inositol monophosphatase family protein similar to human inositol polyphosphate 1-phosphatase (INPP1) which hydrolyzes the 1 position phosphate from inositol 1,4-bisphosphate (Ins(1,4)P2) or inositol 1,3,4-trisphosphate (Ins(1,3,4)P3), and to human 3'(2'),5'-bisphosphate nucleotidase 1 (BPNT1) which converts adenosine 3'-phosphate 5'-phosphosulfate (PAPS) to adenosine 5'-phosphosulfate (APS) and 3'(2')-phosphoadenosine 5'- phosphate (PAP) to AMP and has 1000-fold lower activity towards (Ins(1,4)P2) and (Ins(1,3,4)P3)
IPPase; Inositol polyphosphate-1-phosphatase, a member of the Mg++ dependent family of ...
1-257
7.11e-124
IPPase; Inositol polyphosphate-1-phosphatase, a member of the Mg++ dependent family of inositol monophosphatase-like domains, hydrolyzes the 1' position phosphate from inositol 1,3,4-trisphosphate and inositol 1,4-bisphosphate. Members in this group may also exhibit 3'-phosphoadenosine 5'-phosphate phosphatase activity, and they all appear to be inhibited by lithium. IPPase is one of the proposed targets of Li+ therapy in manic-depressive illness.
:
Pssm-ID: 238818 [Multi-domain] Cd Length: 293 Bit Score: 354.32 E-value: 7.11e-124
IPPase; Inositol polyphosphate-1-phosphatase, a member of the Mg++ dependent family of ...
1-257
7.11e-124
IPPase; Inositol polyphosphate-1-phosphatase, a member of the Mg++ dependent family of inositol monophosphatase-like domains, hydrolyzes the 1' position phosphate from inositol 1,3,4-trisphosphate and inositol 1,4-bisphosphate. Members in this group may also exhibit 3'-phosphoadenosine 5'-phosphate phosphatase activity, and they all appear to be inhibited by lithium. IPPase is one of the proposed targets of Li+ therapy in manic-depressive illness.
Pssm-ID: 238818 [Multi-domain] Cd Length: 293 Bit Score: 354.32 E-value: 7.11e-124
3'(2'),5'-bisphosphate nucleotidase, bacterial; Sulfate is incorporated into ...
3-234
8.26e-17
3'(2'),5'-bisphosphate nucleotidase, bacterial; Sulfate is incorporated into 3-phosphoadenylylsulfate, PAPS, for utilization in pathways such as methionine biosynthesis. Transfer of sulfate from PAPS to an acceptor leaves adenosine 3'-5'-bisphosphate, APS. This model describes a form found in bacteria of the enzyme 3'(2'),5'-bisphosphate nucleotidase, which removes the 3'-phosphate from APS to regenerate AMP and help drive the cycle. [Central intermediary metabolism, Sulfur metabolism]
Pssm-ID: 130398 [Multi-domain] Cd Length: 249 Bit Score: 77.49 E-value: 8.26e-17
IPPase; Inositol polyphosphate-1-phosphatase, a member of the Mg++ dependent family of ...
1-257
7.11e-124
IPPase; Inositol polyphosphate-1-phosphatase, a member of the Mg++ dependent family of inositol monophosphatase-like domains, hydrolyzes the 1' position phosphate from inositol 1,3,4-trisphosphate and inositol 1,4-bisphosphate. Members in this group may also exhibit 3'-phosphoadenosine 5'-phosphate phosphatase activity, and they all appear to be inhibited by lithium. IPPase is one of the proposed targets of Li+ therapy in manic-depressive illness.
Pssm-ID: 238818 [Multi-domain] Cd Length: 293 Bit Score: 354.32 E-value: 7.11e-124
CysQ, a 3'-Phosphoadenosine-5'-phosphosulfate (PAPS) 3'-phosphatase, is a bacterial member of ...
3-235
2.03e-24
CysQ, a 3'-Phosphoadenosine-5'-phosphosulfate (PAPS) 3'-phosphatase, is a bacterial member of the inositol monophosphatase family. It has been proposed that CysQ helps control intracellular levels of PAPS, which is an intermediate in cysteine biosynthesis (a principal route of sulfur assimilation).
Pssm-ID: 238816 [Multi-domain] Cd Length: 242 Bit Score: 98.07 E-value: 2.03e-24
Inositol-monophosphatase-like domains. This family of phosphatases is dependent on bivalent ...
3-247
2.99e-22
Inositol-monophosphatase-like domains. This family of phosphatases is dependent on bivalent metal ions such as Mg++, and many members are inhibited by Li+ (which is thought to displace a bivalent ion in the active site). Substrates include fructose-1,6-bisphosphate, inositol poly- and monophosphates, PAP and PAPS, sedoheptulose-1,7-bisphosphate and probably others.
Pssm-ID: 238815 [Multi-domain] Cd Length: 238 Bit Score: 91.99 E-value: 2.99e-22
Archaeal fructose-1,6-bisphosphatase or related enzyme, inositol monophosphatase family ...
3-247
3.32e-17
Archaeal fructose-1,6-bisphosphatase or related enzyme, inositol monophosphatase family [Carbohydrate transport and metabolism]; Archaeal fructose-1,6-bisphosphatase or related enzyme, inositol monophosphatase family is part of the Pathway/BioSystem: Gluconeogenesis
Pssm-ID: 440251 [Multi-domain] Cd Length: 255 Bit Score: 78.73 E-value: 3.32e-17
3'(2'),5'-bisphosphate nucleotidase, bacterial; Sulfate is incorporated into ...
3-234
8.26e-17
3'(2'),5'-bisphosphate nucleotidase, bacterial; Sulfate is incorporated into 3-phosphoadenylylsulfate, PAPS, for utilization in pathways such as methionine biosynthesis. Transfer of sulfate from PAPS to an acceptor leaves adenosine 3'-5'-bisphosphate, APS. This model describes a form found in bacteria of the enzyme 3'(2'),5'-bisphosphate nucleotidase, which removes the 3'-phosphate from APS to regenerate AMP and help drive the cycle. [Central intermediary metabolism, Sulfur metabolism]
Pssm-ID: 130398 [Multi-domain] Cd Length: 249 Bit Score: 77.49 E-value: 8.26e-17
PAP-phosphatase_like domains. PAP-phosphatase is a member of the inositol monophosphatase ...
3-247
4.01e-12
PAP-phosphatase_like domains. PAP-phosphatase is a member of the inositol monophosphatase family, and catalyses the hydrolysis of 3'-phosphoadenosine-5'-phosphate (PAP) to AMP. In Saccharomyces cerevisiae, HAL2 (MET22) is involved in methionine biosynthesis and provides increased salt tolerance when over-expressed. Bacterial members of this domain family may differ in their substrate specificity and dephosphorylate different targets, as the substrate binding site does not appear to be conserved in that sub-set.
Pssm-ID: 238775 [Multi-domain] Cd Length: 274 Bit Score: 64.64 E-value: 4.01e-12
IMPase, inositol monophosphatase and related domains. A family of Mg++ dependent phosphatases, ...
3-228
2.37e-11
IMPase, inositol monophosphatase and related domains. A family of Mg++ dependent phosphatases, inhibited by lithium, many of which may act on inositol monophosphate substrate. They dephosphorylate inositol phosphate to generate inositol, which may be recycled into inositol lipids; in eukaryotes IMPase plays a vital role in intracellular signaling. IMPase is one of the proposed targets of Li+ therapy in manic-depressive illness. This family contains some bacterial members of the inositol monophosphatase family classified as SuhB-like. E. coli SuhB has been suggested to participate in posstranscriptional control of gene expression, and its inositol monophosphatase activity doesn't appear to be sufficient for its cellular function. It has been proposed, that SuhB plays a role in the biosynthesis of phosphatidylinositol in mycobacteria.
Pssm-ID: 238817 [Multi-domain] Cd Length: 244 Bit Score: 62.17 E-value: 2.37e-11
FIG, FBPase/IMPase/glpX-like domain. A superfamily of metal-dependent phosphatases with ...
3-224
7.85e-10
FIG, FBPase/IMPase/glpX-like domain. A superfamily of metal-dependent phosphatases with various substrates. Fructose-1,6-bisphospatase (both the major and the glpX-encoded variant) hydrolyze fructose-1,6,-bisphosphate to fructose-6-phosphate in gluconeogenesis. Inositol-monophosphatases and inositol polyphosphatases play vital roles in eukaryotic signalling, as they participate in metabolizing the messenger molecule Inositol-1,4,5-triphosphate. Many of these enzymes are inhibited by Li+.
Pssm-ID: 238814 [Multi-domain] Cd Length: 184 Bit Score: 56.63 E-value: 7.85e-10
Predominantly bacterial family of Mg++ dependend phosphatases, related to inositol ...
7-231
2.90e-09
Predominantly bacterial family of Mg++ dependend phosphatases, related to inositol monophosphatases. These enzymes may dephosphorylate fructose-1,6-bisphosphate, inositol monophospate, 3'-phosphoadenosine-5'-phosphate, or similar substrates.
Pssm-ID: 238819 [Multi-domain] Cd Length: 248 Bit Score: 56.11 E-value: 2.90e-09
Bacterial family of Mg++ dependent phosphatases, related to inositol monophosphatases. These ...
3-220
1.16e-05
Bacterial family of Mg++ dependent phosphatases, related to inositol monophosphatases. These enzymes may dephosphorylate inositol monophosphate or similar substrates.
Pssm-ID: 238821 [Multi-domain] Cd Length: 242 Bit Score: 45.40 E-value: 1.16e-05
Database: CDSEARCH/cdd Low complexity filter: no Composition Based Adjustment: yes E-value threshold: 0.01
References:
Wang J et al. (2023), "The conserved domain database in 2023", Nucleic Acids Res.51(D)384-8.
Lu S et al. (2020), "The conserved domain database in 2020", Nucleic Acids Res.48(D)265-8.
Marchler-Bauer A et al. (2017), "CDD/SPARCLE: functional classification of proteins via subfamily domain architectures.", Nucleic Acids Res.45(D)200-3.
of the residues that compose this conserved feature have been mapped to the query sequence.
Click on the triangle to view details about the feature, including a multiple sequence alignment
of your query sequence and the protein sequences used to curate the domain model,
where hash marks (#) above the aligned sequences show the location of the conserved feature residues.
The thumbnail image, if present, provides an approximate view of the feature's location in 3 dimensions.
Click on the triangle for interactive 3D structure viewing options.
Functional characterization of the conserved domain architecture found on the query.
Click here to see more details.
This image shows a graphical summary of conserved domains identified on the query sequence.
The Show Concise/Full Display button at the top of the page can be used to select the desired level of detail: only top scoring hits
(labeled illustration) or all hits
(labeled illustration).
Domains are color coded according to superfamilies
to which they have been assigned. Hits with scores that pass a domain-specific threshold
(specific hits) are drawn in bright colors.
Others (non-specific hits) and
superfamily placeholders are drawn in pastel colors.
if a domain or superfamily has been annotated with functional sites (conserved features),
they are mapped to the query sequence and indicated through sets of triangles
with the same color and shade of the domain or superfamily that provides the annotation. Mouse over the colored bars or triangles to see descriptions of the domains and features.
click on the bars or triangles to view your query sequence embedded in a multiple sequence alignment of the proteins used to develop the corresponding domain model.
The table lists conserved domains identified on the query sequence. Click on the plus sign (+) on the left to display full descriptions, alignments, and scores.
Click on the domain model's accession number to view the multiple sequence alignment of the proteins used to develop the corresponding domain model.
To view your query sequence embedded in that multiple sequence alignment, click on the colored bars in the Graphical Summary portion of the search results page,
or click on the triangles, if present, that represent functional sites (conserved features)
mapped to the query sequence.
Concise Display shows only the best scoring domain model, in each hit category listed below except non-specific hits, for each region on the query sequence.
(labeled illustration) Standard Display shows only the best scoring domain model from each source, in each hit category listed below for each region on the query sequence.
(labeled illustration) Full Display shows all domain models, in each hit category below, that meet or exceed the RPS-BLAST threshold for statistical significance.
(labeled illustration) Four types of hits can be shown, as available,
for each region on the query sequence:
specific hits meet or exceed a domain-specific e-value threshold
(illustrated example)
and represent a very high confidence that the query sequence belongs to the same protein family as the sequences use to create the domain model
non-specific hits
meet or exceed the RPS-BLAST threshold for statistical significance (default E-value cutoff of 0.01, or an E-value selected by user via the
advanced search options)
the domain superfamily to which the specific and non-specific hits belong
multi-domain models that were computationally detected and are likely to contain multiple single domains
Retrieve proteins that contain one or more of the domains present in the query sequence, using the Conserved Domain Architecture Retrieval Tool
(CDART).
Modify your query to search against a different database and/or use advanced search options