MEGF8 (NM_001410) Human Untagged Clone
Product Data | |
Type | Human Untagged Clone |
---|---|
Target Symbol | MEGF8 |
Synonyms | C19orf49; CRPT2; EGFL4; SBP1 |
Vector | pCMV6-AC |
E. coli Selection | Ampicillin (100 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
Fully Sequenced ORF
>OriGene sequence for NM_001410 edited
GGCCGCTCTGGCCCAAGCGTCCCCTCGTCTCTCTGATCTGGCCCATCCGGCTTCGGAGGG AGGCGAGGGTGGGTGAGCAAAGGGATTGGGTCTGTGGGGTCCAGGCCCGAACCCCTGAAG ACGGGCTCCGCCCCCGGCACCCGCTCGCGCCCCGCCCCCGGCTGGAGGAGTCTCTCCTGG ACCATCCGAACCTAGCCTGTCCCGGCCCGCAGCCTCTATGGAGGCTCCTGCCGGGCCGTA GAGCCCTTCGCCCCCTGGGGACCCACCCGTCTATAAGGTCCGTTTGGCCTGCAGCAGCCT GAGTCCGTAATGCTGGGCACTGTTCATGGGATCGGCCCCCTATGGAGCCCTGTGTCTATA GGGGACTCCTACGGTCCCTAGGGTTCGGCCCCGTCCATAATGACTCCATATACAGGGCCT TCCATCGCTCTATAGGGCTCAGCCCTCGGCTTCCAGAGCCTGTCAGCAGTGGCCGTACCC TTCGCCGGGACTGCCGGGTCTCCGGGACCTCTTCGATCTACAAGGTCATGTTATGCCTAT AGAGGTCGCATTTGCAGGGCCTCACCCCGGGTAGAGGGTCCTCTCCAGGTTTTTACGGCC TGTCCCCGCTCTAAGGGTCAGTGCAGGAGGCGGCGATGGCCCTGGGCAAGGTTCTGGCCA TGGCACTGGTTTTGGCCTTGGCCGTGCTGGGGTCGCTGTCCCCTGGGGCCCGGGCGGGGG ACTGCAAGGGGCAGCGGCAGGTGCTGCGGGAGGCGCCAGGCTTCGTGACGGATGGTGCGG GCAACTACAGCGTCAATGGCAACTGCGAGTGGCTCATCGAGGCCCCAAGCCCCCAGCACC GGATCCTGCTGGACTTCCTTTTCCTGGACACAGAGTGCACGTATGACTACCTGTTCGTGT ATGACGGTGACTCCCCGCGAGGGCCGCTGCTTGCCAGTCTAAGTGGGAGCACCCGACCTC CGCCCATCGAAGCTTCCTCAGGCAAGATGCTGCTGCACCTCTTCAGTGATGCCAACTACA ACCTGCTGGGCTTTAACGCCTCATTCCGCTTCTCCCTGTGCCCGGGTGGCTGCCAGAGCC ACGGGCAGTGCCAGCCACCGGGTGTGTGTGCCTGCGAGCCGGGCTGGGGGGGTCCTGACT GTGGCCTGCAGGAGTGCTCAGCCTACTGTGGCAGCCACGGCACCTGCGCCTCGCCCCTGG GACCATGCCGCTGTGAGCCTGGCTTCTTGGGACGTGCCTGTGACCTGCACCTGTGGGAGA ACCAGGGGGCTGGGTGGTGGCACAACGTGAGTGCCAGGGACCCTGCCTTCTCTGCCCGTA TTGGGGCAGCTGGCGCCTTCCTGTCCCCACCAGGGCTGCTGGCAGTTTTCGGAGGCCAGG ACCTCAACAATGCCCTGGGTGACCTCGTCCTATACAACTTCTCCGCCAACACCTGGGAGT CTTGGGACCTGAGTCCTGCCCCGGCTGCCCGTCACTCCCATGTGGCCGTGGCCTGGGCCG GCTCCCTGGTACTGATGGGTGGTGAGCTGGCTGACGGCTCGCTCACCAACGACGTGTGGG CCTTCAGTCCACTGGGCAGGGGCCACTGGGAGCTCCTGGCACCACCTGCCTCCAGCTCCT CGGGGCCCCCAGGCCTGGCAGGTCACGCGGCTGCCCTGGTGGATGATGTCTGGCTATATG TGTCTGGAGGCCGCACCCCGCACGACCTCTTCTCCTCTGGCCTCTTCCGTTTCCGCCTTG ACAGCACCAGCGGGGGCTATTGGGAGCAGGTGATTCCGGCAGGCGGACGGCCCCCTGCTG CCACTGGCCACTCCATGGTGTTCCATGCCCCCTCCCGTGCCCTGCTGGTCCATGGTGGAC ACCGGCCCTCCACTGCCCGGTTCTCTGTGCGAGTGAACTCCACTGAGCTTTTCCACGTGG ATCGGCATGTGTGGACGACGCTGAAGGGGCGGGATGGGCTTCAGGGCCCAAGGGAGCGAG CCTTCCACACAGCCAGTGTTCTGGGCAATTACATGGTGGTCTATGGGGGCAATGTGCACA CCCATTACCAGGAGGAAAAGTGCTACGAAGATGGCATCTTCTTCTACCACCTTGGCTGCC ATCAATGGGTGTCAGGAGCTGAGCTTGCCCCGCCAGGAACCCCTGAGGGCCGAGCAGCGC CTCCCAGTGGTCGGTACTCACATGTAGCTGCGGTGCTTGGTGGCAGCGTCCTGTTGGTGG CTGGGGGGTACAGCGGCCGGCCCCGTGGGGACTTGATGGCGTACAAGGTGCCCCCCTTTG TGTTCCAGGCACCTGCCCCTGACTACCACTTGGACTACTGCTCCATGTACACAGACCACA GCGTCTGCTCCCGGGACCCGGAATGCAGTTGGTGCCAAGGAGCCTGCCAAGCTGCACCCC CTCCTGGGACCCCCTTGGGGGCTTGTCCAGCCGCCAGCTGCCTGGGCCTGGGCCGCCTCC TGGGTGACTGCCAGGCCTGCCTGGCCTTCAGCAGCCCCACAGCCCCTCCACGGGGACCTG GCACCCTGGGCTGGTGCGTGCACAATGAGAGCTGCCTCCCTAGGCCTGAGCAGGCCCGCT GCCGAGGGGAGCAGATCTCAGGCACTGTGGGCTGGTGGGGGCCTGCGCCTGTCTTCGTCA CGTCCCTGGAGGCCTGCGTCACCCAGAGCTTCCTGCCTGGCCTGCACTTGCTCACCTTTC AGCAGCCGCCCAATACCTCCCAGCCTGACAAGGAGGAGGTGGGGCGCTGGGTGGCTCATC AGGAGAAGGAGACGCGGCGGCTGCAGCGCCCTGGGTCTGCTCGCCTCTTCCCTCTGCCTG GGCGGGACCACAAGTATGCAGTAGAGATCCAGGGCCAGCTCAATGGCTCGGCAGGCCCTG GGCACAGCGAGCTAACTCTGCTGTGGGATCGGACTGGTGTGCCAGGAGGCAGCGAGATCT CCTTCTTCTTCCTGGAGCCCTACCGCTCGTCGTCCTGCACCTCCTATTCTTCCTGCCTGG GCTGCTTGGCAGACCAGGGCTGTGGCTGGTGCCTGACCAGTGCCACCTGCCACCTGCGCC AGGGCGGAGCCCATTGCGGGGATGACGGGGCTGGTGGGTCCCTGCTGGTGCTGGTGCCTA CCCTCTGCCCACTCTGCGAGGAGCATCGGGACTGCCACGCCTGCACCCAGGACCCCTTCT GTGAGTGGCATCAGAGCACCAGCCGCAAAGGGGACGCGGCATGCAGCCGGCGGGGCCGGG GTCGGGGTGCCCTGAAGAGTCCAGAGGAGTGTCCCCCGCTCTGCAGCCAGCGACTGACCT GTGAGGACTGCCTGGCCAACTCTAGCCAGTGCGCCTGGTGCCAGTCCACCCACACCTGCT TCCTGTTTGCTGCCTACTTGGCCCGGTACCCACACGGGGGCTGTCGAGGCTGGGACGACA GTGTACACTCGGAGCCACGGTGCCGGAGCTGCGATGGCTTCCTGACCTGCCATGAGTGTC TGCAGAGCCACGAGTGTGGCTGGTGTGGCAATGAGGACAACCCCACACTGGGACGGTGCC TACAGGGGGACTTCTCAGGGCCCCTCGGTGGGGGTAACTGCTCCCTGTGGGTGGGGGAGG GCCTGGGGCTTCCCGTGGCCCTCCCTGCCCGCTGGGCATACGCCCGCTGTCCTGACGTGG ATGAGTGTCGCCTGGGCCTGGCCCGGTGCCACCCGCGGGCGACCTGCCTGAACACGCCCC TCAGCTACGAGTGTCACTGCCAGCGGGGCTACCAGGGTGATGGCATCTCACACTGCAACC GCACGTGCTTGGAGGACTGTGGCCATGGTGTGTGCAGTGGCCCCCCGGACTTTACCTGCG TGTGTGACCTAGGCTGGACATCAGACCTGCCCCCTCCCACACCCGCCCCGGGTCCGCCAG CCCCCCGCTGCTCCCGGGACTGTGGCTGCAGCTTCCACAGCCACTGCCGCAAGCGGGGCC CTGGCTTCTGCGACGAGTGCCAGGACTGGACATGGGGGGAGCACTGCGAACGATGCCGGC CCGGCAGCTTCGGCAACGCCACAGGCTCTAGGGGCTGCCGGCCCTGCCAGTGCAACGGGC ACGGGGACCCACGCCGTGGCCACTGCGACAACCTCAGTGGGCTCTGCTTCTGCCAGGACC ACACCGAGGGTGCCCACTGCCAGCTCTGCTCCCCAGGCTATTATGGGGATCCCCGGGCCG GTGGTTCCTGCTTTCGGGAGTGTGGGGGTCGCGCCCTCCTCACCAACGTGTCCTCAGTGG CACTGGGCTCACGCCGGGTCGGGGGGCTGCTGCCTCCAGGTGGCGGGGCTGCAAGAGCCG GGCCTGGCCTGTCCTACTGTGTGTGGGTTGTCTCGGCCACTGAGGAGCTACAGCCCTGTG CTCCCGGGACCCTCTGTCCCCCACTCACCCTCACCTTCTCCCCCGACAGCAGCACCCCCT GCACGCTGAGCTACGTCCTGGCGTTTGATGGATTCCCACGCTTCCTGGACACTGGTGTTG TCCAGTCGGACCGCAGCCTCATAGCTGCCTTCTGCGGCCAGCGACGGGACAGGCCCCTCA CTGTTCAGGCCCTGTCTGGGCTGCTCGTGCTGCACTGGGAGGCCAATGGCTCCTCATCCT GGGGCTTCAATGCTTCGGTGGGCTCTGCCCGCTGTGGGTCAGGGGGCCCCGGGAGCTGTC CCGTCCCCCAGGAATGCGTGCCCCAGGACGGTGCTGCAGGTGCGGGGCTCTGCCGATGTC CTCAGGGCTGGGCTGGCCCACACTGCCGCATGGCTCTGTGTCCTGAGAACTGCAATGCCC ACACTGGGGCAGGAACTTGTAACCAGAGCCTGGGTGTGTGCATCTGTGCCGAGGGCTTCG GGGGCCCCGACTGCGCCACCAAGCTGGATGGCGGGCAGCTGGTCTGGGAGACCCTCATGG ACAGCCGCCTCTCAGCCGACACTGCCAGCCGCTTCCTGCACCGCCTGGGCCACACCATGG TGGATGGACCCGATGCCACCTTGTGGATGTTTGGGGGCCTGGGCCTGCCCCAGGGGCTGC TGGGAAACCTGTACAGGTACTCAGTGAGTGAGCGGCGGTGGACACAGATGCTGGCGGGAG CCGAGGACGGGGGCCCAGGCCCATCGCCCCGCTCCTTCCATGCAGCCGCATATGTGCCCG CTGGCCGTGGTGCCATGTATCTGCTGGGGGGACTTACCGCTGGAGGCGTCACCCGTGATT TCTGGGTCCTCAACCTCACCACCCTGCAATGGCGGCAGGAGAAGGCCCCCCAGACCGTGG AGCTGCCAGCCGTTGCTGGTCACACCCTTACTGCCCGCCGAGGCCTGTCTCTGCTCCTGG TGGGCGGTTACTCCCCGGAAAATGGCTTCAACCAGCAGCTGCTGGAGTACCAGCTGGCAA CCGGCACCTGGGTGTCAGGAGCCCAGAGTGGGACACCCCCCACAGGTCTCTATGGTCACT CTGCTGTCTACCACGAGGCCACCGACTCCCTCTACGTGTTTGGGGGGTTCCGATTCCATG TGGAGCTGGCGGCCCCATCCCCCGAGCTCTACTCCCTGCACTGTCCTGACCGCACCTGGA GTCTGCTGGCCCCTTCTCAGGGGGCAAAGCGAGATCGTATGAGGAATGTGCGTGGCTCAT CTCGGGGTCTGGGCCAAGTTCCTGGGGAGCAGCCTGGGTCATGGGGGTTCCGGGAAGTCA GGAAGAAGATGGCTCTGTGGGCTGCTCTTGCTGGTACAGGAGGTTTCCTGGAGGAAATCT CACCTCACCTGAAGGAGCCCCGCCCCCGGCTTTTCCACGCCTCAGCCCTGTTAGGGGACA CCATGGTGGTTCTTGGGGGGCGCTCGGACCCTGACGAGTTCAGCAGCGACGTTCTGCTCT ACCAGGTCAACTGCAATGCCTGGCTTCTGCCCGACCTCACCCGCTCGGCCTCTGTGGGGC CCCCAATGGAGGAGTCTGTGGCCCATGCTGTGGCAGCAGTCGGGAGCCGCCTGTATATCT CTGGGGGTTTCGGGGGAGTGGCCCTGGGCCGCCTGCTGGCACTGACCCTGCCCCCTGACC CCTGCCGCCTGCTGTCCTCACCTGAAGCTTGTAACCAGTCTGGGGCCTGCACCTGGTGCC ATGGGGCCTGCTTGTCCGGGGATCAGGCCCACAGGCTGGGCTGCGGGGGCTCCCCCTGCT CCCCAATGCCTCGCTCCCCGGAGGAATGTCGACGTCTCCGGACCTGCAGTGAGTGCCTGG CCCGCCATCCTCGGACCCTGCAACCTGGAGATGGAGAGGCGTCCACCCCCCGCTGTAAGT GGTGTACCAACTGCCCCGAAGGTGCTTGCATTGGACGCAATGGGTCCTGCACCTCTGAGA ATGACTGTCGGATCAACCAGCGAGAGGTCTTCTGGGCAGGGAACTGCTCCGAGGCTGCGT GCGGGGCTGCTGACTGCGAGCAGTGCACGCGGGAGGGCAAGTGCATGTGGACGCGGCAGT TCAAGAGGACAGGGGAGACCCGCCGCATCCTCTCCGTGCAGCCCACCTATGACTGGACGT GCTTCAGCCACTCTCTGCTGAATGTGTCCCCCATGCCGGTGGAATCATCACCCCCACTGC CCTGCCCCACCCCTTGTCACCTCCTACCCAACTGTACCTCCTGCCTGGACTCTAAGGGAG CAGATGGGGGCTGGCAGCACTGTGTTTGGAGCAGCAGCCTGCAGCAGTGTCTGAGCCCTT CCTACCTGCCCCTGCGATGTATGGCCGGAGGCTGTGGGCGGCTGCTCCGGGGACCTGAGA GCTGCTCCCTGGGCTGTGCTCAGGCAACTCAGTGCGCCTTGTGCCTGCGGCGCCCCCATT GCGGCTGGTGTGCCTGGGGGGGCCAGGATGGGGGTGGCCGCTGCATGGAGGGTGGACTCA GCGGCCCCCGTGATGGGCTGACATGTGGGCGTCCGGGGGCCTCCTGGGCCTTCCTGTCCT GCCCCCCTGAGGACGAGTGTGCAAACGGGCACCACGACTGCAACGAGACGCAGAATTGCC ACGACCAGCCCCACGGCTATGAGTGCAGCTGCAAGACCGGCTATACCATGGACAACATGA CAGGGCTGTGCCGCCCTGTGTGCGCCCAGGGCTGCGTGAACGGCTCATGTGTGGAGCCCG ACCACTGCCGCTGCCACTTTGGCTTTGTGGGCCGCAACTGCTCCACGGAATGCCGCTGCA ACCGCCACAGTGAATGCGCTGGTGTTGGGGCGCGTGACCACTGCTTGCTCTGCCGCAACC ACACCAAGGGCAGCCACTGTGAGCAGTGCCTCCCGCTGTTTGTGGGTTCAGCTGTCGGAG GCGGGACCTGCCGGCCCTGCCACGCCTTTTGTCGTGGAAATAGCCACATCTGCATCTCCA GGAAGGAGTTACAAATGTCCAAGGGAGAGCCAAAGAAGTACTCACTGGACCCAGAGGAGA TTGAAAACTGGGTGACAGAGGGTCCTAGTGAAGACGAGGCCGTGTGCGTGAACTGCCAGA ATAACAGCTATGGGGAGAAATGCGAGAGCTGCCTGCAGGGCTACTTCCTCCTGGACGGGA AGTGCACCAAATGCCAGTGTAATGGCCACGCGGACACATGTAACGAGCAGGATGGGACGG GCTGTCCATGTCAGAATAACACAGAGACGGGCACATGCCAGGGCAGCTCCCCCAGTGACC GTCGAGACTGCTACAAGTACCAGTGCGCCAAGTGCCGGGAATCATTTCACGGGAGTCCGC TGGGCGGCCAGCAGTGCTACCGCCTCATCTCGGTGGAGCAGGAGTGCTGCCTGGACCCCA CGTCCCAGACCAACTGCTTCCATGAGCCCAAACGCCGGGCGCTAGGCCCCGGCCGCACTG TCCTCTTTGGCGTGCAGCCCAAATTCACCAACGTGGACATCCGCCTGACGCTGGACGTGA CCTTCGGGGCCGTGGACCTCTATGTCTCCACCTCCTATGACACCTTCGTGGTCCGTGTGG CCCCTGACACTGGCGTCCATACTGTACACATCCAGCCACCCCCAGCCCCACCACCTCCAC CACCCCCTGCAGATGGTGGGCCCCGGGGGGCTGGGGATCCAGGAGGAGCAGGGGCCAGCA GTGGGCCGGGCGCCCCAGCAGAGCCACGGGTACGGGAGGTATGGCCGCGGGGCCTGATTA CCTACGTGACGGTGACGGAGCCGTCGGCAGTGCTGGTGGTCCGCGGCGTGCGGGACCGGC TGGTCATCACCTACCCACACGAGCACCATGCCCTCAAGTCGAGCCGCTTCTACCTGCTGC TGCTGGGCGTGGGAGACCCAAGTGGGCCCGGCGCCAACGGCTCAGCCGACTCGCAGGGCC TGCTCTTCTTCCGGCAGGACCAGGCCCACATTGACCTGTTTGTCTTCTTCTCCGTCTTCT TCTCCTGCTTCTTCCTCTTCCTCTCACTCTGTGTGCTCCTCTGGAAGGCCAAGCAGGCTC TGGACCAGCGGCAGGAGCAGCGCCGGCACTTGCAGGAGATGACCAAGATGGCCAGCCGCC CCTTCGCCAAGGTCACCGTCTGCTTCCCACCTGACCCTACTGCCCCGGCCTCCGCCTGGA AGCCGGCTGGGCTCCCACCTCCCGCCTTCCGCCGCTCTGAGCCCTTCCTGGCACCCCTGC TGCTGACAGGGGCCGGTGGGCCCTGGGGACCCATGGGAGGGGGCTGCTGCCCACCAGCCA TCCCCGCCACCACTGCTGGGCTGCGAGCTGGGCCCATCACTCTCGAGCCCACAGAAGATG GCATGGCTGGCGTGGCCACACTGCTGCTCCAGCTGCCTGGCGGGCCCCATGCACCCAACG GCGCCTGCCTGGGGTCAGCCCTCGTCACACTGCGGCACAGGCTGCACGAGTACTGTGGGG GTGGTGGGGGTGCTGGGGGCAGTGGGCATGGGACTGGTGCGGGCCGGAAGGGACTGTTGA GCCAGGACAACCTCACCAGCATGTCCCTCTGACATGCCCAGGGTTCTCATCCACAGCAGC TGGGTCACCTGATAGGGCCGCCCTGGACTTGGGGTCCCTCCACCTGGGGGCCCCTGGACA CTGTCTACTTGGAGACCACTGGCCCCCTTCCCCCAGGGTTGCCCAGATGGGGCCTCCTTT GTTCTGCATTCAGCAGCTATTTATCGAGTACCTACTCTGTCAGGCACTGTCATAGGCGTG GGGCAAAGCAGGAACCAAGAGACGAGGTTCCCTGATCTCATGGGACTTAGGTTCTGGTGA AGGGAGACAATCAGTGCACATGCACACACCCCACACGCATACACACATGAACACATGCAC ATGTGCACACACAAGTAAGATGGCTTCAGAGAGGGAGAAGCACTGTGAGGCCTCCAGAGG ATGTGGCAGTGAGGGACGATGGGGTGAAGTCAGCTGGGCATTCAAAGAAGCTAGACTGAG AACGCCTGAGAAGAACCAGCTACGGGAAGAGCTTTGGGAAGCAAAGGCAGAGGCCCTGGG GTGGGAGCAGGCTTGTTTTATTGGAAGGACCAGAAAACTGGTAAGTGTGACCCAGATCAA GTGTGAGGAGATGAGGCTGGGGATAGTCAGGGGCTGGATCACCCAGGGCCTTGTGGGCCC CACATAGGGTTTTGGGTTTTATTCTCAGGGCAATGGGAAGCTGTTGGATGGTTTGATGAA GGGGAGTGACAGGATCCGATGTACCTATTTAAGAATTTAAGAGGGTCGGGTGCGGTGGCT CATGCCTATAATCCTAGCACTTTGAGAGGCCAAGGTGGGCTGATCACAAGGTCAAGAGTT CGTGACCAGCCTGGCCAATATGGTGAAACCCCATGTCTACTAAAAATACAAAAATTAGCT GGGCATGGTGGCACACACTTGTAGTCCGAGCTACTCGGGAGGCTGAGGCAGAAGAATCGC TTGAACCCAGGAGGCGGAGGTTGCAGTGAGCTCAGATTGCGTCACTGCACTCCAACCTGG GTGACAGAGCGAGACTCCACCTCAAAAAAAAAAAAAAAAAA |
Restriction Sites | Please inquire |
ACCN | NM_001410 |
Insert Size | 10000 bp |
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). |
OTI Annotation | This TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA. |
Components | The ORF clone is ion-exchange column purified and shipped in a 2D barcoded Matrix tube containing 10ug of transfection-ready, dried plasmid DNA (reconstitute with 100 ul of water). |
Reconstitution Method | 1. Centrifuge at 5,000xg for 5min. 2. Carefully open the tube and add 100ul of sterile water to dissolve the DNA. 3. Close the tube and incubate for 10 minutes at room temperature. 4. Briefly vortex the tube and then do a quick spin (less than 5000xg) to concentrate the liquid at the bottom. 5. Store the suspended plasmid at -20°C. The DNA is stable for at least one year from date of shipping when stored at -20°C. |
Note | Plasmids are not sterile. For experiments where strict sterility is required, filtration with 0.22um filter is required. |
Shipping | Ambient |
Reference Data | |
RefSeq | NM_001410.2, NP_001401.2 |
RefSeq Size | 10966 bp |
RefSeq ORF | 8337 bp |
Locus ID | 1954 |
UniProt ID | Q7Z7M0 |
Cytogenetics | 19q13.2 |
Protein Families | Druggable Genome, Transmembrane |
Summary | The protein encoded by this gene is a single-pass type I membrane protein of unknown function that contains several EGF-like domains, Kelch repeats, and PSI domains. Defects in this gene are a cause of Carpenter syndrome 2. Two transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Dec 2012] Transcript Variant: This variant (2) lacks an alternate in-frame exon compared to variant 1. The resulting isoform (2) has the same N- and C-termini but is shorter compared to isoform 1. Sequence Note: This RefSeq record was created from transcript and genomic sequence data because no single transcript was available for the full length of the gene. The extent of this transcript is supported by transcript alignments. |
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