出品公司: | Invitrogen |
---|---|
载体名称: | pcDNA3.3-TOPO |
质粒类型: | 哺乳动物表达载体;TOPO载体;分泌表达载体 |
高拷贝/低拷贝: | 低拷贝 |
克隆方法: | TOPO-TA |
启动子: | CMV |
载体大小: | 5407 bp |
5' 测序引物及序列: | CMV forward 5’-CGCAAATGGGCGGTAGGCGTG-3’ |
3' 测序引物及序列: | TK polyA reverse 5-CTTCCGTGTTTCAGTTAGC-3 |
载体标签: | -- |
载体抗性: | 氨苄青霉素 |
筛选标记: | Neomycin |
克隆菌株: | TOP10, E.coli |
宿主细胞(系): | Freestyle 293 |
备注: | pcDNA3.3-TOPO载体用于高水平、分泌型表达天然蛋白; 将抗体的重链和轻链分别克隆到pcDNA3.3-TOPO载体上,共转染FreeStyle 293细胞,即可高水平表达抗体。 Invitrogen 提供的pcDNA3.3-TOPO是线性的,不能直接转化或者转染细胞。 |
产品目录号: | K8300-01 |
稳定性: | 瞬表达 或 稳表达 |
组成型/诱导型: | 组成型 |
病毒/非病毒: | 非病毒 |
pcDNA3.3哺乳动物细胞过表达载体pcDNA3.3-TOPO BioVector NTCC质粒载体菌种细胞基因保藏中心
- 价 格:¥9820
- 货 号:pcDNA3.3
- 产 地:北京
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- 联系人:Dr.Xu, Biovector NTCC Inc.
电话:400-800-2947 工作QQ:1843439339 (微信同号)
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地址:北京
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pcDNA3.3
pcDNA3.3-TOPO
载体基本信息
载体质粒图谱和多克隆位点信息
载体简介
pcDNA3.3-TOPO载体:The pcDNA3.3-TOPO vector is a TOPO-adapted plasmid that allows rapid cloning of a PCR product containing a gene of interest downstream of the CMV promoter. The pcDNA3.3-TOPO vector can be used for high level expression of a native protein in adherent mammalian tissue culture cells following transient transfection, or high level expression of secreted, native protein using the FreeStyle MAX CHO and FreeStyle MAX 293 systems.The pcDNA3.3-TOPO vector is also included with the OptiCHO Antibody Express System for cloning the light and heavy chains of your antibody of choice.载体特征: Full-length human cytomegalovirus (CMV) immediate-early promoter/enhancer for high-level gene expression in a wide range of mammalian cells TOPO Cloning site for rapid and efficient cloning of Taq-amplified PCR products Herpes Simplex Virus thymidine kinase polyadenylation signal for proper termination and processing of the recombinant transcript Neomycin resistance gene for selection of stable cell lines with Geneticin pUC origin for high copy replication and maintenance of the plasmid in E. coli Ampicillin (bla) resistance gene for selection in E. coliCMV Promoter The human cytomegalovirus immediate-early (HCMV IE1) gene promoter in the pcDNA3.3-TOPO vector is 680 bp and contains the native transcriptional start site (Hennighausen & Fleckenstein, 1986). This sequence results in high levels of transgene expression.TOPO技术简介:The pcDNA3.3-TOPO vector is supplied linearized with: Single 3′ thymidine (T) overhangs for TA Cloning Topoisomerase covalently bound to the vector (this is referred to as“activated” vector) Taq polymerase has a nontemplate-dependent terminal transferase activity that adds a single deoxyadenosine (A) to the 3′ ends of PCR products. The linearized vector supplied in this kit has single, overhanging 3′ deoxythymidine (T) residues. This allows PCR inserts to ligate efficiently with the vector. Topoisomerase I from Vaccinia virus binds to duplex DNA at specific sites and cleaves the phosphodiester backbone after 5′-CCCTT in one strand (Shuman, 1991). The energy from the broken phosphodiester backbone is conserved by formation of a covalent bond between the 3′ phosphate of the cleaved strand and a tyrosyl residue (Tyr-274) of topoisomerase I. The phospho-tyrosyl bond between the DNA and enzyme can subsequently be attacked by the 5′ hydroxyl of the original cleaved strand, reversing the reaction and releasing topoisomerase (Shuman, 1994). TOPO Cloning exploits this reaction to efficiently clone PCR products.Once the PCR product is cloned into the pcDNA3.3-TOPO vector and the transformants are analyzed for correct orientation and reading frame, the expression plasmid may be transfected into your cell line of choice.实验流程:To TOPO Clone your gene of interest into pcDNA3.3-TOPO, you will perform the following steps:1. Generate a PCR product containing your gene of interest with Taq polymerase.2. TOPO Clone your PCR product into the pcDNA3.3-TOPO vector and use the reaction to transform One Shot TOP10 Chemically Competent E. coli.3. Pick colonies, isolate plasmid DNA, and screen for insert directionality by sequencing expression clones with the primers provided in the kit.建立稳定细胞系:After creation of your four clones, you will then use the OptiCHO Antibody Express Kit to transiently transfect two of each of the plasmid constructs (one of each pcDNA3.3 and pOptiVEC) containing the heavy and light chains into CHO cells. You may also perform several stable transfections directly in DG44 cells with various combinations of pOptiVEC-TOPO and pcDNA3.3-TOPO plasmid constructs.
载体序列
LOCUS pcDNA3.3 TOPO TA 5407 bp DNA SYN DEFINITION pcDNA3.3 TOPO TA ACCESSION KEYWORDS SOURCE ORGANISM other sequences; artificial sequences; vectors. FEATURES Location/Qualifiers source 1..5407 /organism="pcDNA3.3 TOPO TA" /mol_type="other DNA" promoter 51..627 /label="CMV_immearly_promoter" misc_feature 130..417 /label="CAG_enhancer" misc_feature 584..604 /label="CMV_fwd_primer" promoter 585..654 /label="CMV_promoter" promoter 597..716 /label="CMV2_promoter" misc_feature 628..647 /label="pCEP_fwd_primer" misc_feature 630..654 /label="LNCX_primer" terminator 780..1050 /label="TK_PA_terminator" rep_origin 1104..1410 /label="f1_origin" misc_feature complement(1524..1544) /label="pBABE_3_primer" misc_feature complement(1530..1745) /label="SV40_enhancer" promoter 1542..1810 /label="SV40_promoter" rep_origin 1709..1786 /label="SV40_origin" misc_feature 1771..1790 /label="SV40pro_F_primer" CDS 1925..2719 /label="ORF frame 2" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" gene 1928..2716 /label="NeoR/KanR" /gene="NeoR/KanR" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" terminator 2898..3017 /label="SV40_PA_terminator" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" misc_feature 2986..3005 /label="EBV_rev_primer" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" promoter complement(3061..3079) /label="M13_reverse_primer" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" misc_feature complement(3078..3100) /label="M13_pUC_rev_primer" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" promoter complement(3114..3143) /label="lac_promoter" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" rep_origin complement(3452..4071) /label="pBR322_origin" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" gene complement(4226..5086) /label="Ampicillin" /gene="Ampicillin" /translation="MIEQDGLHAGSPAAWVERLFGYDWAQQTIGCSDAAVFRLSAQGR PVLFVKTDLSGALNELQDEAARLSWLATTGVPCAAVLDVVTEAGRDWLLLGEVPGQDL LSSHLAPAEKVSIMADAMRRLHTLDPATCPFDHQAKHRIERARTRMEAGLVDQDDLDE EHQGLAPAELFARLKARMPDGEDLVVTHGDACLPNIMVENGRFSGFIDCGRLGVADRY QDIALATRDIAEELGGEWADRFLVLYGIAAPDSQRIAFYRLLDEFF*" CDS complement(4226..5086) /label="ORF frame 1" /translation="MSIQHFRVALIPFFAAFCLPVFAHPETLVKVKDAEDQLGARVGY IELDLNSGKILESFRPEERFPMMSTFKVLLCGAVLSRIDAGQEQLGRRIHYSQNDLVE YSPVTEKHLTDGMTVRELCSAAITMSDNTAANLLLTTIGGPKELTAFLHNMGDHVTRL DRWEPELNEAIPNDERDTTMPVAMATTLRKLLTGELLTLASRQQLIDWMEADKVAGPL LRSALPAGWFIADKSGAGERGSRGIIAALGPDGKPSRIVVIYTTGSQATMDERNRQIA EIGASLIKHW*" promoter complement(5128..5156) /label="AmpR_promoter" /translation="MSIQHFRVALIPFFAAFCLPVFAHPETLVKVKDAEDQLGARVGY IELDLNSGKILESFRPEERFPMMSTFKVLLCGAVLSRIDAGQEQLGRRIHYSQNDLVE YSPVTEKHLTDGMTVRELCSAAITMSDNTAANLLLTTIGGPKELTAFLHNMGDHVTRL DRWEPELNEAIPNDERDTTMPVAMATTLRKLLTGELLTLASRQQLIDWMEADKVAGPL LRSALPAGWFIADKSGAGERGSRGIIAALGPDGKPSRIVVIYTTGSQATMDERNRQIA EIGASLIKHW*" ORIGIN 1 GTTAGGCGTT TTGCGCTGCT TCGCGATGTA CGGGCCAGAT ATACGCGTTG ACATTGATTA 61 TTGACTAGTT ATTAATAGTA ATCAATTACG GGGTCATTAG TTCATAGCCC ATATATGGAG 121 TTCCGCGTTA CATAACTTAC GGTAAATGGC CCGCCTGGCT GACCGCCCAA CGACCCCCGC 181 CCATTGACGT CAATAATGAC GTATGTTCCC ATAGTAACGC CAATAGGGAC TTTCCATTGA 241 CGTCAATGGG TGGAGTATTT ACGGTAAACT GCCCACTTGG CAGTACATCA AGTGTATCAT 301 ATGCCAAGTA CGCCCCCTAT TGACGTCAAT GACGGTAAAT GGCCCGCCTG GCATTATGCC 361 CAGTACATGA CCTTATGGGA CTTTCCTACT TGGCAGTACA TCTACGTATT AGTCATCGCT 421 ATTACCATGG TGATGCGGTT TTGGCAGTAC ATCAATGGGC GTGGATAGCG GTTTGACTCA 481 CGGGGATTTC CAAGTCTCCA CCCCATTGAC GTCAATGGGA GTTTGTTTTG GCACCAAAAT 541 CAACGGGACT TTCCAAAATG TCGTAACAAC TCCGCCCCAT TGACGCAAAT GGGCGGTAGG 601 CGTGTACGGT GGGAGGTCTA TATAAGCAGA GCTCGTTTAG TGAACCGTCA GATCGCCTGG 661 AGACGCCATC CACGCTGTTT TGACCTCCAT AGAAGACACC GGGACCGATC CAGCCTCCGG 721 ACTCTAGAGG ATCGAACCCT TAAGGGTTCG ATCCCTACCG GTTAGTAATG AGTTTAAACG 781 GGGGAGGCTA ACTGAAACAC GGAAGGAGAC AATACCGGAA GGAACCCGCG CTATGACGGC 841 AATAAAAAGA CAGAATAAAA CGCACGGGTG TTGGGTCGTT TGTTCATAAA CGCGGGGTTC 901 GGTCCCAGGG CTGGCACTCT GTCGATACCC CACCGAGACC CCATTGGGGC CAATACGCCC 961 GCGTTTCTTC CTTTTCCCCA CCCCACCCCC CAAGTTCGGG TGAAGGCCCA GGGCTCGCAG 1021 CCAACGTCGG GGCGGCAGGC CCTGCCATAG CAGATCTGCG CAGCTGGGGC TCTAGGGGGT 1081 ATCCCCACGC GCCCTGTAGC GGCGCATTAA GCGCGGCGGG TGTGGTGGTT ACGCGCAGCG 1141 TGACCGCTAC ACTTGCCAGC GCCCTAGCGC CCGCTCCTTT CGCTTTCTTC CCTTCCTTTC 1201 TCGCCACGTT CGCCGGCTTT CCCCGTCAAG CTCTAAATCG GGGCATCCCT TTAGGGTTCC 1261 GATTTAGTGC TTTACGGCAC CTCGACCCCA AAAAACTTGA TTAGGGTGAT GGTTCACGTA 1321 GTGGGCCATC GCCCTGATAG ACGGTTTTTC GCCCTTTGAC GTTGGAGTCC ACGTTCTTTA 1381 ATAGTGGACT CTTGTTCCAA ACTGGAACAA CACTCAACCC TATCTCGGTC TATTCTTTTG 1441 ATTTATAAGG GATTTTGGGG ATTTCGGCCT ATTGGTTAAA AAATGAGCTG ATTTAACAAA 1501 AATTTAACGC GAATTAATTC TGTGGAATGT GTGTCAGTTA GGGTGTGGAA AGTCCCCAGG 1561 CTCCCCAGCA GGCAGAAGTA TGCAAAGCAT GCATCTCAAT TAGTCAGCAA CCAGGTGTGG 1621 AAAGTCCCCA GGCTCCCCAG CAGGCAGAAG TATGCAAAGC ATGCATCTCA ATTAGTCAGC 1681 AACCATAGTC CCGCCCCTAA CTCCGCCCAT CCCGCCCCTA ACTCCGCCCA GTTCCGCCCA 1741 TTCTCCGCCC CATGGCTGAC TAATTTTTTT TATTTATGCA GAGGCCGAGG CCGCCTCTGC 1801 CTCTGAGCTA TTCCAGAAGT AGTGAGGAGG CTTTTTTGGA GGCCTAGGCT TTTGCAAAAA 1861 GCTCCCGGGA GCTTGTATAT CCATTTTCGG ATCTGATCAA GAGACAGGAT GAGGATCGTT 1921 TCGCATGATT GAACAAGATG GATTGCACGC AGGTTCTCCG GCCGCTTGGG TGGAGAGGCT 1981 ATTCGGCTAT GACTGGGCAC AACAGACAAT CGGCTGCTCT GATGCCGCCG TGTTCCGGCT 2041 GTCAGCGCAG GGGCGCCCGG TTCTTTTTGT CAAGACCGAC CTGTCCGGTG CCCTGAATGA 2101 ACTGCAGGAC GAGGCAGCGC GGCTATCGTG GCTGGCCACG ACGGGCGTTC CTTGCGCAGC 2161 TGTGCTCGAC GTTGTCACTG AAGCGGGAAG GGACTGGCTG CTATTGGGCG AAGTGCCGGG 2221 GCAGGATCTC CTGTCATCTC ACCTTGCTCC TGCCGAGAAA GTATCCATCA TGGCTGATGC 2281 AATGCGGCGG CTGCATACGC TTGATCCGGC TACCTGCCCA TTCGACCACC AAGCGAAACA 2341 TCGCATCGAG CGAGCACGTA CTCGGATGGA AGCCGGTCTT GTCGATCAGG ATGATCTGGA 2401 CGAAGAGCAT CAGGGGCTCG CGCCAGCCGA ACTGTTCGCC AGGCTCAAGG CGCGCATGCC 2461 CGACGGCGAG GATCTCGTCG TGACCCATGG CGATGCCTGC TTGCCGAATA TCATGGTGGA 2521 AAATGGCCGC TTTTCTGGAT TCATCGACTG TGGCCGGCTG GGTGTGGCGG ACCGCTATCA 2581 GGACATAGCG TTGGCTACCC GTGATATTGC TGAAGAGCTT GGCGGCGAAT GGGCTGACCG 2641 CTTCCTCGTG CTTTACGGTA TCGCCGCTCC CGATTCGCAG CGCATCGCCT TCTATCGCCT 2701 TCTTGACGAG TTCTTCTGAG CGGGACTCTG GGGTTCGCGA AATGACCGAC CAAGCGACGC 2761 CCAACCTGCC ATCACGAGAT TTCGATTCCA CCGCCGCCTT CTATGAAAGG TTGGGCTTCG 2821 GAATCGTTTT CCGGGACGCC GGCTGGATGA TCCTCCAGCG CGGGGATCTC ATGCTGGAGT 2881 TCTTCGCCCA CCCCAACTTG TTTATTGCAG CTTATAATGG TTACAAATAA AGCAATAGCA 2941 TCACAAATTT CACAAATAAA GCATTTTTTT CACTGCATTC TAGTTGTGGT TTGTCCAAAC 3001 TCATCAATGT ATCTTATCAT GTCTGTATAC CGTCGACCTC TAGCTAGAGC TTGGCGTAAT 3061 CATGGTCATA GCTGTTTCCT GTGTGAAATT GTTATCCGCT CACAATTCCA CACAACATAC 3121 GAGCCGGAAG CATAAAGTGT AAAGCCTGGG GTGCCTAATG AGTGAGCTAA CTCACATTAA 3181 TTGCGTTGCG CTCACTGCCC GCTTTCCAGT CGGGAAACCT GTCGTGCCAG CTGCATTAAT 3241 GAATCGGCCA ACGCGCGGGG AGAGGCGGTT TGCGTATTGG GCGCTCTTCC GCTTCCTCGC 3301 TCACTGACTC GCTGCGCTCG GTCGTTCGGC TGCGGCGAGC GGTATCAGCT CACTCAAAGG 3361 CGGTAATACG GTTATCCACA GAATCAGGGG ATAACGCAGG AAAGAACATG TGAGCAAAAG 3421 GCCAGCAAAA GGCCAGGAAC CGTAAAAAGG CCGCGTTGCT GGCGTTTTTC CATAGGCTCC 3481 GCCCCCCTGA CGAGCATCAC AAAAATCGAC GCTCAAGTCA GAGGTGGCGA AACCCGACAG 3541 GACTATAAAG ATACCAGGCG TTTCCCCCTG GAAGCTCCCT CGTGCGCTCT CCTGTTCCGA 3601 CCCTGCCGCT TACCGGATAC CTGTCCGCCT TTCTCCCTTC GGGAAGCGTG GCGCTTTCTC 3661 AATGCTCACG CTGTAGGTAT CTCAGTTCGG TGTAGGTCGT TCGCTCCAAG CTGGGCTGTG 3721 TGCACGAACC CCCCGTTCAG CCCGACCGCT GCGCCTTATC CGGTAACTAT CGTCTTGAGT 3781 CCAACCCGGT AAGACACGAC TTATCGCCAC TGGCAGCAGC CACTGGTAAC AGGATTAGCA 3841 GAGCGAGGTA TGTAGGCGGT GCTACAGAGT TCTTGAAGTG GTGGCCTAAC TACGGCTACA 3901 CTAGAAGGAC AGTATTTGGT ATCTGCGCTC TGCTGAAGCC AGTTACCTTC GGAAAAAGAG 3961 TTGGTAGCTC TTGATCCGGC AAACAAACCA CCGCTGGTAG CGGTGGTTTT TTTGTTTGCA 4021 AGCAGCAGAT TACGCGCAGA AAAAAAGGAT CTCAAGAAGA TCCTTTGATC TTTTCTACGG 4081 GGTCTGACGC TCAGTGGAAC GAAAACTCAC GTTAAGGGAT TTTGGTCATG AGATTATCAA 4141 AAAGGATCTT CACCTAGATC CTTTTAAATT AAAAATGAAG TTTTAAATCA ATCTAAAGTA 4201 TATATGAGTA AACTTGGTCT GACAGTTACC AATGCTTAAT CAGTGAGGCA CCTATCTCAG 4261 CGATCTGTCT ATTTCGTTCA TCCATAGTTG CCTGACTCCC CGTCGTGTAG ATAACTACGA 4321 TACGGGAGGG CTTACCATCT GGCCCCAGTG CTGCAATGAT ACCGCGAGAC CCACGCTCAC 4381 CGGCTCCAGA TTTATCAGCA ATAAACCAGC CAGCCGGAAG GGCCGAGCGC AGAAGTGGTC 4441 CTGCAACTTT ATCCGCCTCC ATCCAGTCTA TTAATTGTTG CCGGGAAGCT AGAGTAAGTA 4501 GTTCGCCAGT TAATAGTTTG CGCAACGTTG TTGCCATTGC TACAGGCATC GTGGTGTCAC 4561 GCTCGTCGTT TGGTATGGCT TCATTCAGCT CCGGTTCCCA ACGATCAAGG CGAGTTACAT 4621 GATCCCCCAT GTTGTGCAAA AAAGCGGTTA GCTCCTTCGG TCCTCCGATC GTTGTCAGAA 4681 GTAAGTTGGC CGCAGTGTTA TCACTCATGG TTATGGCAGC ACTGCATAAT TCTCTTACTG 4741 TCATGCCATC CGTAAGATGC TTTTCTGTGA CTGGTGAGTA CTCAACCAAG TCATTCTGAG 4801 AATAGTGTAT GCGGCGACCG AGTTGCTCTT GCCCGGCGTC AATACGGGAT AATACCGCGC 4861 CACATAGCAG AACTTTAAAA GTGCTCATCA TTGGAAAACG TTCTTCGGGG CGAAAACTCT 4921 CAAGGATCTT ACCGCTGTTG AGATCCAGTT CGATGTAACC CACTCGTGCA CCCAACTGAT 4981 CTTCAGCATC TTTTACTTTC ACCAGCGTTT CTGGGTGAGC AAAAACAGGA AGGCAAAATG 5041 CCGCAAAAAA GGGAATAAGG GCGACACGGA AATGTTGAAT ACTCATACTC TTCCTTTTTC 5101 AATATTATTG AAGCATTTAT CAGGGTTATT GTCTCATGAG CGGATACATA TTTGAATGTA 5161 TTTAGAAAAA TAAACAAATA GGGGTTCCGC GCACATTTCC CCGAAAAGTG CCACCTGACG 5221 TCGACGGATC GGGAGATCTC CCGATCCCCT ATGGTCGACT CTCAGTACAA TCTGCTCTGA 5281 TGCCGCATAG TTAAGCCAGT ATCTGCTCCC TGCTTGTGTG TTGGAGGTCG CTGAGTAGTG 5341 CGCGAGCAAA ATTTAAGCTA CAACAAGGCA AGGCTTGACC GACAATTGCA TGAAGAATCT 5401 GCTTAGG //
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