Summary: BNR/Asp-box repeat
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This is the Wikipedia entry entitled "Bacterial neuraminidase". More...
Bacterial neuraminidase
| Structure of a bacterial sialidase.[1] | |||||||||
| Identifiers | |||||||||
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| Symbol | BNR | ||||||||
| Pfam | PF02012 | ||||||||
| Pfam clan | CL0434 | ||||||||
| InterPro | IPR002860 | ||||||||
| SCOP | 1euu | ||||||||
| SUPERFAMILY | 1euu | ||||||||
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Bacterial neuraminidase is type of neuraminidase and a virulence factor for many bacteria including Bacteroides fragilis and Pseudomonas aeruginosa. Its function is to cleave a sialic acid residue off ganglioside-GM1 (a modulator of cell surface and receptor activity) turning it into asialo-GM1 to which type 4 pilli (attachment factors) bind preferentially.
[edit] References
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This page is based on a Wikipedia article. The text is available under the Creative Commons Attribution/Share-Alike License.
This tab holds the annotation information that is stored in the Pfam database. As we move to using Wikipedia as our main source of annotation, the contents of this tab will be gradually replaced by the Wikipedia tab.
BNR/Asp-box repeat
Members of this family contain multiple BNR (bacterial neuraminidase repeat) repeats or Asp-boxes. The repeats are short, however the repeats are never found closer than 40 residues together suggesting that the repeat is structurally longer. These repeats are found in many glycosyl hydrolases as well as other extracellular proteins of unknown function.
Literature references
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Roggentin P, Rothe B, Kaper JB, Galen J, Lawrisuk L, Vimr ER, Schauer R; , Glycoconj J 1989;6:349-353.: Conserved sequences in bacterial and viral sialidases. PUBMED:2562507
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Copley RR, Russell RB, Ponting CP; , Protein Sci 2001;10:285-292.: Sialidase-like Asp-boxes: sequence-similar structures within different protein folds. PUBMED:11266614
Clan
This family is a member of clan Sialidase (CL0434), which has a total of 6 members.
External database links
| CAZY: | GH33 GH58 |
| HOMSTRAD: | ghf33 |
| PANDIT: | PF02012 |
| Pseudofam: | PF02012 |
| SCOP: | 1euu |
| SYSTERS: | BNR |
This tab holds annotation information from the InterPro database.
InterPro entry IPR002860
Members of this entry contain multiple BNR (bacterial neuraminidase repeat) repeats or Asp-boxes. The repeats are short, however the repeats are never found closer than 40 residues together suggesting that the repeat is structurally longer. These repeats are found in a variety of non-homologous proteins, including bacterial ribonucleases, sulphite oxidases, reelin, netrins, sialidases, neuraminidases, some lipoprotein receptors, and a variety of glycosyl hydrolases [PUBMED:11266614].
Domain organisation
Below is a listing of the unique domain organisations or architectures in which this domain is found. More...
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Pfam Clan
Alignments
There are various ways to view or download the sequence alignments that we store. You can use a sequence viewer to look at either the seed or full alignment for the family, or you can look at a plain text version of the sequence in a variety of different formats. More...
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Formatting options
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Very large alignments can often cause problems for the formatting tool above. If you find that downloading or viewing a large alignment is problematic, you can also download a gzip-compressed, Stockholm-format file containing the seed or full alignment for this family.
You can also download a FASTA format file containing the full-length sequences for all sequences in the full alignment.
The main seed and full alignments are generated using sequences from the UniProt sequence database. However, we also generate alignments using sequences from the NCBI sequence database and the "metaseq" metagenomics dataset.
You can view alignments from these two additional datasets using the form above, or you can download alignments of NCBI or metagenomics sequences, as gzip-compressed files.
External links
MyHits provides a collection of tools to handle multiple sequence alignments. For example, one can refine a seed alignment (sequence addition or removal, re-alignment or manual edition) and then search databases for remote homologs using HMMER3.
HMM logo
HMM logos is one way of visualising profile HMMs. Logos provide a quick overview of the properties of an HMM in a graphical form. You can see a more detailed description of HMM logos and find out how you can interpret them here. More...
Trees
This page displays the phylogenetic tree for this family. We use FastTree to calculate neighbour join trees with a local bootstrap based on 100 resamples (shown next to the tree nodes). FastTree calculates approximately-maximum-likelihood phylogenetic trees from our seed or full alignments.
Note: You can also download the data files for the seed, full, NCBI or metagenomics trees.
Curation and family details
This section shows the detailed information about the Pfam family. You can see the definitions of many of the terms in this section in the glossary and a fuller explanation of the scoring system that we use in the scores section of the help pages.
Curation
| Seed source: | Bateman A |
| Previous IDs: | none |
| Type: | Repeat |
| Author: | Bateman A |
| Number in seed: | 188 |
| Number in full: | 544 |
| Average length of the domain: | 12.00 aa |
| Average identity of full alignment: | 54 % |
| Average coverage of the sequence by the domain: | 2.17 % |
HMM information
| HMM build commands: |
build method: hmmbuild -o /dev/null HMM SEED
search method: hmmsearch -Z 15929002 -E 1000 --cpu 4 HMM pfamseq
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| Model details: |
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| Model length: | 12 | ||||||||||||
| Family (HMM) version: | 15 | ||||||||||||
| Download: | download the raw HMM for this family |
Species distribution
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Colour assignments
Archea
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Eukaryota
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Bacteria
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Other sequences
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Viruses
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Unclassified
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Viroids
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Unclassified sequence
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This visualisation provides a simple graphical representation of the distribution of this family across species. You can find the original interactive tree in the adjacent tab if you need to select sub-trees and view sequence alignments. More...
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Interactions
There is 1 interaction for this family. More...
Kelch_1Structures
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 BNR domain has been found. There are 9 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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Archea
Eukaryota
Bacteria
Other sequences
Viruses
Unclassified
Viroids
Unclassified sequence