Hydrochloric Acid

Hydrochloric Acid

SCHEMBL14801508

CCCCCC(C)CCn1ccnc1.Cl

nearest known ligand 0.62

Full drug profile on Sugi Atlas →

Known targets — ChEMBL curated mechanism

ABL1ACEACHEACVR1ADRA1AADRA1BADRA1DADRA2AADRA2BADRA2CADRB1ADRB2ADRB3AGTR1ALKAVPR1AAVPR2BCHEBCRCA2CACNA1ACACNA1BCACNA1CCACNA1DCACNA1ECACNA1FCACNA1GCACNA1HCACNA1ICACNA1SCACNA2D1CACNA2D2CACNA2D3CACNA2D4CACNB1CACNB2CACNB3CACNB4CACNG1CACNG2CACNG3CACNG4CACNG5CACNG6CACNG7CACNG8CALCRLCASRCCR5CDK4CDK6CFBCHRM1CHRM2CHRM3CHRM4CHRM5CHRNA1CHRNA3CHRNA7CHRNB1CHRNB4CHRNDCHRNECHRNGCOXFA4COXFA4L2CRBNCSF1RCUL4ACYP19A1DDB1DPP4DRD1DRD2DRD3DRD4EDNRAEGFREML4ERBB2ERBB4ESR1ESR2FGFR1FGFR3FLT1FLT3FLT4GAAGABRA1GABRA2GABRA3GABRA4GABRA5GABRA6GABRB1GABRB2GABRB3GABRDGABREGABRG1GABRG2GABRG3GABRPGABRQGHSRGLAGNRHRGPD2GRIN1GRIN2AGRIN2BGRIN2CGRIN2DGRIN3AGRIN3BGSTP1HCN4HCRTR1HCRTR2HDAC1HDAC10HDAC11HDAC2HDAC3HDAC4HDAC5HDAC6HDAC7HDAC8HDAC9HRH1HRH2HRH3HSD11B1HSP90AA1HSP90AB1HTR1AHTR1BHTR1DHTR1EHTR1FHTR2AHTR2BHTR2CHTR3AHTR3BHTR3CHTR3DHTR3EHTR4HTR5AHTR6HTR7IMPDH1IMPDH2ITGA2BITGB3ITKJAK1JAK2KCNA1KCNA10KCNA2KCNA3KCNA4KCNA5KCNA6KCNA7KCNB1KCNB2KCNC1KCNC2KCNC3KCNC4KCND1KCND2KCND3KCNF1KCNG1KCNG2KCNG3KCNG4KCNH1KCNH2KCNH3KCNH4KCNH5KCNH6KCNH7KCNH8KCNJ2KCNJ3KCNJ5KCNK3KCNK9KCNQ1KCNQ2KCNQ3KCNQ4KCNQ5KCNS1KCNS2KCNS3KCNV1KCNV2KDRKITKLKB1LCKMMAOAMAOBMAPK14METMMP1MMP13MMP7MMP8MT-ND1MT-ND2MT-ND3MT-ND4MT-ND4LMT-ND5MT-ND6NDUFA1NDUFA10NDUFA11NDUFA12NDUFA13NDUFA2NDUFA3NDUFA5NDUFA6NDUFA7NDUFA8NDUFA9NDUFAB1NDUFAF1NDUFAF2NDUFAF3NDUFAF4NDUFB1NDUFB10NDUFB11NDUFB2NDUFB3NDUFB4NDUFB5NDUFB6NDUFB7NDUFB8NDUFB9NDUFC1NDUFC2NDUFS1NDUFS2NDUFS3NDUFS4NDUFS5NDUFS6NDUFS7NDUFS8NDUFV1NDUFV2NDUFV3NR3C1NS5ANTRK1NTRK2NTRK3ODC1OPRD1OPRK1OPRM1P2RY12PAHPARP1PDE3APDE3BPDE4APDE4BPDE4CPDE4DPDE5APDE7APDE7BPDE8APDE8BPDGFRAPDGFRBPIK3CAPIK3CDPNPPOLA1POLA2POLD1POLD2POLD3POLD4POLEPOLE2POLE3PPARGPRIM1PRIM2PRKCAPRKCBPRKCDPRKCEPRKCGPRKCHPRKCIPRKCQPRKCZPRKD1PRKD3PTGS1PTGS2RBX1RENRETROCK1ROCK2RPE65RRM1RRM2RRM2BS1PR1S1PR2S1PR3S1PR4S1PR5SCN10ASCN11ASCN1ASCN2ASCN3ASCN4ASCN5ASCN7ASCN8ASCN9ASCNN1ASCNN1BSCNN1GSIGMAR1SLC18A2SLC6A1SLC6A2SLC6A3SLC6A4SLC9A3SRCTACR1TOP1TOP2ATOP2BTTRTYMPdacAdacBdacCembAfolAftsIgyrAgyrBmrcAmrcBmrdAparCparEpolrplArplBrplCrplDrplErplFrplIrplJrplKrplLrplMrplNrplOrplPrplQrplRrplSrplTrplUrplVrplWrplXrplYrpmArpmBrpmCrpmDrpmErpmE2rpmFrpmGrpmG1rpmG2rpmG3rpmHrpmIrpmJrpsArpsBrpsCrpsDrpsErpsFrpsGrpsHrpsIrpsJrpsKrpsLrpsMrpsNrpsOrpsPrpsQrpsRrpsSrpsTrpsUykgMykgO

The experimentally established mechanism targets of Hydrochloric Acid. The predicted profile below is derived independently by chemical similarity — agreement is a validation signal, a miss is honest.

Predicted protein targets (top 4)

geneUniProtsupporting neighboursconfidence
CYP19A1 known ✓ P11511 3/20 0.44
PRKCI known ✓ P41743 1/20 0.41
TBXAS1 P24557 12/20 0.62
QPCT Q16769 2/20 0.42

Click a target to see other patent compounds predicted against it — the reverse direction, in place.

Similar compounds — the chemically nearest patent molecules

Nearest neighbours by Morgan-fingerprint cosine across the patent-compound collection, with each neighbour's top predicted target and the predicted targets it shares with this molecule.

Compoundsimilaritytop predictedshared targets
Hydrochloric Acid SCHEMBL14802021 0.98 TBXAS1 (0.65) TBXAS1CYP19A1QPCT
SCHEMBL1223641 0.98 TBXAS1 (0.64) TBXAS1CYP19A1QPCTPRKCI
SCHEMBL28191014 0.97 TBXAS1 (0.67) TBXAS1CYP19A1QPCT
SCHEMBL2232319 0.97 TBXAS1 (0.67) TBXAS1CYP19A1QPCT
Water SCHEMBL28581002 0.97 TBXAS1 (0.62) TBXAS1CYP19A1QPCTPRKCI
SCHEMBL23948110 0.93 TBXAS1 (0.61) TBXAS1CYP19A1QPCTPRKCI
SCHEMBL22313371 0.90 TBXAS1 (0.77) TBXAS1
SCHEMBL19772386 0.87 TBXAS1 (0.66) TBXAS1CYP19A1QPCTPRKCI
SCHEMBL28694303 0.86 TBXAS1 (0.55) TBXAS1CYP19A1QPCTPRKCI
Trifluoromethanesulfonic Acid SCHEMBL5823079 0.84 TBXAS1 (0.48) TBXAS1QPCT

Similarity is cosine over the 2,048-bit Morgan fingerprint (≈ Tanimoto). Identical fingerprints score 1.00.

Patent provenance — the patents this molecule appears in, and who filed them

Claimed or disclosed in 8 patents. claimed = in the patent's claims; disclosed = body only.

PatentTitleAssigneePublishedPriorityFilingCountryStatus
US-20180337426-A1 MOLTEN SALT COMPOSITION, ELECTROLYTE, AND ELECTRIC STORAGE DEVICE, AND METHOD FOR INCREASING A VISCOSITY OF LIQUID MOLTEN SALT NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY (JP) 2018-11-22 US disclosed
US-10100214-B2 Ink composition for ink jet SEIKO EPSON CORPORATION (JP) 2018-10-16 US disclosed
EP-3264513-A1 MOLTEN SALT COMPOSITION, ELECTROLYTE, AND ELECTRICITY STORAGE DEVICE, AND METHOD FOR THICKENING LIQUEFIED MOLTEN SALT National Institute of Advanced Industrial Science and Technology (JP) 2018-01-03 EP disclosed
US-20170283641-A1 INK COMPOSITION FOR INK JET SEIKO EPSON CORP (JP) 2017-10-05 US disclosed
US-9708499-B2 Ink composition for ink jet SEIKO EPSON CORPORATION (JP) 2017-07-18 US disclosed
US-20160367462-A1 METHOD OF TREATING KERATIN MATTER BY FORMING AN IONIC LIQUID OREAL (FR) 2016-12-22 US disclosed
US-20160333211-A1 INK COMPOSITION FOR INK JET SEIKO EPSON CORPORATION (JP) 2016-11-17 US disclosed
US-20130079504-A1 POLYSACCHARIDE GEL AND PROCESS FOR PRODUCING SAME JAPAN ATOMIC ENERGY AGENCY (JP) 2013-03-28 US disclosed

Patent text — is the patent's own abstract consistent with the prediction?

For each of this compound's patents that has machine-readable text (1 of them — usually the abstract, not the full specification), we ask MedCPT which protein the text reads most about, and where the chemistry-predicted target lands among 4885 human targets. A high rank means the patent's own wording is consistent with the prediction — a weak, independent signal, not proof of activity.

PatentTitleText reads most aboutPredicted target · text-rank
US-20160367462-A1 METHOD OF TREATING KERATIN MATTER BY FORMING AN IONIC LIQUID KRT18, BROX, ZYX CYP19A1 2950/4885PRKCI 400/4885TBXAS1 3318/4885

“Text reads most about” is the patent abstract's nearest protein in MedCPT space (background-debiased). Only ~1.4% of patents have machine-readable text, so most compounds won't have this panel.