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TRANSCRIPT CARD

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  1. Transcript 'Moocul.CG.ELv1_2.S77...'
  2. Transcript 'Moocci.CG.ELv1_2.S64...'
  3. Transcript 'Moocul.CG.ELv1_2.S43...'

Transcript Model

Transcript Id

Moocul.CG.ELv1_2.S43792.g02294.01.t

Possible name(s)

TDRD1; TDRD15; TDRD6

Location

S43792 [7,432 / 23,701]

Sequences

Amino acid sequence

Length: 1,386

>Moocul.CG.ELv1_2.S43792.g02294.01.p
MSSVNNLTNWDPAQEAFGNSKFNSYNKGLGKNIADSKASTEECYSLYVAGIPPELNSSKL
KTIFMDAGEVFDTYILRSSPEMEGGPKCGFVKFKSMACALKAIELFNGQVVGKYTLKVQE
ARHNKNKQQQDEKLNNGYGSAGNLDKLAKLNINPLLKMATKDHMRSVQEEINILEKQVYE
EWGLPPPKRIVAAESKENPFKKCGSCEKSFMRNKDGHKRGGLVPKGLKAGCKVNAIVLEL
VQSDCSLYCMLDDMKCKENLAKLDEHLNNVCSTKVNSVQMQSIKVGKAFACQFSSDKRWY
RVVVEQIVDANNCFVRYIDYGNGEKVNFTQLKQLNEEFFKYNAFAFQCVLENLNTDNIEE
NVSLLGTIVQELELKVALQLVKVGGHDVMVDIYSQIDEYLSINQLLFDGTKGTNKKILPN
VLAPEPTEPQQRTHGFISGQLTYDDLPNDIFEVVLTDAKDPQNFACQYIGDEYKELEELM
VELRKHCANDPYDANLSVTVGRHYAAKFSVDTAWYRVEILEISDVNKYVVQYVDYGNTEH
IEKSDLRVLPDIFRKLKKQSFSCSLSGLPVPNEDLKWSKEANDLMKMCCGTKFQARKSTT
KHSDMVLLDIIIDTDHNTLTQHLIDNGFVSDVTTEENQVEPVKAEPKVEPKPEPKVEPKP
EPKVEQKPTEEPNFVLLLYEEFKNLGEFQVMISHVNNPRSFFCQRVTEDLQRLERLVIAL
TKQASDLPSSEPDVGDLCAAEFTGGHWYRGKVLKKEAGGYLVRYIDYGNTKKLEPSHVKP
LPKKFQSFPVQAFPCILSGCYAPEEQWQDDAVKLLQACENIALFASIKEENKNDNEFHGA
FPVVLYVDKEQILNDLMISSNFAVESPVVTTTEGSPKDQPTTASANETPVAKLPPKPVQG
KRVVLEKQDLQVIVKLNEPFPVAILHVNNPDSFYCQLVGEGQVILQSILSELTLFCSSGE
ATPLQRCEVGLFCAAPFTDGQWYRSLITSVSSNEITVQYVDFGNTHTIKSSEVMKLPEEL
SQVPIQAFECSLADCYPPIDGWSAECIENVGACANNVLQAFCDSWDEERSVFSLHVLLDD
ENTLNKCLVAGEMALDKPVKPKSEEKVKAVKIATPQPVQAPAAPKPKAMPKPIEPTPVIA
ANISPVQHREVKKEKVVEKPAQKPTTATQNDPTSRLPSSLPFPKIPPNKCRVIVSNVENV
DEFSCRMLLSDEAFQEMQSQMTAGVLTKLNFDPKQGDICAVQVYGNFVRCQIKLCEGSSF
VVKCIDTGKLIKVAKDDLRILPSQLCTLSPQSFDCKCTIETSKKAISNERLKQQIGEKFT
AYINGWERGIYSIELVTLLFNDSPEDDDGVVDVVPEFDKPRKVILKQTNDLNDFYCHIQS
TNSVRL

Nucleotide sequence

Length: 4,191

>Moocul.CG.ELv1_2.S43792.g02294.01.t
TATTGCTTAAGCTGTTGTTTGAGAAAGTTTAACATGTCATCTGTCAATAATTTAACCAAT
TGGGATCCAGCGCAAGAGGCATTTGGAAACTCAAAGTTTAATTCTTACAATAAAGGACTT
GGCAAAAACATTGCTGATTCTAAAGCGTCAACAGAAGAGTGTTACTCGCTGTACGTGGCT
GGCATTCCCCCAGAACTAAATTCATCAAAGCTGAAAACAATTTTCATGGATGCTGGCGAA
GTTTTTGATACTTACATTTTAAGATCTTCACCAGAAATGGAAGGGGGACCTAAATGCGGT
TTTGTCAAATTTAAATCGATGGCATGTGCATTGAAAGCAATTGAATTGTTTAATGGGCAA
GTTGTGGGAAAATATACCCTCAAGGTTCAAGAAGCAAGACACAATAAAAACAAGCAACAA
CAAGATGAGAAACTGAATAATGGATATGGATCTGCGGGTAATTTAGACAAGCTTGCAAAA
CTGAATATTAACCCTTTACTGAAGATGGCAACTAAAGACCACATGAGATCAGTACAGGAA
GAAATCAACATACTTGAGAAGCAAGTTTATGAAGAATGGGGCTTACCTCCTCCTAAGAGA
ATTGTTGCTGCTGAATCGAAAGAAAATCCATTTAAGAAATGTGGATCTTGTGAGAAATCT
TTCATGCGAAACAAGGATGGACACAAACGCGGTGGTCTTGTGCCAAAAGGTCTCAAGGCT
GGCTGTAAAGTGAACGCAATTGTTTTGGAATTGGTGCAAAGTGATTGCAGTTTGTATTGC
ATGTTGGATGATATGAAATGCAAAGAAAACTTGGCCAAGCTTGATGAACATTTGAACAAT
GTGTGTTCTACAAAAGTAAATTCAGTACAAATGCAAAGTATTAAAGTTGGAAAGGCTTTT
GCATGTCAATTCTCAAGCGACAAGCGTTGGTATCGAGTTGTTGTCGAGCAGATAGTGGAT
GCAAACAATTGCTTTGTTCGATACATTGATTATGGAAATGGTGAAAAGGTCAACTTCACT
CAGCTGAAGCAGTTAAATGAAGAGTTCTTCAAATACAATGCATTTGCATTTCAATGTGTT
CTGGAAAACTTAAACACCGATAATATTGAAGAAAATGTTTCATTGCTTGGGACAATTGTT
CAGGAATTGGAACTAAAAGTTGCTCTTCAACTGGTCAAAGTTGGCGGCCATGATGTCATG
GTTGATATCTACTCGCAGATCGATGAGTATCTGTCCATCAACCAACTTCTGTTTGACGGA
ACGAAAGGCACCAACAAAAAAATCTTGCCAAATGTATTAGCTCCTGAACCAACTGAACCA
CAGCAACGTACACATGGCTTCATCAGTGGGCAGCTCACCTACGATGATTTACCAAATGAT
ATATTCGAAGTTGTGTTAACTGACGCAAAAGATCCACAGAATTTTGCATGCCAGTATATC
GGAGATGAATACAAGGAGCTGGAAGAGCTTATGGTGGAACTTCGCAAGCATTGTGCCAAT
GATCCATACGATGCCAATCTAAGTGTGACGGTTGGCCGGCATTATGCCGCGAAGTTTTCA
GTTGATACTGCGTGGTATCGCGTAGAAATTCTTGAAATCAGCGACGTGAACAAATATGTC
GTTCAGTATGTTGATTACGGAAACACTGAGCATATCGAAAAATCAGATTTAAGAGTGCTG
CCTGATATATTTCGGAAATTGAAAAAACAATCGTTCAGTTGCTCACTTTCGGGACTACCT
GTACCAAATGAAGATCTAAAATGGAGCAAAGAAGCCAATGATCTTATGAAGATGTGTTGT
GGTACAAAATTTCAAGCTAGAAAATCCACAACCAAGCACAGTGATATGGTGTTGCTGGAC
ATAATTATTGATACGGATCACAACACATTGACACAACATTTAATTGACAATGGTTTTGTT
TCGGACGTAACTACTGAAGAAAACCAAGTTGAACCAGTAAAGGCTGAACCAAAAGTGGAA
CCAAAACCTGAACCTAAAGTGGAACCAAAACCTGAACCAAAAGTGGAGCAAAAGCCTACT
GAAGAACCTAATTTTGTGTTACTTTTGTACGAAGAATTCAAAAATTTGGGCGAATTTCAA
GTGATGATTTCACATGTGAATAATCCACGTTCGTTTTTCTGTCAACGGGTCACTGAAGAT
TTGCAACGCTTAGAAAGACTTGTTATTGCTTTGACGAAACAAGCTTCGGATTTGCCATCT
TCCGAACCAGATGTCGGGGATCTTTGTGCAGCGGAGTTTACAGGTGGACATTGGTACCGA
GGCAAAGTGTTGAAGAAAGAGGCTGGTGGATACTTGGTTCGATACATCGACTACGGAAAT
ACAAAGAAGCTGGAACCAAGCCATGTGAAACCGCTTCCAAAGAAATTCCAATCATTTCCA
GTTCAAGCCTTCCCTTGTATTTTGTCTGGTTGTTATGCTCCAGAGGAACAGTGGCAAGAT
GATGCAGTAAAACTTTTACAAGCTTGCGAAAACATTGCCTTGTTTGCGAGCATAAAGGAA
GAAAATAAAAATGACAATGAATTCCATGGAGCATTTCCAGTGGTACTGTATGTGGACAAA
GAGCAGATTTTGAATGATTTAATGATTTCATCAAATTTTGCTGTTGAATCGCCGGTCGTC
ACGACAACAGAAGGATCTCCGAAAGATCAGCCAACAACAGCAAGCGCAAACGAAACACCA
GTTGCTAAATTACCTCCAAAACCTGTGCAAGGGAAACGTGTTGTGCTTGAAAAGCAAGAT
TTACAAGTCATTGTGAAATTAAACGAGCCTTTCCCAGTGGCCATTTTGCATGTAAACAAT
CCTGATTCATTTTACTGCCAGTTGGTTGGTGAAGGACAAGTGATCTTGCAATCAATCTTG
TCGGAGTTGACGCTGTTTTGTTCATCTGGTGAAGCAACGCCTTTGCAAAGATGTGAAGTT
GGATTGTTTTGTGCAGCACCATTTACAGATGGACAATGGTATCGGTCATTAATTACATCA
GTATCCAGTAACGAAATAACAGTTCAATATGTGGACTTTGGTAACACACACACAATTAAA
AGCAGTGAAGTCATGAAACTGCCTGAAGAATTATCACAAGTGCCAATTCAAGCATTTGAA
TGTTCATTAGCAGATTGTTACCCACCTATTGACGGATGGTCGGCTGAGTGCATTGAAAAT
GTTGGTGCATGTGCAAATAATGTATTGCAAGCATTCTGTGATTCCTGGGATGAAGAGCGC
TCTGTTTTCTCGTTGCACGTATTATTGGATGATGAAAACACATTAAACAAATGTCTCGTC
GCTGGTGAAATGGCATTGGACAAACCTGTGAAACCAAAAAGTGAAGAAAAAGTTAAAGCA
GTGAAAATCGCAACTCCGCAACCAGTACAAGCTCCAGCAGCCCCAAAGCCAAAAGCTATG
CCAAAACCAATAGAACCAACACCTGTGATTGCTGCGAATATATCACCGGTGCAACACCGA
GAAGTGAAGAAGGAAAAAGTTGTGGAAAAACCTGCACAAAAACCAACAACAGCAACGCAA
AATGACCCAACAAGCAGATTACCAAGTAGTTTGCCTTTCCCCAAAATCCCACCAAATAAA
TGCAGAGTCATCGTCTCAAATGTTGAAAATGTGGATGAATTTTCGTGCCGAATGTTGCTT
TCCGATGAAGCTTTCCAAGAAATGCAAAGTCAAATGACTGCTGGTGTTCTCACAAAACTG
AATTTTGATCCAAAACAAGGAGATATTTGTGCTGTACAAGTTTATGGGAATTTCGTCCGG
TGCCAAATCAAACTGTGTGAAGGAAGTTCATTTGTGGTAAAATGCATCGACACGGGAAAA
CTAATCAAAGTAGCAAAGGATGACTTAAGGATCCTTCCCTCGCAATTATGCACACTTTCC
CCTCAATCATTTGATTGTAAATGTACAATCGAAACATCGAAAAAAGCCATCTCAAATGAA
AGATTAAAGCAACAGATTGGGGAGAAGTTTACAGCTTACATCAATGGATGGGAACGTGGT
ATATACTCCATCGAACTGGTGACGTTGTTATTTAATGATTCGCCTGAAGATGATGATGGA
GTTGTCGATGTTGTTCCCGAATTCGATAAACCAAGAAAAGTCATCCTCAAACAAACTAAT
GATCTCAATGATTTCTACTGCCATATACAATCAACAAATTCTGTCAGATTA

InterProScan

SUPERFAMILY
RBD_domain_sf (IPR035979) - T[24-134] 3.63E-16
Gene3D
Nucleotide-bd_a/b_plait_sf (IPR012677) - T[33-148] 5.0E-15
ProSiteProfiles
RRM_dom (IPR000504) - T[44-123] 12.936
SMART
RRM_dom (IPR000504) - T[45-119] 2.0E-9
Pfam
RRM_dom (IPR000504) - T[46-117] 5.5E-8
Pfam
Tudor (IPR002999) - T[232-352] 1.9E-23 - T[448-567] 6.2E-25 - T[688-799] 1.4E-23 - T[916-1033] 9.4E-23 - T[1187-1296] 3.5E-16
Gene3D
SNase_OB-fold_sf (IPR035437) - T[235-256] 9.5E-22 - T[345-397] 9.5E-22 - T[454-481] 9.5E-35 - T[553-628] 9.5E-35 - T[690-718] 3.4E-31 - T[785-850] 3.4E-31 - T[922-950] 4.3E-32 - T[1020-1069] 4.3E-32
SMART
Tudor (IPR002999) - T[281-339] 2.0E-12 - T[496-554] 3.8E-10 - T[730-786] 6.2E-15 - T[965-1021] 1.7E-11 - T[1231-1286] 3.8E-4
ProSiteProfiles
Tudor (IPR002999) - T[282-341] 14.492 - T[497-556] 13.424 - T[731-788] 14.008 - T[966-1023] 14.633

Best Blast Hits in UniProt
Protein Name Identity Bit Score e-value
TDRD1_HUMAN 25.222 % 184 5.88E-47
TDRD6_HUMAN 23.342 % 90.9 4.22E-18