RRM1 (NM_001033) Human Untagged Clone

CAT#: SC111007

RRM1 (untagged)-Human ribonucleotide reductase M1 (RRM1)


  "NM_001033" in other vectors (4)

Reconstitution Protocol

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Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol RRM1
Synonyms R1; RIR1; RR1
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene ORF within SC111007 sequence for NM_001033 edited (data generated by NextGen Sequencing)
ATGCATGTGATCAAGCGAGATGGCCGCCAAGAACGAGTCATGTTTGACAAAATTACATCT
CGAATCCAGAAGCTTTGTTATGGACTCAATATGGATTTTGTTGATCCTGCTCAGATCACC
ATGAAAGTAATCCAAGGCTTGTACAGTGGGGTCACCACAGTGGAACTAGATACTTTGGCT
GCTGAAACAGCTGCAACCTTGACTACTAAGCACCCTGACTATGCTATCCTGGCAGCCAGG
ATCGCTGTCTCTAACTTGCACAAAGAAACAAAGAAAGTGTTCAGTGATGTGATGGAAGAC
CTCTATAACTACATAAATCCACATAATGGCAAACACTCTCCCATGGTGGCCAAGTCAACA
TTGGATATTGTTCTGGCCAATAAAGATCGCCTGAATTCTGCTATTATCTATGACCGAGAT
TTCTCTTACAATTACTTCGGCTTTAAGACGCTAGAGCGGTCTTATTTGTTGAAGATCAAT
GGAAAAGTGGCTGAAAGACCACAACATATGTTGATGAGAGTATCTGTTGGGATCCACAAA
GAAGACATTGATGCAGCAATTGAAACATATAATCTTCTTTCTGAGAGGTGGTTTACTCAT
GCTTCGCCCACTCTCTTCAATGCTGGTACCAACCGCCCACAACTTTCTAGCTGTTTTCTT
CTGAGTATGAAAGATGACAGCATTGAAGGCATTTATGACACTCTAAAGCAATGTGCATTG
ATTTCTAAGTCTGCTGGAGGAATTGGTGTTGCTGTGAGTTGTATTCGGGCTACTGGCAGC
TACATTGCTGGGACTAATGGCAATTCCAATGGCCTTGTACCGATGCTGAGAGTATATAAC
AACACAGCTCGATATGTGGATCAAGGTGGGAACAAGCGTCCTGGGGCATTTGCTATTTAC
CTGGAGCCTTGGCATTTAGACATCTTTGAATTCCTTGATTTAAAGAAGAACACAGGAAAG
GAAGAGCAGCGTGCCAGAGATCTTTTCTTTGCTCTTTGGATTCCGGATCTCTTCATGAAA
CGAGTGGAGACTAATCAGGACTGGTCTTTGATGTGTCCAAATGAGTGTCCTGGTCTGGAT
GAGGTTTGGGGAGAGGAATTTGAGAAACTATATGCAAGTTATGAGAAACAAGGTCGTGTC
CGCAAAGTTGTAAAAGCTCAGCAGCTTTGGTATGCCATCATTGAGTCTCAGACGGAAACA
GGCACCCCGTATATGCTCTACAAAGATTCCTGTAATCGAAAGAGCAACCAGCAGAACCTG
GGAACCATCAAATGCAGCAACCTGTGCACAGAAATAGTGGAGTACACCAGCAAAGATGAG
GTTGCTGTTTGTAATTTGGCTTCCCTGGCCCTGAATATGTATGTCACATCAGAACACACA
TACGACTTTAAGAAGTTGGCTGAAGTCACTAAAGTCGTTGTCCGAAACTTGAATAAAATT
ATTGATATAAACTACTATCCTGTACCAGAGGCATGCCTATCAAATAAACGCCATCGCCCC
ATTGGAATTGGGGTACAAGGTCTGGCAGATGCTTTTATCCTGATGAGATACCCTTTTGAG
AGTGCAGAAGCCCAGTTACTGAATAAGCAGATCTTTGAAACTATTTATTATGGTGCTCTG
GAAGCCAGCTGTGACCTTGCCAAGGAGCAGGGCCCATACGAAACCTATGAGGGCTCTCCA
GTTAGCAAAGGAATTCTTCAGTATGATATGTGGAATGTTACTCCTACAGACCTATGGGAC
TGGAAGGTTCTCAAGGAGAAGATTGCAAAGTATGGTATAAGAAACAGTTTACTTATTGCC
CCGATGCCTACAGCTTCCACTGCTCAGATCCTGGGGAATAATGAGTCCATTGAACCTTAC
ACCAGCAACATCTATACTCGCAGAGTCTTGTCAGGAGAATTTCAGATTGTAAATCCTCAC
TTATTGAAAGATCTTACCGAGCGGGGCCTATGGCATGAAGAGATGAAAAACCAGATTATT
GCATGCAATGGCTCTATTCAGAGCATACCAGAAATTCCTGATGACCTGAAGCAACTTTAT
AAAACTGTGTGGGAAATCTCTCAGAAAACTGTTCTCAAGATGGCAGCTGAGAGAGGTGCT
TTCATTGATCAAAGCCAATCTTTGAACATCCACATTGCTGAGCCTAACTATGGCAAACTC
ACTAGTATGCACTTCTACGGCTGGAAGCAGGGTTTGAAGACTGGGATGTATTATTTAAGG
ACAAGACCAGCAGCTAATCCAATCCAGTTCACTCTAAATAAGGAGAAGCTAAAAGATAAA
GAAAAGGTATCAAAAGAGGAAGAAGAGAAGGAGAGGAACACAGCAGCCATGGTGTGCTCT
TTGGAGAATAGAGATGAATGTCTGATGTGTGGATCCTGA

Clone variation with respect to NM_001033.3
2232 g=>a
>OriGene 5' read for NM_001033 unedited
GCACGAGGGCCTCTGCTCTGAAGAAGTGCTGTCTGGCTCCAACTCCAGTTCTTTCCCCTG
AGCAGCGCCTGGAACCTAACCCTTCCCACTCTGTCACCTTCTCGATCCCGCCGGCGCTTT
AGAGCCGCAGTCCAGTCTTGGATCCTTCAGAGCCTCAGCCACTAGCTGCGATGCATGTGA
TCAAGCGAGATGGCCGCCAAGAACGAGTCATGTTTGACAAAATTACATCTCGAATCCAGA
AGCTTTGTTATGGACTCAATATGGATTTTGTTGATCCTGCTCAGATCACCATGAAAGTAA
TCCAAGGCTTGTACAGTGGGGTCACCACAGTGGAACTAGATACTTTGGCTGCTGAAACAG
CTGCAACCTTGACTACTAAGCACCCTGACTATGCTATCCTGGCAGCCAGGATCGCTGTCT
CTAACTTGCACAAAGAAACAAAGAAAGTGTTCAGTGATGTGATGGAAGACCTCTATAACT
ACATAAATCCACATAATGGCAAACACTCTCCCATGGTGGCCAAGTCAACATTGGATATTG
TTCTGGCCAATAAAGATCGCCTGAATTCTGCTATTATCTATGACCGAGATTTCTCTTACA
ATTACTTC
>OriGene 3' read for NM_001033 unedited
CCGCGGGCCGCAATCTAGAGTCGAGTTTTTTTTTTTTTTTTTTCAAAAGCTTATTTTGGT
GAAAATCCCAATATATGAGTTTAAAAAAAAATCATTAACATCATTAACAGTACTTTAAAT
CAATTACTCCTTTTGCCTGCAACAGGGTCCAGCAAAGCCTTACCACCTCAAGCAAACCCA
CTATACCTATCTATGCTCAAGAAGTAGTTTGGCTACTGAAGACATGCTGGTCTCTTCCAA
GTCTTTCCTCAGGATCCACACATCAGACATTCATCTCTATTCTCCAAAGAGCACACCATG
GCTGCTGGGTTCCTCTCCTTCTCTTCTTCCTCTTTGGATACCTTTTCTTTATCTTTTAGC
TTCTCCTTATTTAGAGTGAACTGGATTGGATTAGCTGCTGGTCTTGTCCTTAAATAATAC
ATCCCAGTCTTCAAACCCTGCTTCCAGCCGTAGAAGTGCATACTAGTGAGTTTGCCATAG
TTAGGCTCAGCAATGTGGATGTTCAAAGATTGGCTTTGATCAATGAAAGCACCTCTCTCA
GCTGCCATCTTGAGAACAGTTTTCTGAGAGATTTCCCACACAGTTCTATAAAGTTGCTTC
AGGTCATCAGGAATTTCCTGGTATGCTCTGAATAGAGCCATTGCATGGCATAATCTGGTT
TTTCATCTCTTCATGCCATAGGCCCCGCTCGGGAAGACCTTTAATTAGTGAGGATTTACA
TTCTGAAATCCTCCTGACCAGACCCTGCAAGTATAGATGTGCTGTGGTAGGGTCCAAGGA
CCCATTATTCCCACGACTGAACAGGGGACCCGATAGCTCCGGGCAATAATAAACGGTTCT
TAACCATACTTGCAATTTTTCCTGGAAACCTCCAGTCCATAGGCTGTAGGGGACCTTCCC
AATTAACCGGAAATTCCTTGCACCGGAAGCCCTAAGGTTTTATGCCTTGTCCTGGAAGGG
ACCCGGCTTCAAGCCATAAAAAGTAAAAACGGTTTTAAACGGGCTGGCCCCAAG
Restriction Sites NotI-NotI     
ACCN NM_001033
ORF Size 2379 bp
Insert Size 2930
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_001033.2, NP_001024.1
RefSeq Size 3117
RefSeq ORF 2379
Locus ID 6240
Domains ribonuc_red_lg, ATP-cone
Protein Families Druggable Genome
Protein Pathways Glutathione metabolism, Metabolic pathways, Purine metabolism, Pyrimidine metabolism
Gene Summary This gene encodes the large and catalytic subunit of ribonucleotide reductase, an enzyme essential for the conversion of ribonucleotides into deoxyribonucleotides. A pool of available deoxyribonucleotides is important for DNA replication during S phase of the cell cycle as well as multiple DNA repair processes. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Dec 2015]
Transcript Variant: This variant (1) represents the longest transcript and encodes the longest isoform (1).

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