Sulfuric Acid

Sulfuric Acid

SCHEMBL3129148

O=S(=O)([O-])[O-].O=S(=O)([O-])[O-].O=S(=O)([O-])[O-].O=S(=O)([O-])[O-].O=S(=O)([O-])[O-].[Al+3].[Al+3].[Al+3].[Na+]

nearest known ligand 0.55

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Known targets — ChEMBL curated mechanism

dacAdacBdacCftsImrcAmrcBmrdA

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

Predicted protein targets (top 15)

geneUniProtsupporting neighboursconfidence
ALDH1A1 P00352 2/20 0.55
TSHR P16473 2/20 0.55
MEN1 O00255 1/20 0.55
KMT2A Q03164 1/20 0.55
TP53 P04637 2/20 0.38
KDM4E B2RXH2 1/20 0.35
MAPT P10636 1/20 0.35
ALOX15 P16050 1/20 0.35
GMNN O75496 1/20 0.32
LMNA P02545 1/20 0.32
MAPK1 P28482 1/20 0.32
THPO P40225 1/20 0.32
HBB P68871 1/20 0.32
PMP22 Q01453 1/20 0.32
SMN1; SMN2 Q16637 1/20 0.32

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
Sulfuric Acid SCHEMBL15309138 1.00 ALDH1A1 (0.55) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL9767636 1.00 ALDH1A1 (0.55) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL62673 1.00 ALDH1A1 (0.55) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL6415525 1.00 ALDH1A1 (0.55) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL19138776 0.94 ALDH1A1 (0.50) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL749138 0.94 ALDH1A1 (0.50) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL29283723 0.94 ALDH1A1 (0.50) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL7643829 0.94 ALDH1A1 (0.50) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL22207538 0.94 ALDH1A1 (0.50) ALDH1A1TSHRMEN1KMT2ATP53
Sulfuric Acid SCHEMBL28598441 0.94 ALDH1A1 (0.50) ALDH1A1TSHRMEN1KMT2ATP53

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 4 patents. claimed = in the patent's claims; disclosed = body only.

PatentTitleAssigneePublishedPriorityFilingCountryStatus
EP-1239955-B1 HYDROTHERMALLY STABLE HIGH PORE VOLUME ALUMINIUM OXIDE/SWELLABLE CLAY COMPOSITES AND METHODS OF THEIR PREPARATION GRACE W R & CO (US) 2010-07-21 EP disclosed
US-6451200-B1 POROUS COMPOSITE PARTICLES COMPRISE AN ALUMINUM OXIDE COMPONENT E.G. CRYSTALLINE BOEHMITE, AND A STABLE CLAY COMPONENT, E.G, SYNTHETIC HECTORITE, DISPERSED WITHIN ALUMINUM OXIDE FOR INCREASING HYDROTHERMAL STABILLITY W. R. GRACE & CO.-CONN. 2002-09-17 US disclosed
US-20020051878-A1 Hydrothermally stable high pore volume aluminum oxide/swellable clay composites and methods of their preparation and use W.R. GRACE & CO.-CONN. 2002-05-02 US disclosed
US-6303531-B1 Hydrothermally stable high pore volume aluminum oxide/swellable clay composites and methods of their preparation and use W. R. GRACE & CO.-CONN. 2001-10-16 US disclosed