ENST00000389934.7 TEX14

Information
Transcript ID
ENST00000389934.7
Genome
hg19
Position
chr17:56,634,039-56,769,416
Strand
-
CDS length
4,476
Amino acid length
1,492
Gene symbol
TEX14
Gene type
protein-coding
Gene description
testis expressed 14, intercellular bridge forming factor
Gene Entrez Gene ID
56155
Variants

Display target variant


Search Word
Target data :
MGeND data only
Category :
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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
33 56,634,039 56,634,408
32 56,635,160 56,635,211
31 56,636,814 56,636,923
30 56,638,881 56,638,973
29 56,642,230 56,642,329
28 56,643,108 56,643,185
27 56,646,553 56,646,621
26 56,647,746 56,647,845
25 56,649,282 56,649,487
24 56,650,542 56,650,669
23 56,651,548 56,651,610
22 56,654,736 56,654,817
21 56,657,026 56,657,092
20 56,658,972 56,659,091
19 56,661,861 56,661,961
18 56,663,162 56,663,443
17 56,664,942 56,665,027
16 56,665,257 56,665,382
15 56,670,916 56,671,022
14 56,676,237 56,677,027
13 56,679,167 56,679,317
12 56,679,761 56,679,951
11 56,682,339 56,682,490
10 56,688,522 56,688,700
9 56,690,782 56,690,905
8 56,692,593 56,692,706
7 56,693,536 56,693,666
6 56,694,899 56,694,980
5 56,699,011 56,699,147
4 56,700,208 56,700,373
3 56,707,801 56,707,915
2 56,729,227 56,729,363
1 56,769,300 56,769,416
CDS
Exon number Type Start Stop
33 CDS 56,634,372 56,634,408
32 CDS 56,635,160 56,635,211
31 CDS 56,636,814 56,636,923
30 CDS 56,638,881 56,638,973
29 CDS 56,642,230 56,642,329
28 CDS 56,643,108 56,643,185
27 CDS 56,646,553 56,646,621
26 CDS 56,647,746 56,647,845
25 CDS 56,649,282 56,649,487
24 CDS 56,650,542 56,650,669
23 CDS 56,651,548 56,651,610
22 CDS 56,654,736 56,654,817
21 CDS 56,657,026 56,657,092
20 CDS 56,658,972 56,659,091
19 CDS 56,661,861 56,661,961
18 CDS 56,663,162 56,663,443
17 CDS 56,664,942 56,665,027
16 CDS 56,665,257 56,665,382
15 CDS 56,670,916 56,671,022
14 CDS 56,676,237 56,677,027
13 CDS 56,679,167 56,679,317
12 CDS 56,679,761 56,679,951
11 CDS 56,682,339 56,682,490
10 CDS 56,688,522 56,688,700
9 CDS 56,690,782 56,690,905
8 CDS 56,692,593 56,692,706
7 CDS 56,693,536 56,693,666
6 CDS 56,694,899 56,694,980
5 CDS 56,699,011 56,699,147
4 CDS 56,700,208 56,700,373
3 CDS 56,707,801 56,707,915
2 CDS 56,729,227 56,729,362
Other genome
Genome Chromosome Start End Links
hg38 chr17 58,556,678 58,692,055 Link
CDS sequence
ATGTCTCGGGCTGTTCGTCTTCCAGTCCCCTGTCCTGTTCAACTTGGTACCTTAAGAAATGACTCCCTGGAAGCTCAGCTTCATGAGTATGTCAAACAAGGGAACTATGTGAAAGTGAAGAAAATTCTTAAGAAAGGAATTTATGTTGATGCAGTTAACTCCTTGGGCCAAACAGCACTTTTTGTTGCGGCGTTATTGGGCCTTAGGAAATTCGTTGATGTTCTGGTGGATTATGGATCAGATCCAAATCACCGCTGCTTTGATGGGAGCACCCCTGTCCATGCAGCAGCATTTTCGGGCAATCAGTGGATCCTTAGCAAACTGCTGGATGCAGGAGGTGACCTGCGACTCCACGATGAGAGGGGTCAAAACCCGAAGACTTGGGCTTTGACAGCAGGAAAGGAGCGTAGCACCCAGATAGTGGAGTTCATGCAGCGCTGTGCCTCACACATGCAGGCCATCATCCAGGGCTTCTCTTACGACCTCCTGAAGAAGATAGACTCCCCGCAGCGGCTTGTCTACAGCCCGTCCTGGTGTGGGGGCCTCGTGCAGGGAAACCCTAATGGCTCTCCTAACCGACTGCTTAAAGCTGGAGTCATTTCTGCTCAAAATATCTACAGCTTTGGTTTTGGGAAGTTTTATCTTACTGGGGCGACACAGATGGCCTATCTAGGATCTCTTCCGGTCATTGGAGAAAAGGAAGTGATTCAAGCTGATGATGAGCCCACCTTCTCTTTCTTCAGCGGCCCCTACATGGTCATGACCAACCTAGTGTGGAATGGGAGCAGGGTCACAGTGAAAGAGCTGAATCTCCCCACCCACCCACACTGCAGCAGGCTGCGGCTGGCCGACTTGTTAATTGCCGAGCAGGAACACAGCAGCAAGCTGCGGCACCCCTACTTGCTACAGTTGATGGCTGTGTGTCTCTCCCAGGACCTAGAGAAAACCCGCCTTGTGTACGAGCGCATCACTATCGGCACATTGTTCAGTGTCCTTCATGAACGACGGTCCCAGTTCCCAGTGCTGCACATGGAGGTGATTGTGCACCTGCTGCTCCAGATATCTGATGCCCTGAGATACCTGCATTTCCAGGGGTTTATCCACCGCTCCCTCAGCTCCTATGCTGTCCATATCATCTCCCCAGGTGAAGCGAGGCTGACCAACCTGGAGTACATGTTGGAAAGCGAGGACAGAGGTGTACAGAGGGACCTGACTCGAGTGCCCCTTCCTACGCAGCTATACAACTGGGCCGCACCAGAAGTGATCTTACAGAAGGCAGCCACAGTGAAATCAGACATCTACAGCTTTTCTATGATCATGCAGGAGATTTTAACAGATGACATACCCTGGAAGGGCTTAGATGGCTCAGTTGTTAAAAAAGCCGTAGTCTCGGGGAATTATTTAGAAGCTGATGTCAGGCTTCCGAAACCTTACTATGATATTGTTAAGTCAGGCATCCACGTCAAGCAGAAAGACCGAACTATGAACCTTCAAGATATCCGGTATATTCTGAAGAATGACTTAAAGGATTTTACTGGAGCCCAGAGAACTCAACCAACCGAGAGCCCCAGAGTGCAGAGATACGGACTCCATCCCGATGTCAATGTCTATCTAGGACTGACTTCAGAACACCCCAGAGAGACACCTGACATGGAAATCATAGAACTAAAGGAAATGGGCAGTCAACCTCATTCACCAAGGGTTCACTCTTTATTCACTGAGGGGACACTAGATCCTCAGGCCCCAGATCCATGTCTGATGGCCAGGGAGACTCAGAATCAAGATGCTCCTTGCCCTGCTCCATTTATGGCAGAAGAGGCCAGCAGCCCCAGCACAGGTCAGCCAAGCCTCTGCAGTTTCGAAATCAACGAGATCTACTCAGGCTGCTTGATTTTGGAAGATGACATAGAAGAGCCTCCAGGAGCTGCTTCATCTTTGGAGGCAGACGGACCTAACCAGGTAGATGAACTGAAATCCATGGAAGAAGAGCTGGATAAGATGGAGAGAGAGGCGTGTTGTTTTGGCAGTGAGGATGAGAGCTCTTCAAAAGCTGAGACAGAGTACTCTTTTGATGACTGGGACTGGCAAAACGGTTCACTCAGTTCACTCAGCCTTCCTGAGTCAACCAGAGAAGCCAAGAGCAATTTGAACAACATGTCCACGACTGAGGAGTATCTCATCAGTAAGTGTGTGCTGGATCTAAAGATTATGCAGACAATAATGCACGAGAATGATGATAGGCTGAGGAATATCGAGCAGATATTAGATGAAGTCGAGATGAAACAGAAGGAACAGGAAGAGCGCATGTCTTTATGGGCCACTTCAAGAGAGTTTACAAATGCCTACAAGTTACCTCTGGCCGTGGGCCCTCCATCTTTAAACTATATTCCTCCTGTCCTACAGCTTTCAGGGGGTCAGAAGCCAGACACCAGTGGCAACTACCCAACCCTACCAAGATTTCCAAGAATGCTGCCGACTCTTTGTGACCCTGGAAAACAGAACACAGATGAACAATTTCAGTGCACTCAAGGAGCCAAGGACAGTTTGGAAACAAGCAGGATCCAAAATACCAGTAGCCAGGGAAGACCTAGAGAGTCCACTGCCCAAGCCAAAGCCACACAGTTTAATAGTGCACTCTTCACTCTGTCAAGCCACCGGCAGGGACCTTCTGCATCACCCAGCTGTCACTGGGACTCTACCAGGATGAGTGTGGAACCTGTTTCTTCTGAAATCTATAATGCAGAGTCCAGAAATAAAGATGATGGAAAGGTACACTTAAAATGGAAAATGGAGGTGAAAGAAATGGCAAAGAAAGCAGCTACTGGACAGCTCACAGTACCTCCTTGGCATCCTCAGAGTAGTCTGACTTTAGAGAGCGAGGCTGAAAATGAGCCCGACGCCCTGCTGCAGCCCCCCATTAGGAGCCCAGAAAACACGGATTGGCAGCGAGTTATTGAGTATCATAGGGAAAATGATGAGCCCAGAGGAAATGGCAAGTTTGACAAGACGGGCAACAATGACTGTGACAGTGACCAGCATGGCAGACAGCCCAGGCTTGGAAGCTTCACCAGTATCAGGCACCCATCTCCCAGACAAAAGGAGCAACCAGAGCATAGTGAAGCCTTCCAAGCAAGTTCTGACACATTGGTGGCTGTAGAGAAATCTTACAGTCATCAGTCCATGCAATCAACTTGTTCACCAGAGTCTTCTGAGGATATAACAGATGAATTTTTAACTCCAGACGGTGAATATTTTTACTCCTCGACTGCTCAAGAAAACTTAGCTCTAGAGACCTCGAGTCCCATAGAAGAGGACTTTGAAGGAATACAAGGTGCATTTGCCCAACCTCAAGTCTCTGGTGAGGAAAAGTTCCAAATGAGAAAAATTCTTGGAAAGAATGCTGAGATTTTGCCCAGGTCTCAATTTCAACCTGTACGAAGTACTGAAGATGAACAAGAAGAGACATCAAAGGAGTCACCAAAGGAACTGAAAGAGAAAGACATATCATTGACGGATATTCAAGACCTGTCTAGTATCTCCTATGAACCAGACAGCTCTTTTAAGGAAGCTTCATGCAAAACACCCAAAATAAACCATGCACCTACCAGTGTCAGCACTCCACTCAGCCCAGGGTCCGTTTCTTCAGCTGCCAGTCAGTATAAAGACTGCCTTGAAAGTATCACATTTCAGGTTAAGACAGAGTTTGCCTCTTGCTGGAACAGTCAAGAATTTATTCAAACTTTGTCTGATGACTTTATAAGTGTCCGAGAGAGAGCAAAGAAACTGGATTCTCTCCTTACTTCCTCTGAAACTCCCCCTTCAAGACTGACTGGTCTTAAAAGATTGTCTTCATTTATTGGGGCTGGATCCCCCAGCCTTGTTAAGGCATGTGACTCATCACCACCCCATGCCACCCAGAGAAGGAGCCTGCCTAAAGTAGAAGCCTTCTCACAGCATCACATTGATGAGCTGCCACCACCATCTCAGGAGCTACTTGATGACATTGAGCTCTTGAAACAGCAGCAGGGCTCATCCACGGTGTTGCATGAGAACACAGCAAGTGATGGAGGAGGCACTGCAAATGATCAAAGGCACTTAGAAGAACAAGAAACTGACAGTAAAAAAGAAGATAGTAGTATGCTTTTGTCCAAAGAAACTGAAGATCTTGGAGAGGACACAGAGAGAGCTCACTCTACTCTGGATGAGGACCTGGAAAGATGGCTGCAGCCACCTGAGGAGAGCGTGGAGCTACAAGACCTTCCCAAGGGCTCTGAAAGGGAGACAAATATCAAAGATCAAAAAGTTGGTGAAGAGAAAAGAAAAAGGGAAGATAGCATTACACCAGAAAGAAGGAAATCAGAGGGTGTTCTAGGGACTTCTGAAGAAGATGAACTAAAATCCTGTTTTTGGAAGCGACTAGGTTGGTCCGAATCATCCAGGATAATCGTGCTGGATCAGAGTGACTTGTCAGACTGA
Amino sequence
MSRAVRLPVPCPVQLGTLRNDSLEAQLHEYVKQGNYVKVKKILKKGIYVDAVNSLGQTALFVAALLGLRKFVDVLVDYGSDPNHRCFDGSTPVHAAAFSGNQWILSKLLDAGGDLRLHDERGQNPKTWALTAGKERSTQIVEFMQRCASHMQAIIQGFSYDLLKKIDSPQRLVYSPSWCGGLVQGNPNGSPNRLLKAGVISAQNIYSFGFGKFYLTGATQMAYLGSLPVIGEKEVIQADDEPTFSFFSGPYMVMTNLVWNGSRVTVKELNLPTHPHCSRLRLADLLIAEQEHSSKLRHPYLLQLMAVCLSQDLEKTRLVYERITIGTLFSVLHERRSQFPVLHMEVIVHLLLQISDALRYLHFQGFIHRSLSSYAVHIISPGEARLTNLEYMLESEDRGVQRDLTRVPLPTQLYNWAAPEVILQKAATVKSDIYSFSMIMQEILTDDIPWKGLDGSVVKKAVVSGNYLEADVRLPKPYYDIVKSGIHVKQKDRTMNLQDIRYILKNDLKDFTGAQRTQPTESPRVQRYGLHPDVNVYLGLTSEHPRETPDMEIIELKEMGSQPHSPRVHSLFTEGTLDPQAPDPCLMARETQNQDAPCPAPFMAEEASSPSTGQPSLCSFEINEIYSGCLILEDDIEEPPGAASSLEADGPNQVDELKSMEEELDKMEREACCFGSEDESSSKAETEYSFDDWDWQNGSLSSLSLPESTREAKSNLNNMSTTEEYLISKCVLDLKIMQTIMHENDDRLRNIEQILDEVEMKQKEQEERMSLWATSREFTNAYKLPLAVGPPSLNYIPPVLQLSGGQKPDTSGNYPTLPRFPRMLPTLCDPGKQNTDEQFQCTQGAKDSLETSRIQNTSSQGRPRESTAQAKATQFNSALFTLSSHRQGPSASPSCHWDSTRMSVEPVSSEIYNAESRNKDDGKVHLKWKMEVKEMAKKAATGQLTVPPWHPQSSLTLESEAENEPDALLQPPIRSPENTDWQRVIEYHRENDEPRGNGKFDKTGNNDCDSDQHGRQPRLGSFTSIRHPSPRQKEQPEHSEAFQASSDTLVAVEKSYSHQSMQSTCSPESSEDITDEFLTPDGEYFYSSTAQENLALETSSPIEEDFEGIQGAFAQPQVSGEEKFQMRKILGKNAEILPRSQFQPVRSTEDEQEETSKESPKELKEKDISLTDIQDLSSISYEPDSSFKEASCKTPKINHAPTSVSTPLSPGSVSSAASQYKDCLESITFQVKTEFASCWNSQEFIQTLSDDFISVRERAKKLDSLLTSSETPPSRLTGLKRLSSFIGAGSPSLVKACDSSPPHATQRRSLPKVEAFSQHHIDELPPPSQELLDDIELLKQQQGSSTVLHENTASDGGGTANDQRHLEEQETDSKKEDSSMLLSKETEDLGEDTERAHSTLDEDLERWLQPPEESVELQDLPKGSERETNIKDQKVGEEKRKREDSITPERRKSEGVLGTSEEDELKSCFWKRLGWSESSRIIVLDQSDLSD*