TCDB is operated by the Saier Lab Bioinformatics Group
« See all members of the family


1.A.75.1.2
Piezo2 (FAM38b) of 2,752 aas and 37 TMSs in a 4 x 9 + 1 TMS arrangement. It is the major transducer of mechanical force for touch sensation (Ranade et al. 2014) and is a rapidly adapting mechanically activated ion channel expressed in a subset of sensory neurons of the dorsal root ganglion and in cutaneous mechanoreceptors called Merkel cell neurite complexes.  Ranade et al. 2014 showed that touch and pain are mediated by distinct receptors. Piezo2 mediates alloknesis (pathological sensations including itch of dry skin (Feng et al. 2018). In fact, PIEZO2 is a mechanosensitive cation channel that plays a key role in sensing touch, tactile pain, breathing and blood pressure. Wang et al. 2019 described the cryo-EM structure of mouse PIEZO2, which is a three-bladed, propeller-like trimer that comprises 114 TMSs (38 per protomer). TMSs 1-36 (TM1-36) are folded into nine tandem units of four transmembrane helices each to form the unusual non-planar blades. The three blades are collectively curved into a nano-dome of 28-nm diameter and 10-nm depth, with an extracellular cap-like structure embedded in the centre and a 9-nm-long intracellular beam connecting to the central pore. TMS38 and the C-terminal domain are surrounded by the anchor domain and TMS37, and they enclose the central pore with both transmembrane and cytoplasmic constriction sites. Structural comparison between PIEZO2 and its homologue PIEZO1 revealed that the transmembrane constriction site might act as a gate that is controlled by the cap domain (Wang et al. 2019). Up-regulation of Piezo2 in the pain afferent neurons following trigeminal nerve injury may play a role in the development of neuralgia (Liu et al. 2021). Altering expression of the genes encoding Kv1.1, Piezo2, and TRPA1 regulate the response of mechanosensitive muscle nociceptors (Nagaraja et al. 2021). Intrinsically disordered intracellular domains control key features of the mechanically-gated ion channel PIEZO2 (Verkest et al. 2022). Human cutaneous mechanoreceptors can perform mechanotransduction already during embryonic development (García-Mesa et al. 2022). Genetic alterations of Piezo2 have been reported in human cancer (Liu et al. 2022). Piezo2 transmembrane excitatory mechanosensitive ion channels have been identified as the principal mechanotransduction channels for proprioception (Sonkodi 2022). Mechanical distension/stretch in the colon provokes visceral hypersensitivity and pain. Xie et al. reported that mechanosensitive Piezo2 channels, expressed by TRPV1-lineage nociceptors, are involved in visceral mechanical nociception and hypersensitivity (Xie et al. 2023). Zhou et al. 2023 found that MyoD (myoblast determination)-family inhibitor proteins (MDFIC (246 aas and 2 - 3 C-terminal TMSs and MDFI ) are PIEZO1/2 interacting partners. These transcriptional regulators bind to PIEZO1/2 channels, regulating channel inactivation. Using single-particle cryoEM, the authors mapped the interaction site in MDFIC to a lipidated, C-terminal helix that inserts laterally into the PIEZO1 pore module. These Piezo-interacting proteins fit all the criteria for auxiliary subunits, contribute to explaining the vastly different gating kinetics of endogenous Piezo channels observed in many cell types, and elucidate mechanisms potentially involved in human lymphatic vascular disease (Zhou et al. 2023).  PIEZO2 expression is an independent biomarker prognostic for gastric cancer and represents a potential therapeutic target (Zhang et al. 2024). Phosphatidic acid is an endogenous negative regulator of PIEZO2 channels and mechanical sensitivity (Gabrielle et al. 2024). TMC7, a non-mechanosensitive TMC (TC# 1.A.17.4.18)), inhibits Piezo2-dependent mechanosensation (West and Schneider 2024).  Piezo2 is the principal mechanosensory ion channel responsible for proprioception, and acquired Piezo2 channelopathy is one principal gateway to pathophysiology (Sonkodi 2025).

Accession Number:Q9H5I5
Protein Name:Piezo-type mechanosensitive ion channel component 2
Length:2752
Molecular Weight:318064.00
Species:Homo sapiens (Human) [9606]
Number of TMSs:37
Location1 / Topology2 / Orientation3: Membrane1 / Multi-pass membrane protein2
Substrate ion, cation

Cross database links:

Entrez Gene ID: 63895   
Pfam: PF12166   
KEGG: hsa:63895   

Gene Ontology

GO:0016021 C:integral to membrane
GO:0005216 F:ion channel activity

References (2)

[1] “Complete sequencing and characterization of 21,243 full-length human cDNAs.”  Ota T.et.al.   14702039
[2] “DNA sequence and analysis of human chromosome 18.”  Nusbaum C.et.al.   16177791

External Searches:

Analyze:

Predict TMSs (Predict number of transmembrane segments)
Window Size: Angle:  
FASTA formatted sequence
1:	MASEVVCGLI FRLLLPICLA VACAFRYNGL SFVYLIYLLL IPLFSEPTKT TMQGHTGRLL 
61:	KSLCFISLSF LLLHIIFHIT LVSLEAQHRI APGYNCSTWE KTFRQIGFES LKGADAGNGI 
121:	RVFVPDIGMF IASLTIWLLC RNIVQKPVTD EAAQSNPEFE NEELAEGEKI DSEEALIYEE 
181:	DFNGGDGVEG ELEESTKLKM FRRLASVASK LKEFIGNMIT TAGKVVVTIL LGSSGMMLPS 
241:	LTSSVYFFVF LGLCTWWSWC RTFDPLLFSC LCVLLAIFTA GHLIGLYLYQ FQFFQEAVPP 
301:	NDYYARLFGI KSVIQTDCSS TWKIIVNPDL SWYHHANPIL LLVMYYTLAT LIRIWLQEPL 
361:	VQDEGTKEED KALACSPIQI TAGRRRSLWY ATHYPTDERK LLSMTQDDYK PSDGLLVTVN 
421:	GNPVDYHTIH PSLPMENGPG KADLYSTPQY RWEPSDESSE KREEEEEEKE EFEEERSREE 
481:	KRSIKVHAMV SVFQFIMKQS YICALIAMMA WSITYHSWLT FVLLIWSCTL WMIRNRRKYA 
541:	MISSPFMVVY GNLLLILQYI WSFELPEIKK VPGFLEKKEP GELASKILFT ITFWLLLRQH 
601:	LTEQKALQEK EALLSEVKIG SQENEEKDEE LQDIQVEGEP KEEEEEEAKE EKQERKKVEQ 
661:	EEAEEEDEQD IMKVLGNLVV AMFIKYWIYV CGGMFFFVSF EGKIVMYKII YMVLFLFCVA 
721:	LYQVHYEWWR KILKYFWMSV VIYTMLVLIF IYTYQFENFP GLWQNMTGLK KEKLEDLGLK 
781:	QFTVAELFTR IFIPTSFLLV CILHLHYFHD RFLELTDLKS IPSKEDNTIY RLAHPEGSLP 
841:	DLTMMHLTAS LEKPEVRKLA EPGEEKLEGY SEKAQKGDLG KDSEESEEDG EEEEESEEEE 
901:	ETSDLRNKWH LVIDRLTVLF LKFLEYFHKL QVFMWWILEL HIIKIVSSYI IWVSVKEVSL 
961:	FNYVFLISWA FALPYAKLRR LASSVCTVWT CVIIVCKMLY QLQTIKPENF SVNCSLPNEN 
1021:	QTNIPFNELN KSLLYSAPID PTEWVGLRKS SPLLVYLRNN LLMLAILAFE VTIYRHQEYY 
1081:	RGRNNLTAPV SRTIFHDITR LHLDDGLINC AKYFINYFFY KFGLETCFLM SVNVIGQRMD 
1141:	FYAMIHACWL IAVLYRRRRK AIAEIWPKYC CFLACIITFQ YFICIGIPPA PCRDYPWRFK 
1201:	GASFNDNIIK WLYFPDFIVR PNPVFLVYDF MLLLCASLQR QIFEDENKAA VRIMAGDNVE 
1261:	ICMNLDAASF SQHNPVPDFI HCRSYLDMSK VIIFSYLFWF VLTIIFITGT TRISIFCMGY 
1321:	LVACFYFLLF GGDLLLKPIK SILRYWDWLI AYNVFVITMK NILSIGACGY IGTLVHNSCW 
1381:	LIQAFSLACT VKGYQMPAAN SPCTLPSGEA GIIWDSICFA FLLLQRRVFM SYYFLHVVAD 
1441:	IKASQILASR GAELFQATIV KAVKARIEEE KKSMDQLKRQ MDRIKARQQK YKKGKERMLS 
1501:	LTQEPGEGQD MQKLSEEDDE READKQKAKG KKKQWWRPWV DHASMVRSGD YYLFETDSEE 
1561:	EEEEELKKED EEPPRRSAFQ FVYQAWITDP KTALRQRHKE KKRSAREERK RRRKGSKEGP 
1621:	VEWEDREDEP IKKKSDGPDN IIKRIFNILK FTWVLFLATV DSFTTWLNSI SREHIDISTV 
1681:	LRIERCMLTR EIKKGNVPTR ESIHMYYQNH IMNLSRESGL DTIDEHPGAA SGAQTAHRMD 
1741:	SLDSHDSISS EPTQCTMLYS RQGTTETIEE VEAEQEEEAG STAPEPREAK EYEATGYDVG 
1801:	AMGAEEASLT PEEELTQFST LDGDVEAPPS YSKAVSFEHL SFGSQDDSAG KNRMAVSPDD 
1861:	SRTDKLGSSI LPPLTHELTA SELLLKKMFH DDELEESEKF YVGQPRFLLL FYAMYNTLVA 
1921:	RSEMVCYFVI ILNHMVSASM ITLLLPILIF LWAMLSVPRP SRRFWMMAIV YTEVAIVVKY 
1981:	FFQFGFFPWN KNVEVNKDKP YHPPNIIGVE KKEGYVLYDL IQLLALFFHR SILKCHGLWD 
2041:	EDDMTESGMA REESDDELSL GHGRRDSSDS LKSINLAASV ESVHVTFPEQ QTAVRRKRSG 
2101:	SSSEPSQRSS FSSNRSQRGS TSTRNSSQKG SSVLSIKQKG KRELYMEKLQ EHLIKAKAFT 
2161:	IKKTLEIYVP IKQFFYNLIH PEYSAVTDVY VLMFLADTVD FIIIVFGFWA FGKHSAAADI 
2221:	TSSLSEDQVP GPFLVMVLIQ FGTMVVDRAL YLRKTVLGKV IFQVILVFGI HFWMFFILPG 
2281:	VTERKFSQNL VAQLWYFVKC VYFGLSAYQI RCGYPTRVLG NFLTKSYNYV NLFLFQGFRL 
2341:	VPFLTELRAV MDWVWTDTTL SLSSWICVED IYAHIFILKC WRESEKRYPQ PRGQKKKKVV 
2401:	KYGMGGMIIV LLICIVWFPL LFMSLIKSVA GVINQPLDVS VTITLGGYQP IFTMSAQQSQ 
2461:	LKVMDQQSFN KFIQAFSRDT GAMQFLENYE KEDITVAELE GNSNSLWTIS PPSKQKMIHE 
2521:	LLDPNSSFSV VFSWSIQRNL SLGAKSEIAT DKLSFPLKNI TRKNIAKMIA GNSTESSKTP 
2581:	VTIEKIYPYY VKAPSDSNSK PIKQLLSENN FMDITIILSR DNTTKYNSEW WVLNLTGNRI 
2641:	YNPNSQALEL VVFNDKVSPP SLGFLAGYGI MGLYASVVLV IGKFVREFFS GISHSIMFEE 
2701:	LPNVDRILKL CTDIFLVRET GELELEEDLY AKLIFLYRSP ETMIKWTREK TN