Addgene pMTS_mScarlet-i_N1 Sequencing Result - Sequence Analyzer Skip to main content
Addgene

Sequence Analyzer: pMTS_mScarlet-i_N1 Sequencing Result


Map View

800 600 400 200 End (953) BmrI (946) BssHII (927) PflMI (916) AgeI (897) NcoI (886) BtsI - BtsαI (865) ApaLI (836) BssSI - BssSαI (809) BstEII (740) mCherry-R (738 .. 756) AhdI (707) EcoO109I * (674) mCherry-F (469 .. 488) BbsI - PspFI (461) BseYI (457) BsrBI (442) NotI - EagI (372) EciI (350) MmeI (313) BsgI (308) XcmI - SgrAI (215) TatI - BsrGI (196) BpuEI (190) BspEI (188) BglII (179) SacI (176) XhoI - PaeR7I (175) Eco53kI (174) HindIII (166) BstBI (163) ApoI - EcoRI (159) PstI (158) SfcI (154) KpnI (147) Acc65I (143) ApaI (139) PspOMI (135) SmaI (134) XmaI - TspMI (132) XbaI * (116) BsaBI * (105) DraI (65) BsmI (18) MfeI (13) HpaI (4) Start (0) MCS mScarlet-I Kozak sequence pMTS_mScarlet-i_N1 953 bp

Sequence View

BsmIMfeIStart (0) HpaI 60 a g t t a a c a a c a a c a a t t g c a t t c a t t t t a t g t t t c a g g t t c a g g g g g a g g t g t g g g a g g t t c a a t t g t t g t t g t t a a c g t a a g t a a a a t a c a a a g t c c a a g t c c c c c t c c a c a c c c t c c a

XbaI*BsaBI*DraI 120 *RS MADYDQLSR *RS t t t t t a a a g c a a g t a a a a c c t c t a c a a a t g t g g t a t g g c t g a t t a t g a t c a g t t a t c t a g a a a a a t t t c g t t c a t t t t g g a g a t g t t t a c a c c a t a c c g a c t a a t a c t a g t c a a t a g a t c

SfcIPstIEcoRIApoIBstBIHindIIIEco53kIPaeR7IXhoISacIBglIITspMIXmaISmaIPspOMIApaIAcc65IKpnI 180 (in frame with mScarlet-I) GTSGPGATGDVASNSAQARS MCS SGGSRARGTVDCRIRSLSSR GTSGPGATGDVASNSAQARS a t c c g g t g g a t c c c g g g c c c g c g g t a c c g t c g a c t g c a g a a t t c g a a g c t t g a g c t c g a g t a g g c c a c c t a g g g c c c g g g c g c c a t g g c a g c t g a c g t c t t a a g c t t c g a a c t c g a g c t c

SgrAIXcmIBsrGITatIBspEIBpuEI 240 RLGS 230 225 220 KYLEDMGGTSHRGESR mScarlet-I MCS SESGLVQLVHAAGGVAALGA RLGSKYLEDMGGTSHRGESR a t c t g a g t c c g g a c t t g t a c a g c t c g t c c a t g c c g c c g g t g g a g t g g c g g c c c t c g g a g c t a g a c t c a g g c c t g a a c a t g t c g a g c a g g t a c g g c g g c c a c c t c a c c g c c g g g a g c c t c g

300 215 210 205 200 EYQEVVTYDENHSTIDLKRD mScarlet-I FVLFHHGVVLVVGGDVQLAV EYQEVVTYDENHSTIDLKRD g t t c g t a c t g t t c c a c c a c g g t g t a g t c c t c g t t g t g g g a g g t g a t g t c c a a c t t g c g g t c a a g c a t g a c a a g g t g g t g c c a c a t c a g g a g c a a c a c c c t c c a c t a c a g g t t g a a c g c c a

EciIMmeIBsgI 360 195 190 185 180 VNYAGPMQVPKKAKYTTKFD mScarlet-I DVVGAGHLHGLLGLVGGLEV VNYAGPMQVPKKAKYTTKFD c g a c g t t g t a g g c g c c g g g c a t c t g c a c g g g c t t c t t g g c c t t g t a g g t g g t c t t g a a g t g c t g c a a c a t c c g c g g c c c g t a g a c g t g c c c g a a g a a c c g g a a c a t c c a c c a g a a c t t c a

EagINotI 420 175 170 165 160 ALYRGGDKLRLAMKIDGKLV mScarlet-I RQVAAAVLQAQGHLNVALQH ALYRGGDKLRLAMKIDGKLV c c g c c a g g t a g c g g c c g c c g t c c t t c a g g c g c a g g g c c a t c t t a a t g t c g c c c t t c a g c a g g c g g t c c a t c g c c g g c g g c a g g a a g t c c g c g t c c c g g t a g a a t t a c a g c g g g a a g t c g t

BseYIPspFIBbsIBsrBI 480 155 150 145 140 GDEPYLRETSAEWGMTKKQM mScarlet-I A G A A G A A G A C G T mCherry-F AVLGVQPLGGRFPAHCLLLH GDEPYLRETSAEWGMTKKQM c g c c g t c c t c g g g g t a c a a c c g c t c g g t g g a c g c t t c c c a g c c c a t t g t c t t c t t c t g c a g c g g c a g g a g c c c c a t g t t g g c g a g c c a c c t g c g a a g g g t c g g g t a a c a g a a g a a g a c g t

540 135 130 125 120 VPGDPPFNTGRLKVKYILTG mScarlet-I A A T G C C C C mCherry-F YGAVRREVGAAELHLVDQGA VPGDPPFNTGRLKVKYILTG t t a c g g g g c c g t c a g g a g g g a a g t t g g t g c c g c g g a g c t t c a c c t t g t a g a t c a g g g t g c a a t g c c c c g g c a g t c c t c c c t t c a a c c a c g g c g c c t c g a a g t g g a a c a t c t a g t c c c a c g

600 115 110 105 100 DELSTDQTVTVAGGDEFNMV mScarlet-I VLQGGVLGHGHGAAVLEVHH DELSTDQTVTVAGGDEFNMV c g t c c t c c a g g g a g g t g t c c t g g g t c a c g g t c a c g g c g c c g c c g t c c t c g a a g t t c a t c a g c a g g a g g t c c c t c c a c a g g a c c c a g t g c c a g t g c c g c g g c g g c a g g a g c t t c a a g t a g t

660 95 90 85 80 REWKFGEPFSQKYYDPIDAP mScarlet-I ALPLEALGEGLLIVVGDVGG REWKFGEPFSQKYYDPIDAP c g c g c t c c c a c t t g a a g c c c t c g g g g a a g g a c t g c t t a t a g t a g t c g g g g a t g t c g g c g g g c g c g a g g g t g a a c t t c g g g a g c c c c t t c c t g a c g a a t a t c a t c a g c c c c t a c a g c c g c c

AhdIEcoO109I* 720 75 70 65 60 HKIFARSGYMFQPSLIDWSF mScarlet-I VLDEGPGAVHELRGQDVPGE HKIFARSGYMFQPSLIDWSF g g t g c t t g a t g a a g g c c c t g g a g c c g t a c a t g a a c t g a g g g g a c a g g a t g t c c c a g g a g a c c a c g a a c t a c t t c c g g g a c c t c g g c a t g t a c t t g a c t c c c c t g t c c t a c a g g g t c c t c t

BstEII 780 55 50 45 40 PLPGGKTVKLKATQTGEYPR mScarlet-I T T G G T C A C C T T C A G C T T G G mCherry-R GQGATLGHLQLGGLGALVGA PLPGGKTVKLKATQTGEYPR a g g g c a g g g g g c c a c c c t t g g t c a c c t t c a g c t t g g c g g t c t g g g t g c c c t c g t a g g g g c t c c c g t c c c c c g g t g g g a a c c a g t g g a a g t c g a a c c g c c a g a c c c a c g g g a g c a t c c c c g

ApaLIBssSαIBssSI 840 35 30 25 20 GEGEGEIEFEHGNMSGEMHV mScarlet-I ALALALDLELVAVHGALHVH GEGEGEIEFEHGNMSGEMHV g g c c c t c g c c c t c g c c c t c g a t c t c g a a c t c g t g g c c g t t c a t g g a g c c c t c c a t g t g c a c c g g g a g c g g g a g c g g g a g c t a g a g c t t g a g c a c c g g c a a g t a c c t c g g g a g g t a c a c g t

AgeINcoIBtsαIBtsI 900 15 10 5 1 KFRMFEKIVAEGKSVM mScarlet-I Kozak sequence LEPHELLDHCLALAHHGGDR KFRMFEKIVAEGKSVMTAVP c c t t g a a c c g c a t g a a c t c c t t g a t c a c t g c c t c g c c c t t g c t c a c c a t g g t g g c g a c c g g g a a c t t g g c g t a c t t g a g g a a c t a g t g a c g g a g c g g g a a c g a g t g g t a c c a c c g c t g g c

End (953) BmrIBssHIIPflMI 953 WIPQRMDLGARHWEPPG PDGLSHIKARPVPLRRA g t g g a t c c c c c a a c g a a t g g a t c t t g g c g c g c g g c a c t g g g a g c c g c c g g g c c c a c c t a g g g g g t t g c t t a c c t a g a a c c g c g c g c c g t g a c c c t c g g c g g c c c g g

Restriction Enzymes

Instructions: By default, all cutters are shown. Filter on number of cut sites or search by enzyme name.

Filter

Features

Primers

BLAST

BLAST (Basic Local Alignment Search Tool) finds regions of similarity between biological sequences. Click on the buttons below to submit a BLAST search to NCBI. The results will appear in a new window. See your recent BLAST results on NCBI's website.

  • Nucleotide-Nucleotide BLAST (BLASTN)

  • Translated Nucleotide-Protein BLAST (BLASTX)

  • Sequence alignment using BLAST (BLAST2)

Sequence Analyzer Guide

Map

Displays a graphical map based on nucleotide sequence data labeled with restriction enzymes, plasmid features, ORFs (theoretical open reading frames) and primers. Hovering over data labels will display additional information (e.g. cut site)

To select a portion of sequence, click one location on the plasmid and then a second location to display the sequence between the two locations.

Sequence

Displays both strands of base paired nucleotide sequences with annotated enzymes, plasmid features, ORFs (theoretical open reading frames) and primers. Hovering over data labels will display additional information (e.g. cut site).

To select a portion of sequence, click one location on the sequence and then a second location to display the sequence between the two locations.

Enzymes

List of restriction enzymes that can cut a given nucleotide sequence. Table lists enzyme name and the sequence location of the cut.

Features

List of common features detected in a given nucleotide sequence. Table lists feature name, location, size, color used to indicate its position on the map, and direction (if relevant).

Primers

List of commonly used primers detected in a given nucleotide sequence. Table lists primer name, sequence, length, binding site location, and direction.

BLAST

Use Basic Local Alignment Search Tool (BLAST) via the NCBI website to determine similarity between a given sequence and nucleotide (BLASTN) or protein (BLASTX) sequence databases. Additionally, align a custom nucleotide sequence against a given sequence using BLAST2.

File Downloads

GenBank

File contains the nucleotide sequence and annotated features in GenBank flat file format. Open the file with a text editor or plasmid mapping software to view the sequence.

SnapGene

File contains the nucleotide sequence and enhanced annotations from SnapGene Server. Open the file with SnapGene software or the free Viewer to view the plasmid map, sequence, and perform additional sequence analysis.