGCTGCTCAAGCTGCAGCCACTGAAGAAGCCCAAGCCTTGGCCATCCAGGCT GTGCTCCAGGCCGCACAGCAGGCTGTCATGGGCACTGGGGAGCCCATGGATACATCTGAAGCAGCAGCAG CAGTGACACAAGCAGAACTGGGTCACCTTTCAGCTGAAGGCCAAGAGGGTCAGGCTACCACCATACCCAT TGTGTTGACACAGCAGGAGCTTGCAGCCCTGGTGCAGCAGCAGCAGCAGCTCCAGGAGGCTCAAGCTCAA GCCCAGCAACAGCACCATCTTCCCACTGAGGCTCTGGCCCCAGCTGACAGTCTCAATGACCCATCCATCG AGAGCAACTGCCTCAACGAGTTAGCTAGTGCTGTCCCAAGCACCGTGGCTTTGCTACCCTCAACAGCTAC CGAGAGCCTGGCTCCATCTAACACATTTGTGGCTCCCCAGCCTGTTGTAGCTAGTCCAGCAAAGATGCAG GCTGCAGCTACCCTTACTGAAGTGGCCAATGGCATTGAGTCCCTGGGTGTGAAACCGGACTTGCCACCCC CACCCAGCAAAGCCCCTGTGAAAAAGGAGAACCAGTGGTTTGATGTGGGGGTCATTAAGGGTACCAGTGT AATGGTGACACACTATTTTCTGCCACCAGATGATGCTGTTCAGTCAGATGATGACTCAGGCACGGTCCCA GACTATAACCAGCTAAAGAAGCAGGAGCTACAGCCAGGCACGGCTTACAAATTTCGAGTTGCTGGAATCA ATGCTTGTGGCCGGGGACCCTTCAGTGAGATCTCAGCCTTTAAGACTTGTCTGCCTGGGTTCCCAGGGGC TCCTTGTGCTATTAAAATCAGCAAGAGCCCAGATGGTGCTCACCTCACCTGGGAGCCACCGTCTGTGACC TCCGGCAAGATCATCGAGTACTCTGTGTACCTGGCCATCCAGAGCTCACAGGCCAGTGGTGAGCCAAAGA GCTCCACCCCAGCCCAGCTGGCCTTCATGCGAGTGTACTGTGGGCCTAGCCCTTCCTGCCTAGTGCAGTC CTCCAGCCTCTCCAACGCCCACATTGACTATACTACAAAGCCTGCCATCATCTTCCGCATTGCTGCCCGC AATGAAAAGGGCTACGGCCCTGCCACACAAGTGAGGTGGTTGCAAGAAACTAGTAAAGACAGCTCTGGCA CCAAGCCGGCCAGCAAGCGGCCCATGTCGTCTCCAGAAATGAAATCTGCTCCAAAGAAGTCTAAGGCTGA TGGTCAGTGAGGAAGCTGGCCAGCAACTGGATCCTCCAGACCCCTCTGCTTCAGGAAGGCCCTATAGGGC CCACCTTCCCGCCCTGCCCACCTGGCCTTTGCACTTCACCCTCACCAGCTACTGGCCACCATTCAGTCTC CCCCTTTTCCTCTGTTTTTACAATAAAGAAAGCACATTTTACCATTGCTATTGGGAGGAAGCAGAAGGCA GATTGGAAAGAACAGCGAGTAAGTGCAAGTTGTGCTCCTTCCTTTTCCCTACCTGGTACCCTCCCTGGGT TGAGTATGAATGGACAGCTCAGAGACTTTGGGAAGAGAAATTAAAACTGAAAACAAAGGAGATAACACCC ATACTTAAGCCTGCACTTGTTTGTAGTTCATCGCCCTTGGCCTGAGAGGCAGCCAAGGACTAGAGGGGGA AGGATATCCCCCAAGTTCCCTCAGAGGCTTTTCCCAGCAGGTACCCCATTCTGGGTATCTGTCTGGTTCT ATTTTGTTTTGTTATTATCCTTGTATTTCCAGCCACCTCCCATCCCTTCTTCAAGCTTAGCCAGATCCTA TCTCGCCCAGTGAAATCACAGGAAGTTTAACGTATCTCAGAGGCCTTTGAGTTCCCACTCAATACCTCTC CCTCTTTACAGAAGAGAGGGGTGGGGGGAGCCTTGGTTGGTCTGAGCAGTGGCTGTGAAATCCTCCCAAT GGGCACAGAATGGCCCCCAGGAACCCTGGCCTTGGCCTACTTTTTTGAGCCTGGGGGCCACATCACCAAC TGCTGCATATGTTGTATTTTTTAAGTTGAAATTAATGAAGTTAACATTTTTATTGTAATTTTAGCCTTAG CGTGTGGGGGTTTATCCCTTTTTGTTAGCTGTGTACAGAATGTGTATCCTATCTCCTCCCCTCCTTGGCT AATCATTGGCAGGGGTCTTCCTGGGGAAAAGCTTAAAGAGCAGCTAGGGAAGGAGAGAAACAGTGTCCTG GGTGAGACTTGGTAGATACTGCTCCAATATCCTGTTGCTAGCCCCCACCTCCTTCTGGAACAGTGTGAGA CAATTAAACTTCATTCCCTGTGGGTTAGCACTTAATATGTAGAAGCTTGGGCTTGAAGGTGATGTCCACC TTAATCAGCATCACTTGCAGAGACTGACCCTAAACAACACAGCAGGGGCAGGGAACGGGTAGGACTTGAC CCTCTTGAAGGCAGCCCAGGATGGGAGTAGGGTATGCCATATCCCACAGGGGCTATGAGTAGGTACCAGA TACCAACTCAGTAATTAATTTTGTAGCATTGTCCCCAAGCTCTGGATTTTTTTCTCTCCAGGACCCAAGT TTTAGGCAGTGAGTAATGCTTATAAGCAAATTACTGAAGGATTTAAAAATGGACAGCCAATGTGTTCAGC CGCTCTGGCCTGTACCCCCTGGGGCCTCTAGTGTATTGTATTATATTTCTGTGGAAAGTCATGTTTAGTC AAATTGGAATCCACTCACCTGTTCCCTTTGTTTTCCCTATCCCTTCTCCTGAGCACCCTTTGATTTCTGA GGACAGTACTACCCATTCATCTATTGTAGAGTAACCCTTGTGACTCAATATTACCATAGTGCGATGTTGT TTTGTGCTATTTTGAACAATTAAAAAGACTTTTTTTGAAATAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAA |
Restriction Sites | RsrII-NotI |
ACCN | BC053742 |
ORF Size | 6138 bp |
Insert Size | 6138 |
OTI Disclaimer | Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP). |
Reference Data | |
RefSeq | BC053742, AAH53742 |
RefSeq Size | 8133 |
RefSeq ORF | 6138 |
Locus ID | 15161 |
Gene Summary | This gene encodes a transcription cofactor that regulates the progression of cell cycle and maintain the ability of embryonic stem cells to self-renew. The encoded protein is a large precursor that undergoes site-specific proteolytic cleavage to yield N- and C-terminal chains that form a non-covalent heterodimer. The encoded protein has been implicated in the regulation of expression of immediate early genes after herpes simplex virus infection and glucose-stimulated secretion of insulin by pancreatic beta cells. [provided by RefSeq, Aug 2015] |
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