PLOD3 (NM_001084) Human Untagged Clone

CAT#: SC119470

PLOD3 (untagged)-Human procollagen-lysine, 2-oxoglutarate 5-dioxygenase 3 (PLOD3)


  "NM_001084" in other vectors (5)

Reconstitution Protocol

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Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol PLOD3
Synonyms LH3
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene ORF within SC119470 sequence for NM_001084 edited (data generated by NextGen Sequencing)
ATGACCTCCTCGGGGCCTGGACCCCGGTTCCTGCTGCTGCTGCCGCTGCTGCTGCCCCCT
GCGGCCTCAGCCTCCGACCGGCCCCGGGGCCGAGACCCGGTCAACCCAGAGAAGCTGCTG
GTGATCACTGTGGCCACAGCTGAAACCGAGGGGTACCTGCGTTTCCTGCGCTCTGCGGAG
TTCTTCAACTACACTGTGCGGACCCTGGGCCTGGGAGAGGAGTGGCGAGGGGGTGATGTG
GCTCGAACAGTTGGTGGAGGACAGAAGGTCCGGTGGTTAAAGAAGGAAATGGAGAAATAC
GCTGACCGGGAGGATATGATCATCATGTTTGTGGATAGCTACGACGTGATTCTGGCCGGC
AGCCCCACAGAGCTGCTGAAGAAGTTCGTCCAGAGTGGCAGCCGCCTGCTCTTCTCTGCA
GAGAGCTTCTGCTGGCCCGAGTGGGGGCTGGCGGAGCAGTACCCTGAGGTGGGCACGGGG
AAGCGCTTCCTCAATTCTGGTGGATTCATCGGTTTTGCCACCACCATCCACCAAATCGTG
CGCCAGTGGAAGTACAAGGATGATGACGACGACCAGCTGTTCTACACACGGCTCTACCTG
GACCCAGGACTGAGGGAGAAACTCAGCCTTAATCTGGATCATAAGTCTCGGATCTTTCAG
AACCTCAACGGGGCTTTAGATGAAGTGGTTTTAAAGTTTGATCGGAACCGTGTGCGTATC
CGGAACGTGGCCTACGACACGCTCCCCATTGTGGTCCATGGAAACGGTCCCACTAAGCTG
CAGCTCAACTACCTGGGAAACTACGTCCCCAATGGCTGGACTCCTGAGGGAGGCTGTGGC
TTCTGCAACCAGGACCGGAGGACACTCCCGGGGGGGCAGCCTCCCCCCCGGGTGTTTCTG
GCCGTGTTTGTGGAACAGCCTACTCCGTTTCTGCCCCGCTTCCTGCAGCGGCTGCTACTC
CTGGACTATCCCCCCGACAGGGTCACCCTTTTCCTGCACAACAACGAGGTCTTCCATGAA
CCCCACATCGCTGACTCCTGGCCGCAGCTCCAGGACCACTTCTCAGCTGTGAAGCTCGTG
GGGCCGGAGGAGGCTCTGAGCCCAGGCGAGGCCAGGGACATGGCCATGGACCTGTGTCGG
CAGGACCCCGAGTGTGAGTTCTACTTCAGCCTGGACGCCGACGCTGTCCTCACCAACCTG
CAGACCCTGCGTATCCTCATTGAGGAGAACAGGAAGGTGATCGCCCCCATGCTGTCCCGC
CACGGCAAGCTGTGGTCCAACTTCTGGGGCGCCCTGAGCCCCGATGAGTACTACGCCCGC
TCCGAGGACTACGTGGAGCTGGTGCAGCGGAAGCGAGTGGGTGTGTGGAATGTACCATAC
ATCTCCCAGGCCTATGTGATCCGGGGTGATACCCTGCGGATGGAGCTGCCCCAGAGGGAT
GTGTTCTCGGGCAGTGACACAGACCCGGACATGGCCTTCTGTAAGAGCTTTCGAGACAAG
GGCATCTTCCTCCATCTGAGCAATCAGCATGAATTTGGCCGGCTCCTGGCCACTTCCAGA
TACGACACGGAGCACCTGCACCCCGACCTCTGGCAGATCTTCGACAACCCCGTCGACTGG
AAGGAGCAGTACATCCACGAGAACTACAGCCGGGCCCTGGAAGGGGAAGGAATCGTGGAG
CAGCCATGCCCGGACGTGTACTGGTTCCCACTGCTGTCAGAACAAATGTGTGATGAGCTG
GTGGCAGAGATGGAGCACTACGGCCAGTGGTCAGGCGGCCGGCATGAGGATTCAAGGCTG
GCTGGAGGCTACGAGAATGTGCCCACCGTGGACATCCACATGAAGCAGGTGGGGTACGAG
GACCAGTGGCTGCAGCTGCTGCGGACGTATGTGGGCCCCATGACCGAGAGCCTGTTTCCC
GGTTACCACACCAAGGCGCGGGCGGTGATGAACTTTGTGGTTCGCTACCGGCCAGACGAG
CAGCCGTCTCTGCGGCCACACCACGACTCATCCACCTTCACCCTCAACGTTGCCCTCAAC
CACAAGGGCCTGGACTATGAGGGAGGTGGCTGCCGCTTCCTGCGCTACGACTGTGTGATC
TCCTCCCCGAGGAAGGGCTGGGCACTCCTGCACCCCGGCCGCCTCACCCACTACCACGAG
GGGCTGCCAACGACCTGGGGCACACGCTACATCATGGTGTCCTTTGTCGACCCCTGA

Clone variation with respect to NM_001084.4
>OriGene 5' read for NM_001084 unedited
GGTGGATATTTGTATACGACTCATATAGGCGGCCGCGNAATTCGCACGAGGCTGTGGCGC
CGGCATCTGGAGCTTTCTGTAGCCTCCGGATACGCCTTTTTTTCAGGGCGTAGCCCCAGC
CAAGCTGCTCCCCGCGGCGGCCGCACAGCAGCCCGAGCGCCCCCTTTCCAGAGCTCCCCT
CCGGAGCTGGGATCCAGGCGCGTAGCGGAGATCCCAGGATCCTGGGTGCTGTCTGGGCCC
GCTCCCCACCATGACCTCCTCGGGGCCTGGACCCCGGTTCCTGCTGCTGCTGCCGCTGCT
GCTGCCCCCTGCGGCCTCAGCCTCCGACCGGCCCCGGGGCCGAGACCCGGTCAACCCAGA
GAAGCTGCTGGTGATCACTGTGGCCACAGCTGAAACCGAGGGGTACCTGCGTTTCCTGCG
CTCTGCGGAGTTCTTCAACTACACTGTGCGGACCCTGGGCCTGGGAGAGGAGTGGCGAGG
GGGTGATGTGGCTCGAACAGTTGGTGGAGGACAGAAGGTCCGGTGGTTAAAGAAGGAAAT
GGAGAAATACGCTGACCGGGAGGATATGATCATCATGTTTGTGGATAGCTACGACGTGAT
TCTGGCCGGCAGCCCCACAGAGCTGCTGAAGAAGTTCGTCCAGAGTGGCAGCCGCCTGCT
CTTCTCTGCAGAGAGCTTCTGCTGGCCCGAGTGGGGGCTGGCGGAGCAGTACCCTGAGGT
GGGCACGGGGAAAGCGCTTCCTCCATTCTTGTGGATTCATCCGGTTTTGCCACACCATCC
ACCATATCGTGCGCCAGTGGCAGTACAANGATGATGACGACGACCCGCTGTTCTACACAC
GCTCTACCTGGAACCAGGACTGAAGGAGGAACTCACCCTTATCCTGGATCTAAGTCTTCG
GATCTTTCAGAAC
>OriGene 3' read for NM_001084 unedited
GCCGCAATCTATAGTCGAGTTTTTTTTTTTTTTTTTTTTTTTTTTTAAAAACTTACAAAC
TGTCCTTTATTCAAAGGGAGACTGCGGAACATTAATAATTTATCACGCGGGGAGTCCCCA
AAAGCCCTGTGCCCACGAACCCCTGTGGGCGGAGGAAAAAGGCGGGGACTCCGGGAGCTT
CCTGAGAGGGCCGTGTCTTGGGAGCAAGGTGACATATTCAGTTCAGGCACGCGGAACATG
AACTCAGGAAGGGGGGAGACAGAGAGACCCATCCCCCAACTCCCAGGACGGGGGCCAGGC
CCCCTAAAAAGGCACATTGGCAGGGCAGGTTTGGCAAAGGGGTTGAGTGTCAGGGGTCGA
CAAAGGACACCATGATGTAGCGTGTGCCCCAGGTCGTTGGCAGCCCCTCGTGGTATTGGG
TGAGGCGGCCGGGGTGCAGGATTGCCCACCCCTTCCTCGGGGAGGAGATCACACAGTCGT
AGCGCAGGAAGCGGCAGCCACCTCCCTCATAGTCCAGGCCCTTGTGGTTGAGGGCAACGT
TGAGGGTGAAGGTGGATGATTCGTGGTGTGGCCGCATAGACGGCTGCTCGTCTGGCCGGT
AGCGAACCACAAAGTTCATCACCGCCCGCGCCTTGTTGTGGAACCCGGGAAACGGCCTCT
CGGTCATGGGGCCCACATACGTCCGCAGCAGCTGCAGCCCCTGGTCCTCGTACCCACCTG
CTTCATGTGAATGTCACCGTGGGCACTTTCTCGTAGCCTCAGCCAGCCTTGATTCTAATG
CCGGCGCCTGACCCTGGCCGTAGGCTCATTTTTGCACCAGCTTATAAAATTTGTTTTGAC
GGAGTGGGACCATTCCCGTCCGGCATGTTTGTCCAGTATTCTTCCCTCCAGGGCCAGCTG
TATTCTCGGGGAGACCGCTCCTCACCCAGGGNTTGCAAATACTGCAAGGCGGGGGAGTGC
TCCGGT
Restriction Sites NotI-NotI     
ACCN NM_001084
ORF Size 2217 bp
Insert Size 2710
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
Reference Data
RefSeq NM_001084.4, NP_001075.1
RefSeq Size 2995
RefSeq ORF 2217
Locus ID 8985
Domains 2OG-FeII_Oxy, P4Hc
Protein Pathways Lysine degradation
Gene Summary The protein encoded by this gene is a membrane-bound homodimeric enzyme that is localized to the cisternae of the rough endoplasmic reticulum. The enzyme (cofactors iron and ascorbate) catalyzes the hydroxylation of lysyl residues in collagen-like peptides. The resultant hydroxylysyl groups are attachment sites for carbohydrates in collagen and thus are critical for the stability of intermolecular crosslinks. Some patients with Ehlers-Danlos syndrome type VIB have deficiencies in lysyl hydroxylase activity. [provided by RefSeq, Jul 2008]

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