Protein Domain : IPR005483

Type:  Domain Name:  Carbamoyl-phosphate synthase large subunit, CPSase domain
Description:  Carbamoyl phosphate synthase (CPSase) is a heterodimeric enzyme composed of a small and a large subunit (with the exception of CPSase III, see below). CPSase catalyses the synthesis of carbamoyl phosphate from biocarbonate, ATP and glutamine () or ammonia (), and represents the first committed step in pyrimidine and arginine biosynthesis in prokaryotes and eukaryotes, and in the urea cycle in most terrestrial vertebrates [, ]. CPSase has three active sites, one in the small subunit and two in the large subunit. The small subunit contains the glutamine binding site and catalyses the hydrolysis of glutamine to glutamate and ammonia. The large subunit has two homologous carboxy phosphate domains, both of which have ATP-binding sites; however, the N-terminal carboxy phosphate domain catalyses the phosphorylation of biocarbonate, while the C-terminal domain catalyses the phosphorylation of the carbamate intermediate []. The carboxy phosphate domain found duplicated in the large subunit of CPSase is also present as a single copy in the biotin-dependent enzymes acetyl-CoA carboxylase () (ACC), propionyl-CoA carboxylase () (PCCase), pyruvate carboxylase () (PC) and urea carboxylase ().Most prokaryotes carry one form of CPSase that participates in both arginine and pyrimidine biosynthesis, however certain bacteria can have separate forms. The large subunit in bacterial CPSase has four structural domains: the carboxy phosphate domain 1, the oligomerisation domain, the carbamoyl phosphate domain 2 and the allosteric domain []. CPSase heterodimers from Escherichia colicontain two molecular tunnels: an ammonia tunnel and a carbamate tunnel. These inter-domain tunnels connect the three distinct active sites, and function as conduits for the transport of unstable reaction intermediates (ammonia and carbamate) between successive active sites []. The catalytic mechanism of CPSase involves the diffusion of carbamate through the interior of the enzyme from the site of synthesis within the N-terminal domain of the large subunit to the site of phosphorylation within the C-terminal domain.Eukaryotes have two distinct forms of CPSase: a mitochondrial enzyme (CPSase I) that participates in both arginine biosynthesis and the urea cycle; and a cytosolic enzyme (CPSase II) involved in pyrimidine biosynthesis. CPSase II occurs as part of a multi-enzyme complex along with aspartate transcarbamoylase and dihydroorotase; this complex is referred to as the CAD protein []. The hepatic expression of CPSase is transcriptionally regulated by glucocorticoids and/or cAMP []. There is a third form of the enzyme, CPSase III, found in fish, which uses glutamine as a nitrogen source instead of ammonia []. CPSase III is closely related to CPSase I, and is composed of a single polypeptide that may have arisen from gene fusion of the glutaminase and synthetase domains []. This entry represents the CPSase domain of the large subunit of carbamoyl phosphate synthase. Short Name:  CbamoylP_synth_lsu_CPSase_dom

0 Child Features

2 Contains

DB identifier Type Name
IPR005481 Domain Biotin carboxylase-like, N-terminal domain
IPR013816 Domain ATP-grasp fold, subdomain 2

1 Cross References

Identifier
PR00098

1 Found In

DB identifier Type Name
IPR006275 Family Carbamoyl-phosphate synthase, large subunit

1 GO Annotation

GO Term Gene Name
GO:0006807 IPR005483

1 Ontology Annotations

GO Term Gene Name
GO:0006807 IPR005483

1 Parent Features

DB identifier Type Name
IPR005479 Domain Carbamoyl-phosphate synthetase large subunit-like, ATP-binding domain

298 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
440891 D8RF71 PAC:15408013 Selaginella moellendorffii 1194  
evm.model.supercontig_81.16 PAC:16426919 Carica papaya 807  
30111.m000702 B9SK20 PAC:16817861 Ricinus communis 1197  
Cucsa.334290.1 A0A0A0K592 PAC:16978410 Cucumis sativus 1192  
orange1.1g001014m A0A067G0I0 PAC:18097259 Citrus sinensis 1190  
AT1G29900.1 Q42601 PAC:19655950 Arabidopsis thaliana 1187  
Thhalv10006598m V4MQC4 PAC:20185901 Eutrema salsugineum 1184  
Ciclev10027703m V4UEY7 PAC:20812199 Citrus clementina 1190  
Lus10016137 PAC:23171801 Linum usitatissimum 1184  
Lus10021430 PAC:23179191 Linum usitatissimum 1184  
Potri.008G216500.1 PAC:27036997 Populus trichocarpa 567  
Potri.010G023100.2 A0A2K1YMN9 PAC:26978963 Populus trichocarpa 1182  
Potri.010G023100.1 A0A2K1YMN9 PAC:26978964 Populus trichocarpa 1182  
Potri.010G023100.3 PAC:26978965 Populus trichocarpa 1179  
Gorai.002G066300.1 A0A0D2Q8Q3 PAC:26793617 Gossypium raimondii 1184  
25106 I0YR20 PAC:27388089 Coccomyxa subellipsoidea C-169 1087  
16722 C1MRN4 PAC:27341730 Micromonas pusilla CCMP1545 1107  
104797 C1E3Y9 PAC:27400528 Micromonas sp RCC299 1078  
42572 A4S1I3 PAC:27419556 Ostreococcus lucimarinus 1105  
Thecc1EG031657t1 A0A061F7Y0 PAC:27445672 Theobroma cacao 1208  
Migut.N03234.1.p PAC:28923591 Mimulus guttatus 1190  
Araha.37234s0005.1.p PAC:28848140 Arabidopsis halleri 1183  
Cagra.5647s0022.1.p PAC:28905080 Capsella grandiflora 1184  
Glyma.13G328600.1.p K7M387 PAC:30503086 Glycine max 1166  
Glyma.13G328600.2.p K7M387 PAC:30503085 Glycine max 1166  
Glyma.15G045100.1.p K7M9L4 PAC:30497101 Glycine max 1161  
Glyma.20G148800.1.p A0A0R0EBC0 PAC:30523408 Glycine max 819  
Brara.I02858.1.p A0A397Y074 PAC:30643343 Brassica rapa FPsc 1176  
Bostr.15697s0285.1.p PAC:30662418 Boechera stricta 1185  
Cre08.g358580.t1.1 A0A2K3DGA4 PAC:30774147 Chlamydomonas reinhardtii 1177  

9 Publications

First Author Title Year Journal Volume Pages PubMed ID
            10387030
            10089390
            17397987
            11212301
            8916922
            12379099
            7907330
            17451989
            7932737