Summary: NPCBM-associated, NEW3 domain of alpha-galactosidase
NPCBM-associated, NEW3 domain of alpha-galactosidase Provide feedback
The English-language version of the first reference can be found on pages 388-399 of the above. This domain has been named NEW3 but its actual function is not known. It is found on proteins which are bacterial galactosidases . The domain is associated with the NPCBM family, PF08305 a novel putative carbohydrate binding module found at the N-terminus of glycosyl hydrolases.
Internal database links
|SCOOP:||CARDB DUF11 FixG_C TRAP_beta|
|Similarity to PfamA using HHSearch:||DUF11 CARDB|
- the number of sequences which exhibit this architecture
a textual description of the architecture, e.g. Gla, EGF x 2, Trypsin.
This example describes an architecture with one
Gladomain, followed by two consecutive
EGFdomains, and finally a single
- the UniProt description of the protein sequence
- the number of residues in the sequence
- the Pfam graphic itself.
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This clan includes a diverse range of domains that have an Ig-like fold and appear to be distantly related to each other. The clan includes: PKD domains, cadherins and several families of bacterial Ig-like domains as well as viral tail fibre proteins. it also includes several Fibronectin type III domain-containing families.
The clan contains the following 93 members:A2M A2M_N A2M_N_2 AlcCBM31 Alpha-amylase_N Alpha_adaptinC2 Arch_flagellin Arylsulfotran_N Big_1 Big_2 Big_3 Big_3_2 Big_3_3 Big_3_5 Big_4 Big_5 BiPBP_C BsuPI Cadherin Cadherin-like Cadherin_2 Cadherin_3 Cadherin_pro Calx-beta CARDB CBM39 CBM_X2 CelD_N CHB_HEX_C CHB_HEX_C_1 ChitinaseA_N CHU_C Coatamer_beta_C COP-gamma_platf CopC DUF11 DUF1410 DUF2271 DUF3244 DUF4165 DUF4625 DUF5011 DUF916 EpoR_lig-bind Filamin FixG_C FlgD_ig fn3 Fn3-like fn3_2 fn3_4 fn3_5 Fn3_assoc GBS_Bsp-like Glyco_hydro_61 He_PIG HYR IFNGR1 IL12p40_C IL17R_fnIII_D2 IL4Ra_N IL6Ra-bind Integrin_alpha2 Interfer-bind Invasin_D3 LEA_2 Lep_receptor_Ig LPMO_10 LRR_adjacent MG1 Mo-co_dimer Neurexophilin NPCBM_assoc PhoD_N PKD PKD_2 PKD_3 Pur_ac_phosph_N Qn_am_d_aIII REJ RHD_dimer Rib SoxZ SprB SVA SWM_repeat T2SS-T3SS_pil_N TcfC TIG Tissue_fac Transglut_C TRAP_beta Y_Y_Y
We make a range of alignments for each Pfam-A family:
- the curated alignment from which the HMM for the family is built
- the alignment generated by searching the sequence database using the HMM
- Representative Proteomes (RPs) at 15%, 35%, 55% and 75% co-membership thresholds
- alignment generated by searching the UniProtKB sequence database using the family HMM
- alignment generated by searching the NCBI sequence database using the family HMM
- alignment generated by searching the metagenomics sequence database using the family HMM
You can see the alignments as HTML or in three different sequence viewers:
1Cannot generate PP/Heatmap alignments for seeds; no PP data available
Key: available, not generated, — not available.
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Curation and family details
|Seed source:||Pfam-B_97993 (release 22.0)|
|Author:||Naumoff D, Coggill P|
|Number in seed:||23|
|Number in full:||765|
|Average length of the domain:||77.90 aa|
|Average identity of full alignment:||21 %|
|Average coverage of the sequence by the domain:||11.65 %|
|HMM build commands:||
build method: hmmbuild -o /dev/null HMM SEED
search method: hmmsearch -Z 26740544 -E 1000 --cpu 4 HMM pfamseq
|Family (HMM) version:||8|
|Download:||download the raw HMM for this family|
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The tree shows the occurrence of this domain across different species. More...
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There are 2 interactions for this family. More...
For those sequences which have a structure in the Protein DataBank, we use the mapping between UniProt, PDB and Pfam coordinate systems from the PDBe group, to allow us to map Pfam domains onto UniProt sequences and three-dimensional protein structures. The table below shows the structures on which the NPCBM_assoc domain has been found. There are 11 instances of this domain found in the PDB. Note that there may be multiple copies of the domain in a single PDB structure, since many structures contain multiple copies of the same protein seqence.
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