Thyroglobulin (TG) (NM_003235) Human Untagged Clone
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Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Symbol | TG |
Synonyms | AITD3; TGN |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>NCBI ORF sequence for NM_003235, the custom clone sequence may differ by one or more nucleotides
ATGGCCCTGGTCCTGGAGATCTTCACCCTGCTGGCCTCCATCTGCTGGGTGTCGGCCAATATCTTCGAGT ACCAGGTGGATGCCCAGCCCCTTCGTCCCTGTGAGCTGCAGAGGGAAACGGCCTTTCTGAAGCAAGCAGA CTACGTGCCCCAGTGTGCAGAGGATGGCAGCTTCCAGACTGTCCAGTGCCAGAACGACGGCCGCTCCTGC TGGTGTGTGGGTGCCAACGGCAGTGAAGTGCTGGGCAGCAGGCAGCCAGGACGGCCTGTGGCTTGTCTGT CATTTTGTCAGCTACAGAAACAGCAGATCTTACTGAGTGGCTACATTAACAGCACAGACACCTCCTACCT CCCTCAGTGTCAGGATTCAGGGGACTACGCGCCTGTTCAGTGTGATGTGCAGCAGGTCCAGTGCTGGTGT GTGGACGCAGAGGGGATGGAGGTGTATGGGACCCGCCAGCTGGGGAGGCCAAAGCGATGTCCAAGGAGCT GTGAAATAAGAAATCGTCGTCTTCTCCACGGGGTGGGAGATAAGTCACCACCCCAGTGTTCTGCGGAGGG AGAGTTTATGCCTGTCCAGTGCAAATTTGTCAACACCACAGACATGATGATTTTTGATCTGGTCCACAGC TACAACAGGTTTCCAGATGCATTTGTGACCTTCAGTTCCTTCCAGAGGAGGTTCCCTGAGGTATCTGGGT ATTGCCACTGTGCTGACAGCCAAGGGCGGGAACTGGCTGAGACAGGTTTGGAGTTGTTACTGGATGAAAT TTATGACACCATTTTTGCTGGCCTGGACCTTCCTTCCACCTTCACTGAAACCACCCTGTACCGGATACTG CAGAGACGGTTCCTCGCAGTTCAATCAGTCATCTCTGGCAGATTCCGATGCCCCACAAAATGTGAAGTGG AGCGGTTTACAGCAACCAGCTTTGGTCACCCCTATGTTCCAAGCTGCCGCCGAAATGGCGACTATCAGGC GGTGCAGTGCCAGACGGAAGGGCCCTGCTGGTGTGTGGACGCCCAGGGGAAGGAAATGCATGGAACCCGG CAGCAAGGGGAGCCGCCATCTTGTGCTGAAGGCCAATCTTGTGCCTCCGAAAGGCAGCAGGCCTTGTCCA GACTCTACTTTGGGACCTCAGGCTACTTCAGCCAGCACGACCTGTTCTCTTCCCCAGAGAAAAGATGGGC CTCTCCAAGAGTAGCCAGATTTGCCACATCCTGCCCACCCACGATCAAGGAGCTCTTTGTGGACTCTGGG CTTCTCCGCCCAATGGTGGAGGGACAGAGCCAACAGTTTTCTGTCTCAGAAAATCTTCTCAAAGAAGCCA TCCGAGCAATTTTTCCCTCCCGAGGGCTGGCTCGTCTTGCCCTTCAGTTTACCACCAACCCAAAGAGACT CCAGCAAAACCTTTTTGGAGGGAAATTTTTGGTGAATGTTGGCCAGTTTAACTTGTCTGGAGCCCTTGGC ACAAGAGGCACATTTAACTTCAGTCAATTTTTCCAGCAACTTGGTCTTGCAAGCTTCTTGAATGGAGGGA GACAAGAAGATTTGGCCAAGCCACTCTCTGTGGGATTAGATTCAAATTCTTCCACAGGAACCCCTGAAGC TGCTAAGAAGGATGGTACTATGAATAAGCCAACTGTGGGCAGCTTTGGCTTTGAAATTAACCTACAAGAG AACCAAAATGCCCTCAAATTCCTTGCTTCTCTCCTGGAGCTTCCAGAATTCCTTCTCTTCTTGCAACATG CTATCTCTGTGCCAGAAGATGTGGCAAGAGATTTAGGTGATGTGATGGAAACGGTACTCAGCTCCCAGAC CTGTGAGCAGACACCTGAAAGGCTATTTGTCCCATCATGCACGACAGAAGGAAGCTATGAGGATGTCCAA TGCTTTTCCGGAGAGTGCTGGTGTGTGAATTCCTGGGGCAAAGAGCTTCCAGGCTCAAGAGTCAGAGGTG GACAGCCAAGGTGCCCCACAGACTGTGAAAAGCAAAGGGCTCGCATGCAAAGCCTCATGGGCAGCCAGCC TGCTGGCTCCACCTTGTTTGTCCCTGCTTGTACTAGTGAGGGACATTTCCTGCCTGTCCAGTGCTTCAAC TCAGAGTGCTACTGTGTTGATGCTGAGGGTCAGGCCATTCCTGGAACTCGAAGTGCAATAGGGAAGCCCA AGAAATGCCCCACGCCCTGTCAATTACAGTCTGAGCAAGCTTTCCTCAGGACGGTGCAGGCCCTGCTCTC TAACTCCAGCATGCTACCCACCCTTTCCGACACCTACATCCCACAGTGCAGCACCGATGGGCAGTGGAGA CAAGTGCAATGCAATGGGCCTCCTGAGCAGGTCTTCGAGTTGTACCAACGATGGGAGGCTCAGAACAAGG GCCAGGATCTGACGCCTGCCAAGCTGCTAGTGAAGATCATGAGCTACAGAGAAGCAGCTTCCGGAAACTT CAGTCTCTTTATTCAAAGTCTGTATGAGGCTGGCCAGCAAGATGTCTTCCCGGTGCTGTCACAATACCCT TCTCTGCAAGATGTCCCACTAGCAGCACTGGAAGGGAAACGGCCCCAGCCCAGGGAGAATATCCTCCTGG AGCCCTACCTCTTCTGGCAGATCTTAAATGGCCAACTCAGCCAATACCCGGGGTCCTACTCAGACTTCAG CACTCCTTTGGCACATTTTGATCTTCGGAACTGCTGGTGTGTGGATGAGGCTGGCCAAGAACTGGAAGGA ATGCGGTCTGAGCCAAGCAAGCTCCCAACATGTCCTGGCTCCTGTGAGGAAGCAAAGCTCCGTGTACTGC AGTTCATTAGGGAAACGGAAGAGATTGTTTCAGCTTCCAACAGTTCTCGGTTCCCTCTGGGGGAGAGTTT CCTGGTGGCCAAGGGAATCCGGCTGAGGAATGAGGACCTCGGCCTTCCTCCGCTCTTCCCGCCCCGGGAG GCTTTCGCGGAGCAGTTTCTGCGTGGGAGTGATTACGCCATTCGCCTGGCGGCTCAGTCTACCTTAAGCT TCTATCAGAGACGCCGCTTTTCCCCGGACGACTCGGCTGGAGCATCCGCCCTTCTGCGGTCGGGCCCCTA CATGCCACAGTGTGATGCGTTTGGAAGTTGGGAGCCTGTGCAGTGCCACGCTGGGACTGGGCACTGCTGG TGTGTAGATGAGAAAGGAGGGTTCATCCCTGGCTCACTGACTGCCCGCTCTCTGCAGATTCCACAGTGCC CGACAACCTGCGAGAAATCTCGAACCAGTGGGCTGCTTTCCAGTTGGAAACAGGCTAGATCCCAAGAAAA CCCATCTCCAAAAGACCTGTTCGTCCCAGCCTGCCTAGAAACAGGAGAGTATGCCAGGCTGCAGGCATCG GGGGCTGGCACCTGGTGTGTGGACCCTGCATCAGGAGAAGAGTTGCGGCCTGGCTCGAGCAGCAGTGCCC AGTGCCCAAGCCTCTGCAATGTGCTCAAGAGTGGAGTCCTCTCCAGGAGAGTCAGCCCAGGCTATGTCCC AGCCTGCAGGGCAGAGGATGGGGGCTTTTCCCCAGTGCAATGTGACCAGGCCCAGGGCAGCTGCTGGTGT GTCATGGACAGCGGAGAAGAGGTGCCTGGGACGCGCGTGACCGGGGGCCAGCCCGCCTGTGAGAGCCCGC GGTGTCCGCTGCCATTCAACGCGTCGGAGGTGGTTGGTGGAACAATCCTGTGTGAGACAATCTCGGGCCC CACAGGCTCTGCCATGCAGCAGTGCCAATTGCTGTGCCGCCAGGGCTCCTGGAGCGTGTTTCCACCAGGG CCATTGATATGTAGCCTGGAGAGCGGACGCTGGGAGTCACAGCTGCCTCAGCCCCGGGCCTGCCAACGGC CCCAGCTGTGGCAGACCATCCAGACCCAAGGGCACTTTCAGCTCCAGCTCCCGCCGGGCAAGATGTGCAG TGCTGACTACGCGGATTTGCTGCAGACTTTCCAGGTTTTCATATTGGATGAGCTGACAGCCCGCGGCTTC TGCCAGATCCAGGTGAAGACTTTTGGCACCCTGGTTTCCATTCCTGTCTGCAACAACTCCTCTGTGCAGG TGGGTTGTCTGACCAGGGAGCGTTTAGGAGTGAATGTTACATGGAAATCACGGCTTGAGGACATCCCAGT GGCTTCTCTTCCTGACTTACATGACATTGAGAGAGCCTTGGTGGGCAAGGATCTCCTTGGGCGCTTCACA GATCTGATCCAGAGTGGCTCATTCCAGCTTCATCTGGACTCCAAGACGTTCCCAGCGGAAACCATCCGCT TCCTCCAAGGGGACCACTTTGGCACCTCTCCCAGGACATGGTTTGGGTGCTCGGAAGGATTCTACCAAGT CTTGACAAGTGAGGCCAGTCAGGACGGACTGGGATGCGTTAAGTGTCCTGAAGGAAGCTATTCCCAAGAT GAGGAATGCATTCCTTGTCCTGTTGGATTCTACCAAGAACAGGCAGGGAGCTTGGCCTGTGTCCCATGTC CTGTGGGCAGAACGACCATTTCTGCTGGAGCTTTCAGCCAGACTCACTGTGTCACTGACTGTCAGAGGAA CGAAGCAGGCCTGCAATGTGACCAGAATGGCCAGTATCGAGCCAGCCAGAAGGACAGGGGCAGTGGGAAG GCCTTCTGTGTGGACGGCGAGGGGCGGAGGCTGCCATGGTGGGAAACAGAGGCCCCTCTTGAGGACTCAC AGTGTTTGATGATGCAGAAGTTTGAGAAGGTTCCAGAATCAAAGGTGATCTTCGACGCCAATGCTCCTGT GGCTGTCAGATCCAAAGTTCCTGATTCTGAGTTCCCCGTGATGCAGTGCTTGACAGATTGCACAGAGGAC GAGGCCTGCAGCTTCTTCACCGTGTCCACGACGGAGCCAGAGATTTCCTGTGATTTCTATGCTTGGACAA GTGACAATGTTGCCTGCATGACTTCTGACCAGAAACGAGATGCACTGGGGAACTCAAAGGCCACCAGCTT TGGAAGTCTTCGCTGCCAGGTGAAAGTGAGGAGCCATGGTCAAGATTCTCCAGCTGTGTATTTGAAAAAG GGCCAAGGATCCACCACAACACTTCAGAAACGCTTTGAACCCACTGGTTTCCAAAACATGCTTTCTGGAT TGTACAACCCCATTGTGTTCTCAGCCTCAGGAGCCAATCTAACCGATGCTCACCTCTTCTGTCTTCTTGC ATGCGACCGTGATCTGTGTTGCGATGGCTTCGTCCTCACACAGGTTCAAGGAGGTGCCATCATCTGTGGG TTGCTGAGCTCACCCAGTGTCCTGCTTTGTAATGTCAAAGACTGGATGGATCCCTCTGAAGCCTGGGCTA ATGCTACATGTCCTGGTGTGACATATGACCAGGAGAGCCACCAGGTGATATTGCGTCTTGGAGACCAGGA GTTCATCAAGAGTCTGACACCCTTAGAAGGAACTCAAGACACCTTTACCAATTTTCAGCAGGTTTATCTC TGGAAAGATTCTGACATGGGGTCTCGGCCTGAGTCTATGGGATGTAGAAAAGACACAGTGCCAAGGCCAG CATCTCCAACAGAAGCAGGTTTGACAACAGAACTTTTCTCCCCTGTGGACCTCAACCAGGTCATTGTCAA TGGAAATCAATCACTATCCAGCCAGAAGCACTGGCTTTTCAAGCACCTGTTTTCAGCCCAGCAGGCAAAC CTATGGTGCCTTTCTCGTTGTGTGCAGGAGCACTCTTTCTGTCAGCTCGCAGAGATAACAGAGAGTGCAT CCTTGTACTTCACCTGCACCCTCTACCCAGAGGCACAGGTGTGTGATGACATCATGGAGTCCAATGCCCA GGGCTGCAGACTGATCCTGCCTCAGATGCCAAAGGCCCTGTTCCGGAAGAAAGTTATACTGGAAGATAAA GTGAAGAACTTTTACACTCGCCTGCCGTTCCAAAAACTGATGGGGATATCCATTAGAAATAAAGTGCCCA TGTCTGAAAAATCTATTTCTAATGGGTTCTTTGAATGTGAACGACGGTGCGATGCGGACCCATGCTGCAC TGGCTTTGGATTTCTAAATGTTTCCCAGTTAAAAGGAGGAGAGGTGACATGTCTCACTCTGAACAGCTTG GGAATTCAGATGTGCAGTGAGGAGAATGGAGGAGCCTGGCGCATTTTGGACTGTGGCTCTCCTGACATTG AAGTCCACACCTATCCCTTCGGATGGTACCAGAAGCCCATTGCTCAAAATAATGCTCCCAGTTTTTGCCC TTTGGTTGTTCTGCCTTCCCTCACAGAGAAAGTGTCTCTGGACTCGTGGCAGTCCCTGGCCCTCTCTTCA GTGGTTGTTGATCCATCCATTAGGCACTTTGATGTTGCCCATGTCAGCACTGCTGCCACCAGCAATTTCT CTGCTGTCCGAGACCTCTGTTTGTCGGAATGTTCCCAACATGAGGCCTGTCTCATCACCACTCTGCAAAC CCAACCTGGGGCTGTGAGATGTATGTTCTATGCTGATACTCAAAGCTGCACACATAGTCTGCAGGGTCAG AACTGCCGACTTCTGCTTCGTGAAGAGGCCACCCACATCTACCGGAAGCCAGGAATCTCTCTGCTCAGCT ATGAGGCATCTGTACCTTCTGTGCCCATTTCCACCCATGGCCGGCTGCTGGGCAGGTCCCAGGCCATCCA GGTGGGTACCTCATGGAAGCAAGTGGACCAGTTCCTTGGAGTTCCATATGCTGCCCCGCCCCTGGCAGAG AGGCGCTTCCAGGCACCAGAGCCCTTGAACTGGACAGGCTCCTGGGATGCCAGCAAGCCAAGGGCCAGCT GCTGGCAGCCAGGCACCAGAACATCCACGTCTCCTGGAGTCAGTGAAGATTGTTTGTATCTCAATGTGTT CATCCCTCAGAATGTGGCCCCTAACGCGTCTGTGCTGGTGTTCTTCCACAACACCATGGACAGGGAGGAG AGTGAAGGATGGCCGGCTATCGACGGCTCCTTCTTGGCTGCTGTTGGCAACCTCATCGTGGTCACTGCCA GCTACCGAGTGGGTGTCTTCGGCTTCCTGAGTTCTGGGTCCGGAGAGGTGAGTGGCAACTGGGGGCTGCT GGACCAGGTGGCGGCTCTGACCTGGGTGCAGACCCACATCCGAGGATTTGGCGGGGACCCTCGGCGCGTG TCCCTGGCAGCAGACCGTGGCGGGGCTGATGTGGCCAGCATCCACCTTCTCACGGCCAGGGCCACCAACT CCCAACTTTTCCGGAGAGCTGTGCTGATGGGAGGCTCCGCACTCTCCCCGGCCGCCGTCATCAGCCATGA GAGGGCTCAGCAGCAGGCAATTGCTTTGGCAAAGGAGGTCAGTTGCCCCATGTCATCCAGCCAAGAAGTG GTGTCCTGCCTCCGCCAGAAGCCTGCCAATGTCCTCAATGATGCCCAGACCAAGCTCCTGGCCGTGAGTG GCCCTTTCCACTACTGGGGTCCTGTGATCGATGGCCACTTCCTCCGTGAGCCTCCAGCCAGAGCACTGAA GAGGTCTTTATGGGTAGAGGTCGATCTGCTCATTGGGAGTTCTCAGGACGACGGGCTCATCAACAGAGCA AAGGCTGTGAAGCAATTTGAGGAAAGTCGAGGCCGGACCAGTAGCAAAACAGCCTTTTACCAGGCACTGC AGAATTCTCTGGGTGGCGAGGACTCAGATGCCCGCGTCGAGGCTGCTGCTACATGGTATTACTCTCTGGA GCACTCCACGGATGACTATGCCTCCTTCTCCCGGGCTCTGGAGAATGCCACCCGGGACTACTTTATCATC TGCCCTATAATCGACATGGCCAGTGCCTGGGCAAAGAGGGCCCGAGGAAACGTCTTCATGTACCATGCTC CTGAAAACTACGGCCATGGCAGCCTGGAGCTGCTGGCGGATGTTCAGTTTGCCTTGGGGCTTCCCTTCTA CCCAGCCTACGAGGGGCAGTTTTCTCTGGAGGAGAAGAGCCTGTCGCTGAAAATCATGCAGTACTTTTCC CACTTCATCAGATCAGGAAATCCCAACTACCCTTATGAGTTCTCACGGAAAGTACCCACATTTGCAACCC CCTGGCCTGACTTTGTACCCCGTGCTGGTGGAGAGAACTACAAGGAGTTCAGTGAGCTGCTCCCCAATCG ACAGGGCCTGAAGAAAGCCGACTGCTCCTTCTGGTCCAAGTACATCTCGTCTCTGAAGACATCTGCAGAT GGAGCCAAGGGCGGGCAGTCAGCAGAGAGTGAAGAGGAGGAGTTGACGGCTGGATCTGGGCTAAGAGAAG ATCTCCTAAGCCTCCAGGAACCAGGCTCTAAGACCTACAGCAAGTGA |
Restriction Sites | SgfI-RsrII |
ACCN | NM_003235 |
OTI Disclaimer | Due to the inherent nature of this plasmid, standard methods to replicate additional amounts of DNA in E. coli are highly likely to result in mutations and/or rearrangements. Therefore, OriGene does not guarantee the capability to replicate this plasmid DNA. Additional amounts of DNA can be purchased from OriGene with batch-specific, full-sequence verification at a reduced cost. Please contact our customer care team at custsupport@origene.com or by calling 301.340.3188 option 3 for pricing and delivery. The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info |
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. |
Product Components | The cDNA clone is shipped in a 2-D bar-coded Matrix tube as dried plasmid DNA. The package also includes 100 pmols of both the corresponding 5' and 3' vector primers in separate vials. Every lot of primer is tested to provide clean sequencing of OriGene TrueClones. |
Reconstitution | 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. |
Reference Data | |
RefSeq | NM_003235.4, NP_003226.4 |
RefSeq Size | 8453 bp |
RefSeq ORF | 8307 bp |
Locus ID | 7038 |
Cytogenetics | 8q24.22 |
Protein Families | Druggable Genome |
Protein Pathways | Autoimmune thyroid disease |
Gene Summary | 'Thyroglobulin (Tg) is a glycoprotein homodimer produced predominantly by the thryroid gland. It acts as a substrate for the synthesis of thyroxine and triiodothyronine as well as the storage of the inactive forms of thyroid hormone and iodine. Thyroglobulin is secreted from the endoplasmic reticulum to its site of iodination, and subsequent thyroxine biosynthesis, in the follicular lumen. Mutations in this gene cause thyroid dyshormonogenesis, manifested as goiter, and are associated with moderate to severe congenital hypothyroidism. Polymorphisms in this gene are associated with susceptibility to autoimmune thyroid diseases (AITD) such as Graves disease and Hashimoto thryoiditis. [provided by RefSeq, Nov 2009]' |
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