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IPR043472

Description

IPR043472 is a Macro domain-like.

<p>The Macro or A1pp domain is a module of about 180 amino acids which can bind ADP-ribose (an NAD metabolite) or related ligands. Binding to ADP-ribose could be either covalent or non-covalent [[cite:PUB00052327]]: in certain cases it is believed to bind non-covalently [[cite:PUB00052325]]; while in other cases (such as Aprataxin) it appears to bind both non-covalently through a zinc finger motif, and covalently through a separate region of the protein [[cite:PUB00052328]]. The domain was described originally in association with ADP-ribose 1''-phosphate (Appr-1''-P) processing activity (A1pp) of the yeast YBR022W protein [[cite:PUB00019075]]. The domain is also called Macro domain as it is the C-terminal domain of mammalian core histone macro-H2A [[cite:PUB00018391], [cite:PUB00021744]]. Macro domain proteins can be found in eukaryotes, in (mostly pathogenic) bacteria, in archaea and in ssRNA viruses, such as coronaviruses [[cite:PUB00094075], [cite:PUB00094076]], Rubella and Hepatitis E viruses. In vertebrates the domain occurs e.g. in histone macroH2A, in predicted poly-ADP-ribose polymerases (PARPs) and in B aggressive lymphoma (BAL) protein. The macro domain can be associated with catalytic domains, such as PARP, or sirtuin. The Macro domain can recognise ADP-ribose or in some cases poly-ADP-ribose, which can be involved in ADP-ribosylation reactions that occur in important processes, such as chromatin biology, DNA repair and transcription regulation [[cite:PUB00021032]]. The human macroH2A1.1 Macro domain binds an NAD metabolite O-acetyl-ADP-ribose [[cite:PUB00033734]]. The Macro domain has been suggested to play a regulatory role in ADP-ribosylation, which is involved in inter- and intracellular signaling, transcriptional regulation, DNA repair pathways and maintenance of genomic stability, telomere dynamics, cell differentiation and proliferation, and necrosis and apoptosis.</p> <p>The 3D structure of the SARS-CoV Macro domain has a mixed α/β fold consisting of a central seven-stranded twisted mixed β-sheet sandwiched between two α-helices on one face, and three on the other. The final α-helix, located on the edge of the central β-sheet, forms the C terminus of the protein [[cite:PUB00043976]]. The crystal structure of AF1521 (a Macro domain-only protein from Archaeoglobus fulgidus) has also been reported and compared with other Macro domain containing proteins. Several Macro domain only proteins are shorter than AF1521, and appear to lack either the first strand of the β-sheet or the C-terminal helix 5. Well conserved residues form a hydrophobic cleft and cluster around the AF1521-ADP-ribose binding site [[cite:PUB00021744], [cite:PUB00021032], [cite:PUB00033734], [cite:PUB00043976]].</p> <p>Aminopeptidases are exopeptidases involved in the processing and regular turnover of intracellular proteins, although their precise role in cellular metabolism is unclear [[cite:PUB00001416], [cite:PUB00004713]].</p> <p>Leucine aminopeptidases cleave leucine residues from the N-terminal of polypeptide chains; in general they are involved in the processing, catabolism and degradation of intracellular proteins [[cite:PUB00011211], [cite:PUB00001416], [cite:PUB00004713]]. Leucyl aminopeptidase forms a homohexamer containing two trimers stacked on top of one another [[cite:PUB00004713]]. Each monomer binds two zinc ions. The zinc-binding and catalytic sites are located within the C-terminal catalytic domain [[cite:PUB00004713]]. Leucine aminopeptidase has been shown to be identical with prolyl aminopeptidase ([ec:3.4.11.5]) in mammals [[cite:PUB00000202]].</p> <p>The N-terminal domain of these proteins has been shown in Escherichia coli PepA to function as a DNA-binding protein in Xer site-specific recombination and in transcriptional control of the carAB operon [[cite:PUB00011212], [cite:PUB00011213]].</p> <p>This superfamily represents the Macro domain as well as the N-terminal domain of Leucine aminopeptidase.</p>

This description is obtained from EB-eye REST.

Associated GO terms

Unable to find any GO terms for the transcript with the identifier.

Associated Lotus transcripts 19

Transcript Name Description Predicted domains Domain count
Appr-1-P processing enzyme family protein; TAIR: AT2G40600.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|Q8P5Z8|Y3184_XANCP Macro domain-containing protein XCC3184; TrEMBL-Plants: tr|G7I3E3|G7I3E3_MEDTR Appr-1-P processing enzyme family protein; Found in the gene: LotjaGi1g1v0308900 10
DNA helicase; TAIR: AT2G44980.2 SNF2 domain-containing protein / helicase domain-containing protein; Swiss-Prot: sp|F4IV45|CHR10_ARATH Probable helicase CHR10; TrEMBL-Plants: tr|A0A072TXT9|A0A072TXT9_MEDTR Chromodomain helicase-DNA-binding-like protein; Found in the gene: LotjaGi1g1v0599800_LC 12
DNA helicase; TAIR: AT2G44980.2 SNF2 domain-containing protein / helicase domain-containing protein; Swiss-Prot: sp|F4IV45|CHR10_ARATH Probable helicase CHR10; TrEMBL-Plants: tr|A0A072TXT9|A0A072TXT9_MEDTR Chromodomain helicase-DNA-binding-like protein; Found in the gene: LotjaGi1g1v0599800_LC 12
DNA helicase; TAIR: AT2G44980.2 SNF2 domain-containing protein / helicase domain-containing protein; Swiss-Prot: sp|F4IV45|CHR10_ARATH Probable helicase CHR10; TrEMBL-Plants: tr|A0A072TXT9|A0A072TXT9_MEDTR Chromodomain helicase-DNA-binding-like protein; Found in the gene: LotjaGi1g1v0599800_LC 9
Helicase, putative; TAIR: AT2G44980.3 SNF2 domain-containing protein / helicase domain-containing protein; Swiss-Prot: sp|F4IV45|CHR10_ARATH Probable helicase CHR10; TrEMBL-Plants: tr|K7K2G5|K7K2G5_SOYBN Uncharacterized protein; Found in the gene: LotjaGi1g1v0599800_LC 21
Appr-1-P processing enzyme family protein; TAIR: AT1G69340.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|A7T167|GDAP2_NEMVE Protein GDAP2 homolog; TrEMBL-Plants: tr|V7CH06|V7CH06_PHAVU Uncharacterized protein; Found in the gene: LotjaGi2g1v0297800 20
Appr-1-P processing enzyme family protein; TAIR: AT1G69340.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|A7T167|GDAP2_NEMVE Protein GDAP2 homolog; TrEMBL-Plants: tr|A0A072UEM6|A0A072UEM6_MEDTR Appr-1-P processing enzyme family protein; Found in the gene: LotjaGi2g1v0297800 19
Appr-1-P processing enzyme family protein; TAIR: AT1G69340.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|A7T167|GDAP2_NEMVE Protein GDAP2 homolog; TrEMBL-Plants: tr|V7CH06|V7CH06_PHAVU Uncharacterized protein; Found in the gene: LotjaGi2g1v0297800 19
Appr-1-P processing enzyme family protein; TAIR: AT1G69340.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|A7T167|GDAP2_NEMVE Protein GDAP2 homolog; TrEMBL-Plants: tr|V7CH06|V7CH06_PHAVU Uncharacterized protein; Found in the gene: LotjaGi2g1v0297800 20
Appr-1-P processing enzyme family protein; TAIR: AT1G69340.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|A7T167|GDAP2_NEMVE Protein GDAP2 homolog; TrEMBL-Plants: tr|G7JXV5|G7JXV5_MEDTR Appr-1-P processing enzyme family protein; Found in the gene: LotjaGi2g1v0297800 17
Leucine aminopeptidase, putative; TAIR: AT4G30910.1 Cytosol aminopeptidase family protein; Swiss-Prot: sp|Q6K669|AMPL2_ORYSJ Leucine aminopeptidase 2, chloroplastic; TrEMBL-Plants: tr|A0A0B2SEX9|A0A0B2SEX9_GLYSO Leucine aminopeptidase 3, chloroplastic; Found in the gene: LotjaGi3g1v0327400_LC 8
Leucine aminopeptidase; TAIR: AT4G30920.1 Cytosol aminopeptidase family protein; Swiss-Prot: sp|Q6K669|AMPL2_ORYSJ Leucine aminopeptidase 2, chloroplastic; TrEMBL-Plants: tr|A0A0B2SEX9|A0A0B2SEX9_GLYSO Leucine aminopeptidase 3, chloroplastic; Found in the gene: LotjaGi3g1v0327400_LC 8
Leucine aminopeptidase, putative; TAIR: AT4G30910.1 Cytosol aminopeptidase family protein; Swiss-Prot: sp|Q6K669|AMPL2_ORYSJ Leucine aminopeptidase 2, chloroplastic; TrEMBL-Plants: tr|A0A0B2SEX9|A0A0B2SEX9_GLYSO Leucine aminopeptidase 3, chloroplastic; Found in the gene: LotjaGi3g1v0327400_LC 8
Appr-1-P processing enzyme family protein; TAIR: AT2G40600.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|Q8P5Z8|Y3184_XANCP Macro domain-containing protein XCC3184; TrEMBL-Plants: tr|G7I3E3|G7I3E3_MEDTR Appr-1-P processing enzyme family protein; Found in the gene: LotjaGi5g1v0023700 10
Appr-1-P processing enzyme family protein; TAIR: AT2G40600.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|Q8P5Z8|Y3184_XANCP Macro domain-containing protein XCC3184; TrEMBL-Plants: tr|G7I3E3|G7I3E3_MEDTR Appr-1-P processing enzyme family protein; Found in the gene: LotjaGi5g1v0023700 10
Appr-1-P processing enzyme family protein; TAIR: AT2G40600.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|Q8P5Z8|Y3184_XANCP Macro domain-containing protein XCC3184; TrEMBL-Plants: tr|G7I3E3|G7I3E3_MEDTR Appr-1-P processing enzyme family protein; Found in the gene: LotjaGi5g1v0023700 10
Appr-1-P processing enzyme family protein; TAIR: AT2G40600.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|Q8P5Z8|Y3184_XANCP Macro domain-containing protein XCC3184; TrEMBL-Plants: tr|G7I3E3|G7I3E3_MEDTR Appr-1-P processing enzyme family protein; Found in the gene: LotjaGi5g1v0023700 10
Appr-1-P processing enzyme family protein; TAIR: AT2G40600.1 appr-1-p processing enzyme family protein; Swiss-Prot: sp|Q8P5Z8|Y3184_XANCP Macro domain-containing protein XCC3184; TrEMBL-Plants: tr|G7I3E3|G7I3E3_MEDTR Appr-1-P processing enzyme family protein; Found in the gene: LotjaGi5g1v0023700 10
Transcription factor bHLH140; TAIR: AT5G01310.1 APRATAXIN-like protein; Swiss-Prot: sp|Q9M041|BH140_ARATH Transcription factor bHLH140; TrEMBL-Plants: tr|K7K399|K7K399_SOYBN Uncharacterized protein; Found in the gene: LotjaGi5g1v0162600 29

Co-occuring domains 1

A list of co-occurring predicted domains within the L. japonicus gene space:

Predicted domain Source Observations Saturation (%)
mobidb-lite MobiDBLite 1 5.26