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New page: left|200px<br /><applet load="2out" size="350" color="white" frame="true" align="right" spinBox="true" caption="2out" /> '''Solution Structure of HI1506, a Novel Two Do...
 
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==Overview==
==Overview==
HI1506 is a 128-residue hypothetical protein of unknown function from, Haemophilus influenzae. It was originally annotated as a shorter, 85-residue protein, but a more detailed sequence analysis conducted in our, laboratory revealed that the full-length protein has an additional 43, residues on the C terminus, corresponding with a region initially ascribed, to HI1507. As part of a larger effort to understand the functions of, hypothetical proteins from Gram-negative bacteria, and H. influenzae in, particular, we report here the three-dimensional solution NMR structure, for the corrected full-length HI1506 protein. The structure consists of, two well-defined domains, an alpha/beta 50-residue N-domain and a 3-alpha, 32-residue C-domain, separated by an unstructured 30-residue linker. Both, domains have positively charged surface patches and weak structural, homology with folds that are associated with RNA binding, suggesting a, possible functional role in binding distal nucleic acid sites.
HI1506 is a 128-residue hypothetical protein of unknown function from Haemophilus influenzae. It was originally annotated as a shorter 85-residue protein, but a more detailed sequence analysis conducted in our laboratory revealed that the full-length protein has an additional 43 residues on the C terminus, corresponding with a region initially ascribed to HI1507. As part of a larger effort to understand the functions of hypothetical proteins from Gram-negative bacteria, and H. influenzae in particular, we report here the three-dimensional solution NMR structure for the corrected full-length HI1506 protein. The structure consists of two well-defined domains, an alpha/beta 50-residue N-domain and a 3-alpha 32-residue C-domain, separated by an unstructured 30-residue linker. Both domains have positively charged surface patches and weak structural homology with folds that are associated with RNA binding, suggesting a possible functional role in binding distal nucleic acid sites.


==About this Structure==
==About this Structure==
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[[Category: Herzberg, O.]]
[[Category: Herzberg, O.]]
[[Category: Orban, J.]]
[[Category: Orban, J.]]
[[Category: S2F, Structure.2.Function.Project.]]
[[Category: S2F, Structure 2.Function Project.]]
[[Category: Sari, N.]]
[[Category: Sari, N.]]
[[Category: Schwarz, F.]]
[[Category: Schwarz, F.]]
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[[Category: structure 2 function project]]
[[Category: structure 2 function project]]


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