ENST00000528896.7 BLTP2

Information
Transcript ID
ENST00000528896.7
Genome
hg19
Position
chr17:26,941,464-26,972,176
Strand
-
CDS length
6,708
Amino acid length
2,236
Gene symbol
BLTP2
Gene type
protein-coding
Gene description
bridge-like lipid transfer protein family member 2
Gene Entrez Gene ID
9703
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
39 26,941,464 26,942,264
38 26,942,682 26,942,816
37 26,943,114 26,943,215
36 26,943,397 26,943,527
35 26,943,636 26,943,771
34 26,943,907 26,944,017
33 26,944,250 26,944,336
32 26,945,809 26,945,989
31 26,946,672 26,946,793
30 26,946,878 26,947,033
29 26,947,527 26,947,648
28 26,948,006 26,948,188
27 26,948,417 26,948,516
26 26,950,778 26,950,984
25 26,951,251 26,951,408
24 26,955,283 26,955,577
23 26,958,497 26,958,699
22 26,958,838 26,958,937
21 26,959,067 26,959,257
20 26,959,960 26,960,180
19 26,960,301 26,960,419
18 26,960,567 26,960,769
17 26,960,913 26,961,104
16 26,961,535 26,962,627
15 26,963,983 26,964,188
14 26,964,854 26,965,112
13 26,965,270 26,965,433
12 26,965,542 26,965,660
11 26,966,333 26,966,478
10 26,966,593 26,966,660
9 26,966,919 26,967,043
8 26,967,578 26,967,701
7 26,968,907 26,969,096
6 26,969,293 26,969,353
5 26,969,887 26,970,005
4 26,970,182 26,970,329
3 26,970,628 26,970,677
2 26,971,076 26,971,205
1 26,972,007 26,972,176
CDS
Exon number Type Start Stop
39 CDS 26,942,082 26,942,264
38 CDS 26,942,682 26,942,816
37 CDS 26,943,114 26,943,215
36 CDS 26,943,397 26,943,527
35 CDS 26,943,636 26,943,771
34 CDS 26,943,907 26,944,017
33 CDS 26,944,250 26,944,336
32 CDS 26,945,809 26,945,989
31 CDS 26,946,672 26,946,793
30 CDS 26,946,878 26,947,033
29 CDS 26,947,527 26,947,648
28 CDS 26,948,006 26,948,188
27 CDS 26,948,417 26,948,516
26 CDS 26,950,778 26,950,984
25 CDS 26,951,251 26,951,408
24 CDS 26,955,283 26,955,577
23 CDS 26,958,497 26,958,699
22 CDS 26,958,838 26,958,937
21 CDS 26,959,067 26,959,257
20 CDS 26,959,960 26,960,180
19 CDS 26,960,301 26,960,419
18 CDS 26,960,567 26,960,769
17 CDS 26,960,913 26,961,104
16 CDS 26,961,535 26,962,627
15 CDS 26,963,983 26,964,188
14 CDS 26,964,854 26,965,112
13 CDS 26,965,270 26,965,433
12 CDS 26,965,542 26,965,660
11 CDS 26,966,333 26,966,478
10 CDS 26,966,593 26,966,660
9 CDS 26,966,919 26,967,043
8 CDS 26,967,578 26,967,701
7 CDS 26,968,907 26,969,096
6 CDS 26,969,293 26,969,353
5 CDS 26,969,887 26,970,005
4 CDS 26,970,182 26,970,329
3 CDS 26,970,628 26,970,677
2 CDS 26,971,076 26,971,205
1 CDS 26,972,007 26,972,074
Other genome
Genome Chromosome Start End Links
hg38 chr17 28,614,446 28,645,158 Link
CDS sequence
ATGCCTCTGTTCTTCTCCGCGCTGTTGGTCTTGCTGCTAGTTGCGCTTAGCGCCCTCTTTCTAGGCCGGTGGCTTGTGGTCCGGTTGGCCACCAAGTGGTGTCAGCGGAAGCTGCAGGCGGAGCTAAAGATTGGCTCCTTCCGCTTTTTTTGGATCCAGAATGTCAGTCTTAAGTTTCAGCAACACCAGCAAACAGTGGAAATTGATAACCTGTGGATTTCCAGCAAACTCCTTAGCCATGATCTTCCACACTATGTGGCATTGTGCTTTGGAGAAGTGCGTATCAGAACGGACCTACAGAAAGTTTCTGACCTGTCTGCCCCATTCTCCCAGAGCGCTGGGGTGGATCAAAAGGAACTGTCCTTCAGCCCATCCTTATTGAAGATCTTCTGCCAACTATTCTCCATTCATGTAGATGCTATAAACATCATGGTTCTCAAGGTGGATACCTCTGAGTCCTTATGGCATATTCAGATCAGTAGAAGCAGATTTCTTTTGGATAGTGATGGGAAAAGGCTAATCTGTGAGGTGAGCTTATGTAAGATCAACAGCAAAGTTCTAAAGAGTGGTCAGCTGGAGGACACCTGCCTAGTGGAGCTTTCACTGGCCCTGGACCTGTGTCTAAAGGTGGGCATTAGCAGTCGGCATCTCACTGCTATCACTGTGGATGTGTGGACACTCCATGCTGAACTGCATGAGGGCCTCTTCCAGAGCCAACTGCTGTGCCAGGGCCCAAGCCTAGCATCTAAGCCTGTTCCCTGTTCAGAGGTGACAGAAAACTTAGTTGAGCCAACTCTGCCTGGCCTATTCCTTCTCCAGCAGCTGCCAGACCAGGTCAAGGTTAAGATGGAGAACACAAGCGTGGTATTGTCCATGAATAGTCAAAAGAGGCACCTGACTTGGACTCTGAAGCTGCTGCAGTTCCTGTACCACCGTGATGAGGATCAGCTGCCCCTTCGAAGCTTCACAGCAAACTCTGATATGGCACAGATGAGCACTGAACTGCTGCTGGAAGATGGGTTGTTGTTGTCCCAGAGTCGCCAACGCATTGTCTGCCTCAACTCCCTCAAGGCTAGTGTGCAGGTGACCACCATTGACCTCTCAGCCTCCCTAGTTCTGAACACTTGCATCATTCACTACCGGCACCAGGAATTCTCTCACTGGCTGCACCTGCTAGCACTGGAAACCCAAGGGTCTAGTTCACCTGTTCTAAAGCAAAGGAAAAAAAGAACCTTCCCCCAAATCCTGGCTCCCATCATCTTTAGCACCTCCATCTCCAATGTCAACATTTCCATTCAACTTGGAGATACACCACCTTTTGCCTTGGGATTCAATTCTATCTCTCTGGATTACCAGCACCTCAGGCCACAAAGCATCCATCAGCGGGGCGTCCTAACTGTGGACCACCTCTGCTGGCGTGTGGGCAGTGACTCCCACATTCAGCGGGCGCCACACCCACCCAATATGCATGTTTGGGGTGAGGCACTTGTTCTGGACTCCTTCACACTACAGGGTAGCTATAACCAGCCTCTGGGCCTGTCCAGCACCCAGTCAGATACCCTTTTTCTTGATTGTACCATTCGAGGACTTCAGGTGGAAGCATCAGATACCTGTGCCCAATGTCTGTCTCGTATCTTATCCCTGATGGGTCCACAATCTGGGAAGTCAGCTGTCTCTAGGCACTCTTCATTTGGGGAATCTGTGTCATTACTGTGGAAGGTGGACTTGAAGGTCGAAGACATGAACTTGTTTACCCTTTCTGCCTTGGTTGGTGCTTCAGAGGTACGACTGGACACCCTAACTATCCTGGGCAGTGCAGAGACGTCCACTGTGGGGATTCAAGGACTTGTGTTAGCGCTGGTGAAATCAGTCACGGAGAAGATGCAACCCTGTTGCAAGGCCCCTGACATCCCTACCCCAGTGCTCAGCCTTTCCATGCTCTCCATCACCTATCACAGCAGCATCCGCTCTCTGGAGGTTCAGTGTGGTGCAGGGCTGACCTTACTTTGGAGCCCCCCAGATCACATGTACCTGTACCAGCATGTCCTGGCCACTCTACAGTGCCGAGACCTACTAAGAGCCACTGTGTTTCCTGAGACTGTACCATCCCTTGCACTAGAGACTTCAGGAACTACTTCTGAGCTAGAAGGCCGTGCCCCTGAGCCATTACCCCCAAAGCGGCTGCTAAACCTAACCCTGGAGGTGAGCACAGCCAAGCTCACAGCTTTTGTAGCTGAGGACAAGTTCATTACCCTGGCTGCAGAGAGTGTGTCACTGAGCCGGCATGGAGGTTCCCTGCAGGCATACTGTCCAGAGCTGGCTGCTGGCTTTGATGGCAATAGTATCTTCAACTTCAAGGAGGTGGAGGTGCAGCTGCTACCTGAGCTGGAAGAGATGATCCTCCACCGGAACCCCTTCCCTGCGCTGCAGACCCTCCGGAACCGTGTTTGGCTCCTCTCTTTCGGCTCAGTCTCGGTGGAGTTTCCTTATCAGTATGACTTTTCTCGAACTCTAGATGAGGCTGTGGGAGTTCAGAAGTGGCTGAAGGGACTACATCAAGGGACTCGTGCTTGGGCCTCTCCAAGCCCTGTCCCACTCCCACCTGATCTACTCTTAAAGGTTGAGCACTTCTCATGGGTTTTCTTGGATGATGTTTTTGAGGTGAAACTTCATGATAACTACGAGCTGATGAAGGATGAAAGTAAGGAGAGTGCCAAAAGACTACAGCTACTGGATGCTAAAGTGGCCGCCCTTCGGAAGCAGCATGGGGAGTTGTTGCCTGCCCGCAAAATTGAGGAGCTCTATGCCTCTTTGGAACGCAAAAACATTGAAATCTACATCCAGCGTTCCCGTCGTCTCTATGGCAACACACCCATGCGCCGGGCACTGCTTACTTGGAGCTTAGCAGGGCTAGAACTGGTAGCTCTGGCAGATGCCTCCTTCCATGGTCCTGAGCATGTGGTAGAACAGGTTCAAGAGCTTGATCCAGGCAGCCCTTTTCCCCCTGAGGGATTAGATCTTGTCATTCAGTGGTGTCGAATGCTCAAGTGCAATGTCAAGAGCTTTCTGGTTCGGATCAGGGACTATCCACGGTACCTGTTTGAGATCCGTGACTGGCGGCTAATGGGTCGACTTGTGGGCACCGAGCAGAGTGGTCAGCCTTGCTCCCGTCGGCGTCAGATCTTGCACTTGGGGCTTCCGTGGGGTAACGTGGCAGTGGAGAGGAACATGCCCCCACTCAAATTCTACCATGACTTTCACTCGGAAATATTCCAGTACACAGTGGTGTGGGGCCCATGCTGGGATCCAGCCTGGACACTAATTGGCCAGTGTGTGGACCTCTTGACCAAGCCCTCAGCTGACCCCAGCCCACCTTTGCCCTGGTGGGACAAGAGCCGTCTTCTGTTCCATGGAGACTGGCACATGGACATTGAACAGGCGAACCTGCACCAGCTGGCCACTGAGGATCCATACAACACAACTGAAAATATGCACTGGGAGTGGAGCCACCTGTCTTTTCATTGGAAACCTGGTCAGTTTGTGTTCAAGGGTGACTTGGATATCAACGTGAGAACAGCCTCTAAGTATGACGACTGCTGCTTCCTTCACCTGCCTGACCTCTGCATGACACTGGACCTGCAGTGGCTGTGCCATGGGAACCCCCATGATCACCATAGTGTCACTCTGCGGGCCCCAGAGTTCCTGCCTGAGGTGCCCTTGGGCCAGCTTCATGACTCCTACCGGGCCTTTCGCTCGGAGAACCTCAATCTCTCCATCAAGATGGATCTGACTCGGCACAGTGGAACAATATCCCAGCCCCGAATTCTGCTATATAGTAGTACCCTGCGCTGGATGCAAAACTTCTGGGCAACTTGGACAAGTGTCACAAGGCCTATCTGCAGGGGAAAGCTCTTCAATAACCTGAAACCCAGCAAGAAGAAACTTGGTCAGCACTACAAGCAACTTTCCTATACAGCCCTCTTTCCCCAGCTGCAGGTACATTATTGGGCCTCATTTGCCCAGCAACGGGGCATCCAGATTGAGTGCAGTCAGGGCCATGTCTTCACTCGGGGGACTCAGCGGCTTATACCTCAAGCAGGCACAGTGATGCGGCGCCTTATCTCTGATTGGAGTGTTACCCAGATGGTGAGTGACCTAAGTCAGGTGACCGTTCACCTGATGGCCTCACCCACTGAAGAGAATGCTGATCACTGTCTTGATCCCTTGGTAACAAAGACCCACCTGCTGAGCTTGTCCTCCCTCACCTACCAACGGCATAGCAATCGCACAGCTGAGGAGGAGCTCTCTGCTCGTGATGGGGATCCTACCTTTCATACACATCAGCTGCACTTAGTAGATTTACGGATTTCCTGGACAACTACCAATCGAGACATTGCCTTTGGGTTATATGATGGGTACAAAAAGGCAGCTGTACTCAAACGTAATCTTTCTACTGAGGCCCTGAAGGGGTTAAAGATTGATCCACAGATGCCAGCCAAAAAGCCAAAGCGGGGTGTCCCAACTAGTGCCTCAGCCCCACCTCGTGTTAACACTCCCAGCTTCAGTGGACAACCTGATAAGGGGTCATCAGGAGGTGCTTACATGTTGCAGAAGCTAATTGAAGAGACAGATAGGTTTGTAGTGTTCACAGAAGAGGAATCAGGCATGAGTGACCAGTTGTGTGGCATTGCTGCCTGCCAGACGGATGACATATACAACCGAAACTGCCTTATTGAATTGGTCAACTGTCAGATGGTTCTTCGTGGAGCAGAGACAGAAGGCTGTGTCATTGTGTCAGCTGCCAAAGCCCAACTGCTGCAGTGCCAGCACCATCCAGCCTGGTATGGTGATACATTGAAGCAAAAGACATCCTGGACTTGCCTCTTGGATGGCATGCAGTACTTTGCCACCACTGAAAGCAGCCCCACAGAGCAGGATGGCCGACAGCTCTGGTTAGAGGTGAAGAATATCGAGGAGCACCGGCAGCGTAGTCTGGACTCTGTGCAGGAGCTGATGGAGAGTGGGCAGGCAGTGGGCGGCATGGTTACCACAACCACAGATTGGAACCAGCCAGCTGAGGCACAGCAAGCCCAGCAAGTCCAGCGGATCATTTCGCGTTGCAACTGCCGAATGTACTATATTAGTTACAGCCATGACATTGATCCTGAACTAGCAACTCAGATTAAGCCACCTGAAGTTCTTGAGAACCAGGAAAAGGAAGATCTCCTAAAGAAGCAGGAAGGGGCTGTGGATACCTTCACCCTTATCCACCATGAGCTGGAAATTTCCACCAACCCAGCTCAGTATGCCATGATCCTGGACATTGTCAACAACCTGCTGCTCCATGTAGAACCTAAGCGGAAGGAACATAGTGAGAAGAAGCAACGGGTCAGGTTCCAGCTTGAGATCTCTAGCAATCCAGAGGAGCAACGCAGCAGCATACTGCATTTGCAGGAGGCTGTGCGGCAGCATGTGGCCCAAATACGACAGCTGGAGAAGCAGATGTATTCTATCATGAAGTCTTTGCAGGATGACAGCAAGAATGAGAATCTGCTTGACCTGAACCAGAAGCTTCAGTTGCAGCTAAACCAGGAGAAGGCCAACCTGCAGCTGGAAAGTGAAGAACTGAATATCCTCATCAGGTGTTTTAAGGATTTCCAACTGCAGCGGGCTAACAAGATGGAGCTGCGAAAGCAGCAAGAAGATGTGAGTGTGGTCCGTCGCACTGAGTTTTACTTTGCTCAGGCACGGTGGCGCCTGACAGAGGAAGATGGACAGCTGGGAATTGCTGAATTAGAACTGCAGAGGTTCCTCTACAGCAAGGTGAATAAGTCTGATGACACAGCAGAACATCTTCTGGAGTTGGGCTGGTTTACCATGAACAACCTCCTCCCCAATGCTGTCTATAAGGTAGTACTGCGGCCCCAGAGCTCCTGCCAGTCTGGGCGACAGCTAGCTCTCCGCCTCTTCAGCAAAGTTCGGCCCCCTGTTGGGGGTATCTCTGTTAAGGAGCATTTTGAGGTAAATGTGGTGCCTCTCACCATCCAGCTGACACACCAGTTCTTCCACAGAATGATGGGCTTTTTCTTTCCTGGCCGAAGTGTGGAAGATGATGAAGTTGGTGATGAAGAGGATAAGTCCAAACTGGTGACTACTGGAATACCAGTGGTGAAGCCTCGGCAGCTGATTGCAACAGATGATGCAGTACCACTGGGCCCTGGGAAGGGTGTGGCACAGGGTTTGACTCGGAGTTCTGGGGTCAGAAGGTCATTTCGCAAATCGCCAGAGCACCCTGTGGATGACATTGACAAGATGAAAGAGCGAGCTGCCATGAACAACTCCTTCATCTACATAAAGATTCCACAGGTTCCACTGTGTGTCAGCTACAAGGGTGAGAAGAACAGTGTGGACTGGGGTGACCTTAACCTGGTGCTGCCCTGTCTGGAGTACCACAACAACACATGGACATGGCTAGACTTTGCCATGGCTGTCAAAAGGGACAGCCGCAAAGCCCTGGTTGCCCAGGTAATCAAAGAGAAGCTAAGGCTGAAGTCTGCAACAGGCTCTGAGGTCCGGGGAAAGCTAGAAACTAAATCGGACCTGAACATGCAACAGCAGGAAGAGGAGGAGAAAGCCCGGCTCCTCATTGGTTTAAGTGTGGGCGACAAGAACCCTGGCAAGAAGTCCATCTTTGGCAGGCGCAAATGA
Amino sequence
MPLFFSALLVLLLVALSALFLGRWLVVRLATKWCQRKLQAELKIGSFRFFWIQNVSLKFQQHQQTVEIDNLWISSKLLSHDLPHYVALCFGEVRIRTDLQKVSDLSAPFSQSAGVDQKELSFSPSLLKIFCQLFSIHVDAINIMVLKVDTSESLWHIQISRSRFLLDSDGKRLICEVSLCKINSKVLKSGQLEDTCLVELSLALDLCLKVGISSRHLTAITVDVWTLHAELHEGLFQSQLLCQGPSLASKPVPCSEVTENLVEPTLPGLFLLQQLPDQVKVKMENTSVVLSMNSQKRHLTWTLKLLQFLYHRDEDQLPLRSFTANSDMAQMSTELLLEDGLLLSQSRQRIVCLNSLKASVQVTTIDLSASLVLNTCIIHYRHQEFSHWLHLLALETQGSSSPVLKQRKKRTFPQILAPIIFSTSISNVNISIQLGDTPPFALGFNSISLDYQHLRPQSIHQRGVLTVDHLCWRVGSDSHIQRAPHPPNMHVWGEALVLDSFTLQGSYNQPLGLSSTQSDTLFLDCTIRGLQVEASDTCAQCLSRILSLMGPQSGKSAVSRHSSFGESVSLLWKVDLKVEDMNLFTLSALVGASEVRLDTLTILGSAETSTVGIQGLVLALVKSVTEKMQPCCKAPDIPTPVLSLSMLSITYHSSIRSLEVQCGAGLTLLWSPPDHMYLYQHVLATLQCRDLLRATVFPETVPSLALETSGTTSELEGRAPEPLPPKRLLNLTLEVSTAKLTAFVAEDKFITLAAESVSLSRHGGSLQAYCPELAAGFDGNSIFNFKEVEVQLLPELEEMILHRNPFPALQTLRNRVWLLSFGSVSVEFPYQYDFSRTLDEAVGVQKWLKGLHQGTRAWASPSPVPLPPDLLLKVEHFSWVFLDDVFEVKLHDNYELMKDESKESAKRLQLLDAKVAALRKQHGELLPARKIEELYASLERKNIEIYIQRSRRLYGNTPMRRALLTWSLAGLELVALADASFHGPEHVVEQVQELDPGSPFPPEGLDLVIQWCRMLKCNVKSFLVRIRDYPRYLFEIRDWRLMGRLVGTEQSGQPCSRRRQILHLGLPWGNVAVERNMPPLKFYHDFHSEIFQYTVVWGPCWDPAWTLIGQCVDLLTKPSADPSPPLPWWDKSRLLFHGDWHMDIEQANLHQLATEDPYNTTENMHWEWSHLSFHWKPGQFVFKGDLDINVRTASKYDDCCFLHLPDLCMTLDLQWLCHGNPHDHHSVTLRAPEFLPEVPLGQLHDSYRAFRSENLNLSIKMDLTRHSGTISQPRILLYSSTLRWMQNFWATWTSVTRPICRGKLFNNLKPSKKKLGQHYKQLSYTALFPQLQVHYWASFAQQRGIQIECSQGHVFTRGTQRLIPQAGTVMRRLISDWSVTQMVSDLSQVTVHLMASPTEENADHCLDPLVTKTHLLSLSSLTYQRHSNRTAEEELSARDGDPTFHTHQLHLVDLRISWTTTNRDIAFGLYDGYKKAAVLKRNLSTEALKGLKIDPQMPAKKPKRGVPTSASAPPRVNTPSFSGQPDKGSSGGAYMLQKLIEETDRFVVFTEEESGMSDQLCGIAACQTDDIYNRNCLIELVNCQMVLRGAETEGCVIVSAAKAQLLQCQHHPAWYGDTLKQKTSWTCLLDGMQYFATTESSPTEQDGRQLWLEVKNIEEHRQRSLDSVQELMESGQAVGGMVTTTTDWNQPAEAQQAQQVQRIISRCNCRMYYISYSHDIDPELATQIKPPEVLENQEKEDLLKKQEGAVDTFTLIHHELEISTNPAQYAMILDIVNNLLLHVEPKRKEHSEKKQRVRFQLEISSNPEEQRSSILHLQEAVRQHVAQIRQLEKQMYSIMKSLQDDSKNENLLDLNQKLQLQLNQEKANLQLESEELNILIRCFKDFQLQRANKMELRKQQEDVSVVRRTEFYFAQARWRLTEEDGQLGIAELELQRFLYSKVNKSDDTAEHLLELGWFTMNNLLPNAVYKVVLRPQSSCQSGRQLALRLFSKVRPPVGGISVKEHFEVNVVPLTIQLTHQFFHRMMGFFFPGRSVEDDEVGDEEDKSKLVTTGIPVVKPRQLIATDDAVPLGPGKGVAQGLTRSSGVRRSFRKSPEHPVDDIDKMKERAAMNNSFIYIKIPQVPLCVSYKGEKNSVDWGDLNLVLPCLEYHNNTWTWLDFAMAVKRDSRKALVAQVIKEKLRLKSATGSEVRGKLETKSDLNMQQQEEEEKARLLIGLSVGDKNPGKKSIFGRRK*