Polq (NM_001159369) Mouse Untagged Clone
CAT#: MC225250
Polq (untagged) - Mouse polymerase (DNA directed), theta (Polq), transcript variant 2, (10ug)
CNY 36,290.00
货期*
12周
规格
Product images
经常一起买 (3)
Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Synonyms | A430110D14Rik |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225250 representing NM_001159369
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGAGTCTTCCGCGCCGGAGTAGGAAACGGCGGCGTTCATCGTCCGGCTCCGACACGTTCTCGGGAGATG GTGATAGCTTTGTTAGCCCTCAGCTCCGGTGTGGACCGGTGCTGAGTCCACCTCCGGGGCTGGGACGCGG CCGGAGGCTCACAGGGACAGGAACAAACAAGCGAAGAGTTTCTGATGACCAGATAGACCAGCTGCTGTTG GCAAATTGGGGACTTCCTAAAGCAGTTCTGGAGAAATACCATAGTTTTGGTGTAAGAAAGATGTTCGAAT GGCAGGCAGAATGCCTTTTGCTTGGTCACGTCTTGGAAGGAAAGAATCTAGTTTATTCAGCTCCTACAAG TGCTGGGAAGACTCTTGTTGCAGAGTTACTTATTCTGAAGCGGGTTTTGGAAACACGGAAGAAAGCGTTG TTTATTTTGCCCTTTGTGTCTGTGGCTAAAGAGAAGAAATGCTACCTCCAGAGTCTGTTTCAGGAAGTAG GACTAAAGGTAGATGGCTATATGGGCAGCACCTCACCAACGGGACAGTTCTCCTCCTTGGACATTGCTGT TTGCACTATTGAGAGAGCCAATGGGCTGGTCAATCGCCTCATTGAGGAAAATAAGATGGATCTGTTAGGT GAAAGTATCCTAGTTTGTAAGAACTCTGAGAAATCCAAGGGCATTGCTCTGCTTCAAGGATCTCTGGAGC CTGTGCACAGCTGTCTGCAGAGACAGGGAGAAGTCACTGCTAGCATGATACGAGCTATTCTGGAGATAAT CGTTGGTGGGGTGGCCAGTACGTCACAAGATATGCAGACTTATGCCGCCTGCACCTTCTTGGCTGCTGCT ATACAGGAAGGGAAGCAAGGGATGCAGAGAAATCAAGATGATGCTCAGCTTGGAGCGATTGATGCCTGTG TGACGTGGCTGTTAGAAAATGAGTTCATCCAGGTGGCAGAGCCCGGGGACGGCACAGGAGGAAAGGTGTA TCACCCAACACATCTTGGATCAGCTACTCTTTCTTCTTCACTGTCTCCAACTGATACCCTTGATATTTTT GCTGACCTCCAAAGAGCAATGAAAGGCTTTGTTTTAGAGAATGACCTTCATATTGTCTACCTGGTTACAC CTGTGTTTGAAGATTGGATTAGTATTGATTGGTACCGATTTTTCTGTTTATGGGAAAAATTACCAACTTC TATGAAAAGGGTGGCAGAGCTGGTTGGAGTGGAGGAAGGGTTCTTGGCTCGATGTGTGAAAGGAAAAGTA GTAGCTAGAACTGAGAGACAGCATCGGCAGATGGCCATCCATAAAAGGTTTTTCACAAGTCTTGTGTTAC TGGATTTAATCAGTGAAATTCCCTTAAAGGACATTAATCAGAAGTATGGATGTAATCGTGGACAGATTCA GTCTTTGCAACAGTCAGCTGCTGTCTATGCAGGAATGATTACGGTGTTTTCCAACCGCCTGGGCTGGCAC AACATGGAACTACTGCTTTCCCAGTTTCAGAAGCGTCTTACGTTTGGCATCCAGAGAGAGCTGTGTGACC TCATCCGGGTGTCCTTACTCAACGCGCAGAGAGCCAGGTTCCTGTATGCCTCTGGCTTTCTCACCGTGGC AGATCTTGCCAGAGCTGATAGTGCGGAGGTAGAGGTGGCTCTGAAGAACTCTTTGCCTTTCAAAAGTGCC CGGAAGGCAGTGGATGAAGAAGAGGAAGCAGCTGAAGAACGGCGGAGTATGAGAACTATTTGGGTGACTG GCAAGGGCTTATCTGCAAGGGAAGCAGCAGCCTTAATAGTGGAAGAAGCTAAAATGATTCTACAGCAGGA CTTAATTGAAATGGGAGTACGGTGGGATCCGAAGTCACCCTTGAGTTCTAGCACACACTCACGGACCAGC ACGTCAGAAGTAAAGGAACACACGTTCAAATCCCAGACTAAGAGTTCTCATAAAAGGTTAGCATCAATGG GCAGAAATAGCATTAGAGCAAGTGGGTCTAATGACAAGCCGTCCCCAGATGCAGAGCGAGGCATAGATGA CTGCAGCGAGCATGCAGACTCTCTCTGTAAGTTCCAGGGCAATTTCGAGCCCCAGACACCCTCCATTTGT ACAGCAAGAAAACGGACTTCTTTAGGTATAAACAAAGAAATGCTTCGAAAGTCTCTGAAAGAAGGAAAGC CAAGCACTAAGGAAGTTCTTCAAACTTTCTCATCGGAGAAAACAAGAAAAACTGCTTTGAGTTTTAGTTC AGAGCAAGTGAACAACACTTTACCATCTGGGAGAGACAGAAAGTATCAGAAAAAATCTTGGGGCAGTAGT CCTGTGCGTGACTCTGGGATGCATAGAGGTGATTTACAGGGACAGACTATGTGTACATCTGCTCTATGTG AAGACTCACAGAAGTCCTTAGAGGAGCAGAATGCAGAATTTAGAAGTCCAGGGCTATTTGCAAAACATCT ACCTTCTTGTGCCAAAGAAAAATGCAAGAAGCCCTCACTCCCTTTACAAAGGCAGCAGGCTTGCTCAAGG AGAAGCACAGAGAGCTGTGCTGCTGTGGGGCATCCCGCTGCAGGGTCGTCCCCTGCTGCTGCTAGAGACA GAAGAGGACTGGCTGCTCGGGAGACAGAAAAGGGAAATGAGGCGCTCACGGAGAATGGTGGAGAAAGCCA GCTCCAAGACACCTACCCAGTCAGCCAGTACCTGGAATACCACAGTGAGAAACACACAAACACTTGCACC AGACAGAAGACATTAACAGAGGGACAAGCTGGTAGTAGTTATGTGGCCAGAGACTCAAATGATGCTGCAC CCATCAAATGTGAACGTATGAAGCTTAATAGCAAAGACCGCGACTCAAATCCTTGTCGTCAGGCATTGGG AAGTTACACAGGCAGGACTGAGGCACTTCAGTCAACTGCAAAACTTGGCCAAGCAGGAGGCCAGTGTGAA AATCTTCTAAATTCTTCTGGAGTACAAGGAAAAACAGGTGCTCATGCAACAAATAGAACTGAACATAGTC ATGCTTCTAACCCAGCCTTCTGTGACTTTGGAGATAGCTTAGACTTGGATACTCAGTCAGAGGAAATAAT TGAGCAGATGGCAACTGAAAATACCATGCAAGGAGCAAAAGCAGTAGTGATAATGGAAGAGGGTTCCGCC ATGCAGAACAAGTGTCACAGCACTCCAGGTGACCAGCATGTCCCAGGAGCAGCCAACACAGACCATGTGG ACAGTAAGAAGGTTGAGTCTGTGAAAGCAAACACCGAAAAGAACATCAATAGAGGCGCTCCAGTCAGCCT CATCTTCCATACTCAAGGGGAAAATGGCGCTTGCTTTAAAGGGAATGAGCATTCTGTTACTGATTCCCAA TTAAACAGTTTTCTTCAAGGGTTTGAAACACAAGAAATAGTGAAGCCAATCATACCGCTGGCTCCTCAAA TGAGAACTCCTACTGGTGTGGAGGAAGAAAGTCTGCCTGAAACCAGTTTGAATATGAGTGATAGTATACT ATTTGACAGTTTTGGAGAAGATGGCTTCGGACAAGGACAGTCACCTGATATAAAGGCAAATCAGCCACTC CTTTCTGAAATGACACCAAACCATTTCAGCAATCCTCCACACCCACAAGAAGACCCAGTTATGACACCAA CTGTGAGTGAGCCTCAGGGTACTCAGCAGCAAGGAGTTTGTCTCAGTGGTGAATCTATTATATTTTCAGA CATAGACTCTGCTCAGGTCATTGAAGCCTTAGACAATATGGCTGCATTTCATGTGCAAGAGAACTGTAAC TCAGTAGCCCTTAAAACATTAGAACCCAGTGATTCTGCAGTGCTGGGTAATGAGTGTCCCCAAGGAAAAC TGGTCAGAGGAGATCAAAATGAAGGGTCCCCAAAGCCCAAACTCACAGAGACAAATCAAGATAATTCATT CACTTGGTCAGGAGCATCATTTAACTTAAGTCCAGAACTGCAAAGGATTTTAGATAAAGTATCTAGTCCT CGAGAAAATGAAAAGCCCAAGATGATACATGTAAACTTGTCTTCCTTTGAAGGAAACAGCAAAGAGTCAC ATGAAAGAGAGGAAATAAATTCAGATTTGGGGACAGTTCAGAGAACTTCAGTTTTCCCCAGTAATGAAGT TAAAAACAGGACTGAAGGGCTAGAGAGCAAAGCCAGGCATGGTGGAGCCTCATCTCCCTTGCCTCGTAAA GAAAGTGCTGCAGCTGATGACAATGGCCTCATTCCTCCTACACCCGTTCCTGCTTCTGCTTCTAAGGTAG CCTTTCCAGAGATTCTCGGAACATCTGTAAAACGTCAGAAAGCCAGCAGTGCTTTACAGCCAGGGGAAAG TTGTTTATTTGGCTCACCTTCAGACAATCAAAACCAGGATTTGAGTCAAGAGCTTAGAGACAGCCTCAAG GACTATGATGGTTCTGTTGCAGACACAAGTTTTTTTCTGCAGTCTCAGGATGGACTGCTGTTAACTCAAG CCTCATGCAGCTCAGAGAGTCTGGCCATAATTGACGTAGCGAGTGATCAGATTCTCTTTCAGACATTTGT GAAGGAGTGGCAATGCCAAAAGCGCTTTTCCATCTCTCTGGCTTGTGAAAAGATGACAAGTTCAATGTCT TCCAAAACTGCTACCATAGGTGGAAAGTTGAAGCAAGTTAGCTTGCCACAGGAAGCCACTGTTGAAGATG CTGGGTTCCCTGTGCGTGGCTGTGATGGTGCTGTGGTAGTTGGACTAGCAGTGTGCTGGGGTGCAAAGGA TGCCTATTATTTGTCACTGCAGAAGGAACAAAAGCAGTCTGAAATAAGTCCCAGTTTGGCCCCACCACCT CTGGACGCAACACTAACTGTGAAGGAGAGGATGGAGTGCCTTCAGTCCTGCTTGCAAAAGAAGTCTGATC GAGAGCGGTCTGTTGTCACCTATGATTTCATCCAGACCTATAAAGTCCTCCTCCTGTCATGTGGCATCTC CCTGGAGCCCAGTTATGAAGACCCCAAGGTGGCATGCTGGCTTCTCGACCCAGATTCTAAGGAGCCAACT CTTCATAGCATAGTGACCAGTTTTCTCCCCCATGAGCTAGCACTCCTAGAAGGAATGGAGACAGGCCCAG GAATTCAGAGCCTGGGGCTAAATGTGAACACTGAACATTCTGGGAGGTACAGAGCATCTGTGGAGTCTGT TCTCATCTTCAACTCCATGAATCAACTCAACTCTTTGTTGCAGAAGGAAAACCTTCATGATATTTTCTGC AAAGTGGAGATGCCCTCTCAGTACTGCCTGGCCTTGCTAGAACTAAATGGAATTGGCTTTAGTACTGCGG AGTGTGAAAGCCAGAAGCATGTTATGCAAGCCAAGCTGGACGCCATTGAGACCCAAGCCTATCAGCTGGC TGGCCACAGTTTTTCCTTTACAAGTGCAGATGACATCGCACAGGTTTTATTTTTGGAACTAAAGTTACCA CCGAATGGAGAGATGAAAACGCAAGGCAGCAAAAAGACTCTGGGTTCCACCAGAAGAGGGAATGAGAGTG GCCGCAGAATGAGGCTGGGAAGACAGTTCAGCACTAGTAAGGATATTTTAAATAAATTAAAGGGCTTGCA TCCTTTACCAGGCCTGATACTGGAATGGAGAAGAATCAGTAATGCTATTACCAAGGTGGTCTTCCCTCTG CAGCGGGAAAAGCACCTGAACCCCCTTCTCAGAATGGAGAGGATCTACCCGGTGTCACAGTCACACACGG CTACAGGACGGATAACCTTTACAGAACCCAATATCCAGAATGTGCCAAGAGATTTTGAGATTAAAATGCC AACACTAGTAAGGGAGAGCCCACCTTCTCAAGCTCCAAAAGGCCGGTTCCCAATGGCAATAGGACAAGAT AAGAAGGTTTATGGCCTGCACCCCGGGCACAGAACACAGATGGAAGAGAAGGCCTCAGATAGAGGGGTGC CATTTTCAGTGAGCATGCGCCATGCCTTTGTGCCTTTCCCAGGTGGGCTGATCCTGGCTGCCGACTACTC TCAGCTTGAACTGAGGATCCTGGCTCACTTGTCTCGTGACTGTCGTCTCATTCAAGTCTTAAATACGGGA GCGGATGTGTTCAGGAGCATTGCTGCCGAGTGGAAGATGATTGAGCCTGATGCTGTTGGTGACGATCTGA GGCAGCACGCAAAGCAGATTTGCTATGGAATTATATATGGAATGGGAGCTAAATCTTTAGGAGAGCAGAT GGGCATTAAAGAAAATGATGCTGCTTCCTACATTGACTCTTTCAAGTCCAGATATAAAGGGATTAATCAT TTCATGAGGGACACAGTGAAGAACTGTAGAAAAAATGGATTTGTTGAGACAATTTTGGGAAGACGTAGAT ATTTGCCAGGAATCAAAGACGACAATCCTTATCATAAAGCACACGCTGAACGTCAGGCCATCAACACAAC AGTCCAGGGATCAGCTGCTGATATAGTCAAAATAGCCACAGTTAATATTCAGAAGCAATTAGAGACCTTC CGTTCAACCTTCAAATCCCACGGTCATCGGGAAAGTATGCTCCAGAATGACCGAACAGGATTGTTGCCCA AGAGGAAACTTAAAGGGATGTTTTGTCCCATGAGAGGAGGATTCTTCATCCTTCAACTTCACGACGAGCT TTTATATGAAGTGGCAGAAGAGGATGTTGTTCAGGTGGCTCAGATTGTCAAGAATGAAATGGAATGTGCT ATAAAACTTTCTGTGAAGCTGAAAGTGAAAGTGAAAATAGGTGCCAGCTGGGGAGAGCTGAAGGACTTTG ATGTGTGA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_001159369 |
Insert Size | 6798 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). |
Product 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 | 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. |
Reference Data | |
RefSeq | NM_001159369.1, NP_001152841.1 |
RefSeq Size | 7732 bp |
RefSeq ORF | 6798 bp |
Locus ID | 77782 |
UniProt ID | Q8CGS6 |
Gene Summary | DNA polymerase that promotes microhomology-mediated end-joining (MMEJ), an alternative non-homologous end-joining (NHEJ) machinery triggered in response to double-strand breaks in DNA. MMEJ is an error-prone repair pathway that produces deletions of sequences from the strand being repaired and promotes genomic rearrangements, such as telomere fusions, some of them leading to cellular transformation (PubMed:25275444, PubMed:25642963). POLQ acts as an inhibitor of homology-recombination repair (HR) pathway by limiting RAD51 accumulation at resected ends (PubMed:25642963). POLQ-mediated MMEJ may be required to promote the survival of cells with a compromised HR repair pathway, thereby preventing genomic havoc by resolving unrepaired lesions (PubMed:25642963). The polymerase acts by binding directly the 2 ends of resected double-strand breaks, allowing microhomologous sequences in the overhangs to form base pairs. It then extends each strand from the base-paired region using the opposing overhang as a template. Requires partially resected DNA containing 2 to 6 base pairs of microhomology to perform MMEJ. The polymerase activity is highly promiscuous: unlike most polymerases, promotes extension of ssDNA and partial ssDNA (pssDNA) substrates. Also exhibits low-fidelity DNA synthesis, translesion synthesis and lyase activity, and it is implicated in interstrand-cross-link repair, base excision repair and DNA end-joining (By similarity). Involved in somatic hypermutation of immunoglobulin genes, a process that requires the activity of DNA polymerases to ultimately introduce mutations at both A/T and C/G base pairs (PubMed:16222339, PubMed:16172387, PubMed:16890500, PubMed:17449470). However, POLQ does not play a major role in somatic hypermutation (PubMed:18485835).[UniProtKB/Swiss-Prot Function] Transcript Variant: This variant (2) lacks an alternate in-frame segment compared to variant 1. The resulting isoform (2) has the same N- and C-termini but is shorter compared to isoform 1. |
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