Ank1 (NM_001110783) Mouse Untagged Clone
CAT#: MC225025
Ank1 (untagged) - Mouse ankyrin 1, erythroid (Ank1), transcript variant 1, (10ug)
"NM_001110783" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Ank1 |
Synonyms | Ank-1; nb; pale |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225025 representing NM_001110783
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGCTCAGGCGGCCAAACAGCTGAAGAAAATCAAAGACATCGAGGCGCAGGCCCTCCAGGAGCAGAAGG AGAAGGAGGAATCCAACAGGAAGCGGCGGAACCGCTCCCGTGACCGCAAGAAGAAGGCCGATGCTGCTAC CAGCTTTCTGCGGGCGGCACGCTCGGGGAACCTGGACAAGGCTCTGGATCACCTGCGCAATGGAGTGGAC ATTAACACCTGTAACCAGAACGGGTTGAACGGCCTGCATCTGGCCTCCAAAGAAGGCCATGTGAAGATGG TGGTTGAACTTCTGCACAAAGAGATCATTCTAGAAACGACAACCAAGAAGGGGAACACTGCTCTGCACAT CGCTGCCCTTGCTGGTCAGGATGAGGTGGTCCGGGAGCTGGTCAACTATGGAGCCAATGTCAATGCCCAG TCTCAGAAAGGCTTTACTCCCCTGTACATGGCTGCTCAGGAGAACCACTTGGAAGTGGTGAAATTTCTAC TGGAGAATGGAGCCAATCAGAATGTAGCCACAGAAGATGGCTTCACCCCACTGGCCGTGGCTCTACAGCA GGGTCACGAGAATGTGGTGGCTCACCTCATCAACTATGGGACGAAAGGGAAAGTGCGCCTCCCTGCCCTG CACATCGCGGCCCGCAACGATGACACACGGACAGCCGCAGTCCTTCTGCAGAATGACCCCAACCCAGATG TGCTTTCCAAGACGGGATTCACACCCCTCCACATCGCAGCTCACTATGAGAACCTCAACGTGGCCCAGTT GCTCCTCAACAGGGGAGCCAGCGTCAACTTCACACCTCAGAATGGCATCACCCCACTACACATCGCCTCC CGCAGGGGGAACGTGATCATGGTGAGACTCCTGCTGGACCGAGGGGCTCAGATAGAAACGAGGACCAAGG ATGAATTGACACCGCTCCACTGTGCAGCTCGGAATGGACACGTGAGAATCTCAGAGATCCTGCTGGACCA CGGGGCACCCATCCAAGCCAAAACCAAGAATGGCTTGTCCCCAATCCACATGGCCGCTCAGGGAGACCAC CTCGACTGTGTCCGACTTCTATTGCAATACAATGCAGAGATAGACGACATCACCTTGGATCACCTGACTC CTCTCCATGTGGCAGCCCACTGTGGCCACCACCGGGTGGCTAAGGTTCTTTTGGATAAAGGGGCCAAGCC CAACTCCAGAGCCCTGAATGGTTTTACCCCGTTACACATCGCCTGCAAGAAGAACCACATCCGTGTAATG GAGTTGCTGCTGAAGACAGGAGCCTCCATCGACGCGGTCACTGAGTCTGGCCTGACACCTCTCCACGTAG CCTCCTTCATGGGACACCTTCCTATTGTGAAGAACTTACTGCAGCGGGGAGCGTCACCCAATGTCTCCAA TGTGAAAGTAGAAACCCCCTTGCACATGGCAGCCCGAGCAGGGCATACAGAAGTGGCCAAATATTTGCTC CAGAACAAAGCCAAAGCCAACGCCAAGGCCAAGGATGACCAGACACCGCTTCACTGTGCTGCTCGAATCG GCCACACAGGCATGGTGAAGCTCCTGCTGGAGAATGGTGCCAGCCCCAATCTGGCTACCACTGCTGGCCA CACACCCCTACACACCGCAGCCCGTGAGGGACACGTGGACACAGCCCTGGCCCTGCTGGAGAAGGAGGCA TCCCAAGCCTGCATGACCAAGAAAGGATTTACCCCTCTGCACGTGGCTGCTAAGTACGGGAAGGTACGGT TGGCGGAGCTGCTGCTGGAACACGATGCACACCCCAATGCAGCTGGGAAGAACGGCTTGACTCCTCTGCA TGTGGCCGTCCATCACAACAACCTGGACATTGTCAAACTTCTTCTTCCCCGAGGTGGCTCCCCCCACAGC CCTGCCTGGAATGGCTACACTCCTTTGCACATCGCTGCCAAGCAGAACCAGATAGAGGTGGCCCGCAGTC TACTGCAGTACGGAGGGTCAGCGAATGCAGAGTCGGTACAAGGCGTGACCCCACTTCACCTGGCTGCCCA AGAGGGCCACACAGAAATGGTTGCTCTTCTCCTGTCCAAGCAAGCCAACGGCAACCTGGGGAACAAGAGT GGACTCACTCCCCTCCACCTGGTGTCACAAGAAGGCCATGTTCCAGTGGCAGACGTGCTGATCAAACATG GCGTCACCGTGGATGCTACCACCCGGATGGGTTACACCCCGCTCCATGTGGCCAGTCATTATGGAAACAT CAAGCTGGTGAAGTTCTTGCTACAGCACCAGGCAGATGTCAATGCCAAGACCAAGCTAGGATACAGCCCC TTGCACCAGGCAGCTCAACAAGGACACACAGACATTGTGACATTGCTCCTGAAGAATGGTGCTTCTCCAA ATGAGGTCAGCTCGAACGGAACCACACCTCTGGCAATAGCCAAACGTTTGGGCTACATCTCTGTAACAGA CGTGCTCAAGGTGGTCACAGATGAAACCAGTGTGGTGTTAGTCAGTGACAAACACCGGATGAGCTACCCT GAGACGGTGGACGAGATCCTGGACGTGTCTGAAGATGAAGGAACTGCTCACATATCTATAATGGGTGACG AACTTGTCGGCTCGAAGGCTGAAAGGCGGGACTCCCGGGATGTGGGTGAGGAGAAAGAGCTGTTGGATTT TGTGCCGAAGCTAGACCAAGTGGTGGAGTCTCCAGCCATCCCAAGGATCCCTTGTGTCACACCTGAGACC GTTGTGATCCGATCTGAAGATCAGGAACAAGCATCTAAAGAATATGATGAGGATTCCCTCATTCCCAGCA GCCCGGCCACAGAGACCTCAGACAACATTAGCCCTGTGGCTAGCCCGGTCCACACAGGGTTCCTGGTGAG CTTCATGGTGGATGCCCGAGGGGGATCCATGAGAGGAAGCCGTCATAATGGCCTCAGGGTGGTGATCCCT CCCCGGACATGCGCAGCACCCACTCGCATCACCTGCCGCCTCGTTAAGCCGCAGAAGCTGAACACGCCAC CCCCACTGGCTGAGGAAGAGGGCCTAGCCAGCAGGATCATTGCCCTGGGACCCACGGGGGCCCAGTTCCT TAGCCCTGTGATCGTGGAAATCCCCCATTTTGCCTCCCATGGCCGTGGGGACCGTGAGCTGGTGGTTCTG AGGAGTGAAAACGGCTCTGTGTGGAAGGAGCACAAGAGTCGTTATGGGGAAAGCTACCTGGACCAGATCC TTAATGGCATGGATGAAGAGCTGGGGAGCCTGGAGGAGCTGGAGAAGAAACGTGTGTGCCGCATCATCAC CACCGACTTCCCTCTGTACTTTGTCATCATGTCCCGGCTCTGCCAGGACTACGACACCATCGGTCCTGAA GGGGGTTCCCTGAGAAGCAAGCTGGTACCGCTGGTACAGGCAACGTTCCCTGAAAACGCTGTGACCAAGA AAGTGAAGCTGGCTCTGCAGGCCCAGCCTGTCCCGGATGAGCTGGTGACCAAGCTCCTGGGTAACCAGGC CACATTCAGCCCCATTGTGACCGTGGAGCCGAGGCGTCGGAAGTTCCACCGTCCCATCGGGCTGCGAATC CCGCTCCCTCCCTCATGGACGGACAACCCCAGGGACAGTGGGGAGGGAGACACCACCAGCCTGCGCCTAC TGTGTAGCGTCATCGGTGGAACTGACCAAGCCCAGTGGGAAGATATAACGGGAACAACCAAACTTATATA CGCCAATGAGTGTGCCAACTTTACCACCAATGTCTCAGCCAGGTTCTGGCTGTCAGACTGTCCCCGGACT GCGGAGGCTGTGCACTTTGCCACTCTCCTGTACAAAGAGCTCACAGCAGTCCCCTACATGGCTAAGTTTG TCATTTTTGCCAAGATGAACGACGCTCGGGAAGGACGGCTCCGTTGCTACTGCATGACGGATGACAAAGT GGACAAGACCCTGGAGCAGCATGAAAACTTCGTGGAGGTGGCCCGGAGCAGGGACATAGAGGTTCTGGAA GGGATGCCTCTGTTTGCAGAACTCTCTGGGAACTTGGTTCCTGTCAAGAAAGCGGCCCAACAGCGGAGCT TCCATTTCCAGTCGTTTCGAGAGAATCGTCTGGCCATCCCCGTGAAGGTGAGGGACAGCAGCCGCGAGCC AGGAGGGTTCTTGTCGTTCCTACGAAAGACAATGAAGTACGAGGACACACAGCACATCCTCTGTCACCTG AATATCACCATGCCCCCCTGCACCAAGGGCAGTGGAGCAGAAGACAGGAGAAGGACCCTGACACCCCTGA CCCTTCGATACAGCATTCTCAGCGAGTCGCGGCTGGGTTTTACCAGTGACACAGACCGTGTCGAAATGAG GATGGCTGTCATCAGAGAACACCTCGGCCTAAGCTGGGCAGAGCTGGCCCGGGAGCTGCAGTTCAGCGTG GAAGACATCAACCGGATCCGTGTAGAAAACCCTAACTCCTTGTTGGACCAGAGTACAGCCTTGCTGACCC TCTGGGTGGACCGTGAAGGCGAAAATGCAAAGATGGAGAATTTGTACACAGCCCTGCGGAACATCGACAG GAGTGAGATTGTTAACATGTTGGAGGGCTCCGGCAGGCAGAGCAGAAACCTCAAACCAGAGCGGAGACAT GGGGACCGGGAGTACTCATTGTCACCCTCCCAGGTGAATGGTTACTCCTCGCTGCAGGACGAGCTGCTGT CCCCCGCCTCCCTGCAGTACGCTCTCCCCTCTCCACTGTGTGCAGACCAGTACTGGAACGAAGTGGCCGT CATAGACGCCATCCCCCTGGCGGCTACAGAGCATGACACCATGCTGGAGATGTCTGACATGCAGGTGTGG TCTGCGGGCCTCACACCCTCCCTGGTCACTGCTGAGGACTCCTCTCTGGAGTGCAGCAAGGCTGAGGACT CTGACGCCATACCAGAGTGGAAGTTGGAAGGGGCACACTCAGAGGACACGCAGGGCCCGGAGCTGGGCTC TCAGGACCTGGTGGAGGACGACACAGTGGATTCAGATGCCACAAATGGCCTGGCAGATTTGCTAGGTCAG GAGGAAGGTCAGAGGTCAGAAAAGAAGAGGCAGGAAGTCTCAGGCACAGAGCAGGACACGGAGACTGAAG TGTCTCTTGTTTCAGGCCAGCAGCGAGTTCACGCCCGAATCACAGACTCACCCTCAGTGAGGCAGGTGCT GGACAGAAGCCAGGCCAGAACACTGGACTGGGATAAACAGGGTTCCACAGCGGTACACCCGCAAGAAGCC ACACAGAGCTCCTGGCAAGAGGAGGTCACGCAGGGCCCACACTCATTCCAGAGAAGGATCACCACCATCC AAGGGCCGGAGCCTGGTGCGCTTCAGGAATACGAGCAGGTGCTGGTGTCTACCAGGGAGCATGTGCAGAG GGGGCCACCTGAGACCGGCAGCCCCAAAGCTGGCAAGGAACCTAGCCTGTGGGCACCTGAGAGCGCCTTC TCTCAAGAGGTGCAGGGGGATGAGCTTCAGAATATTCCAGGAGAGCAGGTGACGGAGGAACAATTCACAG ATGAACAGGGCAACATTGTTACCAAGAAGATCATTCGCAAAGTCGTCCGGCAGGTAGACTCGTCTGGTGC CATCGACACCCAGCAGCACGAGGAGGTGGAGCTAAGAGGGAGTGGACTCCAGCCGGACCTGATAGAGGGC AGGAAGGGGGCTCAGATAGTGAAGCGGGCCAGCCTGAAAAGGGGCAAGCAGTGA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_001110783 |
ORF Size | 5724 bp |
Insert Size | 5724 |
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 | NM_001110783.3, NP_001104253.1 |
RefSeq Size | 8283 |
RefSeq ORF | 5724 |
Locus ID | 11733 |
Gene Summary | Attaches integral membrane proteins to cytoskeletal elements; binds to the erythrocyte membrane protein band 4.2, to Na-K ATPase, to the lymphocyte membrane protein GP85, and to the cytoskeletal proteins fodrin, tubulin, vimentin and desmin. Erythrocyte ankyrins also link spectrin (beta chain) to the cytoplasmic domain of the erythrocytes anion exchange protein; they retain most or all of these binding functions. In skeletal muscle, isoform Mu7 together with obscurin may provide a molecular link between the sarcoplasmic reticulum and myofibrils. [UniProtKB/Swiss-Prot Function] Transcript Variant: This variant (1) encodes the longest isoform (1). |
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