Conserved Protein Domain Family
PH_AtPH1

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cd13276: PH_AtPH1 
Arabidopsis thaliana Pleckstrin homolog (PH) 1 (AtPH1) PH domain
AtPH1 is expressed in all plant tissue and is proposed to be the plant homolog of human pleckstrin. Pleckstrin consists of two PH domains separated by a linker region, while AtPH has a single PH domain with a short N-terminal extension. AtPH1 binds PtdIns3P specifically and is thought to be an adaptor molecule since it has no obvious catalytic functions. 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
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PSSM-Id: 270095
Aligned: 15 rows
Threshold Bit Score: 157.479
Created: 10-Jan-2012
Updated: 2-Oct-2020
Structure
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Aligned Rows:
PubMed ReferencesClick to see Conserved Features Help

Sequence Alignment
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Format: Row Display: Color Bits: Type Selection:
BAA84651      29 RSGWLTKQGDYIKTWRRRWFVLKRGKLLWFKDQaaagirGSTPRGVISVGdclTVKGAEDVvnKPFAFELSSGSyTMFFI 108 thale cress
XP_002967688  27 RAGWLMKQGEYIKTWRRRWFVLKQGRLFWFKESti--tqYSRPRGVILVSgclTVKGAEDVlnRQHAFELSTNKeTMYFI 104 Selaginella moe...
XP_001769612  27 RSGWLMKQGEFIKTWRRRWFVLKQGRIFWFKEPql--tpFSKSRGVIPVSsclTVKGAEDVlnKQFAFELSTNRdTMYFI 104 Physcomitrella ...
XP_002139265  17 KQGWLYKQSRFLKDWRRRWFILTRNYLASFKEQg----dFSSPTESLKLSeclTVRSADEDinRENAFRVDTPHrVFFLI 92  Cryptosporidium...
XP_001027000  16 KEGWLEKESKFLRSWRKRWFVLTNSTLYTFKESk----vYKNPTEVIPLKsvtTIKSAEDEtnKPHSFKLEVGErKFYMV 91  Tetrahymena the...
XP_002365210  20 KEGWLCKQSKFLKDWRRRWFVLTPYCLCSFKTSdi---yHSKPTEILFLRdcsTVKSADEDiqKENAFRVDTPNrVFFLI 96  Toxoplasma gond...
XP_001458080  14 KEGWLEKESRVFKSWRKRWFVLTTTTLYTFKAEk----qYSNPTEIIPLStisTIKSCQEEtnRENTFKIDTPEtTFFLM 89  Paramecium tetr...
XP_003082267 218 RAGWLTKRGDVIRTWRRRWFVLKDGKLFWFLDPshv-tpESKTRGVIDLRyclSSTSACDKtgKEASFEITCMGeSHLFI 296 Ostreococcus tauri
EIE26689     147 KAGWLQSQGEHIKTWRRRWFVLKQGYLFRFAGPdv--tsSSKARGLVDLSkvtDVSAARDAtgRNNSLMLSTPTgRVLYV 224 Coccomyxa sp. C...
XP_003055485  31 HAGWLEKQGDVIKTWRKRWFVLKDNKLFWFLDDdv--qqCSRVRGVIDVSkcmSVKGCDDAfgREHCFELSTRNeQMYFV 108 Micromonas pusi...
BAA84651     109 ADNEKEKEEWINSIGRSIVQHSRSVTDS 136 thale cress
XP_002967688 105 ADSDKEKEDWINSIGRSIVRHSRSITET 132 Selaginella moellendorffii
XP_001769612 105 ADTDKEKEDWINAIGRSIVRHSKSVTDD 132 Physcomitrella patens subsp. patens
XP_002139265  93 AENPLEKEEWIGQIGRQMIRPTVFQHDY 120 Cryptosporidium muris RN66
XP_001027000  92 ASANNEKEQWIGAIGKQMVKLIQRGKPS 119 Tetrahymena thermophila
XP_002365210  97 ADNNQEKESWIGHIGRQMVRPSVMVNDS 124 Toxoplasma gondii ME49
XP_001458080  90 SNNNQEKEAWIGAIGKAMVKLHMKKNQK 117 Paramecium tetraurelia strain d4-2
XP_003082267 297 CETVAEKDAWLSSIGSCIARASRGAADD 324 Ostreococcus tauri
EIE26689     225 ADSETEQVEWLSALEGSVAKIVRQVAGV 252 Coccomyxa sp. C-169
XP_003055485 109 CATKADKEGWLSCLGKAVVSTSRDTDGF 136 Micromonas pusilla CCMP1545
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