PXDN (Homo sapiens) in pENTR223.1 (Gateway donor/master vector)

Explanation of Terms

Gene:
Gene Symbol:  PXDN
Gene Name:  peroxidasin homolog (Drosophila)
Original Clone ID:
FLH265853.01L
Keyword:
None
Species:
Homo sapiens
Type:
cDNA
Vector Name:
pENTR223.1
Format: 
FUSION
Source:
The ORFeome Collaboration
Description:
None
Comments:
None
Mutation / Discrepancy:
No / No
Publications:
None
Authors:
The ORFeome Collaboration
HsCD00081229
Price: 
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AVAILABLE
No restriction
Special MTA: None
Insert sequence: 4437nts
Open reading frame: 1 to 4437

ATGGCCAAGCGCTCCAGGGGCCCCGGGCGCCGCTGCCTGTTGGCGCTCGTGCTGTTCTGC
GCCTGGGGGACGCTGGCCGTGGTGGCCCAGAAGCCGGGCGCAGGGTGTCCGAGCCGCTGC
CTGTGCTTCCGCACCACCGTGCGCTGCATGCATCTGCTGCTGGAGGCCGTGCCCGCCGTG
GCGCCGCAGACCTCCATCCTAGATCTTCGCTTTAACAGAATCAGAGAGATCCAACCTGGG
GCATTCAGGCGGCTGAGGAACTTGAACACATTGCTTCTCAATAATAATCAGATCAAGAGG
ATACCTAGTGGAGCATTTGAAGACTTGGAAAATTTAAAATATCTCTATCTGTACAAGAAT
GAGATCCAGTCAATTGACAGGCAAGCATTTAAGGGACTTGCCTCTCTAGAGCAACTATAC
CTGCACTTTAATCAGATAGAAACTTTGGACCCAGATTCGTTCCAGCATCTCCCGAAGCTC
GAGAGGCTATTTTTGCATAACAACCGGATTACACATTTAGTTCCAGGGACATTTAATCAC
TTGGAATCTATGAAGAGATTGCGACTGGACTCAAACACACTTCACTGCGACTGTGAAATC
CTGTGGTTGGCGGATTTGCTGAAAACCTACGCGGAGTCGGGGAACGCGCAGGCAGCGGCC
ATCTGTGAATATCCCAGACGCATCCAGGGACGCTCAGTGGCAACCATCACCCCGGAAGAG
CTGAACTGTGAAAGGCCCCGGATCACCTCCGAGCCCCAGGACGCAGATGTGACCTCGGGG
AACACCGTGTACTTCACCTGCAGAGCCGAAGGCAACCCCAAGCCTGAGATCATCTGGCTG
CGAAACAATAATGAGCTGAGCATGAAGACAGATTCCCGCCTAAACTTGCTGGACGATGGG
ACCCTGATGATCCAGAACACACAGGAGACAGACCAGGGTATCTACCAGTGCATGGCAAAG
AACGTGGCCGGAGAGGTGAAGACGCAAGAGGTGACCCTCAGGTACTTCGGGTCTCCAGCT
CGACCCACTTTTGTAATCCAGCCACAGAATACAGAGGTGCTGGTTGGGGAGAGCGTCACG
CTGGAGTGCAGCGCCACAGGCCACCCCCCGCCGCGGATCTCCTGGACGAGAGGTGACCGC
ACACCCTTGCCAGTTGACCCGCGGGTGAACATCACGCCTTCTGGCGGGCTTTACATACAG
AACGTCGTACAGGGGGACAGCGGAGAGTATGCGTGCTCTGCGACCAACAACATTGACAGC
GTCCATGCCACCGCTTTCATCATCGTCCAGGCTCTTCCTCAGTTCACTGTGACGCCTCAG
GACAGAGTCGTTATTGAGGGCCAGACCGTGGATTTCCAGTGTGAAGCCAAGGGCAACCCG
CCGCCCGTCATCGCCTGGACCAAGGGAGGGAGCCAGCTCTCCGTGGACCGGCGGCACCTG
GTCCTGTCATCGGGAACACTTAGAATCTCTGGTGTTGCCCTCCACGACCAGGGCCAGTAC
GAATGCCAGGCTGTCAACATCATCGGCTCCCAGAAGGTCGTGGCCCACCTGACTGTGCAG
CCCAGAGTCACCCCAGTGTTTGCCAGCATTCCCAGCGACACAACAGTGGAGGTGGGCGCC
AATGTGCAGCTCCCGTGCAGCTCCCAGGGCGAGCCCGAGCCAGCCATCACCTGGAACAAG
GATGGGGTTCAGGTGACAGAAAGTGGAAAATTTCACATCAGCCCTGAAGGATTCTTGACC
ATCAATGACGTTGGCCCTGCAGACGCAGGTCGCTATGAGTGTGTGGCCCGGAACACCATT
GGGTCGGCCTCGGTGAGCATGGTGCTCAGTGTGAATGTTCCTGACGTCAGTCGAAATGGA
GATCCGTTTGTAGCTACCTCCATCGTGGAAGCGATTGCGACTGTTGACAGAGCTATAAAC
TCAACCCGAACACATTTGTTTGACAGCCGTCCTCGTTCTCCAAATGATTTGCTGGCCTTG
TTCCGGTATCCGAGGGATCCTTACACAGTTGAACAGGCACGGGCGGGAGAAATCTTTGAA
CGGACATTGCAGCTCATTCAGGAGCATGTACAGCATGGCTTGATGGTCGACCTCAACGGA
ACAAGTTACCACTACAACGACCTGGTGTCTCCACAGTACCTGAACCTCATCGCAAACCTG
TCGGGCTGTACCGCCCACCGGCGCGTGAACAACTGCTCGGACATGTGCTTCCACCAGAAG
TACCGGACGCACGACGGCACCTGTAACAACCTGCAGCACCCCATGTGGGGCGCCTCGCTG
ACCGCCTTCGAGCGCCTGCTGAAATCCGTGTACGAGAATGGCTTCAACACCCCTCGGGGC
ATCAACCCCCACCGACTGTACAACGGGCACGCCCTTCCCATGCCGCGCCTGGTGTCCACC
ACCCTGATCGGGACGGAGACCGTCACACCCGACGAGCAGTTCACCCACATGCTGATGCAG
TGGGGCCAGTTCCTGGACCACGACCTCGACTCCACGGTGGTGGCCCTGAGCCAGGCACGC
TTCTCCGACGGACAGCACTGCAGCAACGTGTGCAGCAACGACCCCCCCTGCTTCTCTGTC
ATGATCCCCCCCAATGACTCCCGGGCCAGGAGCGGGGCCCGCTGCATGTTCTTCGTGCGC
TCCAGCCCTGTGTGCGGCAGCGGCATGACTTCGCTGCTCATGAACTCCGTGTACCCGCGG
GAGCAGATCAACCAGCTCACCTCCTACATAGACGCATCCAACGTGTACGGGAGCACGGAG
CATGAGGCCCGCAGCATCCGCGACCTGGCCAGCCACCGCGGCCTGCTGCGGCAGGGCATC
GTGCAGCGGTCCGGGAAGCCGCTGCTCCCCTTCGCCACCGGGCCGCCCACGGAGTGCATG
CGGGACGAGAACGAGAGCCCCATCCCCTGCTTCCTGGCCGGGGACCACCGCGCCAACGAG
CAGCTGGGCCTGACCAGCATGCACACGCTGTGGTTCCGCGAGCACAACCGCATTGCCACG
GAGCTGCTCAAGCTGAACCCGCACTGGGACGGCGACACCATCTACTATGAGACCAGGAAG
ATCGTGGGTGCGGAGATCCAGCACATCACCTACCAGCACTGGCTCCCGAAGATCCTGGGG
GAGGTGGGCATGAGGACGCTGGGAGAGTACCACGGCTACGACCCCGGCATCAATGCTGGC
ATCTTCAACGCCTTCGCCACCGCGGCCTTCAGGTTTGGCCACACGCTTGTCAACCCACTG
CTTTACCGGCTGGACGAGAACTTCCAGCCCATTGCACAAGATCACCTCCCCCTTCACAAA
GCTTTCTTCTCTCCCTTCCGGATTGTGAATGAGGGCGGCATCGATCCGCTTCTCAGGGGG
CTGTTCGGGGTGGCGGGGAAAATGCGTGTGCCCTCGCAGCTGCTGAACACGGAGCTCACG
GAGCGGCTGTTCTCCATGGCACACACGGTGGCTCTGGACCTGGCGGCCATCAACATCCAG
CGGGGCCGGGACCACGGGATCCCACCCTACCACGACTACAGGGTCTACTGCAATCTATCG
GCGGCACACACGTTCGAGGACCTGAAAAATGAGATTAAAAACCCTGAGATCCGGGAGAAA
CTGAAAAGGTTGTATGGCTCGACACTCAACATCGACCTGTTTCCGGCGCTCGTGGTGGAG
GACCTGGTGCCTGGCAGCCGGCTGGGCCCCACCCTGATGTGTCTTCTCAGCACACAGTTC
AAGCGCCTGCGAGATGGGGACAGGTTGTGGTATGAGAACCCTGGGGTGTTCTCCCCGGCC
CAGCTGACTCAGATCAAGCAGACGTCGCTGGCCAGGATCCTATGCGACAACGCGGACAAC
ATCACCCGGGTGCAGAGCGACGTGTTCAGGGTGGCGGAGTTCCCTCACGGCTACGGCAGC
TGTGACGAGATCCCCAGGGTAGACCTCCGGGTGTGGCAGGACTGCTGTGAAGACTGTAGG
ACCAGGGGGCAGTTCAATGCCTTTTCCTATCATTTCCGAGGCAGACGGTCTCTTGAGTTC
AGCTACCAGGAGGACAAGCCGACCAAGAAAACAAGACCACGGAAAATACCCAGTGTTGGG
AGACAGGGGGAACATCTCAGCAACAGCACCTCAGCCTTCAGCACACGCTCAGATGCATCT
GGGACAAATGACTTCAGAGAGTTTGTTCTGGAAATGCAGAAGACCATCACAGACCTCAGA
ACACAGATAAAGAAACTTGAATCACGGCTCAGTACCACAGAGTGCGTGGATGCCGGGGGC
GAATCTCACGCCAACAACACCAAGTGGAAAAAAGATGCATGCACCATTTGTGAATGCAAA
GACGGGCAGGTCACCTGCTTCGTGGAAGCTTGCCCCCCTGCCACCTGTGCTGTCCCCGTG
AACATCCCAGGGGCCTGCTGTCCAGTCTGCTTACAGAAGAGGGCGGAGGAAAAGCCC

Protein sequence predicted based on nucleotide sequence

MAKRSRGPGRRCLLALVLFCAWGTLAVVAQKPGAGCPSRCLCFRTTVRCMHLLLEAVPAV
APQTSILDLRFNRIREIQPGAFRRLRNLNTLLLNNNQIKRIPSGAFEDLENLKYLYLYKN
EIQSIDRQAFKGLASLEQLYLHFNQIETLDPDSFQHLPKLERLFLHNNRITHLVPGTFNH
LESMKRLRLDSNTLHCDCEILWLADLLKTYAESGNAQAAAICEYPRRIQGRSVATITPEE
LNCERPRITSEPQDADVTSGNTVYFTCRAEGNPKPEIIWLRNNNELSMKTDSRLNLLDDG
TLMIQNTQETDQGIYQCMAKNVAGEVKTQEVTLRYFGSPARPTFVIQPQNTEVLVGESVT
LECSATGHPPPRISWTRGDRTPLPVDPRVNITPSGGLYIQNVVQGDSGEYACSATNNIDS
VHATAFIIVQALPQFTVTPQDRVVIEGQTVDFQCEAKGNPPPVIAWTKGGSQLSVDRRHL
VLSSGTLRISGVALHDQGQYECQAVNIIGSQKVVAHLTVQPRVTPVFASIPSDTTVEVGA
NVQLPCSSQGEPEPAITWNKDGVQVTESGKFHISPEGFLTINDVGPADAGRYECVARNTI
GSASVSMVLSVNVPDVSRNGDPFVATSIVEAIATVDRAINSTRTHLFDSRPRSPNDLLAL
FRYPRDPYTVEQARAGEIFERTLQLIQEHVQHGLMVDLNGTSYHYNDLVSPQYLNLIANL
SGCTAHRRVNNCSDMCFHQKYRTHDGTCNNLQHPMWGASLTAFERLLKSVYENGFNTPRG
INPHRLYNGHALPMPRLVSTTLIGTETVTPDEQFTHMLMQWGQFLDHDLDSTVVALSQAR
FSDGQHCSNVCSNDPPCFSVMIPPNDSRARSGARCMFFVRSSPVCGSGMTSLLMNSVYPR
EQINQLTSYIDASNVYGSTEHEARSIRDLASHRGLLRQGIVQRSGKPLLPFATGPPTECM
RDENESPIPCFLAGDHRANEQLGLTSMHTLWFREHNRIATELLKLNPHWDGDTIYYETRK
IVGAEIQHITYQHWLPKILGEVGMRTLGEYHGYDPGINAGIFNAFATAAFRFGHTLVNPL
LYRLDENFQPIAQDHLPLHKAFFSPFRIVNEGGIDPLLRGLFGVAGKMRVPSQLLNTELT
ERLFSMAHTVALDLAAINIQRGRDHGIPPYHDYRVYCNLSAAHTFEDLKNEIKNPEIREK
LKRLYGSTLNIDLFPALVVEDLVPGSRLGPTLMCLLSTQFKRLRDGDRLWYENPGVFSPA
QLTQIKQTSLARILCDNADNITRVQSDVFRVAEFPHGYGSCDEIPRVDLRVWQDCCEDCR
TRGQFNAFSYHFRGRRSLEFSYQEDKPTKKTRPRKIPSVGRQGEHLSNSTSAFSTRSDAS
GTNDFREFVLEMQKTITDLRTQIKKLESRLSTTECVDAGGESHANNTKWKKDACTICECK
DGQVTCFVEACPPATCAVPVNIPGACCPVCLQKRAEEKP

Coding Sequence Details

Insert Sequence Verified?:
Y
Verification Method:
Sequence Verification
Reference Sequence Annotations:
End on reference sequence 4504
Start on reference sequence 65
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:  spectinomycin
Bacterial Selection Condition: 100 ug/mL spectinomycin
Growth Condition: Growth at 37 degrees C in LB supplemented with 100 ug/mL spectinomycin.
Comments: None
Protein Expression Results:
None
Recommended expression in:
Not Applicable