NCAPD3 (Homo sapiens) in pDONR221 (Gateway donor/master vector)

Explanation of Terms

Gene:
Gene Symbol:  NCAPD3
Gene Name:  non-SMC condensin II complex, subunit D3
Original Clone ID:
U6292DG230-613
Keyword:
None
Species:
Homo sapiens
Type:
cDNA
Vector Name:
pDONR221
Format: 
FUSION
Source:
Center for Personalized Diagnostics
Description:
None
Comments:
None
Mutation / Discrepancy:
No / No
Publications:
None
Authors:
Center for Personalized Diagnostics
HsCD00945126
Price: 
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AVAILABLE
No restriction
Special MTA: None
Insert sequence: 4497nts
Open reading frame: 1 to 4497

ATGGTGGCGTTGCGGGGCCTTGGTAGCGGCCTGCAGCCCTGGTGTCCGCTGGATCTTAGA
CTCGAATGGGTTGACACAGTGTGGGAACTGGATTTCACAGAGACTGAGCCTTTGGATCCC
AGCATAGAAGCAGAGATCATAGAGACTGGATTGGCTGCATTCACAAAACTCTATGAAAGC
CTTTTACCCTTTGCTACTGGAGAACATGGATCTATGGAGAGTATCTGGACCTTCTTCATT
GAGAACAATGTTTCCCATAGTACACTGGTGGCATTGTTCTATCATTTTGTTCAAATAGTT
CATAAGAAGAATGTCAGTGTACAGTATCGAGAATATGGCCTTCATGCCGCTGGGCTTTAC
TTTTTGCTACTAGAAGTACCAGGCAGTGTAGCCAATCAAGTATTCCACCCAGTGATGTTT
GACAAATGCATTCAGACTCTAAAGAAGAGCTGGCCCCAGGAATCTAACTTGAATCGGAAA
AGAAAGAAAGAACAGCCTAAGAGCTCTCAGGCTAACCCCGGGAGGCATAGAAAAAGGGGA
AAGCCACCCAGGAGAGAAGATATTGAGATGGATGAAATTATAGAAGAACAAGAAGATGAG
AATATTTGTTTTTCTGCCCGGGACCTTTCTCAAATTCGAAATGCCATCTTTCACCTTTTA
AAGAATTTTTTAAGGCTTCTGCCAAAGTTTTCCTTGAAAGAAAAGCCACAATGTGTACAG
AATTGTATAGAGGTCTTTGTTTCATTAACTAATTTTGAGCCAGTTCTTCATGAATGTCAT
GTTACACAAGCCAGAGCTCTTAACCAAGCAAAATACATACCAGAACTGGCTTATTATGGA
TTGTATTTGCTGTGCTCTCCCATTCATGGAGAAGGAGATAAGGTCATCAGTTGTGTTTTC
CATCAAATGCTCAGTGTAATATTAATGTTAGAAGTTGGTGAAGGATCCCATCGTGCCCCC
CTTGCTGTTACCTCCCAAGTCATCAACTGTAGAAACCAGGCGGTCCAGTTTATCAGCGCC
CTTGTGGATGAATTAAAGGAGAGTATATTCCCAGTCGTCCGTATCTTACTGCAGCACATC
TGTGCCAAGGTGGTAGATAAATCAGAGTATCGTACTTTTGCAGCCCAGTCCCTAGTCCAG
CTGCTCAGTAAACTTCCTTGTGGGGAATACGCTATGTTCATTGCCTGGCTTTACAAATAC
TCCCGAAGTTCCAAGATCCCACACCGGGTTTTTACTCTTGATGTTGTCTTAGCTCTGTTA
GAACTGCCTGAAAGAGAGGTGGATAACACCCTCTCCTTGGAGCATCAGAAGTTCTTAAAG
CATAAGTTCCTGGTGCAGGAAATTATGTTTGATCGTTGCTTAGACAAGGCGCCTACTGTC
CGCAGCAAGGCACTGTCCAGCTTTGCACACTGTCTGGAGTTGACTGTTACCAGTGCGTCG
GAGAGTATCCTGGAGCTCCTGATTAACAGTCCTACGTTTTCTGTAATAGAGAGTCACCCT
GGTACCTTACTGAGAAATTCATCAGCTTTTTCCTACCAAAGGCAGACATCTAACCGTTCC
GAACCCTCAGGGGAGATCAACATAGACAGCAGTGGTGAAACAGTTGGATCTGGAGAAAGA
TGTGTCATGGCAATGCTGAGAAGGAGGATCAGGGATGAGAAGACCAACGTTAGGAAGTCT
GCACTGCAGGTATTAGTGAGTATTTTGAAACACTGTGATGTCTCAGGCATGAAGGAAGAC
CTGTGGATTCTGCAGGACCAGTGTCGGGACCCTGCAGTGTCTGTCCGGAAGCAGGCCCTC
CAGTCTCTTACTGAACTCCTTATGGCTCAGCCTAGATGCGTGCAGATCCAGAAAGCCTGG
TTGCGGGGGGTGGTCCCGGTGGTGATGGACTGCGAGAGCACTGTGCAGGAGAAGGCCCTG
GAGTTCCTGGACCAGCTGCTGCTGCAGAACATCCGGCATCACAGTCATTTTCACTCTGGG
GACGACAGCCAGGTCCTCGCCTGGGCGCTTCTTACTCTCCTCACCACCGAAAGCCAGGAA
CTGAGCCGATATTTAAATAAGGCTTTTCATATCTGGTCCAAGAAAGAAAAATTCTCACCC
ACTTTTATAAACAATGTAATATCTCACACTGGCACGGAACATTCGGCACCTGCCTGGATG
CTGCTCTCCAAGATTGCTGGCTCCTCACCCAGGCTGGACTACAGCAGAATAATACAATCT
TGGGAGAAAATCAGCAGTCAGCAGAATCCCAATTCAAACACCTTAGGACATATTCTCTGT
GTGATTGGGCATATTGCAAAGCATCTTCCTAAGAGCACCCGGGACAAAGTGACTGATGCT
GTCAAGTGTAAGCTGAATGGATTTCAGTGGTCTCTAGAGGTGATCAGTTCAGCTGTTGAC
GCCTTGCAGAGGCTTTGTAGAGCATCTGCAGAGACACCAGCAGAGGAGCAGGAATTGCTG
ACGCAGGTGTGTGGGGATGTACTCTCCACCTGCGAGCACCGCCTCTCCAACATCGTTCTC
AAGGAGAATGGAACAGGGAATATGGACGAAGACCTGTTGGTGAAGTACATTTTTACCTTA
GGGGATATAGCCCAGCTGTGTCCAGCCAGGGTGGAGAAGCGCATCTTCCTTCTGATTCAG
TCCGTCCTGGCTTCGTCTGCTGATGCTGACCACTCACCATCATCTCAAGGCAGCAGTGAG
GCCCCAGCGTCTCAGCCACCCCCCCAGGTCAGAGGTTCTGTCATGCCCTCTGTGATTAGA
GCACATGCCATCATTACCTTAGGTAAGCTGTGCTTACAGCACGAGGATCTGGCAAAGAAG
AGCATCCCAGCCCTGGTGCGAGAGCTCGAGGTGTGTGAGGACGTGGCTGTCCGCAACAAC
GTCATCATTGTAATGTGCGATCTCTGCATTCGCTACACCATCATGGTGGACAAGTATATT
CCCAACATCTCCATGTGTCTGAAGGATTCCGACCCATTCATCCGGAAGCAGACACTCATC
TTGCTTACCAATCTCTTGCAGGAGGAATTTGTGAAATGGAAGGGCTCCCTGTTCTTCCGA
TTTGTCAGCACTCTGATCGATTCACACCCAGACATTGCCAGCTTCGGGGAGTTTTGCCTG
GCTCACCTGTTACTGAAGAGGAACCCTGTCATGTTCTTCCAACACTTCATTGAATGTATT
TTTCACTTTAATAACTATGAGAAGCATGAGAAGTACAACAAGTTCCCCCAGTCAGAGAGA
GAGAAGCGGCTGTTTTCATTGAAGGGAAAGTCAAACAAAGAGAGACGAATGAAAATCTAC
AAATTTCTTCTAGAGCACTTCACAGATGAACAGCGATTCAACATCACTTCCAAAATCTGC
CTTAGTATTTTGGCGTGCTTTGCTGATGGCATCCTACCCCTGGACCTGGACGCCAGTGAG
TTACTCTCAGACACGTTTGAGGTCCTCAGCTCAAAGGAGATCAAGCTTTTGGCAATGAGA
TCTAAACCAGACAAAGACCTCCTTATGGAAGAAGATGACATGGCCTTGGCAAATGTAGTC
ATGCAGGAAGCTCAGAAGAAGCTCATCTCACAAGTTCAGAAGAGGAATTTCATAGAAAAT
ATTATTCCAATTATCATCTCCCTGAAGACTGTGCTGGAGAAAAATAAGATCCCAGCTTTG
CGGGAACTCATGCACTATCTCAGGGAGGTGATGCAGGATTACCGAGATGAGCTCAAGGAC
TTCTTTGCAGTTGACAAACAGCTGGCATCAGAGCTTGAGTATGACATGAAGAAGTACCAG
GAACAGCTGGTCCAGGAGCAGGAGCTAGCAAAACATGCAGATGTGGCCGGGACGGCTGGA
GGTGCTGAGGTGGCACCTGTGGCACAGGTTGCCCTGTGTTTAGAAACAGTGCCAGTTCCT
GCTGGCCAAGAAAACCCTGCCATGTCACCTGCCGTGAGCCAGCCCTGCACACCCAGGGCA
AGTGCTGGCCATGTAGCAGTATCATCTCCTACACCTGAAACAGGGCCATTGCAGAGGTTG
CTGCCCAAAGCCAGGCCCATGTCCCTGAGCACCATTGCAATCCTGAATTCTGTCAAGAAA
GCCGTGGAGTCAAAGAGCAGGCATCGGAGTCGGAGCTTAGGAGTGCTGCCTTTCACTTTA
AATTCTGGAAGCCCAGAAAAAACGTGCAGTCAGGTGTCTTCATACAGTTTGGAGCAAGAG
TCGAATGGCGAGATTGAGCACGTGACCAAGCGGGCCATCAGCACCCCCGAGAAGAGCATC
AGTGATGTCACGTTTGGAGCAGGGGTCAGTTACATCGGGACACCACGGACTCCGTCGTCA
GCCAAAGAGAAAATTGAAGGCCGGAGTCAAGGAAATGACATCTTATGTTTATCACTGCCT
GATAAACCGCCCCCACAGCCTCAGCAGTGGAATGTGCGGTCTCCCGCCAGGAATAAAGAC
ACTCCAGCCTGCAGCAGGAGGTCCCTCCGAAAGACCCCTCTGAAAACAGCCAACTTG

Protein sequence predicted based on nucleotide sequence

MVALRGLGSGLQPWCPLDLRLEWVDTVWELDFTETEPLDPSIEAEIIETGLAAFTKLYES
LLPFATGEHGSMESIWTFFIENNVSHSTLVALFYHFVQIVHKKNVSVQYREYGLHAAGLY
FLLLEVPGSVANQVFHPVMFDKCIQTLKKSWPQESNLNRKRKKEQPKSSQANPGRHRKRG
KPPRREDIEMDEIIEEQEDENICFSARDLSQIRNAIFHLLKNFLRLLPKFSLKEKPQCVQ
NCIEVFVSLTNFEPVLHECHVTQARALNQAKYIPELAYYGLYLLCSPIHGEGDKVISCVF
HQMLSVILMLEVGEGSHRAPLAVTSQVINCRNQAVQFISALVDELKESIFPVVRILLQHI
CAKVVDKSEYRTFAAQSLVQLLSKLPCGEYAMFIAWLYKYSRSSKIPHRVFTLDVVLALL
ELPEREVDNTLSLEHQKFLKHKFLVQEIMFDRCLDKAPTVRSKALSSFAHCLELTVTSAS
ESILELLINSPTFSVIESHPGTLLRNSSAFSYQRQTSNRSEPSGEINIDSSGETVGSGER
CVMAMLRRRIRDEKTNVRKSALQVLVSILKHCDVSGMKEDLWILQDQCRDPAVSVRKQAL
QSLTELLMAQPRCVQIQKAWLRGVVPVVMDCESTVQEKALEFLDQLLLQNIRHHSHFHSG
DDSQVLAWALLTLLTTESQELSRYLNKAFHIWSKKEKFSPTFINNVISHTGTEHSAPAWM
LLSKIAGSSPRLDYSRIIQSWEKISSQQNPNSNTLGHILCVIGHIAKHLPKSTRDKVTDA
VKCKLNGFQWSLEVISSAVDALQRLCRASAETPAEEQELLTQVCGDVLSTCEHRLSNIVL
KENGTGNMDEDLLVKYIFTLGDIAQLCPARVEKRIFLLIQSVLASSADADHSPSSQGSSE
APASQPPPQVRGSVMPSVIRAHAIITLGKLCLQHEDLAKKSIPALVRELEVCEDVAVRNN
VIIVMCDLCIRYTIMVDKYIPNISMCLKDSDPFIRKQTLILLTNLLQEEFVKWKGSLFFR
FVSTLIDSHPDIASFGEFCLAHLLLKRNPVMFFQHFIECIFHFNNYEKHEKYNKFPQSER
EKRLFSLKGKSNKERRMKIYKFLLEHFTDEQRFNITSKICLSILACFADGILPLDLDASE
LLSDTFEVLSSKEIKLLAMRSKPDKDLLMEEDDMALANVVMQEAQKKLISQVQKRNFIEN
IIPIIISLKTVLEKNKIPALRELMHYLREVMQDYRDELKDFFAVDKQLASELEYDMKKYQ
EQLVQEQELAKHADVAGTAGGAEVAPVAQVALCLETVPVPAGQENPAMSPAVSQPCTPRA
SAGHVAVSSPTPETGPLQRLLPKARPMSLSTIAILNSVKKAVESKSRHRSRSLGVLPFTL
NSGSPEKTCSQVSSYSLEQESNGEIEHVTKRAISTPEKSISDVTFGAGVSYIGTPRTPSS
AKEKIEGRSQGNDILCLSLPDKPPPQPQQWNVRSPARNKDTPACSRRSLRKTPLKTANL

Coding Sequence Details

Insert Sequence Verified?:
Y
Verification Method:
Sequence Verification
Mutations:
None
Discrepancy:
None
5' Linker Sequence:
None
3' Linker Sequence:
None

Recommended Growth Condition:

Distributed in bacterial strain:
DH5-alpha T1 phage resistant
Antibiotic Selection:
Host Type:  bacterial    Marker:  kanamycin
Bacterial Selection Condition: 50ug/mL kanamycin
Growth Condition: Growth with the single antibiotic in LB at 37 degrees is recommended.
Comments: Conditions for Gateway-type vectors in recombined (with insert) form and other kanamycin resistant vectors.
Protein Expression Results:
None
Recommended expression in:
Not Applicable