Identification
HMDB Protein ID CDBP02126
Secondary Accession Numbers Not Available
Name Inositol 1,4,5-trisphosphate receptor type 1
Description Not Available
Synonyms
  1. IP3 receptor isoform 1
  2. IP3R 1
  3. InsP3R1
  4. Type 1 InsP3 receptor
  5. Type 1 inositol 1,4,5-trisphosphate receptor
Gene Name ITPR1
Protein Type Receptor
Biological Properties
General Function Involved in calcium channel activity
Specific Function Intracellular channel that mediates calcium release from the endoplasmic reticulum following stimulation by inositol 1,4,5- trisphosphate
GO Classification
Component
intracellular membrane-bounded organelle
membrane
cell part
endoplasmic reticulum
organelle
membrane-bounded organelle
Function
intracellular ligand-gated ion channel activity
inositol 1,4,5-trisphosphate-sensitive calcium-release channel activity
transmembrane transporter activity
substrate-specific transmembrane transporter activity
ion transmembrane transporter activity
transporter activity
ion channel activity
cation channel activity
calcium channel activity
ligand-gated ion channel activity
Process
transmembrane transport
ion transport
cation transport
di-, tri-valent inorganic cation transport
divalent metal ion transport
calcium ion transport
establishment of localization
transport
Cellular Location
  1. Endoplasmic reticulum membrane
  2. Multi-pass membrane protein
Pathways
Gene Properties
Chromosome Location Chromosome:3
Locus 3p26.1
SNPs ITPR1
Gene Sequence
>8088 bp
ATGTCTGACAAAATGTCTAGCTTCCTACATATTGGAGACATTTGTTCTCTGTACGCGGAG
GGATCGACAAATGGATTTATTAGCACCTTGGGCCTGGTTGATGATCGTTGTGTTGTACAG
CCAGAAACCGGGGACCTTAACAATCCACCTAAGAAATTCAGAGACTGCCTCTTTAAGCTA
TGTCCCATGAACCGCTACTCTGCCCAAAAGCAGTTCTGGAAAGCCGCTAAGCCTGGGGCC
AACAGCACCACAGACGCAGTGCTACTCAACAAACTGCACCACGCTGCAGACTTGGAAAAG
AAGCAGAATGAGACAGAAAACAGGAAATTGCTGGGGACCGTAATCCAGTATGGCAATGTG
ATCCAGCTCCTGCATTTGAAAAGTAATAAATACCTAACAGTGAATAAGAGGCTTCCTGCT
CTGTTGGAGAAGAATGCCATGAGAGTCACATTGGACGAGGCTGGAAATGAAGGGTCCTGG
TTTTATATTCAGCCATTCTACAAGCTGCGATCCATTGGAGACAGCGTGGTCATAGGTGAC
AAGGTGGTTCTGAACCCCGTCAATGCTGGTCAGCCCCTACATGCTAGCAGCCATCAACTG
GTAGATAACCCAGGCTGCAATGAGGTCAATTCCGTCAACTGCAATACAAGCTGGAAAATA
GTCCTTTTCATGAAATGGAGTGATAACAAAGACGACATATTAAAGGGGGGTGACGTGGTG
AGGCTGTTTCATGCTGAGCAGGAGAAGTTTCTCACCTGTGACGAACACAGGAAGAAGCAG
CACGTCTTCCTGAGAACCACGGGCCGGCAGTCGGCCACATCTGCCACCAGTTCAAAAGCC
CTGTGGGAGGTGGAGGTGGTCCAGCATGACCCATGTCGGGGCGGAGCAGGGTATTGGAAC
AGCCTTTTCCGTTTCAAGCATCTGGCCACGGGGCATTACTTGGCAGCAGAGGTGGACCCT
GATCAGGACGCCTCTCGAAGTAGGTTGCGGAATGCCCAAGAAAAGATGGTATACTCCCTG
GTCTCTGTGCCTGAAGGCAATGACATCTCCTCCATTTTCGAGCTAGATCCCACCACTCTG
CGTGGAGGTGACAGCCTTGTCCCAAGGAACTCTTATGTTCGGCTCAGACACCTATGTACT
AATACCTGGGTTCACAGCACAAATATTCCTATTGACAAGGAAGAAGAAAAGCCCGTGATG
CTGAAAATTGGCACCTCTCCTGTGAAGGAGGATAAGGAAGCATTTGCCATAGTTCCGGTT
TCTCCTGCTGAAGTTCGGGACCTGGACTTTGCCAATGATGCCAGCAAGGTGCTGGGCTCC
ATTGCTGGGAAGCTAGAGAAGGGCACCATCACCCAGAATGAAAGGAGGTCTGTAACCAAG
CTGCTAGAAGATTTGGTTTACTTCGTCACTGGTGGAACTAATTCTGGTCAAGATGTTCTC
GAAGTTGTCTTCTCCAAGCCCAACAGAGAACGGCAGAAACTGATGAGAGAACAGAATATT
CTCAAGCAGATCTTCAAGTTGTTACAAGCCCCATTCACAGACTGCGGTGATGGCCCAATG
CTTCGGCTGGAAGAGCTCGGGGACCAGCGGCACGCTCCTTTCAGACACATCTGCCGGCTC
TGCTACAGGGTGCTGAGACACTCGCAGCAAGACTACAGGAAGAACCAGGAGTATATAGCC
AAGCAGTTTGGCTTCATGCAGAAGCAGATTGGCTATGATGTGTTGGCTGAAGACACTATC
ACTGCCCTGCTCCACAATAATCGGAAACTCCTGGAAAAACACATTACCGCGGCAGAGATT
GACACATTTGTCAGCCTGGTGCGAAAGAACAGGGAGCCCAGATTCTTAGATTACCTCTCC
GACCTCTGTGTCTCCATGAACAAATCAATTCCAGTGACCCAGGAACTGATATGTAAAGCT
GTGCTGAACCCCACCAACGCTGACATCCTGATTGAGACCAAGTTGGTTCTTTCTCGTTTT
GAATTTGAAGGTGTCTCTTCCACTGGAGAGAATGCTCTGGAGGCAGGAGAAGACGAGGAA
GAGGTGTGGCTGTTTTGGAGGGACAGCAACAAAGAGATTCGCAGCAAGAGTGTGAGGGAA
TTGGCTCAGGATGCTAAAGAAGGGCAGAAGGAGGACCGAGACGTTCTCAGCTACTACAGA
TATCAGCTGAACCTCTTTGCGAGGATGTGTCTGGACCGCCAATACCTGGCCATCAACGAA
ATCTCAGGCCAGCTGGATGTCGATCTCATTCTCCGCTGCATGTCTGACGAGAACCTGCCC
TATGACCTCAGGGCGTCCTTCTGCCGCCTCATGCTTCACATGCATGTGGACCGAGATCCC
CAGGAACAAGTCACCCCCGTGAAATATGCCCGCCTCTGGTCGGAGATTCCCTCGGAGATC
GCCATTGACGACTATGATAGTAGTGGAGCTTCCAAAGATGAAATTAAGGAGAGATTTGCT
CAGACCATGGAGTTTGTGGAGGAGTATTTAAGAGATGTGGTTTGTCAGAGGTTCCCTTTC
TCTGATAAAGAGAAGAATAAGCTTACGTTTGAGGTTGTAAATTTAGCTAGGAATCTCATA
TACTTTGGTTTCTACAACTTCTCTGACCTTCTACGATTAACTAAGATCCTTCTGGCCATA
TTGGACTGTGTACATGTGACAACAATCTTCCCCATTAGCAAGATGGCGAAAGGAGAAGAG
AATAAAGGCAGTAACGTGATGAGATCTATTCATGGCGTGGGAGAGCTGATGACCCAGGTG
GTGCTCCGGGGAGGAGGCTTTTTGCCCATGACTCCCATGGCTGCTGCCCCTGAAGGCAAT
GTGAAGCAGGCAGAGCCTGAGAAGGAGGACATCATGGTCATGGACACCAAGCTGAAGATC
ATTGAGATACTCCAGTTTATTTTGAATGTGAGGTTGGATTATAGGATCTCCTGCCTCCTG
TGTATATTTAAGCGAGAGTTTGATGAAAGCAATTCCCAGACTTCAGAAACATCCTCCGGA
AACAGCAGCCAAGAAGGGCCAAGTAATGTACCAGGTGCTCTTGACTTTGAACACATTGAA
GAACAAGCAGAAGGCATCTTTGGAGGAAGTGAGGAGAACACCCCACTGGACTTGGATGAC
CACGGCGGCAGAACCTTTCTCCGTGTCCTGCTCCACTTGACGATGCATGACTACCCACCC
CTGGTGTCAGGGGCCCTGCAGCTCCTCTTCCGGCACTTCAGCCAGAGGCAGGAGGTGCTC
CAGGCCTTCAAACAGGTTCAACTGCTGGTTACCAGCCAAGATGTGGACAACTACAAACAG
ATCAAACAAGACTTGGATCAACTGAGGTCCATCGTGGAAAAGTCAGAGCTTTGGGTGTAC
AAAGGGCAGGGCCCCGATGAGACTATGGATGGTGCATCTGGAGAAAATGAACATAAGAAA
ACGGAGGAGGGAAATAACAAGCCACAAAAGCATGAAAGCACCAGCAGCTACAACTACAGA
GTGGTCAAAGAGATTTTGATTCGGCTTAGCAAACTCTGTGTTCAAGAGAGTGCCTCAGTG
AGAAAGAGCAGGAAGCAGCAACAGCGTCTGCTCCGGAACATGGGCGCGCACGCCGTGGTG
CTGGAGCTGCTGCAGATTCCCTATGAGAAGGCCGAAGATACCAAGATGCAAGAGATAATG
AGGTTGGCTCATGAATTTTTGCAGAATTTCTGCGCAGGCAACCAGCAGAATCAAGCTTTG
CTACATAAACACATAAACCTGTTTCTCAACCCAGGGATCCTGGAGGCAGTAACCATGCAG
CACATCTTCATGAACAATTTCCAGCTTTGCAGTGAGATCAACGAGAGAGTTGTTCAGCAC
TTCGTTCACTGCATAGAGACTCACGGTCGGAATGTCCAGTATATAAAGTTCTTACAGACA
ATTGTCAAGGCAGAAGGGAAATTTATTAAAAAATGCCAAGACATGGTTATGGCCGAGCTG
GTCAATTCGGGAGAGGATGTCCTCGTGTTCTACAACGACAGAGCCTCTTTCCAGACTCTG
ATCCAGATGATGCGGTCAGAACGGGATCGGATGGATGAGAACAGCCCTCTCATGTACCAC
ATCCACTTGGTCGAGCTCCTGGCTGTGTGCACGGAGGGTAAGAATGTCTACACAGAGATC
AAGTGCAACTCCCTGCTCCCGCTGGATGACATCGTTCGCGTGGTGACCCACGAGGACTGC
ATCCCTGAGGTTAAAATTGCATACATTAACTTCCTGAATCACTGCTATGTGGATACAGAG
GTGGAAATGAAGGAGATTTATACCAGCAATCACATGTGGAAATTGTTTGAGAATTTCCTT
GTAGACATCTGCAGGGCCTGTAACAACACTAGTGACAGGAAACATGCAGACTCGATTTTG
GAGAAGTATGTCACCGAAATCGTCATGAGTATTGTTACTACTTTCTTCAGCTCTCCCTTC
TCAGACCAGAGTACGACTTTGCAGACTCGCCAGCCTGTCTTTGTGCAACTGCTGCAAGGC
GTGTTCAGGGTTTACCACTGCAACTGGTTAATGCCAAGCCAAAAAGCCTCCGTGGAGAGC
TGTATTCGGGTGCTGTCTGATGTAGCCAAGAGCCGGGCCATTGCCATTCCCGTGGACCTG
GACAGCCAAGTCAACAACCTCTTTCTCAAGTCCCACAGCATTGTGCAGAAAACAGCCATG
AACTGGCGGCTCTCAGCCCGCAATGCCGCACGCAGGGACTCTGTTCTGGCAGCTTCCAGA
GACTACCGGAATATCATTGAGAGATTGCAGGACATCGTCTCCGCGCTGGAGGACCGTCTC
AGGCCCCTGGTGCAGGCAGAGTTATCTGTGCTCGTGGATGTTCTCCACAGACCCGAGCTG
CTTTTCCCAGAGAACACAGACGCCAGAAGGAAATGTGAAAGTGGCGGTTTCATTTGCAAG
TTAATAAAGCATACAAAACAGCTGCTAGAAGAAAATGAAGAGAAGCTCTGCATTAAGGTC
CTACAGACCCTGAGGGAAATGATGACCAAAGATAGAGGCTATGGAGAAAAGGGTGAGGCG
CTCAGGCAAGTTCTGGTCAACCGTTACTATGGAAACGTCAGACCTTCGGGACGAAGAGAG
AGCCTTACCAGCTTTGGCAATGGCCCACTGTCAGCAGGAGGACCCGGCAAGCCCGGGGGA
GGAGGGGGAGGTTCCGGATCCAGCTCTATGAGCAGGGGTGAGATGAGTCTGGCCGAGGTT
CAGTGTCACCTTGACAAGGAGGGGGCTTCCAATCTAGTTATCGACCTCATCATGAACGCA
TCCAGTGACCGAGTGTTCCATGAAAGCATTCTCCTGGCCATTGCCCTTCTGGAAGGAGGC
AACACCACCATCCAGCACTCCTTTTTCTGTCGCTTGACAGAAGATAAGAAGTCAGAGAAA
TTCTTTAAGGTGTTTTATGACCGGATGAAGGTGGCCCAGCAAGAAATCAAAGCAACAGTG
ACAGTGAACACCAGTGACTTGGGAAATAAAAAGAAAGACGATGAGGTAGACAGGGATGCC
CCATCACGGAAAAAAGCTAAAGAGCCCACAACACAGATAACAGAAGAGGTCCGGGATCAG
CTCCTGGAGGCCTCCGCTGCCACCAGGAAAGCCTTCACCACTTTCAGGAGGGAGGCTGAT
CCCGACGACCACTACCAGCCTGGAGAGGGCACCCAGGCCACTGCCGACAAGGCCAAGGAC
GACCTGGAGATGAGCGCGGTCATCACCATCATGCAGCCCATCCTCCGCTTCCTTCAGCTC
CTGTGTGAAAACCACAACCGAGACCTGCAGAACTTCCTCCGTTGCCAAAATAACAAGACC
AACTACAATTTGGTATGTGAGACCCTGCAGTTTCTGGACTGTATTTGTGGAAGCACAACT
GGAGGCCTTGGTCTTCTGGGCTTGTATATAAATGAAAAGAACGTAGCGCTTATCAACCAA
ACCCTGGAAAGTCTGACCGAATACTGTCAAGGACCTTGCCATGAGAACCAGAACTGCATA
GCCACCCATGAATCCAATGGCATTGACATCATCACAGCCCTGATCCTCAATGATATCAAT
CCTTTGGGAAAGAAGAGGATGGACCTTGTGTTAGAACTGAAGAACAATGCCTCGAAGTTG
CTCCTGGCCATCATGGAAAGCAGGCACGACAGTGAAAACGCAGAGAGGATACTTTATAAC
ATGAGGCCCAAGGAACTGGTGGAAGTGATCAAGAAAGCCTACATGCAAGGTGAAGTGGAA
TTTGAGGATGGAGAAAACGGTGAGGATGGGGCGGCGTCCCCCAGGAACGTGGGGCACAAC
ATCTACATATTAGCCCATCAGTTGGCTCGGCATAACAAAGAACTTCAGAGCATGCTGAAA
CCTGGTGGCCAAGTGGACGGAGATGAAGCCCTGGAGTTTTATGCCAAGCACACGGCGCAG
ATAGAGATTGTCAGATTAGACCGAACAATGGAACAGATAGTCTTTCCCGTGCCCAGCATA
TGTGAATTCCTAACCAAGGAGTCAAAACTACGAATTTACTATACTACAGAGAGAGACGAA
CAAGGCAGCAAAATCAATGATTTCTTTCTGCGGTCTGAAGACCTCTTCAATGAAATGAAT
TGGCAGAAGAAACTGAGAGCCCAGCCCGTGTTGTACTGGTGTGCCCGCAACATGTCTTTC
TGGAGCAGCATTTCGTTTAACCTGGCCGTCCTGATGAACCTGCTGGTGGCGTTTTTCTAC
CCGTTTAAGGGAGTCCGAGGAGGAACCCTGGAGCCCCACTGGTCGGGACTCCTGTGGACA
GCCATGCTCATCTCTCTGGCCATCGTCATTGCCCTCCCCAAGCCCCATGGCATCCGGGCC
TTAATTGCCTCCACAATTCTACGACTGATATTTTCAGTCGGGTTACAACCCACGTTGTTT
CTTCTGGGCGCTTTCAATGTATGCAATAAAATCATCTTTCTAATGAGCTTTGTGGGCAAC
TGTGGGACATTCACAAGAGGCTACCGAGCCATGGTTCTGGATGTTGAGTTCCTCTATCAT
TTGTTGTATCTGGTGATCTGTGCCATGGGGCTCTTTGTCCATGAATTCTTCTACAGTCTG
CTGCTTTTTGATTTAGTGTACAGAGAAGAGACTTTGCTTAATGTCATTAAAAGTGTCACT
CGCAATGGACGGTCCATCATCCTGACAGCAGTTCTGGCTCTGATCCTCGTTTACCTGTTC
TCAATAGTGGGCTATCTTTTCTTCAAGGATGACTTTATCTTGGAAGTAGATAGGCTGCCC
AATGAAACAGCTGTTCCAGAAACCGGCGAGAGTTTGGCAAGCGAGTTCCTGTTCTCCGAT
GTGTGTAGGGTGGAGAGTGGGGAGAACTGCTCCTCTCCTGCACCCAGAGAAGAGCTGGTC
CCTGCAGAAGAGACGGAACAGGATAAAGAGCACACATGTGAGACGCTGCTGATGTGCATT
GTCACTGTGCTGAGTCACGGGCTGCGGAGCGGGGGTGGAGTAGGAGATGTACTCAGGAAG
CCGTCCAAAGAGGAACCCCTGTTTGCTGCTAGAGTTATTTATGACCTCTTGTTCTTCTTC
ATGGTCATCATCATTGTTCTTAACCTGATTTTTGGGGTTATCATTGACACTTTTGCTGAC
CTGAGGAGTGAGAAGCAGAAGAAGGAAGAGATCTTGAAGACCACGTGCTTTATCTGTGGC
TTGGAAAGAGACAAGTTTGACAACAAGACTGTCACCTTTGAAGAGCACATCAAGGAAGAA
CACAACATGTGGCACTATCTGTGCTTCATCGTCCTGGTGAAAGTAAAGGACTCCACCGAA
TATACTGGGCCTGAGAGTTACGTGGCAGAAATGATCAAGGAAAGAAACCTTGACTGGTTC
CCCAGGATGAGAGCCATGTCATTGGTCAGCAGTGATTCTGAAGGAGAACAGAATGAGCTG
AGAAACCTGCAGGAGAAGCTGGAGTCCACCATGAAACTTGTCACGAACCTTTCTGGCCAG
CTGTCGGAATTAAAGGATCAGATGACAGAACAAAGGAAGCAGAAACAAAGAATTGGTCTT
CTAGGACATCCTCCTCACATGAATGTCAACCCACAACAACCAGCATAA
Protein Properties
Number of Residues 2758
Molecular Weight 313942.4
Theoretical pI 5.91
Pfam Domain Function
Signals
  • ["None"]
Transmembrane Regions
  • ["2283-2303", "2315-2335", "2362-2382", "2406-2426", "2449-2469", "2578-2598"]
Protein Sequence
>Inositol 1,4,5-trisphosphate receptor type 1
MSDKMSSFLHIGDICSLYAEGSTNGFISTLGLVDDRCVVQPETGDLNNPPKKFRDCLFKL
CPMNRYSAQKQFWKAAKPGANSTTDAVLLNKLHHAADLEKKQNETENRKLLGTVIQYGNV
IQLLHLKSNKYLTVNKRLPALLEKNAMRVTLDEAGNEGSWFYIQPFYKLRSIGDSVVIGD
KVVLNPVNAGQPLHASSHQLVDNPGCNEVNSVNCNTSWKIVLFMKWSDNKDDILKGGDVV
RLFHAEQEKFLTCDEHRKKQHVFLRTTGRQSATSATSSKALWEVEVVQHDPCRGGAGYWN
SLFRFKHLATGHYLAAEVDPDFEEECLEFQPSVDPDQDASRSRLRNAQEKMVYSLVSVPE
GNDISSIFELDPTTLRGGDSLVPRNSYVRLRHLCTNTWVHSTNIPIDKEEEKPVMLKIGT
SPVKEDKEAFAIVPVSPAEVRDLDFANDASKVLGSIAGKLEKGTITQNERRSVTKLLEDL
VYFVTGGTNSGQDVLEVVFSKPNRERQKLMREQNILKQIFKLLQAPFTDCGDGPMLRLEE
LGDQRHAPFRHICRLCYRVLRHSQQDYRKNQEYIAKQFGFMQKQIGYDVLAEDTITALLH
NNRKLLEKHITAAEIDTFVSLVRKNREPRFLDYLSDLCVSMNKSIPVTQELICKAVLNPT
NADILIETKLVLSRFEFEGVSSTGENALEAGEDEEEVWLFWRDSNKEIRSKSVRELAQDA
KEGQKEDRDVLSYYRYQLNLFARMCLDRQYLAINEISGQLDVDLILRCMSDENLPYDLRA
SFCRLMLHMHVDRDPQEQVTPVKYARLWSEIPSEIAIDDYDSSGASKDEIKERFAQTMEF
VEEYLRDVVCQRFPFSDKEKNKLTFEVVNLARNLIYFGFYNFSDLLRLTKILLAILDCVH
VTTIFPISKMAKGEENKGNNDVEKLKSSNVMRSIHGVGELMTQVVLRGGGFLPMTPMAAA
PEGNVKQAEPEKEDIMVMDTKLKIIEILQFILNVRLDYRISCLLCIFKREFDESNSQTSE
TSSGNSSQEGPSNVPGALDFEHIEEQAEGIFGGSEENTPLDLDDHGGRTFLRVLLHLTMH
DYPPLVSGALQLLFRHFSQRQEVLQAFKQVQLLVTSQDVDNYKQIKQDLDQLRSIVEKSE
LWVYKGQGPDETMDGASGENEHKKTEEGNNKPQKHESTSSYNYRVVKEILIRLSKLCVQE
SASVRKSRKQQQRLLRNMGAHAVVLELLQIPYEKAEDTKMQEIMRLAHEFLQNFCAGNQQ
NQALLHKHINLFLNPGILEAVTMQHIFMNNFQLCSEINERVVQHFVHCIETHGRNVQYIK
FLQTIVKAEGKFIKKCQDMVMAELVNSGEDVLVFYNDRASFQTLIQMMRSERDRMDENSP
LMYHIHLVELLAVCTEGKNVYTEIKCNSLLPLDDIVRVVTHEDCIPEVKIAYINFLNHCY
VDTEVEMKEIYTSNHMWKLFENFLVDICRACNNTSDRKHADSILEKYVTEIVMSIVTTFF
SSPFSDQSTTLQTRQPVFVQLLQGVFRVYHCNWLMPSQKASVESCIRVLSDVAKSRAIAI
PVDLDSQVNNLFLKSHSIVQKTAMNWRLSARNAARRDSVLAASRDYRNIIERLQDIVSAL
EDRLRPLVQAELSVLVDVLHRPELLFPENTDARRKCESGGFICKLIKHTKQLLEENEEKL
CIKVLQTLREMMTKDRGYGEKLISIDELDNAELPPAPDSENSTEELEPSPPLRQLEDHKR
GEALRQVLVNRYYGNVRPSGRRESLTSFGNGPLSAGGPGKPGGGGGGSGSSSMSRGEMSL
AEVQCHLDKEGASNLVIDLIMNASSDRVFHESILLAIALLEGGNTTIQHSFFCRLTEDKK
SEKFFKVFYDRMKVAQQEIKATVTVNTSDLGNKKKDDEVDRDAPSRKKAKEPTTQITEEV
RDQLLEASAATRKAFTTFRREADPDDHYQPGEGTQATADKAKDDLEMSAVITIMQPILRF
LQLLCENHNRDLQNFLRCQNNKTNYNLVCETLQFLDCICGSTTGGLGLLGLYINEKNVAL
INQTLESLTEYCQGPCHENQNCIATHESNGIDIITALILNDINPLGKKRMDLVLELKNNA
SKLLLAIMESRHDSENAERILYNMRPKELVEVIKKAYMQGEVEFEDGENGEDGAASPRNV
GHNIYILAHQLARHNKELQSMLKPGGQVDGDEALEFYAKHTAQIEIVRLDRTMEQIVFPV
PSICEFLTKESKLRIYYTTERDEQGSKINDFFLRSEDLFNEMNWQKKLRAQPVLYWCARN
MSFWSSISFNLAVLMNLLVAFFYPFKGVRGGTLEPHWSGLLWTAMLISLAIVIALPKPHG
IRALIASTILRLIFSVGLQPTLFLLGAFNVCNKIIFLMSFVGNCGTFTRGYRAMVLDVEF
LYHLLYLVICAMGLFVHEFFYSLLLFDLVYREETLLNVIKSVTRNGRSIILTAVLALILV
YLFSIVGYLFFKDDFILEVDRLPNETAVPETGESLASEFLFSDVCRVESGENCSSPAPRE
ELVPAEETEQDKEHTCETLLMCIVTVLSHGLRSGGGVGDVLRKPSKEEPLFAARVIYDLL
FFFMVIIIVLNLIFGVIIDTFADLRSEKQKKEEILKTTCFICGLERDKFDNKTVTFEEHI
KEEHNMWHYLCFIVLVKVKDSTEYTGPESYVAEMIKERNLDWFPRMRAMSLVSSDSEGEQ
NELRNLQEKLESTMKLVTNLSGQLSELKDQMTEQRKQKQRIGLLGHPPHMNVNPQQPA
GenBank ID Protein 269954692
UniProtKB/Swiss-Prot ID Q14643
UniProtKB/Swiss-Prot Entry Name ITPR1_HUMAN
PDB IDs
GenBank Gene ID Not Available
GeneCard ID ITPR1
GenAtlas ID ITPR1
HGNC ID HGNC:6180
References
General References Not Available