| URL: | http://bar.biocomp.unibo.it/mg |
| Full name: | magnesome |
| Description: | "human magnesome", a set of proteins of the human proteome that inherit putative binding of magnesium ions. With our BAR-hMG, 251 clusters including 1,341 magnesium binding protein structures corresponding to 387 sequences are sufficient to annotate some 13,689 residues in 3,751 human sequences as "magnesium binding". Protein structures act therefore as three dimensional seeds for structural and functional annotation of human sequences. |
| Year founded: | 2012 |
| Last update: | |
| Version: | |
| Accessibility: |
Accessible
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| Country/Region: | Italy |
| Data type: | |
| Data object: |
NA
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| Database category: | |
| Major species: | |
| Keywords: |
| University/Institution: | University of Bologna |
| Address: | Biocomputing Group, Department of Biology, University of Bologna, Bologna, 40126, Italy |
| City: | Bologna |
| Province/State: | |
| Country/Region: | Italy |
| Contact name (PI/Team): | Rita Casadio |
| Contact email (PI/Helpdesk): | Casadio@biocomp.unibo.it |
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The human "magnesome": detecting magnesium binding sites on human proteins. [PMID: 23095498]
BACKGROUND: Magnesium research is increasing in molecular medicine due to the relevance of this ion in several important biological processes and associated molecular pathogeneses. It is still difficult to predict from the protein covalent structure whether a human chain is or not involved in magnesium binding. This is mainly due to little information on the structural characteristics of magnesium binding sites in proteins and protein complexes. Magnesium binding features, differently from those of other divalent cations such as calcium and zinc, are elusive. Here we address a question that is relevant in protein annotation: how many human proteins can bind Mg2+? Our analysis is performed taking advantage of the recently implemented Bologna Annotation Resource (BAR-PLUS), a non hierarchical clustering method that relies on the pair wise sequence comparison of about 14 millions proteins from over 300.000 species and their grouping into clusters where annotation can safely be inherited after statistical validation. |