ENST00000713739.1 SPTBN2

Information
Transcript ID
ENST00000713739.1
Genome
hg19
Position
chr11:66,452,723-66,488,711
Strand
-
CDS length
6,798
Amino acid length
2,266
Gene symbol
SPTBN2
Gene type
protein-coding
Gene description
spectrin beta, non-erythrocytic 2
Gene Entrez Gene ID
6712
Variants

Display target variant


Search Word
Target data :
MGeND data only
Category :
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
35 66,452,723 66,453,575
34 66,453,869 66,453,911
33 66,454,465 66,454,638
32 66,454,898 66,455,118
31 66,455,339 66,455,389
30 66,455,475 66,455,550
29 66,455,640 66,455,782
28 66,456,124 66,456,320
27 66,456,567 66,456,651
26 66,457,276 66,457,414
25 66,457,510 66,457,754
24 66,460,007 66,460,211
23 66,460,441 66,460,571
22 66,460,657 66,460,917
21 66,461,243 66,461,332
20 66,461,610 66,461,834
19 66,463,748 66,464,011
18 66,466,110 66,466,256
17 66,466,463 66,466,553
16 66,466,877 66,467,079
15 66,467,997 66,468,753
14 66,469,055 66,469,192
13 66,472,069 66,472,939
12 66,473,155 66,473,308
11 66,474,987 66,475,289
10 66,475,612 66,475,770
9 66,476,373 66,476,490
8 66,478,053 66,478,240
7 66,478,388 66,478,500
6 66,481,102 66,481,217
5 66,481,562 66,481,642
4 66,481,787 66,481,878
3 66,482,693 66,482,866
2 66,483,301 66,483,452
1 66,488,555 66,488,711
CDS
Exon number Type Start Stop
35 CDS 66,453,342 66,453,575
34 CDS 66,453,869 66,453,911
33 CDS 66,454,465 66,454,638
32 CDS 66,454,898 66,455,118
31 CDS 66,455,339 66,455,389
30 CDS 66,455,475 66,455,550
29 CDS 66,455,640 66,455,782
28 CDS 66,456,124 66,456,320
27 CDS 66,456,567 66,456,651
26 CDS 66,457,276 66,457,414
25 CDS 66,457,510 66,457,754
24 CDS 66,460,007 66,460,211
23 CDS 66,460,441 66,460,571
22 CDS 66,460,657 66,460,917
21 CDS 66,461,243 66,461,332
20 CDS 66,461,610 66,461,834
19 CDS 66,463,748 66,464,011
18 CDS 66,466,110 66,466,256
17 CDS 66,466,463 66,466,553
16 CDS 66,466,877 66,467,079
15 CDS 66,467,997 66,468,753
14 CDS 66,469,055 66,469,192
13 CDS 66,472,069 66,472,939
12 CDS 66,473,155 66,473,308
11 CDS 66,474,987 66,475,289
10 CDS 66,475,612 66,475,770
9 CDS 66,476,373 66,476,490
8 CDS 66,478,053 66,478,240
7 CDS 66,478,388 66,478,500
6 CDS 66,481,102 66,481,217
5 CDS 66,481,562 66,481,642
4 CDS 66,481,787 66,481,878
3 CDS 66,482,693 66,482,866
2 CDS 66,483,301 66,483,452
1 CDS 66,488,555 66,488,711
Other genome
Genome Chromosome Start End Links
hg38 chr11 66,685,252 66,721,240 Link
CDS sequence
ATGAGCAGCACGCTGTCACCCACAGACTTTGACAGCTTGGAAATCCAGGGCCAGTACAGTGACATCAACAACCGCTGGGACCTTCCTGACTCGGACTGGGACAATGACAGCAGCTCGGCCCGCCTCTTTGAGAGGTCTCGCATTAAGGCTCTGGCAGATGAACGAGAAGCTGTGCAGAAGAAAACCTTCACCAAGTGGGTAAACTCGCACCTGGCCCGGGTCACGTGCCGGGTGGGGGACCTGTACAGCGACCTCCGGGACGGACGCAACCTGCTGAGGCTCCTCGAGGTGCTCTCGGGAGAGATACTGCCAAAGCCTACAAAGGGCCGCATGCGGATCCACTGCCTGGAGAACGTGGACAAGGCACTGCAGTTCCTCAAGGAGCAGAAAGTGCACTTGGAAAACATGGGCTCCCATGACATTGTGGACGGAAACCACCGACTGACCCTTGGGCTGGTCTGGACCATCATCCTTCGATTCCAGATCCAAGACATCAGTGTGGAGACAGAAGACAACAAGGAGAAGAAGTCAGCCAAGGATGCCCTGCTTCTGTGGTGCCAGATGAAGACTGCAGGTTATCCCAACGTCAATGTACACAACTTCACCACCAGCTGGAGAGATGGACTAGCTTTCAACGCCATCGTGCATAAACACCGGCCAGACCTGCTGGATTTTGAGTCTCTGAAGAAGTGTAATGCACACTATAATCTGCAGAATGCATTCAATCTGGCTGAAAAGGAACTGGGACTTACCAAGCTGCTGGATCCCGAAGACGTGAATGTGGACCAGCCAGATGAGAAGTCAATCATTACCTATGTGGCTACTTACTACCATTACTTCTCCAAGATGAAGGCCCTGGCCGTGGAAGGCAAGAGAATTGGCAAGGTGCTGGACCATGCCATGGAGGCAGAGCGCCTGGTGGAGAAATACGAGTCCCTGGCCTCGGAGCTGCTGCAGTGGATCGAGCAAACGATCGTGACCCTCAATGACCGGCAGTTGGCCAACTCCCTTAGCGGGGTCCAGAACCAGCTGCAGTCCTTCAACTCCTACCGCACCGTGGAGAAGCCGCCCAAGTTTACCGAGAAAGGGAACTTGGAAGTGCTGCTCTTCACCATCCAGAGCAAGCTTCGGGCCAACAACCAGAAGGTCTACACGCCCCGCGAGGGCCGGCTCATCTCGGACATCAACAAGGCTTGGGAGCGGCTGGAGAAGGCGGAGCACGAGCGTGAGCTGGCCCTGCGCACCGAGCTCATCCGCCAGGAGAAGCTGGAGCAGCTGGCCGCCCGCTTCGACCGCAAGGCTGCCATGCGGGAGACCTGGCTCAGCGAGAACCAGCGCCTCGTGTCCCAGGACAACTTTGGGCTGGAGCTGGCAGCTGTCGAGGCAGCAGTACGGAAGCACGAAGCCATTGAGACGGACATCGTGGCCTACAGCGGCCGGGTGCAGGCAGTGGACGCCGTGGCTGCAGAGCTGGCCGCCGAGCGCTACCACGACATCAAGCGCATCGCCGCTCGGCAGCACAACGTGGCACGGCTCTGGGACTTCTTGCGGCAGATGGTGGCCGCCCGGCGGGAGCGGCTCCTCCTCAACCTGGAGCTGCAGAAGGTGTTCCAGGACCTGCTCTACCTCATGGACTGGATGGAAGAGATGAAGGGCCGGCTGCAGTCTCAGGACCTGGGCAGGCACCTAGCAGGAGTGGAGGACCTGCTGCAGCTGCACGAGCTGGTGGAGGCAGACATCGCCGTGCAGGCCGAGAGGGTGCGGGCCGTCAGCGCCTCTGCCCTGCGCTTCTGCAACCCAGGGAAAGAGTATAGACCTTGCGACCCGCAGCTGGTGTCGGAGCGGGTGGCCAAGCTAGAGCAGAGCTATGAGGCACTGTGCGAGTTGGCAGCGGCGCGGCGGGCCCGGCTGGAGGAATCACGGCGGCTCTGGCGTTTCCTCTGGGAGGTGGGTGAAGCTGAGGCCTGGGTGCGGGAGCAGCAGCACCTCCTGGCCTCAGCCGACACGGGCCGAGACCTGACCGGTGCCCTCCGCCTGCTCAACAAGCACACAGCCCTGCGGGGCGAGATGAGCGGCCGGCTGGGGCCCCTGAAGCTCACCCTGGAGCAGGGCCAGCAGTTGGTGGCCGAGGGTCACCCTGGGGCAAGCCAGGCCTCTGCCCGTGCAGCTGAACTCCAAGCCCAGTGGGAGCGGCTAGAGGCCCTGGCCGAGGAGCGTGCCCAGCGGCTGGCCCAAGCCGCCAGCCTCTACCAGTTCCAGGCCGATGCAAACGACATGGAGGCCTGGTTGGTTGACGCACTGCGCCTGGTGTCCAGCCCCGAGCTGGGGCACGACGAGTTCTCCACGCAGGCTCTAGCCAGGCAGCATCGGGCCCTGGAGGAGGAGATTCGAAGCCACCGGCCAACCCTGGACGCCTTGAGGGAACAGGCAGCAGCCCTGCCCCCCACACTGAGCCGCACGCCCGAGGTGCAGAGCCGGGTGCCCACCCTGGAGCGGCACTACGAGGAGCTGCAGGCCCGGGCAGGCGAGCGAGCGCGGGCCTTGGAGGCAGCCCTGGCGCTCTACACCATGCTCAGCGAGGCCGGGGCCTGTGGACTCTGGGTGGAGGAGAAGGAGCAGTGGCTCAACGGGCTGGCCCTGCCTGAACGCCTGGAGGACCTGGAGGTCGTGCAGCAGAGGTTCGAGACCCTGGAGCCTGAAATGAACACCCTTGCAGCACAAATCACCGCGGTGAATGACATTGCCGAGCAGTTACTGAAGGCCAACCCCCCAGGCAAAGACCGCATTGTCAACACCCAGGAGCAGCTCAACCACAGGTGGCAGCAGTTTCGGCGTCTGGCAGACGGCAAGAAGGCAGCTCTCACCTCAGCCCTGAGCATCCAGAACTACCACTTAGAGTGCACGGAGACCCAGGCCTGGATGAGAGAGAAGACCAAAGTCATCGAGTCCACCCAGGGCCTAGGCAACGATCTGGCTGGGGTGCTGGCCCTGCAGCGCAAGCTGGCCGGCACGGAGCGGGACCTGGAGGCCATCGCCGCCCGGGTGGGCGAACTGACTCGAGAGGCAAATGCCCTGGCTGCCGGCCATCCCGCTCAGGCAGTGGCCATCAACGCCCGGCTGAGAGAGGTGCAGACCGGCTGGGAGGACCTCAGGGCCACCATGCGGCGTCGAGAAGAGTCGCTGGGGGAGGCGCGGCGGCTGCAGGACTTCTTGCGCAGCTTGGATGACTTCCAGGCCTGGCTAGGCCGCACTCAGACTGCTGTGGCCTCTGAAGAAGGGCCGGCCACCCTGCCTGAGGCAGAGGCCCTCCTGGCCCAACATGCAGCCCTGCGGGGAGAGGTGGAGCGGGCCCAGAGCGAGTATAGCCGGCTGCGAGCCCTGGGCGAGGAGGTGACCCGGGACCAGGCTGACCCCCAGTGCCTCTTCCTACGACAGCGACTGGAGGCCCTGGGAACTGGCTGGGAGGAGCTGGGCCGAATGTGGGAGAGCCGGCAAGGTCGCCTGGCCCAGGCCCACGGCTTCCAGGGATTCCTGCGGGATGCTCGTCAGGCTGAGGGCGTGCTCAGCAGCCAGGAATATGTTCTGTCTCACACGGAGATGCCAGGGACACTCCAGGCTGCTGATGCTGCCATTAAAAAACTGGAGGACTTCATGAGCACCATGGACGCCAATGGGGAACGGATCCACGGGCTCCTGGAGGCTGGCCGCCAGCTGGTATCTGAAGGCAACATCCACGCCGACAAGATTCGGGAAAAGGCAGACTCCATTGAGAGGAGGCACAAGAAGAATCAAGACGCAGCGCAGCAATTTCTGGGCCGTCTTCGGGACAACCGGGAGCAGCAGCATTTCCTGCAAGATTGTCACGAGCTGAAGCTCTGGATCGACGAGAAGATGCTGACAGCCCAGGACGTGTCCTATGACGAGGCCCGCAACCTGCATACTAAGTGGCAGAAGCACCAGGCATTCATGGCCGAGCTGGCTGCCAACAAAGACTGGCTGGACAAGGTGGACAAGGAAGGGCGAGAGCTCACCCTTGAGAAGCCAGAGCTGAAAGCCCTGGTGTCGGAGAAGCTGAGAGACCTGCACAGGCGCTGGGACGAGCTGGAGACCACCACCCAAGCCAAGGCCCGCAGCCTCTTTGATGCCAACCGAGCTGAGCTGTTTGCCCAGAGCTGCTGTGCCCTGGAGAGCTGGCTGGAGAGCCTGCAGGCCCAGCTGCACTCGGATGACTACGGCAAGGACCTCACCAGCGTCAACATCCTGCTCAAGAAGCAGCAGATGCTGGAATGGGAGATGGCTGTGAGAGAGAAGGAGGTGGAGGCAATCCAGGCCCAGGCCAAAGCACTGGCCCAGGAGGACCAGGGTGCAGGGGAGGTGGAGAGAACCTCGAGGGCCGTGGAGGAGAAGTTCAGGGCCTTGTGCCAGCCCATGCGGGAACGCTGCCGGCGCCTGCAGGCTTCTCGCGAGCAGCACCAGTTCCACCGCGATGTGGAAGATGAGATTTTGTGGGTGACAGAGCGGCTGCCCATGGCCAGCTCCATGGAGCATGGCAAGGACCTGCCCAGCGTCCAGCTTCTCATGAAGAAAAACCAGACCCTGCAGAAAGAGATTCAGGGCCATGAGCCCCGGATCGCGGACCTGAGGGAGCGGCAGCGTGCTCTAGGTGCAGCAGCAGCAGGTCCAGAGCTGGCTGAGCTGCAGGAAATGTGGAAACGCCTGGGCCACGAGCTGGAACTTCGAGGGAAGCGACTGGAGGATGCCCTGCGAGCCCAGCAGTTCTACCGCGATGCCGCCGAGGCGGAGGCCTGGATGGGCGAGCAGGAATTACACATGATGGGCCAGGAGAAGGCCAAGGATGAGCTGAGTGCCCAGGCAGAGGTGAAGAAGCACCAGGTGCTGGAGCAAGCCCTGGCCGACTACGCGCAGACCATCCACCAGCTGGCGGCCAGCAGCCAGGACATGATTGACCACGAGCACCCAGAGAGCACTCGGATATCCATCCGCCAAGCCCAGGTGGACAAGCTGTATGCCGGCCTGAAGGAGCTGGCTGGAGAGCGGCGGGAGCGCCTGCAGGAGCACCTCCGGCTGTGCCAGCTCCGCCGCGAGCTGGATGACCTGGAACAGTGGATCCAGGAGCGCGAGGTGGTGGCGGCCTCCCACGAGCTGGGCCAGGACTACGAGCATGTGACTGTCCAGCAGGTGCAGGACGACGGCCACCGGCTCCAGAAGGCCTACGCTGGAGACAAGGCTGAGGAGATCGGCCGCCACATGCAGGCCGTGGCCGAGGCCTGGGCCCAGCTTCAGGGAAGCTCTGCCGCCCGCCGGCAGCTGCTGCTGGACACCACAGACAAGTTCCGCTTCTTCAAGGCTGTCCGGGAACTGATGCTCTGGATGGATGAGGTCAACCTGCAGATGGATGCCCAGGAGCGTCCCCGGGATGTGTCCTCCGCGGATCTAGTCATCAAGAACCAGCAAGGCATCAAGGCAGAGATAGAGGCCCGGGCAGACCGCTTCTCCTCCTGCATCGACATGGGGAAGGAGCTGCTGGCCAGGAGCCACTATGCGGCCGAGGAGATCTCAGAGAAGCTGTCTCAGCTGCAGGCACGGCGCCAGGAGACAGCTGAGAAGTGGCAGGAGAAGATGGACTGGCTTCAGCTGGTTTTGGAGGTGCTTGTGTTTGGAAGAGATGCAGGGATGGCAGAGGCCTGGCTCTGCAGCCAGGAGCCACTGGTGCGCAGCGCTGAGCTGGGTTGCACGGTCGACGAAGTTGAGAGCCTCATCAAGCGGCACGAGGCCTTCCAGAAGTCAGCAGTGGCCTGGGAGGAGCGATTCTGTGCGCTGGAGAAGCTTACTGCGCTAGAGGAGCGGGAGAAGGAGCGAAAGAGAAAGAGGGAGGAGGAGGAGCGGCGGAAACAGCCGCCTGCTCCCGAACCCACAGCCAGTGTGCCTCCAGGGGACCTGGTGGGCGGCCAGACAGCTTCTGACACCACCTGGGACGGAACCCAGCCACGGCCACCACCATCCACACAAGCACCCAGTGTTAATGGAGTCTGCACAGATGGAGAGCCCTCACAGCCCCTGCTGGGACAACAGAGACTTGAGCACAGCAGCTTCCCCGAAGGGCCGGGACCTGGCTCAGGGGACGAAGCCAATGGGCCCCGGGGAGAGAGGCAGACCCGGACTCGGGGCCCGGCCCCATCTGCAATGCCCCAGAGCAGGTCTACCGAGTCAGCCCATGCTGCCACCCTGCCGCCTCGAGGCCCAGAGCCATCTGCCCAGGAGCAGATGGAGGGGATGCTGTGCCGCAAGCAGGAGATGGAGGCCTTCGGGAAGAAGGCTGCCAACAGGTCCTGGCAGAACGTGTACTGTGTCCTGCGGCGTGGGAGCCTCGGCTTTTACAAGGATGCCAAGGCAGCCAGCGCGGGAGTGCCATACCACGGAGAAGTGCCTGTCAGCCTGGCCAGGGCCCAGGGCAGCGTCGCCTTTGATTACCGAAAGCGCAAACATGTCTTCAAGCTGGGCTTACAGGATGGAAAAGAATATTTATTCCAGGCCAAGGATGAGGCAGAGATGAGCTCGTGGCTACGGGTGGTGAATGCAGCCATTGCCACAGCGTCTTCTGCCTCTGGAGAGCCTGAAGAGCCGGTGGTGCCCAGCACCACCCGGGGCATGACCCGGGCCATGACCATGCCCCCAGTGTCACCCGTCGGGGCTGAGGGGCCTGTTGTGCTCCGCAGCAAAGACGGCAGAGAACGAGAGCGAGAAAAACGCTTCAGCTTCTTTAAGAAGAACAAGTAG
Amino sequence
MSSTLSPTDFDSLEIQGQYSDINNRWDLPDSDWDNDSSSARLFERSRIKALADEREAVQKKTFTKWVNSHLARVTCRVGDLYSDLRDGRNLLRLLEVLSGEILPKPTKGRMRIHCLENVDKALQFLKEQKVHLENMGSHDIVDGNHRLTLGLVWTIILRFQIQDISVETEDNKEKKSAKDALLLWCQMKTAGYPNVNVHNFTTSWRDGLAFNAIVHKHRPDLLDFESLKKCNAHYNLQNAFNLAEKELGLTKLLDPEDVNVDQPDEKSIITYVATYYHYFSKMKALAVEGKRIGKVLDHAMEAERLVEKYESLASELLQWIEQTIVTLNDRQLANSLSGVQNQLQSFNSYRTVEKPPKFTEKGNLEVLLFTIQSKLRANNQKVYTPREGRLISDINKAWERLEKAEHERELALRTELIRQEKLEQLAARFDRKAAMRETWLSENQRLVSQDNFGLELAAVEAAVRKHEAIETDIVAYSGRVQAVDAVAAELAAERYHDIKRIAARQHNVARLWDFLRQMVAARRERLLLNLELQKVFQDLLYLMDWMEEMKGRLQSQDLGRHLAGVEDLLQLHELVEADIAVQAERVRAVSASALRFCNPGKEYRPCDPQLVSERVAKLEQSYEALCELAAARRARLEESRRLWRFLWEVGEAEAWVREQQHLLASADTGRDLTGALRLLNKHTALRGEMSGRLGPLKLTLEQGQQLVAEGHPGASQASARAAELQAQWERLEALAEERAQRLAQAASLYQFQADANDMEAWLVDALRLVSSPELGHDEFSTQALARQHRALEEEIRSHRPTLDALREQAAALPPTLSRTPEVQSRVPTLERHYEELQARAGERARALEAALALYTMLSEAGACGLWVEEKEQWLNGLALPERLEDLEVVQQRFETLEPEMNTLAAQITAVNDIAEQLLKANPPGKDRIVNTQEQLNHRWQQFRRLADGKKAALTSALSIQNYHLECTETQAWMREKTKVIESTQGLGNDLAGVLALQRKLAGTERDLEAIAARVGELTREANALAAGHPAQAVAINARLREVQTGWEDLRATMRRREESLGEARRLQDFLRSLDDFQAWLGRTQTAVASEEGPATLPEAEALLAQHAALRGEVERAQSEYSRLRALGEEVTRDQADPQCLFLRQRLEALGTGWEELGRMWESRQGRLAQAHGFQGFLRDARQAEGVLSSQEYVLSHTEMPGTLQAADAAIKKLEDFMSTMDANGERIHGLLEAGRQLVSEGNIHADKIREKADSIERRHKKNQDAAQQFLGRLRDNREQQHFLQDCHELKLWIDEKMLTAQDVSYDEARNLHTKWQKHQAFMAELAANKDWLDKVDKEGRELTLEKPELKALVSEKLRDLHRRWDELETTTQAKARSLFDANRAELFAQSCCALESWLESLQAQLHSDDYGKDLTSVNILLKKQQMLEWEMAVREKEVEAIQAQAKALAQEDQGAGEVERTSRAVEEKFRALCQPMRERCRRLQASREQHQFHRDVEDEILWVTERLPMASSMEHGKDLPSVQLLMKKNQTLQKEIQGHEPRIADLRERQRALGAAAAGPELAELQEMWKRLGHELELRGKRLEDALRAQQFYRDAAEAEAWMGEQELHMMGQEKAKDELSAQAEVKKHQVLEQALADYAQTIHQLAASSQDMIDHEHPESTRISIRQAQVDKLYAGLKELAGERRERLQEHLRLCQLRRELDDLEQWIQEREVVAASHELGQDYEHVTVQQVQDDGHRLQKAYAGDKAEEIGRHMQAVAEAWAQLQGSSAARRQLLLDTTDKFRFFKAVRELMLWMDEVNLQMDAQERPRDVSSADLVIKNQQGIKAEIEARADRFSSCIDMGKELLARSHYAAEEISEKLSQLQARRQETAEKWQEKMDWLQLVLEVLVFGRDAGMAEAWLCSQEPLVRSAELGCTVDEVESLIKRHEAFQKSAVAWEERFCALEKLTALEEREKERKRKREEEERRKQPPAPEPTASVPPGDLVGGQTASDTTWDGTQPRPPPSTQAPSVNGVCTDGEPSQPLLGQQRLEHSSFPEGPGPGSGDEANGPRGERQTRTRGPAPSAMPQSRSTESAHAATLPPRGPEPSAQEQMEGMLCRKQEMEAFGKKAANRSWQNVYCVLRRGSLGFYKDAKAASAGVPYHGEVPVSLARAQGSVAFDYRKRKHVFKLGLQDGKEYLFQAKDEAEMSSWLRVVNAAIATASSASGEPEEPVVPSTTRGMTRAMTMPPVSPVGAEGPVVLRSKDGREREREKRFSFFKKNK*