Conserved Protein Domain Family
PH_ACAP

?
cd13250: PH_ACAP 
ArfGAP with coiled-coil, ankyrin repeat and PH domains Pleckstrin homology (PH) domain
ACAP (also called centaurin beta) functions both as a Rab35 effector and as an Arf6-GTPase-activating protein (GAP) by which it controls actin remodeling and membrane trafficking. ACAP contain an NH2-terminal bin/amphiphysin/Rvs (BAR) domain, a phospholipid-binding domain, a PH domain, a GAP domain, and four ankyrin repeats. The AZAPs constitute a family of Arf GAPs that are characterized by an NH2-terminal pleckstrin homology (PH) domain and a central Arf GAP domain followed by two or more ankyrin repeats. On the basis of sequence and domain organization, the AZAP family is further subdivided into four subfamilies: 1) the ACAPs contain an NH2-terminal bin/amphiphysin/Rvs (BAR) domain (a phospholipid-binding domain that is thought to sense membrane curvature), a single PH domain followed by the GAP domain, and four ankyrin repeats; 2) the ASAPs also contain an NH2-terminal BAR domain, the tandem PH domain/GAP domain, three ankyrin repeats, two proline-rich regions, and a COOH-terminal Src homology 3 domain; 3) the AGAPs contain an NH2-terminal GTPase-like domain (GLD), a split PH domain, and the GAP domain followed by four ankyrin repeats; and 4) the ARAPs contain both an Arf GAP domain and a Rho GAP domain, as well as an NH2-terminal sterile-a motif (SAM), a proline-rich region, a GTPase-binding domain, and five PH domains. PMID 18003747 and 19055940 Centaurin can bind to phosphatidlyinositol (3,4,5)P3. PH domains have diverse functions, but in general are involved in targeting proteins to the appropriate cellular location or in the interaction with a binding partner. They share little sequence conservation, but all have a common fold, which is electrostatically polarized. Less than 10% of PH domains bind phosphoinositide phosphates (PIPs) with high affinity and specificity. PH domains are distinguished from other PIP-binding domains by their specific high-affinity binding to PIPs with two vicinal phosphate groups: PtdIns(3,4)P2, PtdIns(4,5)P2 or PtdIns(3,4,5)P3 which results in targeting some PH domain proteins to the plasma membrane. A few display strong specificity in lipid binding. Any specificity is usually determined by loop regions or insertions in the N-terminus of the domain, which are not conserved across all PH domains. PH domains are found in cellular signaling proteins such as serine/threonine kinase, tyrosine kinases, regulators of G-proteins, endocytotic GTPases, adaptors, as well as cytoskeletal associated molecules and in lipid associated enzymes.
Statistics
?
PSSM-Id: 270070
Aligned: 37 rows
Threshold Bit Score: 115.78
Created: 4-Jan-2012
Updated: 2-Oct-2020
Structure
?
Aligned Rows:
PubMed ReferencesClick to see Conserved Features Help

Sequence Alignment
?
Format: Row Display: Color Bits: Type Selection:
CAG08090      331 MEGYLFKRASNaf-----------kTWNRRWFSIQN-NQLVYRKKf---------------kDTPTVVVEDLRLCTVKHC 383  Tetraodon nig...
CBJ31881      277 KGGYLWKRSTNvr-----------kDWQRRYFFIQN-GKLFYQRQet--------------fVSPAKRVCDIKLCHVRSC 330  Ectocarpus si...
XP_643203     312 KKGYLFKRSEYn-------------SYTRKFFELSN-GKLSYYKTg---------------nDTSPSHTHDLFLTTVRIR 362  Dictyostelium...
CBN73766      330 KEGYLFKKSSSkm----------lqHWNRRWFVLDG-SKLYYLKNd---------------sSRQKMFIWDVMLCTVKEV 383  Ectocarpus si...
XP_002506858  295 HQGYLLKRSSNlr-----------aDWKRRFFVLDAlGHLTYYRDkdv------------sgFGGAKETVRLLTATIKPD 351  Micromonas sp...
XP_002950035  734 RQGYLLKRSGGssasggggskvvsgEWKRRFFVLDStGQLYYYSQkdslink----irgiesHQPATTCVNLLTSTIKMD 809  Volvox carter...
XP_001779036  302 KQGYILKRSSNlr-----------gDWKRRFFVLDSrGMLYYFRKqwgkpsvmffhvefnddKTIAHHTVNLLTSTIKID 370  Physcomitrell...
XP_002974510  295 KQGYLLKRSSNlr-----------gDWKRRFFVLDSrGMLYYYRKqwgkptv----rtsnddKTIAHHTVNLLTSTIKMD 359  Selaginella m...
XP_002288010    5 VEGWLYKKSSNrls---------lnAWTRRWFILDK-NGVYYLKD-----------------FMERVKVCDILLCTVREI 57   Thalassiosira...
EFN52692      388 QQGYLLKQTSDfr-----------kAWKRRFFVLDSqGMLYYYSSreg-----------srkEQAPRNTCSLLTATIKPD 445  Chlorella var...
CAG08090      384 -----EDIERRFCFEVVSPT--KSCILQADSEKLRQAWIKAVQNSIATAFR 427  Tetraodon nigroviridis
CBJ31881      331 l----KDTDLRFSFEIISPQrrTTYLLQAEDEDSHQQWVAAIKSEIERLLS 377  Ectocarpus siliculosus
XP_643203     363 -----EDLDRRYCFELLSPD--RSIILAAETFESMQEWVQVLQNTIANLLN 406  Dictyostelium discoideum AX4
CBN73766      384 -----HSSDALYCFEVFSANr-RSYMLQAEGPEELTSWVTCIRRTIESQLT 428  Ectocarpus siliculosus
XP_002506858  352 l---eDSPNMRFCFRVVSPE--REYCLQAENQADRARWMEAISTAIAGLLS 397  Micromonas sp. RCC299
XP_002950035  810 d---eAEPGLRFCFRVVSPT--GTLALQAESEPDRAAWVAMLQVTISALLD 855  Volvox carteri f. nagariensis
XP_001779036  371 a----EQSELRFCFRIISPS--KTFTLQAENAIDRMDWMDKITGVIASLLN 415  Physcomitrella patens subsp. patens
XP_002974510  360 a----EQSDLRFCFRIISPS--KSYTLQAENGMDRMDWMDKITGVIASLLN 404  Selaginella moellendorffii
XP_002288010   58 nskakGNSNLRWCFEIISPNs-KSYMLQACGPNDFKMWVGGIRSCIGKITP 107  Thalassiosira pseudonana CCMP1335
EFN52692      446 a----EDPSLRYAFRVVSPE--KEYMLQAENEVEQQEWMQMLQGVIACMLS 490  Chlorella variabilis
| Disclaimer | Privacy statement | Accessibility |
NCBI Home NCBI Search NCBI SiteMap