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mmu_circSgo2a_3015

Basic information of circular RNA
PanCircBase ID:

mmu_circSgo2a_3015

mm39_Chr. Position ID:

chr1|58052665|58058901|+

Gene name:

Sgo2a

Transcript:

ENSMUST00000027202.9

CircRNA type:

Exonic circular (circ)RNA

Exon/Intron count:

3

Exon/intron indexes:

6,7,8

Exon/intron offsets:

0,1852,6082

Genomic length:

6236

Exon/intron sizes in nt:

2,36,26,25,154

Flanking exon/introns:

chr1:58042138-58052665|chr1:58058901-58063942

Splice length:

3015

Other database IDs:

circAtlas: mmu-Sgol2_0001

circAtlas: hsa-SCAF8_0001, CIRCpedia: HSA_CIRCpedia_39099

Human Ortholog IDs:
Mature spliced Sequence:

AGTTCTGTTAACTTCAGAAAATGATGATGATGATGGTGCTGATGATAAATGGCAGACAAAGTGTAACAACAGAACTATATCAAAGACCTCACCTGATAGTACCTCTTCAGTATCAAGACAACCTTCATCCTTACATCAGTGCAATTTGAAAGCATTCCCTCCTAAAGAAGATAATCAGAAGACATGTGGGTCAGGTCATTTAGAACATACTTCAAGTGTTGATATACTTCCTAATGAGAGCCACTCAGATCAAAGTCCTAAGAGTTCTCTGAGTGAGATGAAAACTGCTCCATCTCCCAGCCTCAGAAGGGAAAAATTATCACATGGTAATGTGACTATGAGGAAGAAGTGTGTGTCTTCAACTCCAGACATTCTGTATGTGACAGATTTAGATCACCAACCAACTTCAAGTCCAGGATCAAATTGGAATAATGAGATACATGGTCATACTAATGAAACCAGCAATAACACGCAAAGAAATGCCGAGTGTTTTCTTGACTTACCTTCTGAGTCTTCCAGTGAGCCTGACGCAAAGCGCATGGAGCTAGTGCAGAAGAACACCGATAGCTTTCACTTCCAGAAAACTGTATATGATGCCGCTGATATGGAGTTAACTGCTACTGACATAGGCAAGATTGTAGCAGTTTCAAAAAGCAAGAAAAATCAAAATAAGAAAAAGGCAGACTGTAGAAAGGAGACTTTCAGAAAAGTGAAAGGTGCAAGCTCTGATAAAAAGAGAGAAAGCTCAAAGAGAGAATGTAAAGATGGTTCAGAAGTAGGTGCTGAGGAAGAGGCTGATGCAGCCAGAGCAGAAAGAGGCGCTGGTGTCCTGGATGGCAGAGGGGATTCAGAAGAGCCAAACTGCATTTCCAGTACTGAGCAGCCATCTCAGGTAAACACGCAAAAGAAAAGAACCCTCCAGAACAGCTCAGATCAGGAGAACATTCAAAATACGAAGAGGAGGCAAACATATACGACAGATGAGCAAGAGGAAACAAACCCTTTCTCCAGACATTCAGTCAAATTTCTTCAAGATGGTAAATTTGATCTGTGTCAGAAAACCCTACATCATAATTTAAGTAAGCCTTCTCGACAGACATTTGTGATTCGTAAGTCAGAAAAAGATAACTTATTTCCAAATCAAGAAGATAAAGACACCATTTCTGAAAACCTAGAAGTTACAAATGAATTTCATATAGATGATCTTTCCATCGAAGCTAATGAAAATGTATGTGACCATGAGACTCAGACAATGTTGGACTTGAAAAAGTCTGTCAGTGCTCAACAAAATCAAACAAAAATAAATAAGACTAAGCAGAAAATAAATCGAAGGACAAAAATAATTTCTGTCATGAGCCAAGTATATGAGGACAATGATAAAGATATTCACGTCCTAGAAAAAGACAACTTTCCCTTTCATACCCAAGCAAATAAAGAAACCACCAGTGGAAACCTAGAAAGTTCAAAAGAATTTGAATCACCTCTTCTTTTCACAAGAGACAACGGAAGCTTACGTGACTGTAAGACCCAGAATGTTCTGGATCTGCACAAGCAAATTCCTGATCTATACCCTGATCGGAATGAGTCCCAGATTAGCAAAATCCCTAGGCAAAAAGTAAATCGCAAGACAGAAGTAATTTCTGGAGTGAAATGTTTTAGTAATGACCAAGGTGTTCATTGCTCAGAAAAGGATAAGTCTTTGTTACTACAAAAGGATAAAGACTTCCCAGGAACTTTAAAAGACTTAAGTGAGTTTGATACGCCTGCTTTTTGTAACAAAGATAGTGCAAAGTCGTGTGATTATAAGTCTGAAATGCTCTTGGGGTTGAAAAAACATGACCCTAATATGCAACCTGCTTGTCAAGATGATTCAAAAGCAGGTAAGAAACTTAGACAAAAGGTAAATCGAAAAACAGAAATAATTTCTAAAATCACCCAAATACATGAAAATGATAGAGGAAGTACACATGACTCATTAAATAAGAAGCTCTGTCAGAAGGTTAATATATCAAAAATCATTTCTCAAATGAACCAAATATATGAGACTATTAATGAAGATGGAAATGGCTTTAAAAGCTCTATCAAAGATTGCGAAGATATTAAAAGTTGTGACTTTGGGGAAATCAACAGTAATAAAAAGGAAAATTATGATCCAATTCAAGATCCTTGCACACTGGTTAAAAAAACAAAGAGAAAGGGATCATGTAAAGCAGGGAGCAGTTTGGCAGGAGCTAAGAACAGGTGTGGTTTGCAGTTAACAGACTCTTCCCAGGTACAGTCTGTCCCCTTAGACTCTGGCTTAAGACACCATCCAAACGAAGCAGATTCTGGTCCTGGAGAGCAGACTAACCTGCCAAAGATGCAGAAACAAAGCGCTGGGAGGTCACTGGGAGATGCTTTCTCTGTGAGTCTGGGAAAAGAAGGAAGCCGCCCAGCCAAAGCAGTTAGTAAAATGACACCCAAATCAAAGAAGAGAAAGCTCCCTCTCGGTTGTTCTCCTGAAACCCACGGGACGGTGGAGATAACACCCAACACTGACCTCGCTAAGGCTGTTGACTCCCAACAGACTGAGAAGGAGAACTATTTGGAGAAGGAGAAAATTGCCAAGAGGAAGCCAGATTTTTGTACAAAGGTGTTGAAACCTTTATCTGAGACATGTTCATCTAACATAAAGAATTCTTCCTTGGACAGTATGTGTAAGAGTTCGCTACCTTTGAGTATTTCTTCTAGAAAAACCCTGATGCTGGAAGAAAGTTCTTCCCTGGAGAGTACATGCATCTTTCAAGTAGGTGATGCCGCTCATGAGAAGATAACGACAGGCACACGTAATCCCCACCACAGGACACAGAAGTCGACACCGGGTAGCAGAACGTCCCTGGTCTTGGTGGATACCAGTTCTGTTTCAGATACCAACCCTGCTAACCCCGAGAATGAGTCAGAAGGGCAGTCTTCACACCCAATGAGAAGGAAAAGACAGTGCGTCCCTCTCAACCTGACAGAGCCAAGCCTTAGAAG

Divergent primers for circular RNA PCR

Primer Set-1

Forward primer
Tm
Reverse primer
Tm
Product size

GGGCAGTCTTCACACCCAAT

60.25

TGTTGTTACACTTTGTCTGCCA

58.65

145

Primer Set-2

Forward primer
Tm
Reverse primer
Tm
Product size

GGGCAGTCTTCACACCCAAT

60.25

CTGTTGTTACACTTTGTCTGCCA

59.62

146

PCR template sequence:

CTGCTAACCCCGAGAATGAGTCAGAAGGGCAGTCTTCACACCCAATGAGAAGGAAAAGACAGTGCGTCCCTCTCAACCTGACAGAGCCAAGCCTTAGAAGAGTTCTGTTAACTTCAGAAAATGATGATGATGATGGTGCTGATGATAAATGGCAGACAAAGTGTAACAACAGAACTATATCAAAGACCTCACCTGATAGT

Note: Users can design additional primers for provided template sequence using Primer3 or NCBI primer-blast.
miRNAs associated with circular RNAs
No of miRNAs

22

Interacting miRNAs (#binding sites)

mmu-miR-335-3p(3), mmu-miR-29b-2-5p(2), mmu-miR-23b-3p(1), mmu-miR-7b-5p(1), mmu-miR-211-5p(1), mmu-miR-204-5p(1), mmu-miR-29b-3p(1), mmu-miR-29a-3p(1), mmu-miR-335-5p(1), mmu-miR-29c-3p(1), mmu-miR-23a-3p(1), mmu-miR-25-3p(1), mmu-miR-29b-1-5p(1), mmu-miR-541-5p(1), mmu-miR-802-5p(1), mmu-miR-207(1), mmu-miR-5101(1), mmu-miR-539-5p(1), mmu-miR-3087-3p(1), mmu-miR-1199-5p(1), mmu-miR-1904(1), mmu-miR-338-3p(1)

siRNAs for circular RNA silencing
Junction sequence

CAAGCCTTAGAAGAGTTCTGTTAACT

siRNA sets

TAACAGAACTCTTCTAAGG, AACAGAACTCTTCTAAGGC, ACAGAACTCTTCTAAGGCT

Protein-coding potential of circular RNAs

CPAT analysis

CPAT ORF ID
CPAT Fickett
CPAT Hexamer
Coding probabilty
ORF length

CIRCSGO2A_3015_ORF_1

0.9454

0.043652622

1

5751

ORF sequence:

ATGAAAACTGCTCCATCTCCCAGCCTCAGAAGGGAAAAATTATCACATGGTAATGTGACTATGAGGAAGAAGTGTGTGTCTTCAACTCCAGACATTCTGTATGTGACAGATTTAGATCACCAACCAACTTCAAGTCCAGGATCAAATTGGAATAATGAGATACATGGTCATACTAATGAAACCAGCAATAACACGCAAAGAAATGCCGAGTGTTTTCTTGACTTACCTTCTGAGTCTTCCAGTGAGCCTGACGCAAAGCGCATGGAGCTAGTGCAGAAGAACACCGATAGCTTTCACTTCCAGAAAACTGTATATGATGCCGCTGATATGGAGTTAACTGCTACTGACATAGGCAAGATTGTAGCAGTTTCAAAAAGCAAGAAAAATCAAAATAAGAAAAAGGCAGACTGTAGAAAGGAGACTTTCAGAAAAGTGAAAGGTGCAAGCTCTGATAAAAAGAGAGAAAGCTCAAAGAGAGAATGTAAAGATGGTTCAGAAGTAGGTGCTGAGGAAGAGGCTGATGCAGCCAGAGCAGAAAGAGGCGCTGGTGTCCTGGATGGCAGAGGGGATTCAGAAGAGCCAAACTGCATTTCCAGTACTGAGCAGCCATCTCAGGTAAACACGCAAAAGAAAAGAACCCTCCAGAACAGCTCAGATCAGGAGAACATTCAAAATACGAAGAGGAGGCAAACATATACGACAGATGAGCAAGAGGAAACAAACCCTTTCTCCAGACATTCAGTCAAATTTCTTCAAGATGGTAAATTTGATCTGTGTCAGAAAACCCTACATCATAATTTAAGTAAGCCTTCTCGACAGACATTTGTGATTCGTAAGTCAGAAAAAGATAACTTATTTCCAAATCAAGAAGATAAAGACACCATTTCTGAAAACCTAGAAGTTACAAATGAATTTCATATAGATGATCTTTCCATCGAAGCTAATGAAAATGTATGTGACCATGAGACTCAGACAATGTTGGACTTGAAAAAGTCTGTCAGTGCTCAACAAAATCAAACAAAAATAAATAAGACTAAGCAGAAAATAAATCGAAGGACAAAAATAATTTCTGTCATGAGCCAAGTATATGAGGACAATGATAAAGATATTCACGTCCTAGAAAAAGACAACTTTCCCTTTCATACCCAAGCAAATAAAGAAACCACCAGTGGAAACCTAGAAAGTTCAAAAGAATTTGAATCACCTCTTCTTTTCACAAGAGACAACGGAAGCTTACGTGACTGTAAGACCCAGAATGTTCTGGATCTGCACAAGCAAATTCCTGATCTATACCCTGATCGGAATGAGTCCCAGATTAGCAAAATCCCTAGGCAAAAAGTAAATCGCAAGACAGAAGTAATTTCTGGAGTGAAATGTTTTAGTAATGACCAAGGTGTTCATTGCTCAGAAAAGGATAAGTCTTTGTTACTACAAAAGGATAAAGACTTCCCAGGAACTTTAAAAGACTTAAGTGAGTTTGATACGCCTGCTTTTTGTAACAAAGATAGTGCAAAGTCGTGTGATTATAAGTCTGAAATGCTCTTGGGGTTGAAAAAACATGACCCTAATATGCAACCTGCTTGTCAAGATGATTCAAAAGCAGGTAAGAAACTTAGACAAAAGGTAAATCGAAAAACAGAAATAATTTCTAAAATCACCCAAATACATGAAAATGATAGAGGAAGTACACATGACTCATTAAATAAGAAGCTCTGTCAGAAGGTTAATATATCAAAAATCATTTCTCAAATGAACCAAATATATGAGACTATTAATGAAGATGGAAATGGCTTTAAAAGCTCTATCAAAGATTGCGAAGATATTAAAAGTTGTGACTTTGGGGAAATCAACAGTAATAAAAAGGAAAATTATGATCCAATTCAAGATCCTTGCACACTGGTTAAAAAAACAAAGAGAAAGGGATCATGTAAAGCAGGGAGCAGTTTGGCAGGAGCTAAGAACAGGTGTGGTTTGCAGTTAACAGACTCTTCCCAGGTACAGTCTGTCCCCTTAGACTCTGGCTTAAGACACCATCCAAACGAAGCAGATTCTGGTCCTGGAGAGCAGACTAACCTGCCAAAGATGCAGAAACAAAGCGCTGGGAGGTCACTGGGAGATGCTTTCTCTGTGAGTCTGGGAAAAGAAGGAAGCCGCCCAGCCAAAGCAGTTAGTAAAATGACACCCAAATCAAAGAAGAGAAAGCTCCCTCTCGGTTGTTCTCCTGAAACCCACGGGACGGTGGAGATAACACCCAACACTGACCTCGCTAAGGCTGTTGACTCCCAACAGACTGAGAAGGAGAACTATTTGGAGAAGGAGAAAATTGCCAAGAGGAAGCCAGATTTTTGTACAAAGGTGTTGAAACCTTTATCTGAGACATGTTCATCTAACATAAAGAATTCTTCCTTGGACAGTATGTGTAAGAGTTCGCTACCTTTGAGTATTTCTTCTAGAAAAACCCTGATGCTGGAAGAAAGTTCTTCCCTGGAGAGTACATGCATCTTTCAAGTAGGTGATGCCGCTCATGAGAAGATAACGACAGGCACACGTAATCCCCACCACAGGACACAGAAGTCGACACCGGGTAGCAGAACGTCCCTGGTCTTGGTGGATACCAGTTCTGTTTCAGATACCAACCCTGCTAACCCCGAGAATGAGTCAGAAGGGCAGTCTTCACACCCAATGAGAAGGAAAAGACAGTGCGTCCCTCTCAACCTGACAGAGCCAAGCCTTAGAAGAGTTCTGTTAACTTCAGAAAATGATGATGATGATGGTGCTGATGATAAATGGCAGACAAAGTGTAACAACAGAACTATATCAAAGACCTCACCTGATAGTACCTCTTCAGTATCAAGACAACCTTCATCCTTACATCAGTGCAATTTGAAAGCATTCCCTCCTAAAGAAGATAATCAGAAGACATGTGGGTCAGGTCATTTAGAACATACTTCAAGTGTTGATATACTTCCTAATGAGAGCCACTCAGATCAAAGTCCTAAGAGTTCTCTGAGTGAGATGAAAACTGCTCCATCTCCCAGCCTCAGAAGGGAAAAATTATCACATGGTAATGTGACTATGAGGAAGAAGTGTGTGTCTTCAACTCCAGACATTCTGTATGTGACAGATTTAGATCACCAACCAACTTCAAGTCCAGGATCAAATTGGAATAATGAGATACATGGTCATACTAATGAAACCAGCAATAACACGCAAAGAAATGCCGAGTGTTTTCTTGACTTACCTTCTGAGTCTTCCAGTGAGCCTGACGCAAAGCGCATGGAGCTAGTGCAGAAGAACACCGATAGCTTTCACTTCCAGAAAACTGTATATGATGCCGCTGATATGGAGTTAACTGCTACTGACATAGGCAAGATTGTAGCAGTTTCAAAAAGCAAGAAAAATCAAAATAAGAAAAAGGCAGACTGTAGAAAGGAGACTTTCAGAAAAGTGAAAGGTGCAAGCTCTGATAAAAAGAGAGAAAGCTCAAAGAGAGAATGTAAAGATGGTTCAGAAGTAGGTGCTGAGGAAGAGGCTGATGCAGCCAGAGCAGAAAGAGGCGCTGGTGTCCTGGATGGCAGAGGGGATTCAGAAGAGCCAAACTGCATTTCCAGTACTGAGCAGCCATCTCAGGTAAACACGCAAAAGAAAAGAACCCTCCAGAACAGCTCAGATCAGGAGAACATTCAAAATACGAAGAGGAGGCAAACATATACGACAGATGAGCAAGAGGAAACAAACCCTTTCTCCAGACATTCAGTCAAATTTCTTCAAGATGGTAAATTTGATCTGTGTCAGAAAACCCTACATCATAATTTAAGTAAGCCTTCTCGACAGACATTTGTGATTCGTAAGTCAGAAAAAGATAACTTATTTCCAAATCAAGAAGATAAAGACACCATTTCTGAAAACCTAGAAGTTACAAATGAATTTCATATAGATGATCTTTCCATCGAAGCTAATGAAAATGTATGTGACCATGAGACTCAGACAATGTTGGACTTGAAAAAGTCTGTCAGTGCTCAACAAAATCAAACAAAAATAAATAAGACTAAGCAGAAAATAAATCGAAGGACAAAAATAATTTCTGTCATGAGCCAAGTATATGAGGACAATGATAAAGATATTCACGTCCTAGAAAAAGACAACTTTCCCTTTCATACCCAAGCAAATAAAGAAACCACCAGTGGAAACCTAGAAAGTTCAAAAGAATTTGAATCACCTCTTCTTTTCACAAGAGACAACGGAAGCTTACGTGACTGTAAGACCCAGAATGTTCTGGATCTGCACAAGCAAATTCCTGATCTATACCCTGATCGGAATGAGTCCCAGATTAGCAAAATCCCTAGGCAAAAAGTAAATCGCAAGACAGAAGTAATTTCTGGAGTGAAATGTTTTAGTAATGACCAAGGTGTTCATTGCTCAGAAAAGGATAAGTCTTTGTTACTACAAAAGGATAAAGACTTCCCAGGAACTTTAAAAGACTTAAGTGAGTTTGATACGCCTGCTTTTTGTAACAAAGATAGTGCAAAGTCGTGTGATTATAAGTCTGAAATGCTCTTGGGGTTGAAAAAACATGACCCTAATATGCAACCTGCTTGTCAAGATGATTCAAAAGCAGGTAAGAAACTTAGACAAAAGGTAAATCGAAAAACAGAAATAATTTCTAAAATCACCCAAATACATGAAAATGATAGAGGAAGTACACATGACTCATTAAATAAGAAGCTCTGTCAGAAGGTTAATATATCAAAAATCATTTCTCAAATGAACCAAATATATGAGACTATTAATGAAGATGGAAATGGCTTTAAAAGCTCTATCAAAGATTGCGAAGATATTAAAAGTTGTGACTTTGGGGAAATCAACAGTAATAAAAAGGAAAATTATGATCCAATTCAAGATCCTTGCACACTGGTTAAAAAAACAAAGAGAAAGGGATCATGTAAAGCAGGGAGCAGTTTGGCAGGAGCTAAGAACAGGTGTGGTTTGCAGTTAACAGACTCTTCCCAGGTACAGTCTGTCCCCTTAGACTCTGGCTTAAGACACCATCCAAACGAAGCAGATTCTGGTCCTGGAGAGCAGACTAACCTGCCAAAGATGCAGAAACAAAGCGCTGGGAGGTCACTGGGAGATGCTTTCTCTGTGAGTCTGGGAAAAGAAGGAAGCCGCCCAGCCAAAGCAGTTAGTAAAATGACACCCAAATCAAAGAAGAGAAAGCTCCCTCTCGGTTGTTCTCCTGAAACCCACGGGACGGTGGAGATAACACCCAACACTGACCTCGCTAAGGCTGTTGACTCCCAACAGACTGAGAAGGAGAACTATTTGGAGAAGGAGAAAATTGCCAAGAGGAAGCCAGATTTTTGTACAAAGGTGTTGAAACCTTTATCTGAGACATGTTCATCTAACATAAAGAATTCTTCCTTGGACAGTATGTGTAAGAGTTCGCTACCTTTGAGTATTTCTTCTAGAAAAACCCTGATGCTGGAAGAAAGTTCTTCCCTGGAGAGTACATGCATCTTTCAAGTAGGTGATGCCGCTCATGAGAAGATAACGACAGGCACACGTAATCCCCACCACAGGACACAGAAGTCGACACCGGGTAGCAGAACGTCCCTGGTCTTGGTGGATACCAGTTCTGTTTCAGATACCAACCCTGCTAACCCCGAGAATGAGTCAGAAGGGCAGTCTTCACACCCAATGAGAAGGAAAAGACAGTGCGTCCCTCTCAACCTGACAGAGCCAAGCCTTAGA

Peptide sequence:

MKTAPSPSLRREKLSHGNVTMRKKCVSSTPDILYVTDLDHQPTSSPGSNWNNEIHGHTNETSNNTQRNAECFLDLPSESSSEPDAKRMELVQKNTDSFHFQKTVYDAADMELTATDIGKIVAVSKSKKNQNKKKADCRKETFRKVKGASSDKKRESSKRECKDGSEVGAEEEADAARAERGAGVLDGRGDSEEPNCISSTEQPSQVNTQKKRTLQNSSDQENIQNTKRRQTYTTDEQEETNPFSRHSVKFLQDGKFDLCQKTLHHNLSKPSRQTFVIRKSEKDNLFPNQEDKDTISENLEVTNEFHIDDLSIEANENVCDHETQTMLDLKKSVSAQQNQTKINKTKQKINRRTKIISVMSQVYEDNDKDIHVLEKDNFPFHTQANKETTSGNLESSKEFESPLLFTRDNGSLRDCKTQNVLDLHKQIPDLYPDRNESQISKIPRQKVNRKTEVISGVKCFSNDQGVHCSEKDKSLLLQKDKDFPGTLKDLSEFDTPAFCNKDSAKSCDYKSEMLLGLKKHDPNMQPACQDDSKAGKKLRQKVNRKTEIISKITQIHENDRGSTHDSLNKKLCQKVNISKIISQMNQIYETINEDGNGFKSSIKDCEDIKSCDFGEINSNKKENYDPIQDPCTLVKKTKRKGSCKAGSSLAGAKNRCGLQLTDSSQVQSVPLDSGLRHHPNEADSGPGEQTNLPKMQKQSAGRSLGDAFSVSLGKEGSRPAKAVSKMTPKSKKRKLPLGCSPETHGTVEITPNTDLAKAVDSQQTEKENYLEKEKIAKRKPDFCTKVLKPLSETCSSNIKNSSLDSMCKSSLPLSISSRKTLMLEESSSLESTCIFQVGDAAHEKITTGTRNPHHRTQKSTPGSRTSLVLVDTSSVSDTNPANPENESEGQSSHPMRRKRQCVPLNLTEPSLRRVLLTSENDDDDGADDKWQTKCNNRTISKTSPDSTSSVSRQPSSLHQCNLKAFPPKEDNQKTCGSGHLEHTSSVDILPNESHSDQSPKSSLSEMKTAPSPSLRREKLSHGNVTMRKKCVSSTPDILYVTDLDHQPTSSPGSNWNNEIHGHTNETSNNTQRNAECFLDLPSESSSEPDAKRMELVQKNTDSFHFQKTVYDAADMELTATDIGKIVAVSKSKKNQNKKKADCRKETFRKVKGASSDKKRESSKRECKDGSEVGAEEEADAARAERGAGVLDGRGDSEEPNCISSTEQPSQVNTQKKRTLQNSSDQENIQNTKRRQTYTTDEQEETNPFSRHSVKFLQDGKFDLCQKTLHHNLSKPSRQTFVIRKSEKDNLFPNQEDKDTISENLEVTNEFHIDDLSIEANENVCDHETQTMLDLKKSVSAQQNQTKINKTKQKINRRTKIISVMSQVYEDNDKDIHVLEKDNFPFHTQANKETTSGNLESSKEFESPLLFTRDNGSLRDCKTQNVLDLHKQIPDLYPDRNESQISKIPRQKVNRKTEVISGVKCFSNDQGVHCSEKDKSLLLQKDKDFPGTLKDLSEFDTPAFCNKDSAKSCDYKSEMLLGLKKHDPNMQPACQDDSKAGKKLRQKVNRKTEIISKITQIHENDRGSTHDSLNKKLCQKVNISKIISQMNQIYETINEDGNGFKSSIKDCEDIKSCDFGEINSNKKENYDPIQDPCTLVKKTKRKGSCKAGSSLAGAKNRCGLQLTDSSQVQSVPLDSGLRHHPNEADSGPGEQTNLPKMQKQSAGRSLGDAFSVSLGKEGSRPAKAVSKMTPKSKKRKLPLGCSPETHGTVEITPNTDLAKAVDSQQTEKENYLEKEKIAKRKPDFCTKVLKPLSETCSSNIKNSSLDSMCKSSLPLSISSRKTLMLEESSSLESTCIFQVGDAAHEKITTGTRNPHHRTQKSTPGSRTSLVLVDTSSVSDTNPANPENESEGQSSHPMRRKRQCVPLNLTEPSLR

IRESfinder result

IRESfinder score

0.628892742

IRES/non IRES

IRES

riboCIRC information

riboCIRC ID

NA

NA

Evidence
Peptide sequence:

NA

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Institute of Life sciences, Bhubaneswar, India

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