1ixa

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(New page: 200px<br /> <applet load="1ixa" size="450" color="white" frame="true" align="right" spinBox="true" caption="1ixa" /> '''THE THREE-DIMENSIONAL STRUCTURE OF THE FIRS...)
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'''THE THREE-DIMENSIONAL STRUCTURE OF THE FIRST EGF-LIKE MODULE OF HUMAN FACTOR IX: COMPARISON WITH EGF AND TGF-A'''<br />
'''THE THREE-DIMENSIONAL STRUCTURE OF THE FIRST EGF-LIKE MODULE OF HUMAN FACTOR IX: COMPARISON WITH EGF AND TGF-A'''<br />
==Overview==
==Overview==
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The three-dimensional structure of the first epidermal growth factor, (EGF)-like module from human factor IX has been determined in solution, using two-dimensional nuclear magnetic resonance (in the absence of, calcium and at pH 4.5). The structure was found to resemble closely that, of EGF and the homologous transforming growth factor-alpha (TGF-alpha)., Residues 60-65 form an antiparallel beta-sheet with residues 68-73. In the, C-terminal subdomain a type II beta-turn is found between residues 74 and, 77 and a five-residue turn is found between residues 79 and 83. Glu 78 and, Leu 84 pair in an antiparallel beta-sheet conformation. In the N-terminal, region a loop is found between residues 50 and 55 such that the side, chains of both are positioned above the face of the beta-sheet. Residues, 56-60 form a turn that leads into the first strand of the beta-sheet., Whereas the global fold closely resembles that of EGF, the N-terminal, residues of the module (46-49) do not form a beta-strand but are, ill-defined in the structure, probably due to the local flexibility of, this region. The structure is discussed with reference to recent, site-directed mutagenesis data, which have identified certain conserved, residues as ligands for calcium.
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The three-dimensional structure of the first epidermal growth factor (EGF)-like module from human factor IX has been determined in solution using two-dimensional nuclear magnetic resonance (in the absence of calcium and at pH 4.5). The structure was found to resemble closely that of EGF and the homologous transforming growth factor-alpha (TGF-alpha). Residues 60-65 form an antiparallel beta-sheet with residues 68-73. In the C-terminal subdomain a type II beta-turn is found between residues 74 and 77 and a five-residue turn is found between residues 79 and 83. Glu 78 and Leu 84 pair in an antiparallel beta-sheet conformation. In the N-terminal region a loop is found between residues 50 and 55 such that the side chains of both are positioned above the face of the beta-sheet. Residues 56-60 form a turn that leads into the first strand of the beta-sheet. Whereas the global fold closely resembles that of EGF, the N-terminal residues of the module (46-49) do not form a beta-strand but are ill-defined in the structure, probably due to the local flexibility of this region. The structure is discussed with reference to recent site-directed mutagenesis data, which have identified certain conserved residues as ligands for calcium.
==Disease==
==Disease==
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==About this Structure==
==About this Structure==
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1IXA is a [http://en.wikipedia.org/wiki/Single_protein Single protein] structure of sequence from [http://en.wikipedia.org/wiki/Homo_sapiens Homo sapiens]. Full crystallographic information is available from [http://ispc.weizmann.ac.il/oca-bin/ocashort?id=1IXA OCA].
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1IXA is a [http://en.wikipedia.org/wiki/Single_protein Single protein] structure of sequence from [http://en.wikipedia.org/wiki/Homo_sapiens Homo sapiens]. Full crystallographic information is available from [http://oca.weizmann.ac.il/oca-bin/ocashort?id=1IXA OCA].
==Reference==
==Reference==
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[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Baron, M.]]
[[Category: Baron, M.]]
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[[Category: Brownlee, G.G.]]
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[[Category: Brownlee, G G.]]
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[[Category: Campbell, I.D.C.]]
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[[Category: Campbell, I D.C.]]
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[[Category: Hanford, P.A.]]
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[[Category: Hanford, P A.]]
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[[Category: Harvey, T.S.]]
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[[Category: Harvey, T S.]]
[[Category: Mayhew, M.]]
[[Category: Mayhew, M.]]
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[[Category: Norman, D.G.]]
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[[Category: Norman, D G.]]
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[[Category: Tse, A.G.D.]]
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[[Category: Tse, A G.D.]]
[[Category: human factor ix]]
[[Category: human factor ix]]
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''Page seeded by [http://ispc.weizmann.ac.il/oca OCA ] on Mon Nov 12 17:35:39 2007''
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 13:16:39 2008''

Revision as of 11:16, 21 February 2008


1ixa

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THE THREE-DIMENSIONAL STRUCTURE OF THE FIRST EGF-LIKE MODULE OF HUMAN FACTOR IX: COMPARISON WITH EGF AND TGF-A

Contents

Overview

The three-dimensional structure of the first epidermal growth factor (EGF)-like module from human factor IX has been determined in solution using two-dimensional nuclear magnetic resonance (in the absence of calcium and at pH 4.5). The structure was found to resemble closely that of EGF and the homologous transforming growth factor-alpha (TGF-alpha). Residues 60-65 form an antiparallel beta-sheet with residues 68-73. In the C-terminal subdomain a type II beta-turn is found between residues 74 and 77 and a five-residue turn is found between residues 79 and 83. Glu 78 and Leu 84 pair in an antiparallel beta-sheet conformation. In the N-terminal region a loop is found between residues 50 and 55 such that the side chains of both are positioned above the face of the beta-sheet. Residues 56-60 form a turn that leads into the first strand of the beta-sheet. Whereas the global fold closely resembles that of EGF, the N-terminal residues of the module (46-49) do not form a beta-strand but are ill-defined in the structure, probably due to the local flexibility of this region. The structure is discussed with reference to recent site-directed mutagenesis data, which have identified certain conserved residues as ligands for calcium.

Disease

Known diseases associated with this structure: Hemophilia B OMIM:[306900], Warfarin sensitivity OMIM:[306900]

About this Structure

1IXA is a Single protein structure of sequence from Homo sapiens. Full crystallographic information is available from OCA.

Reference

The three-dimensional structure of the first EGF-like module of human factor IX: comparison with EGF and TGF-alpha., Baron M, Norman DG, Harvey TS, Handford PA, Mayhew M, Tse AG, Brownlee GG, Campbell ID, Protein Sci. 1992 Jan;1(1):81-90. PMID:1304885

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