ENST00000698881.1 PTPRJ
Information
- Transcript ID
- ENST00000698881.1
- Genome
- hg38
- Position
- chr11:47,980,425-48,170,839
- Strand
- +
- CDS length
- 4,356
- Amino acid length
- 1,452
- Gene symbol
- PTPRJ
- Gene type
- protein-coding
- Gene description
- protein tyrosine phosphatase receptor type J
- Gene Entrez Gene ID
- 5795
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 |
|---|---|---|
| 1 | 47,980,425 | 47,981,008 |
| 2 | 48,110,058 | 48,110,076 |
| 3 | 48,112,747 | 48,112,983 |
| 4 | 48,121,003 | 48,121,266 |
| 5 | 48,123,613 | 48,123,870 |
| 6 | 48,124,968 | 48,125,186 |
| 7 | 48,127,780 | 48,128,043 |
| 8 | 48,130,459 | 48,130,716 |
| 9 | 48,136,039 | 48,136,296 |
| 10 | 48,137,003 | 48,137,281 |
| 11 | 48,139,486 | 48,139,776 |
| 12 | 48,142,919 | 48,143,050 |
| 13 | 48,144,675 | 48,144,885 |
| 14 | 48,145,000 | 48,145,124 |
| 15 | 48,146,876 | 48,146,963 |
| 16 | 48,149,447 | 48,149,488 |
| 17 | 48,149,990 | 48,149,998 |
| 18 | 48,150,096 | 48,150,183 |
| 19 | 48,153,796 | 48,153,886 |
| 20 | 48,155,801 | 48,155,874 |
| 21 | 48,155,985 | 48,156,119 |
| 22 | 48,159,930 | 48,160,049 |
| 23 | 48,163,458 | 48,163,618 |
| 24 | 48,164,380 | 48,164,515 |
| 25 | 48,167,204 | 48,170,839 |
CDS
| Exon number | Type | Start | Stop |
|---|---|---|---|
| 1 | CDS | 47,980,571 | 47,981,008 |
| 2 | CDS | 48,110,058 | 48,110,076 |
| 3 | CDS | 48,112,747 | 48,112,983 |
| 4 | CDS | 48,121,003 | 48,121,266 |
| 5 | CDS | 48,123,613 | 48,123,870 |
| 6 | CDS | 48,124,968 | 48,125,186 |
| 7 | CDS | 48,127,780 | 48,128,043 |
| 8 | CDS | 48,130,459 | 48,130,716 |
| 9 | CDS | 48,136,039 | 48,136,296 |
| 10 | CDS | 48,137,003 | 48,137,281 |
| 11 | CDS | 48,139,486 | 48,139,776 |
| 12 | CDS | 48,142,919 | 48,143,050 |
| 13 | CDS | 48,144,675 | 48,144,885 |
| 14 | CDS | 48,145,000 | 48,145,124 |
| 15 | CDS | 48,146,876 | 48,146,963 |
| 16 | CDS | 48,149,447 | 48,149,488 |
| 17 | CDS | 48,149,990 | 48,149,998 |
| 18 | CDS | 48,150,096 | 48,150,183 |
| 19 | CDS | 48,153,796 | 48,153,886 |
| 20 | CDS | 48,155,801 | 48,155,874 |
| 21 | CDS | 48,155,985 | 48,156,119 |
| 22 | CDS | 48,159,930 | 48,160,049 |
| 23 | CDS | 48,163,458 | 48,163,618 |
| 24 | CDS | 48,164,380 | 48,164,515 |
| 25 | CDS | 48,167,204 | 48,167,362 |
Other genome
| Genome | Chromosome | Start | End | Links |
|---|---|---|---|---|
| hg19 | chr11 | 48,001,977 | 48,192,391 | Link |
CDS sequence
ATGACGCGCGGAGGAGGCAGCGGGAGCAGCCGCGGGAGCCGGGACCGGGTAGCCGCGCGCTGGGGGTGGGCGCCGCTCGCTCCGCCCCGCGAAGCCCCTGCGCGCTCAGGGACGCGGCCCCCCCGCGGCAGCCGCGCTAGGCTCCGGCGTGTGGCCGCGGCCGCCGCCGCCGCTGCCATGTCTCCGGGGAAGCCCGGGGCGGGCGGAGCGGGGACGAGGCGGACCGGCTGGCGGAGGAGGAGGCGAAGGAGACGGCAGGAGGCGGCGACGACGGTGCCCGGGCTCGGGCGCACGGCGGGGCCCGATTCGCGCGTCCGGGGCACGTTCCAGGGCGCGCGGGGCATGAAGCCGGCGGCGCGGGAGGCGCGGCTGCCTCCGCGCTCGCCCGGGCTGCGCTGGGCGCTGCCGCTGCTGCTGCTGCTGCTGCGCCTGGGCCAGATCCTGTGCGCAGGTGGCACCCCTAGTCCAATTCCTGACCCTTCAGTAGCAACTGTTGCCACAGGGGAAAATGGCATAACGCAGATCAGCAGTACAGCAGAATCCTTTCATAAACAGAATGGAACTGGAACACCTCAGGTGGAAACAAACACCAGTGAGGATGGTGAAAGCTCTGGAGCCAACGATAGTTTAAGAACACCTGAACAAGGATCTAATGGGACTGATGGGGCATCTCAAAAAACTCCCAGTAGCACTGGGCCCAGTCCTGTGTTTGACATTAAAGCTGTTTCCATCAGTCCAACCAATGTGATCTTAACTTGGAAAAGTAATGACACAGCTGCTTCTGAGTACAAGTATGTAGTAAAGCATAAGATGGAAAATGAGAAGACAATTACTGTTGTGCATCAACCATGGTGTAACATCACAGGCTTACGTCCAGCGACTTCATATGTATTCTCCATCACTCCAGGAATAGGCAATGAGACTTGGGGAGATCCCAGAGTCATAAAAGTCATCACAGAGCCGATCCCAGTTTCTGATCTCCGTGTTGCCCTCACGGGTGTGAGGAAGGCTGCTCTCTCCTGGAGCAATGGCAATGGCACTGCCTCCTGCCGGGTTCTTCTTGAAAGCATTGGAAGCCATGAGGAGTTGACTCAAGACTCAAGACTTCAGGTCAATATCTCGGGCCTGAAGCCAGGGGTTCAATACAACATCAACCCGTATCTTCTACAATCAAATAAGACAAAGGGAGACCCCTTGGGCACAGAAGGTGGCTTGGATGCCAGCAATACAGAGAGAAGCCGGGCAGGGAGCCCCACCGCCCCTGTGCATGATGAGTCCCTCGTGGGACCTGTGGACCCATCCTCCGGCCAGCAGTCCCGAGACACGGAAGTCCTGCTTGTCGGGTTAGAGCCTGGCACCCGATACAATGCCACCGTTTATTCCCAAGCAGCGAATGGCACAGAAGGACAGCCCCAGGCCATAGAGTTCAGGACAAATGCTATTCAGGTTTTTGACGTCACCGCTGTGAACATCAGTGCCACAAGCCTGACCCTGATCTGGAAAGTCAGCGATAACGAGTCGTCATCTAACTATACCTACAAGATACATGTGGCGGGGGAGACAGATTCTTCCAATCTCAACGTCAGTGAGCCTCGCGCTGTCATCCCCGGACTCCGCTCCAGCACCTTCTACAACATCACAGTGTGTCCTGTCCTAGGTGACATCGAGGGCACGCCGGGCTTCCTCCAAGTGCACACCCCCCCTGTTCCAGTTTCTGACTTCCGAGTGACAGTGGTCAGCACGACGGAGATCGGCTTAGCATGGAGCAGCCATGATGCAGAATCATTTCAGATGCATATCACACAGGAGGGAGCTGGCAATTCTCGGGTAGAAATAACCACCAACCAAAGTATTATCATTGGTGGCTTGTTCCCTGGAACCAAGTATTGCTTTGAAATAGTTCCAAAAGGACCAAATGGGACTGAAGGGGCATCTCGGACAGTTTGCAATAGAACTGTTCCCAGTGCAGTGTTTGACATCCACGTGGTCTACGTCACCACCACGGAGATGTGGCTGGACTGGAAGAGCCCTGACGGTGCTTCCGAGTATGTCTACCATTTAGTCATAGAGTCCAAGCATGGCTCTAACCACACAAGCACGTATGACAAAGCGATTACTCTCCAGGGCCTGATTCCGGGCACCTTATATAACATCACCATCTCTCCAGAAGTGGACCACGTCTGGGGGGACCCCAACTCCACTGCACAGTACACACGGCCCAGCAATGTGTCCAACATTGATGTAAGTACCAACACCACAGCAGCAACTTTAAGTTGGCAGAACTTTGATGACGCCTCTCCCACGTACTCCTACTGCCTTCTTATTGAGAAGGCTGGAAATTCCAGCAACGCAACACAAGTAGTCACGGACATTGGAATTACTGACGCTACAGTCACTGAATTAATACCTGGCTCATCATACACAGTGGAGATCTTTGCACAAGTAGGGGATGGGATCAAGTCACTGGAACCTGGCCGGAAGTCATTCTGTACAGATCCTGCGTCCATGGCCTCCTTCGACTGCGAAGTGGTCCCCAAAGAGCCAGCCCTGGTTCTCAAATGGACCTGCCCTCCTGGCGCCAATGCAGGCTTTGAGCTGGAGGTCAGCAGTGGAGCCTGGAACAATGCGACCCACCTGGAGAGCTGCTCCTCTGAGAATGGCACTGAGTATAGAACGGAAGTCACGTATTTGAATTTTTCTACCTCGTACAACATCAGCATCACCACTGTGTCCTGTGGAAAGATGGCAGCCCCCACCCGGAACACCTGCACTACTGGCATCACAGATCCCCCTCCTCCAGATGGATCCCCTAATATTACATCTGTCAGTCACAATTCAGTAAAGGTCAAGTTCAGTGGATTTGAAGCCAGCCACGGACCCATCAAAGCCTATGCTGTCATTCTCACCACCGGGGAAGCTGGTCACCCTTCTGCAGATGTCCTGAAATACACGTATGAGGATTTCAAAAAGGGAGCCTCAGATACTTATGTGACATACCTCATAAGAACAGAAGAAAAGGGACGTTCTCAGAGCTTGTCTGAAGTTTTGAAATATGAAATTGACGTTGGGAATGAGTCAACCACACTTGGTTATTACAATGGGAAGCTGGAACCTCTGGGCTCCTACCGGGCTTGTGTGGCTGGCTTCACCAACATTACCTTCCACCCTCAAAACAAGGGGCTCATTGATGGGGCTGAGAGCTATGTGTCCTTCAGTCGCTACTCAGATGCTGTTTCCTTGCCCCAGGATCCAGGTGTCATCTGTGGAGCGGTTTTTGGCTGTATCTTTGGTGCCCTGGTTATTGTGACTGTGGGAGGCTTCATCTTCTGGAGAAAGAAGAGGAAAGATGCAAAGAATAATGAAGTGTCCTTTTCTCAAATTAAACCTAAAAAATCTAAGTTAATCAGAGTGGAGAATTTTGAGGCCTACTTCAAGAAGCAGCAAGCTGACTCCAACTGTGGGTTCGCAGAGGAATACGAAGATCTGAAGCTTGTTGGAATTAGTCAACCTAAATATGCAGCAGAACTGGCTGAGAATAGAGGAAAGAATCGCTATAATAATGTTCTGCCCTATGATATTTCCCGTGTCAAACTTTCGGTCCAGACCCATTCAACGGATGACTACATCAATGCCAACTACATGCCTGGCTACCACTCCAAGAAAGATTTTATTGCCACACAAGGACCTTTACCGAACACTTTGAAAGATTTTTGGCGTATGGTTTGGGAGAAAAATGTATATGCCATCATTATGTTGACTAAATGTGTTGAACAGGGAAGAACCAAATGTGAGGAGTATTGGCCCTCCAAGCAGGCTCAGGACTATGGAGACATAACTGTGGCAATGACATCAGAAATTGTTCTTCCGGAATGGACCATCAGAGATTTCACAGTGAAAAATATCCAGACAAGTGAGAGTCACCCTCTGAGACAGTTCCATTTCACCTCCTGGCCAGACCACGGTGTTCCCGACACCACTGACCTGCTCATCAACTTCCGGTACCTCGTTCGTGACTACATGAAGCAGAGTCCTCCCGAATCGCCGATTCTGGTGCATTGCAGTGCTGGGGTCGGAAGGACGGGCACTTTCATTGCCATTGATCGTCTCATCTACCAGATAGAGAATGAGAACACCGTGGATGTGTATGGGATTGTGTATGACCTTCGAATGCATAGGCCTTTAATGGTGCAGACAGAGGACCAGTATGTTTTCCTCAATCAGTGTGTTTTGGATATTGTCAGATCCCAGAAAGACTCAAAAGTAGATCTTATCTACCAGAACACAACTGCAATGACAATCTATGAAAACCTTGCGCCCGTGACCACATTTGGAAAGACCAATGGTTACATCGCCTAA
Amino sequence
MTRGGGSGSSRGSRDRVAARWGWAPLAPPREAPARSGTRPPRGSRARLRRVAAAAAAAAMSPGKPGAGGAGTRRTGWRRRRRRRRQEAATTVPGLGRTAGPDSRVRGTFQGARGMKPAAREARLPPRSPGLRWALPLLLLLLRLGQILCAGGTPSPIPDPSVATVATGENGITQISSTAESFHKQNGTGTPQVETNTSEDGESSGANDSLRTPEQGSNGTDGASQKTPSSTGPSPVFDIKAVSISPTNVILTWKSNDTAASEYKYVVKHKMENEKTITVVHQPWCNITGLRPATSYVFSITPGIGNETWGDPRVIKVITEPIPVSDLRVALTGVRKAALSWSNGNGTASCRVLLESIGSHEELTQDSRLQVNISGLKPGVQYNINPYLLQSNKTKGDPLGTEGGLDASNTERSRAGSPTAPVHDESLVGPVDPSSGQQSRDTEVLLVGLEPGTRYNATVYSQAANGTEGQPQAIEFRTNAIQVFDVTAVNISATSLTLIWKVSDNESSSNYTYKIHVAGETDSSNLNVSEPRAVIPGLRSSTFYNITVCPVLGDIEGTPGFLQVHTPPVPVSDFRVTVVSTTEIGLAWSSHDAESFQMHITQEGAGNSRVEITTNQSIIIGGLFPGTKYCFEIVPKGPNGTEGASRTVCNRTVPSAVFDIHVVYVTTTEMWLDWKSPDGASEYVYHLVIESKHGSNHTSTYDKAITLQGLIPGTLYNITISPEVDHVWGDPNSTAQYTRPSNVSNIDVSTNTTAATLSWQNFDDASPTYSYCLLIEKAGNSSNATQVVTDIGITDATVTELIPGSSYTVEIFAQVGDGIKSLEPGRKSFCTDPASMASFDCEVVPKEPALVLKWTCPPGANAGFELEVSSGAWNNATHLESCSSENGTEYRTEVTYLNFSTSYNISITTVSCGKMAAPTRNTCTTGITDPPPPDGSPNITSVSHNSVKVKFSGFEASHGPIKAYAVILTTGEAGHPSADVLKYTYEDFKKGASDTYVTYLIRTEEKGRSQSLSEVLKYEIDVGNESTTLGYYNGKLEPLGSYRACVAGFTNITFHPQNKGLIDGAESYVSFSRYSDAVSLPQDPGVICGAVFGCIFGALVIVTVGGFIFWRKKRKDAKNNEVSFSQIKPKKSKLIRVENFEAYFKKQQADSNCGFAEEYEDLKLVGISQPKYAAELAENRGKNRYNNVLPYDISRVKLSVQTHSTDDYINANYMPGYHSKKDFIATQGPLPNTLKDFWRMVWEKNVYAIIMLTKCVEQGRTKCEEYWPSKQAQDYGDITVAMTSEIVLPEWTIRDFTVKNIQTSESHPLRQFHFTSWPDHGVPDTTDLLINFRYLVRDYMKQSPPESPILVHCSAGVGRTGTFIAIDRLIYQIENENTVDVYGIVYDLRMHRPLMVQTEDQYVFLNQCVLDIVRSQKDSKVDLIYQNTTAMTIYENLAPVTTFGKTNGYIA*