2e8d

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(New page: 200px<br /> <applet load="2e8d" size="450" color="white" frame="true" align="right" spinBox="true" caption="2e8d" /> '''3D Structure of amyloid protofilaments of b...)
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'''3D Structure of amyloid protofilaments of beta2-microglobulin fragment probed by solid-state NMR'''<br />
'''3D Structure of amyloid protofilaments of beta2-microglobulin fragment probed by solid-state NMR'''<br />
==Overview==
==Overview==
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Understanding the structure and formation of amyloid fibrils, the, filamentous aggregates of proteins and peptides, is crucial in preventing, diseases caused by their deposition and, moreover, for obtaining further, insight into the mechanism of protein folding and misfolding. We have, combined solid-state NMR, x-ray fiber diffraction, and atomic force, microscopy to reveal the 3D structure of amyloid protofilament-like, fibrils formed by a 22-residue K3 peptide (Ser(20)-Lys(41)) of, beta(2)-microglobulin, a protein responsible for dialysis-related, amyloidosis. Although a uniformly (13)C,(15)N-labeled sample was used for, the NMR measurements, we could obtain the 3D structure of the fibrils on, the basis of a large number of structural constraints. The conformation of, K3 fibrils was found to be a beta-strand-loop-beta-strand with each K3, molecule stacked in a parallel and staggered manner. It is suggested that, the fibrillar conformation is stabilized by intermolecular interactions, rather than by intramolecular hydrophobic packing as seen in globular, proteins. Together with thermodynamic studies of the full-length protein, formation of the fibrils is likely to require side chains on the, intermolecular surface to pack tightly against those of adjacent monomers., By revealing the structure of beta(2)-microglobulin protofilament-like, fibrils, this work represents technical progress in analyzing amyloid, fibrils in general through solid-state NMR.
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Understanding the structure and formation of amyloid fibrils, the filamentous aggregates of proteins and peptides, is crucial in preventing diseases caused by their deposition and, moreover, for obtaining further insight into the mechanism of protein folding and misfolding. We have combined solid-state NMR, x-ray fiber diffraction, and atomic force microscopy to reveal the 3D structure of amyloid protofilament-like fibrils formed by a 22-residue K3 peptide (Ser(20)-Lys(41)) of beta(2)-microglobulin, a protein responsible for dialysis-related amyloidosis. Although a uniformly (13)C,(15)N-labeled sample was used for the NMR measurements, we could obtain the 3D structure of the fibrils on the basis of a large number of structural constraints. The conformation of K3 fibrils was found to be a beta-strand-loop-beta-strand with each K3 molecule stacked in a parallel and staggered manner. It is suggested that the fibrillar conformation is stabilized by intermolecular interactions, rather than by intramolecular hydrophobic packing as seen in globular proteins. Together with thermodynamic studies of the full-length protein, formation of the fibrils is likely to require side chains on the intermolecular surface to pack tightly against those of adjacent monomers. By revealing the structure of beta(2)-microglobulin protofilament-like fibrils, this work represents technical progress in analyzing amyloid fibrils in general through solid-state NMR.
==Disease==
==Disease==
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==About this Structure==
==About this Structure==
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2E8D 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=2E8D OCA].
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2E8D 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=2E8D OCA].
==Reference==
==Reference==
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[[Category: beta2-microglobulin]]
[[Category: beta2-microglobulin]]
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''Page seeded by [http://ispc.weizmann.ac.il/oca OCA ] on Mon Nov 12 21:46:58 2007''
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 17:07:14 2008''

Revision as of 15:07, 21 February 2008


2e8d

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3D Structure of amyloid protofilaments of beta2-microglobulin fragment probed by solid-state NMR

Contents

Overview

Understanding the structure and formation of amyloid fibrils, the filamentous aggregates of proteins and peptides, is crucial in preventing diseases caused by their deposition and, moreover, for obtaining further insight into the mechanism of protein folding and misfolding. We have combined solid-state NMR, x-ray fiber diffraction, and atomic force microscopy to reveal the 3D structure of amyloid protofilament-like fibrils formed by a 22-residue K3 peptide (Ser(20)-Lys(41)) of beta(2)-microglobulin, a protein responsible for dialysis-related amyloidosis. Although a uniformly (13)C,(15)N-labeled sample was used for the NMR measurements, we could obtain the 3D structure of the fibrils on the basis of a large number of structural constraints. The conformation of K3 fibrils was found to be a beta-strand-loop-beta-strand with each K3 molecule stacked in a parallel and staggered manner. It is suggested that the fibrillar conformation is stabilized by intermolecular interactions, rather than by intramolecular hydrophobic packing as seen in globular proteins. Together with thermodynamic studies of the full-length protein, formation of the fibrils is likely to require side chains on the intermolecular surface to pack tightly against those of adjacent monomers. By revealing the structure of beta(2)-microglobulin protofilament-like fibrils, this work represents technical progress in analyzing amyloid fibrils in general through solid-state NMR.

Disease

Known disease associated with this structure: Hypoproteinemia, hypercatabolic OMIM:[109700]

About this Structure

2E8D is a Single protein structure of sequence from Homo sapiens. Full crystallographic information is available from OCA.

Reference

3D structure of amyloid protofilaments of beta2-microglobulin fragment probed by solid-state NMR., Iwata K, Fujiwara T, Matsuki Y, Akutsu H, Takahashi S, Naiki H, Goto Y, Proc Natl Acad Sci U S A. 2006 Nov 28;103(48):18119-24. Epub 2006 Nov 15. PMID:17108084

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