Protein Domain : IPR004014

Type:  Domain Name:  Cation-transporting P-type ATPase, N-terminal
Description:  Transmembrane ATPases are membrane-bound enzyme complexes/ion transporters that use ATP hydrolysis to drive the transport of protons across a membrane. Some transmembrane ATPases also work in reverse, harnessing the energy from a proton gradient, using the flux of ions across the membrane via the ATPase proton channel to drive the synthesis of ATP. There are several different types of transmembrane ATPases, which can differ in function (ATP hydrolysis and/or synthesis), structure (e.g., F-, V- and A-ATPases, which contain rotary motors) and in the type of ions they transport [, ]. The different types include:F-ATPases (F1F0-ATPases), which are found in mitochondria, chloroplasts and bacterial plasma membranes where they are the prime producers of ATP, using the proton gradient generated by oxidative phosphorylation (mitochondria) or photosynthesis (chloroplasts).V-ATPases (V1V0-ATPases), which are primarily found in eukaryotic and they function as proton pumps that acidify intracellular compartments and, in some cases, transport protons across the plasma membrane []. They are also found in bacteria [].A-ATPases (A1A0-ATPases), which are found in Archaea and function like F-ATPases, though with respect to their structure and some inhibitor responses, A-ATPases are more closely related to the V-ATPases [, ].P-ATPases (E1E2-ATPases), which are found in bacteria and in eukaryotic plasma membranes and organelles, and function to transport a variety of different ions across membranes.E-ATPases, which are cell-surface enzymes that hydrolyse a range of NTPs, including extracellular ATP.P-ATPases (also known as E1-E2 ATPases) () are found in bacteria and in a number of eukaryotic plasma membranes and organelles []. P-ATPases function to transport a variety of different compounds, including ions and phospholipids, across a membrane using ATP hydrolysis for energy. There are many different classes of P-ATPases, which transport specific types of ion: H+, Na+, K+, Mg2+, Ca2+, Ag+and Ag2+, Zn2+, Co2+, Pb2+, Ni2+, Cd2+, Cu+and Cu2+. P-ATPases can be composed of one or two polypeptides, and can usually assume two main conformations called E1 and E2.This entry represents the conserved N-terminal region found in several classes of cation-transporting P-type ATPases, including those that transport H+(), Na+(), Ca2+(), Na+/K+(), and H+/K+(). In the H+/K+- and Na+/K+-exchange P-ATPases, this domain is found in the catalytic alpha chain. In gastric H+/K+-ATPases, this domain undergoes reversible sequential phosphorylation inducing conformational changes that may be important for regulating the function of these ATPases [, ]. Short Name:  ATPase_P-typ_cation-transptr_N

0 Child Features

0 Contains

2 Cross Referencess

Identifier
PF00690
SM00831

7 Found Ins

DB identifier Type Name
IPR005782 Family P-type ATPase, subfamily IIA, SERCA-type
IPR006408 Family P-type ATPase, subfamily IIB
IPR006534 Family P-type ATPase, subfamily IIIA
IPR006415 Family P-type ATPase, subfamily IIIB
IPR005775 Family P-type ATPase, subfamily IIC
IPR006414 Family P-type ATPase, subfamily IID
IPR006413 Family P-type ATPase, subfamily IIA, PMR1-type

0 GO Annotation

0 Ontology Annotations

0 Parent Features

3256 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
78287 D8QUQ3 PAC:15420126 Selaginella moellendorffii 1062  
78895 D8QVR0 PAC:15402353 Selaginella moellendorffii 1041  
166180 D8QWP4 PAC:15414249 Selaginella moellendorffii 1039  
419690 D8S9Q9 PAC:15411356 Selaginella moellendorffii 1144  
445079 D8SFE9 PAC:15416537 Selaginella moellendorffii 1290  
118764 D8SJW7 PAC:15410957 Selaginella moellendorffii 958  
122175 D8SPR5 PAC:15418318 Selaginella moellendorffii 1011  
76771 D8QT85 PAC:15418060 Selaginella moellendorffii 952  
437746 D8QTC2 PAC:15420547 Selaginella moellendorffii 1014  
266601 D8QTC3 PAC:15409734 Selaginella moellendorffii 1030  
170407 D8RD54 PAC:15405866 Selaginella moellendorffii 1047  
evm.model.supercontig_10.114 PAC:16404465 Carica papaya 830  
evm.model.supercontig_114.18 PAC:16406107 Carica papaya 1057  
evm.model.supercontig_115.64 PAC:16406231 Carica papaya 1069  
evm.model.supercontig_1192.1 PAC:16406623 Carica papaya 205  
evm.model.supercontig_1377.1 PAC:16408435 Carica papaya 954  
evm.model.supercontig_139.2 PAC:16408516 Carica papaya 969  
evm.model.supercontig_142.22 PAC:16408950 Carica papaya 560  
evm.model.supercontig_17.191 PAC:16410690 Carica papaya 956  
evm.model.supercontig_182.10 PAC:16411560 Carica papaya 1031  
evm.model.supercontig_197.23 PAC:16412349 Carica papaya 582  
evm.model.supercontig_229.14 PAC:16414124 Carica papaya 883  
evm.model.supercontig_23.10 PAC:16414144 Carica papaya 589  
evm.model.supercontig_44.133 PAC:16420139 Carica papaya 1019  
evm.model.supercontig_46.109 PAC:16420388 Carica papaya 951  
evm.model.supercontig_52.127 PAC:16421984 Carica papaya 882  
evm.model.supercontig_55.62 PAC:16422630 Carica papaya 938  
evm.model.supercontig_6.24 PAC:16423420 Carica papaya 972  
evm.model.supercontig_67.9 PAC:16424776 Carica papaya 938  
evm.model.supercontig_67.8 PAC:16424765 Carica papaya 1086  

9 Publications

First Author Title Year Journal Volume Pages PubMed ID
            15473999
            15078220
            9741106
            20450191
            18937357
            1385979
            9419228
            12480547
            12529322