ENST00000382896.9 UTY
Information
- Transcript ID
- ENST00000382896.9
- Genome
- hg19
- Position
- chrY:15,361,022-15,591,871
- Strand
- -
- CDS length
- 4,269
- Amino acid length
- 1,423
- Gene symbol
- UTY
- Gene type
- protein-coding
- Gene description
- ubiquitously transcribed tetratricopeptide repeat containing, Y-linked
- Gene Entrez Gene ID
- 7404
Variants
Display target variant
Search Word
Target data | : |
MGeND data only
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Category | : |
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Search word | : | |
Filtering | : |
Variant name | Gene | AA change | CDS | Japanese frequency |
TogoVar | MGeND | Genome | ClinVar | CIViC evidence | DisGeNET entry | COSMIC occurrence |
Prediction | |||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Entry | Origin | Type | Annotation | Entry | Origin | Annotation |
Search Word
Target data | : |
MGeND data only
|
Category | : |
|
Search word | : | |
Filtering | : |
Name | MGeND | Type | Genome | Size | Chromosome | Start | Stop | Ref | Alt | ClinVar | Origin | Entry | CIViC evidence | DisGeNET entry | |||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Entry | Origin | Type | Annotation |
Search Word
Target data | : |
MGeND data only
|
Category | : |
|
Search word | : | |
Filtering | : |
Name | MGeND | Type | Genome | Gene symbol | Chromosome | Genomic start | Genomic stop | Strand | Ref | Alt | ClinVar | Origin | Entry | CIViC evidence | DisGeNET entry | |||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Entry | Origin | Type | Annotation |
Exon
Exon number | Start | Stop |
---|---|---|
30 | 15,361,022 | 15,361,692 |
29 | 15,362,897 | 15,363,067 |
28 | 15,372,158 | 15,372,284 |
27 | 15,409,587 | 15,409,728 |
26 | 15,410,837 | 15,411,024 |
25 | 15,414,757 | 15,414,871 |
24 | 15,417,279 | 15,417,427 |
23 | 15,417,918 | 15,417,992 |
22 | 15,418,066 | 15,418,130 |
21 | 15,435,435 | 15,435,640 |
20 | 15,436,481 | 15,436,586 |
19 | 15,438,101 | 15,438,230 |
18 | 15,447,443 | 15,448,215 |
17 | 15,466,883 | 15,467,278 |
16 | 15,467,803 | 15,467,898 |
15 | 15,469,757 | 15,469,849 |
14 | 15,470,344 | 15,470,433 |
13 | 15,470,968 | 15,471,102 |
12 | 15,471,647 | 15,471,866 |
11 | 15,472,310 | 15,472,408 |
10 | 15,478,147 | 15,478,273 |
9 | 15,481,136 | 15,481,229 |
8 | 15,505,739 | 15,505,773 |
7 | 15,508,798 | 15,508,852 |
6 | 15,522,873 | 15,522,993 |
5 | 15,526,615 | 15,526,673 |
4 | 15,560,897 | 15,560,946 |
3 | 15,582,001 | 15,582,109 |
2 | 15,591,134 | 15,591,197 |
1 | 15,591,394 | 15,591,871 |
CDS
Exon number | Type | Start | Stop |
---|---|---|---|
30 | CDS | 15,361,666 | 15,361,692 |
29 | CDS | 15,362,897 | 15,363,067 |
28 | CDS | 15,372,158 | 15,372,284 |
27 | CDS | 15,409,587 | 15,409,728 |
26 | CDS | 15,410,837 | 15,411,024 |
25 | CDS | 15,414,757 | 15,414,871 |
24 | CDS | 15,417,279 | 15,417,427 |
23 | CDS | 15,417,918 | 15,417,992 |
22 | CDS | 15,418,066 | 15,418,130 |
21 | CDS | 15,435,435 | 15,435,640 |
20 | CDS | 15,436,481 | 15,436,586 |
19 | CDS | 15,438,101 | 15,438,230 |
18 | CDS | 15,447,443 | 15,448,215 |
17 | CDS | 15,466,883 | 15,467,278 |
16 | CDS | 15,467,803 | 15,467,898 |
15 | CDS | 15,469,757 | 15,469,849 |
14 | CDS | 15,470,344 | 15,470,433 |
13 | CDS | 15,470,968 | 15,471,102 |
12 | CDS | 15,471,647 | 15,471,866 |
11 | CDS | 15,472,310 | 15,472,408 |
10 | CDS | 15,478,147 | 15,478,273 |
9 | CDS | 15,481,136 | 15,481,229 |
8 | CDS | 15,505,739 | 15,505,773 |
7 | CDS | 15,508,798 | 15,508,852 |
6 | CDS | 15,522,873 | 15,522,993 |
5 | CDS | 15,526,615 | 15,526,673 |
4 | CDS | 15,560,897 | 15,560,946 |
3 | CDS | 15,582,001 | 15,582,109 |
2 | CDS | 15,591,134 | 15,591,197 |
1 | CDS | 15,591,394 | 15,591,545 |
Other genome
Genome | Chromosome | Start | End | Links |
---|---|---|---|---|
hg38 | chrY | 13,249,142 | 13,479,991 | Link |
CDS sequence
ATGAAATCCTGCGCAGTGTCGCTCACTACCGCCGCTGTTGCCTTCGGTGATGAGGCAAAGAAAATGGCGGAAGGAAAAGCGAGCCGCGAGAGTGAAGAGGAGTCTGTTAGCCTGACAGTCGAGGAAAGGGAGGCGCTTGGTGGCATGGACAGCCGTCTCTTCGGGTTCGTGAGGCTTCATGAAGATGGCGCCAGAACGAAGACCCTACTAGGCAAGGCTGTTCGCTGCTACGAATCTTTAATCTTAAAAGCTGAAGGAAAAGTGGAGTCTGACTTCTTTTGCCAATTAGGTCACTTCAACCTCTTGTTGGAAGATTATTCAAAAGCATTATCTGCATATCAGAGATATTACAGTTTACAGGCTGACTACTGGAAGAATGCTGCGTTTTTATATGGCCTTGGTTTGGTCTACTTCTACTACAATGCATTTCATTGGGCAATTAAAGCATTTCAAGATGTCCTTTATGTTGACCCCAGCTTTTGTCGAGCCAAGGAAATTCATTTACGACTTGGGCTCATGTTCAAAGTGAACACAGACTACAAGTCTAGTTTAAAGCATTTTCAGTTAGCCTTGATTGACTGTAATCCATGTACTTTGTCCAATGCTGAAATTCAATTTCATATTGCCCATTTGTATGAAACCCAGAGGAAGTATCATTCTGCAAAGGAGGCATATGAACAACTTTTGCAGACAGAAAACCTTCCTGCACAAGTAAAAGCAACTGTATTGCAACAGTTAGGTTGGATGCATCATAATATGGATCTAGTAGGAGACAAAGCCACAAAGGAAAGCTATGCTATTCAGTATCTCCAAAAGTCTTTGGAGGCAGATCCTAATTCTGGCCAATCGTGGTATTTTCTTGGAAGGTGTTATTCAAGTATTGGGAAAGTTCAGGATGCCTTTATATCTTACAGGCAATCTATTGATAAATCAGAAGCAAGTGCAGATACATGGTGTTCAATAGGTGTGTTGTATCAGCAGCAAAATCAGCCTATGGATGCTTTACAGGCATATATTTGTGCTGTACAATTGGACCATGGGCATGCCGCAGCCTGGATGGACCTAGGTACTCTCTATGAATCCTGCAATCAACCTCAAGATGCCATTAAATGCTACCTAAATGCAGCTAGAAGCAAACGTTGTAGTAATACCTCTACGCTTGCTGCAAGAATTAAATTTCTACAGGCTCAGTTGTGTAACCTTCCACAAAGTAGTCTACAGAATAAAACTAAATTACTTCCTAGTATTGAGGAGGCATGGAGCCTACCAATCCCCGCAGAGCTTACCTCCAGGCAGGGTGCCATGAACACAGCACAGCAGCAATCCTTGTCACTACACATGATTACTTCTAGCCAAGTAGAAGGCCTGTCCAGTCCTGCCAAGAAGAAAAGAACATCTAGTCCAACAAAGAATGGTTCTGATAACTGGAATGGTGGCCAGAGTCTTTCACATCATCCAGTACAGCAAGTTTATTCGTTGTGTTTGACACCACAGAAATTACAGCACTTGGAACAACTGCGAGCAAATAGAGATAATTTAAATCCAGCACAGAAGCATCAGCTGGAACAGTTAGAAAGTCAGTTTGTCTTAATGCAGCAAATGAGACACAAAGAAGTTGCTCAGGTACGAACTACTGGAATTCATAACGGGGCCATAACTGATTCATCACTGCCTACAAACTCTGTCTCTAATCGACAACCACATGGTGCTCTGACCAGAGTATCTAGCGTCTCTCAGCCTGGAGTTCGCCCTGCTTGTGTTGAAAAACTTTTGTCCAGTGGAGCTTTTTCTGCAGGCTGTATTCCTTGTGGCACATCAAAAATTCTAGGAAGTACAGACACTATCTTGCTAGGCAGTAATTGTATAGCAGGAAGTGAAAGTAATGGAAATGTGCCTTACCTGCAGCAAAATACACACACTCTACCTCATAATCATACAGACCTGAACAGCAGCACAGAAGAGCCATGGAGAAAACAGCTATCTAACTCCGCTCAGGGGCTTCATAAAAGTCAGAGTTCATGTTTGTCAGGACCTAATGAAGAACAACCTCTGTTTTCCACTGGGTCAGCCCAGTATCACCAGGCAACTAGCACTGGTATTAAGAAGGCGAATGAACATCTCACTCTGCCTAGTAATTCAGTACCACAGGGGGATGCTGACAGTCACCTCTCCTGTCATACTGCTACCTCAGGTGGACAACAAGGCATTATGTTTACCAAAGAGAGCAAGCCTTCAAAAAATAGATCCTTGGTGCCTGAAACAAGCAGGCATACTGGAGACACATCTAATGGCTGTGCTGATGTCAAGGGACTTTCTAATCATGTTCATCAGTTGATAGCAGATGCTGTTTCCAGTCCTAACCATGGAGATTCACCAAATTTATTAATTGCAGACAATCCTCAGCTCTCTGCTTTGTTGATTGGAAAAGCCAATGGCAATGTGGGTACTGGAACCTGTGACAAAGTGAATAATATTCACCCAGCTGTTCATACAAAGACTGATCATTCTGTTGCCTCTTCACCCTCTTCAGCCATTTCCACAGCAACACCTTCTCCTAAATCCACTGAGCAGAGAAGCATAAACAGTGTTACCAGCCTTAACAGTCCTCACAGTGGATTACACACAGTCAATGGAGAGGGGCTGGGGAAGTCACAGAGCTCTACAAAAGTAGACCTGCCTTTAGCTAGCCACAGATCTACTTCTCAGATCTTACCATCAATGTCAGTGTCTATATGCCCCAGTTCAACAGAAGTTCTGAAAGCATGCAGGAATCCAGGTAAAAATGGCTTGTCTAATAGCTGCATTTTGTTAGATAAATGTCCACCTCCAAGACCACCAACTTCACCATACCCACCCTTGCCAAAGGACAAGTTGAATCCACCCACACCTAGTATTTACTTGGAAAATAAACGTGATGCTTTCTTTCCTCCATTACATCAATTTTGTACAAATCCAAAAAACCCTGTTACAGTAATACGTGGCCTTGCTGGAGCTCTTAAATTAGATCTTGGACTTTTCTCTACCAAAACTTTGGTAGAAGCTAACAATGAACATATGGTAGAAGTGAGGACACAGTTGCTGCAACCAGCAGATGAAAACTGGGATCCCACTGGAACAAAGAAAATCTGGCGTTGTGAAAGCAATAGATCTCATACTACAATTGCCAAATACGCACAATACCAGGCTTCCTCCTTCCAGGAATCATTGAGAGAAGAAAATGAGAAAAGAACACAACACAAAGATCATTCAGATAACGAATCCACATCTTCAGAGAATTCTGGAAGGAGAAGGAAAGGACCTTTTAAAACCATAAAATTTGGGACCAACATTGACCTCTCTGATAACAAAAAGTGGAAGTTGCAGTTACATGAACTGACTAAACTTCCTGCTTTTGCGCGTGTGGTGTCAGCAGGAAATCTTCTAACCCATGTTGGGCATACCATTCTGGGCATGAATACAGTACAACTGTATATGAAAGTTCCAGGGAGTCGGACACCAGGTCACCAAGAAAATAACAACTTCTGCTCTGTTAACATAAATATTGGTCCAGGAGATTGTGAATGGTTTGTTGTACCTGAAGATTATTGGGGTGTTCTGAATGACTTCTGTGAAAAAAATAATTTGAATTTTTTAATGAGTTCTTGGTGGCCCAACCTTGAAGATCTTTATGAAGCAAATGTCCCTGTGTATAGATTTATTCAGCGACCTGGAGATTTGGTCTGGATAAATGCAGGCACTGTGCATTGGGTTCAAGCTGTTGGCTGGTGCAATAACATTGCCTGGAATGTTGGTCCACTTACAGCCTGCCAGTATAAATTGGCAGTGGAACGGTATGAATGGAACAAATTGAAAAGTGTGAAGTCACCAGTACCCATGGTGCATCTTTCCTGGAATATGGCACGAAATATCAAAGTCTCAGATCCAAAGCTTTTTGAAATGATTAAGTATTGTCTTTTGAAAATTCTGAAGCAATATCAGACATTGAGAGAAGCTCTTGTTGCAGCAGGAAAAGAGGTTATATGGCATGGGCGGACAAATGATGAACCAGCTCATTACTGTAGCATTTGTGAGGTGGAGGTTTTTAATCTGCTTTTTGTCACTAATGAAAGCAATACTCAAAAAACCTACATAGTACATTGCCATGATTGTGCACGAAAAACAAGCAAAAGTTTGGAAAATTTTGTGGTGCTCGAACAGTACAAAATGGAGGACCTAATCCAAGTTTATGATCAATTTACACTAGAAATTTCTGCACCACTGGTTTTGTAG
Amino sequence
MKSCAVSLTTAAVAFGDEAKKMAEGKASRESEEESVSLTVEEREALGGMDSRLFGFVRLHEDGARTKTLLGKAVRCYESLILKAEGKVESDFFCQLGHFNLLLEDYSKALSAYQRYYSLQADYWKNAAFLYGLGLVYFYYNAFHWAIKAFQDVLYVDPSFCRAKEIHLRLGLMFKVNTDYKSSLKHFQLALIDCNPCTLSNAEIQFHIAHLYETQRKYHSAKEAYEQLLQTENLPAQVKATVLQQLGWMHHNMDLVGDKATKESYAIQYLQKSLEADPNSGQSWYFLGRCYSSIGKVQDAFISYRQSIDKSEASADTWCSIGVLYQQQNQPMDALQAYICAVQLDHGHAAAWMDLGTLYESCNQPQDAIKCYLNAARSKRCSNTSTLAARIKFLQAQLCNLPQSSLQNKTKLLPSIEEAWSLPIPAELTSRQGAMNTAQQQSLSLHMITSSQVEGLSSPAKKKRTSSPTKNGSDNWNGGQSLSHHPVQQVYSLCLTPQKLQHLEQLRANRDNLNPAQKHQLEQLESQFVLMQQMRHKEVAQVRTTGIHNGAITDSSLPTNSVSNRQPHGALTRVSSVSQPGVRPACVEKLLSSGAFSAGCIPCGTSKILGSTDTILLGSNCIAGSESNGNVPYLQQNTHTLPHNHTDLNSSTEEPWRKQLSNSAQGLHKSQSSCLSGPNEEQPLFSTGSAQYHQATSTGIKKANEHLTLPSNSVPQGDADSHLSCHTATSGGQQGIMFTKESKPSKNRSLVPETSRHTGDTSNGCADVKGLSNHVHQLIADAVSSPNHGDSPNLLIADNPQLSALLIGKANGNVGTGTCDKVNNIHPAVHTKTDHSVASSPSSAISTATPSPKSTEQRSINSVTSLNSPHSGLHTVNGEGLGKSQSSTKVDLPLASHRSTSQILPSMSVSICPSSTEVLKACRNPGKNGLSNSCILLDKCPPPRPPTSPYPPLPKDKLNPPTPSIYLENKRDAFFPPLHQFCTNPKNPVTVIRGLAGALKLDLGLFSTKTLVEANNEHMVEVRTQLLQPADENWDPTGTKKIWRCESNRSHTTIAKYAQYQASSFQESLREENEKRTQHKDHSDNESTSSENSGRRRKGPFKTIKFGTNIDLSDNKKWKLQLHELTKLPAFARVVSAGNLLTHVGHTILGMNTVQLYMKVPGSRTPGHQENNNFCSVNINIGPGDCEWFVVPEDYWGVLNDFCEKNNLNFLMSSWWPNLEDLYEANVPVYRFIQRPGDLVWINAGTVHWVQAVGWCNNIAWNVGPLTACQYKLAVERYEWNKLKSVKSPVPMVHLSWNMARNIKVSDPKLFEMIKYCLLKILKQYQTLREALVAAGKEVIWHGRTNDEPAHYCSICEVEVFNLLFVTNESNTQKTYIVHCHDCARKTSKSLENFVVLEQYKMEDLIQVYDQFTLEISAPLVL*