CPAMD8 (NM_015692) Human Untagged Clone
CAT#: SC318696
CPAMD8 (untagged)-Human C3 and PZP-like, alpha-2-macroglobulin domain containing 8 (CPAMD8)
"NM_015692" in other vectors (2)
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Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Symbol | CPAMD8 |
Synonyms | ASGD8; K-CAP; VIP |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>NCBI ORF sequence for NM_015692, the custom clone sequence may differ by one or more nucleotides
ATGGCGCCGGGCGCACTGCGCGGGGGCTGCGAACAAAGGGCCCCCGGCGGCGGCGCGAGGACGGCCGCGC TCGGACCCTGGCCCTGGCCCAGCCCTGGCCCGGCCCCCTCCCCAGGCGCGGCGCCCCCCAGGAGCCGAAA AATGAGCGGCGCCCTGCTCTGGCCGTTGCTCCCGCTCCTGCTCCTGCTGCTGTCGGCGCGGGACGGCGTG CGCGCCGCGCAGCCTCAGGCCCCGGGTTACTTGATTGCAGCTCCCTCTGTTTTTCGCGCGGGCGTGGAGG AAGTCATCAGCGTGACCATCTTTAACTCTCCAAGGGAAGTCACGGTCCAGGCTCAGCTGGTGGCCCAGGG TGAGCCGGTGGTGCAGAGCCAGGGAGCCATCCTGGATAAAGGGACAATCAAACTCAAGGTGCCCACGGGC CTCCGGGGCCAAGCGCTTCTGAAAGTGTGGGGCCGCGGCTGGCAGGCGGAGGAGGGGCCCCTCTTTCACA ACCAGACCTCGGTGACCGTGGACGGCCGGGGCGCTTCTGTATTCATCCAGACGGACAAGCCTGTGTACAG ACCCCAGCACCGAGTGCTCATAAGCATCTTCACCGTCTCTCCAAATCTGAGGCCTGTCAACGAGAAGCTG GAAGCCTACATCCTGGACCCCCGAGGCTCTCGGATGATAGAGTGGAGACACTTAAAGCCGTTCTGCTGCG GCATCACCAACATGAGCTTCCCCTTGTCCGACCAGCCTGTGTTGGGAGAATGGTTCATTTTTGTTGAAAT GCAAGGCCACGCGTACAACAAGTCTTTTGAAGTTCAGAAGTATGTGTTGCCCAAGTTTGAGCTTCTGATT GACCCGCCCCGGTATATCCAAGACCTGGACGCCTGTGAGACAGGCACTGTGCGGGCCAGGTATACCTTTG GGAAACCTGTGGCTGGTGCCTTAATGATCAACATGACTGTTAATGGTGTAGGGTACTACAGCCACGAGGT GGGACGCCCTGTCCTCAGAACAACCAAGATCCTCGGCTCCCGGGACTTCGACATCTGCGTGAGGGACATG ATCCCAGCGGACGTCCCTGAGCACTTCCGGGGCAGGGTCAGCATCTGGGCCATGGTGACCAGTGTGGACG GGAGCCAGCAGGTCGCGTTCGATGACTCCACCCCCGTGCAGAGGCAGCTGGTGGACATCCGGTACTCCAA GGACACGAGGAAGCAGTTCAAGCCGGGCCTGGCCTACGTGGGGAAGGTGGAGCTATCCTACCCCGATGGC AGCCCAGCTGAGGGGGTGACGGTCCAGATTAAGGCAGAGCTGACACCAAAGGATAACATCTACACCAGTG AAGTTGTGTCCCAGCGTGGACTAGTGGGGTTTGAAATCCCCTCCATCCCCACGTCAGCCCAGCACGTGTG GCTGGAGACCAAGGTGATGGCACTGAACGGGAAGCCTGTGGGGGCTCAGTACCTGCCCAGCTACCTCTCC CTCGGCAGCTGGTACTCCCCCAGCCAGTGCTACCTGCAGCTGCAGCCACCCTCCCACCCACTGCAGGTTG GGGAAGAAGCCTATTTTTCTGTGAAGTCCACATGTCCCTGCAACTTTACCCTGTACTACGAGGTGGCTGC ACGGGGCAATATTGTGCTATCGGGCCAGCAGCCTGCCCACACCACCCAGCAGCGAAGCAAGCGGGCGGCC CCTGCCCTGGAGAAACCGATTCGTTTAACACACCTTTCTGAGACAGAGCCCCCACCAGCCCCAGAAGCTG AGGTCGACGTGTGTGTGACCTCTCTTCATCTGGCCGTGACCCCCAGCATGGTCCCCCTTGGTCGCCTGCT GGTCTTCTACGTCAGGGAGAATGGAGAAGGGGTCGCCGACAGCCTTCAGTTTGCAGTCGAGACCTTCTTC GAAAACCAGGTTTCAGTGACGTATTCAGCAAATGAGACCCAACCTGGGGAGGTTGTCGACCTGCGGATCA GGGCTGCAAGGGGCAGCTGTGTGTGCGTCGCCGCAGTTGATAAGAGTGTCTACCTGCTCAGGTCTGGGTT CCGGCTGACTCCTGCCCAGGTTTTCCAGGAACTGGAAGATTATGATGTTTCTGATTCCTTTGGCGTGTCC AGGGAGGATGGTCCTTTTTGGTGGGCTGGGCTGACGGCACAACGACGCCGGCGCTCCTCTGTCTTCCCGT GGCCTTGGGGCATCACCAAGGACTCTGGGTTTGCCTTCACCGAAACGGGACTGGTGGTGATGACCGACCG AGTGAGCCTGAACCACCGGCAGGACGGTGGCCTCTACACCGATGAGGCTGTCCCCGCTTTCCAGCCCCAC ACAGGGAGCCTGGTGGCAGTGGCTCCTTCCAGGCACCCCCCCAGAACAGAGAAGAGAAAAAGGACTTTCT TCCCCGAAACATGGATTTGGCATTGTCTCAACATCAGTGACCCATCTGGTGAGGGGACACTCAGTGTGAA GGTCCCGGACTCCATCACCAGCTGGGTGGGTGAGGCCGTGGCCCTGTCCACCTCTCAGGGCTTAGGCATC GCCGAGCCCTCCCTGCTGAAGACCTTCAAGCCCTTCTTCGTGGACTTCATGCTCCCCGCTCTCATCATCC GTGGGGAGCAGGTCAAGATCCCGCTCAGTGTCTACAACTACATGGGCACCTGCGCTGAGGTGTACATGAA GCTCTCGGTTCCCAAGGGCATCCAGTTTGTTGGGCATCCTGGCAAACGCCATGTGACCAAGAAGATGTGT GTGGCCCCCGGGGAGGCTGAGCCCATCTGGGTCGTTCTGTCCTTCAGCGACCTGGGACTCAACAACATCA CGGCCAAAGCCCTTGCTTACGGAGACACAAATTGCTGCCGGGATGGGAGGTCCAGCAAACACCCTGAGGA GAATCACGCCGACAGGAGGGTCCCCATCGGGGTGGATCACGTCAGGCGCAGTGTGATGGTTGAGGCGGAA GGAGTCCCCCGGGCGTACACCTACAGCGCATTCTTCTGTCCCAGTGAGAGAGTCCACATCTCCACCCCCA ACAAGTATGAGTTCCAGTATGTGCAGCGGCCACTGCGCCTCACCCGCTTTGATGTGGCTGTGCGAGCTCA CAATGATGCCCGTGTGGCCTTGTCTTCTGGGCCCCAGGACACAGCAGGCATGATCGAGATCGTCCTGGGG GGGCATCAGAACACCAGGTCATGGATCTCCACCAGCAAGATGGGAGAGCCCGTGGCCAGTGCACACACGG CCAAGATCCTCTCCTGGGATGAATTCAGAACATTCTGGATCAGCTGGCGTGGTGGCCTTATCCAGGTTGG CCATGGTCCAGAGCCATCCAATGAGTCTGTCATTGTGGCCTGGACCCTCCCGAGGCCACCAGAGGTCCAG TTCATTGGCTTTTCCACCGGCTGGGGCTCCATGGGTGAATTCCGAATCTGGAGGAAGATGGAGGTGGACG AGAGCTACAGCGAGGCCTTCACCCTGGGGGTCCCACACGGCGCCATCCCTGGGTCTGAGCGAGCCACCGC CTCCATCATCGGGGACGTCATGGGGCCAACCCTGAACCACCTCAACAACCTCCTGCGGCTGCCGTTTGGC TGTGGAGAGCAGAACATGATCCACTTTGCACCCAACGTCTTTGTCTTGAAGTATCTTCAGAAAACCCAGC AGCTCAGCCCTGAGGTGGAGAGAGAGACCACCGACTACCTAGTACAAGGCTACCAGCGCCAGCTGACCTA CAAGCGCCAGGATGGCTCCTACAGCGCGTTTGGGGAGCGGGACGCATCGGGGAGCATGTGGCTCACAGCC TTTGTCCTGAAGTCCTTCGCACAGGCTCGCAGCTTTATCTTCGTGGACCCCCGGGAGCTGGCTGCCGCCA AGAGCTGGATCATCCAGCAGCAGCAGGCCGATGGCTCCTTCCTGGCCGTGGGCAGGGTCCTGAACAAGGA CATCCAGGGTGGGATCCACGGCACTGTCCCGCTGACAGCCTACGTGGTGGTTGCTCTCCTGGAAACAGGC ACAGCCTCAGAGGAGGAGAGAGGCTCCACTGACAAAGCGAGGCACTTCCTGGAGTCTGCTGCGCCCCTGG CCATGGACCCTTATAGCTGTGCCCTGACTACCTACGCGCTGACCCTGCTCCGCAGCCCGGCAGCCCCTGA GGCACTGCGCAAGCTCCGTAGCCTGGCCATCATGCGAGATGGGGTCACCCACTGGAGCCTGTCAAATTCC TGGGACGTGGACAAGGGCACATTCTTGAGCTTCAGTGACAGGGTCTCTCAGTCAGTGGTCTCGGCCGAGG TGGAAATGACAGCCTACGCCCTTCTGACCTACACTCTGCTGGGTGACGTGGCTGCCGCCCTGCCTGTGGT GAAGTGGCTGTCCCAGCAGCGAAATGCACTTGGGGGCTTCTCCTCCACTCAGGACACCTGCGTGGCTCTG CAGGCCTTGGCTGAATATGCCATCTTGTCCTATGCTGGAGGCATCAACCTCACTGTCTCCCTGGCCTCCA CCAACCTGGACTACCAGGAAACCTTCGAGCTGCACAGGACCAACCAGAAGGTTCTGCAGACAGCAGCGAT CCCCAGCCTCCCCACGGGGCTGTTTGTGAGTGCCAAGGGGGACGGCTGCTGCCTGATGCAGATTGATGTC ACCTACAATGTGCCTGACCCGGTGGCCAAGCCAGCTTTCCAGCTGCTCGTAAGCCTCCAGGAGCCTGAGG CCCAGGGACGCCCGCCCCCCATGCCTGCCTCCGCAGCTGAGGGTTCCCGAGGAGACTGGCCCCCAGCTGA CGATGATGACCCAGCGGCCGATCAGCATCACCAGGAATACAAGGTGATGCTGGAGGTGTGCACCAGGTGG CTGCATGCAGGGTCTTCCAATATGGCTGTCCTGGAGGTGCCCCTGCTGTCAGGCTTCCGGGCAGACATCG AGAGCCTGGAGCAGCTGCTCCTTGACAAGCACATGGGGATGAAGAGGTATGAAGTGGCTGGACGCCGAGT GCTCTTCTACTTTGATGAGATCCCCAGCCGGTGCCTGACGTGCGTGCGGTTCCGTGCTCTCCGGGAGTGC GTGGTGGGCAGGACGTCGGCGCTGCCAGTCTCCGTGTACGACTACTACGAACCCGCCTTCGAGGCCACTC GCTTCTACAACGTCAGCACCCACAGCCCACTCGCCCGGGAACTGTGCGCCGGACCCGCGTGCAACGAAGT GGAGCGCGCCCCTGCCCGGGGCCCGGGCTGGTTCCCCGGCGAGTCGGGCCCTGCCGTGGCCCCTGAGGAG GGGGCGGCGATCGCGCGATGCGGCTGCGACCACGACTGCGGCGCCCAGGGGAACCCGGTGTGCGGCTCCG ACGGGGTGGTCTACGCCAGCGCCTGCCGCCTGCGGGAGGCCGCCTGCCGCCAGGCCGCGCCCCTGGAGCC CGCGCCTCCCAGCTGCTGCGCCCTCGAGCAGCGGCTGCCGGCCTCGTCGTCCTCCACCTACGGGGATGAC CTGGCTTCTGTGGCCCCGGGGCCTTTACAGCAGGACGTGAAGCTGAATGGAGCCGGCCTTGAGGTGGAGG ACTCAGACCCTGAGCCTGAAGGGGAGGCGGAGGACAGGGTCACAGCCGGGCCTCGGCCTCCTGTGAGCAG CGGGAACCTGGAAAGCAGCACCCAGAGCGCCAGCCCGTTCCACAGATGGGGCCAGACTCCGGCCCCTCAG AGACATAGTGGCCGGGTGGTGGGGGCCCACAGGCCAGGGCTTCTGAGCCCTGTCTTCGTCTACAGCCCAG CCTTTCAGAGTGGTGGGGAGGAGGGTTTATGGATGTCAAACACCTGCACCTTGAGATAA |
Restriction Sites | AscI-RsrII |
ACCN | NM_015692 |
ORF Size | 5799 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. |
Reference Data | |
RefSeq | NM_015692.2, NP_056507.2 |
RefSeq Size | 5996 |
RefSeq ORF | 5799 |
Locus ID | 27151 |
Gene Summary | This gene encodes a member of the protease inhibitor I39 (alpha-2-macroglobulin) family of proteins. These proteins are important in innate and acquired immunity. The encoded protein is membrane-associated and proteolytically processed to generate two chains. Mutations in this gene cause a form of anterior segment dysgenesis, a developmental disorder of the eye. [provided by RefSeq, May 2017] Transcript Variant: This variant (1) represents the longer transcript and encodes the protein. Sequence Note: This RefSeq record was created from transcript and genomic sequence data to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on transcript alignments. |
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