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1 olves within 3-5 days, the mesh is gradually pleated, allowing delayed fascial closure); stage II, ab
2 hy is caused by deposition of insoluble beta-pleated amyloid sheets in the peripheral nervous system.
3                                          New pleated and coiled geometries for the compact layout of
4  conformers, including ribbonlike structures pleated around a rarely observed series of intramolecula
5 ficant deviation is that the chains met in a pleated arrangement at the bilayer center, although they
6  constructed an atomic model for the twisted pleated beta-sheet of human Abeta amyloid protofilament.
7                      The architecture of two pleated beta-sheets and the conformation of the H1 and H
8 loid fibrils have suggested that the stacked pleated beta-sheets are twisted so that a repeating unit
9 airpins that assemble to form both canonical pleated beta-sheets as well as stereocomplexed rippled b
10 hat the Abeta deposit assumes a compact beta-pleated conformation.
11 he sequence Dan-Ndi-Dan was shown to adopt a pleated fold in solution, while its constitutional isome
12 f the pattern is uniform, it is known as the pleated hyperbolic paraboloid (hypar) origami.
13 ami' method to producing 3D shapes formed as pleated layers of double helices constrained to a honeyc
14 ng custom three-dimensional shapes formed as pleated layers of helices constrained to a honeycomb lat
15 ed, three-dimensional (3D) objects formed as pleated layers of helices constrained to a honeycomb lat
16             The crystalline network contains pleated nanosheets with the metal ions aligned in string
17 n of aedamers--foldamers that adopt a novel, pleated secondary structure in aqueous solution.
18 D spectrum was consistent with a mostly beta-pleated secondary structure.
19 gn of DNA sequences for folding 3D honeycomb-pleated shapes A series of rectangular-block motifs were
20 und-B (PiB) binds with high affinity to beta-pleated sheet aggregates of the amyloid-beta (Abeta) pep
21 amyloid-beta or phosphorylated tau in a beta-pleated sheet amyloid configuration.
22 r more alpha-helices, a middle layer of beta-pleated sheet and a top layer formed by segments of the
23 ucture of this protein has considerable beta-pleated sheet and is very compact.
24  beta-hairpin conformation and extended beta-pleated sheet assembly have been characterized by single
25 ructure, must undergo a transition to a beta-pleated sheet by a mechanism shared by other lipoprotein
26 ties in vivo when it adopts a fibrillar beta-pleated sheet conformation.
27 t rather seemed to be directed toward a beta-pleated sheet conformational epitope expressed by AL and
28 e sites are thought to be important for beta-pleated sheet formation.
29 -beta-strand turn of the three-stranded beta-pleated sheet of beta2m.
30                                          The pleated sheet region of the leucine-rich G-protein-coupl
31 ve and below peptide planes of internal beta-pleated sheet residues in five globular proteins.
32  proteins, we observe the formation of alpha-pleated sheet secondary structure, which was first propo
33 that tear lipocalins have a predominant beta-pleated sheet structure (44%) that is essentially retain
34 ansthyretin and beta(2)-microglobulin, alpha-pleated sheet structure formed over the strands that are
35       We propose that the formation of alpha-pleated sheet structure may be a common conformational t
36 1-42) into the neurotoxic amyloid-like, beta-pleated sheet structure, and instead encourages folding
37 hosphorylated, and nor did they contain beta-pleated sheet structure.
38  dyes that bind specifically to crossed beta-pleated sheet structures (eg, Congo red, Thioflavin S).
39  that the trimers were formed mainly of beta-pleated sheet structures in detergent micelles.
40 its, the ABri peptide adopts aggregated beta-pleated sheet structures, similar to those formed by the
41 omain is characterized by 10 strands of beta-pleated sheet that form two distinct layers which lie ne
42 nsists of a single twisted antiparallel beta-pleated sheet with Greek-key topology.
43 sed of 27 +/- 3% alpha-helix, 20 +/- 3% beta-pleated sheet, and 53 +/- 3% coil.
44                      In addition, the 2 beta-pleated sheet-derived peptides and the alpha1-derived pe
45                    In particular, the 2 beta-pleated sheet-derived peptides covering residues 91 to 1
46 eight-stranded cup-shaped anti-parallel beta-pleated sheet.
47 are predicted to have a high content of beta-pleated sheet.
48  structural element of the antiparallel beta-pleated sheet.
49 formations into soluble, macromolecular beta-pleated-sheet complexes without any covalent modificatio
50            Significance for controlling beta-pleated-sheet content during thermal processing of bioma
51                                         Beta-pleated-sheet crystals are among the most stable of prot
52 ng, and the accepted paradigm, was that beta-pleated-sheet crystals in the dry solid state were so st
53 llar crystals of synthetic polymers and beta-pleated-sheet crystals is confirmed.
54 rn that assumption and demonstrate that beta-pleated-sheet crystals melt directly from the solid stat
55 t reversible thermal melting of protein beta-pleated-sheet crystals, exemplified by silk fibroin.
56 rmation into insoluble cell-deleterious beta-pleated-sheet motifs.
57 s are discussed, namely tight (occludin) and pleated-sheet septate (neurexin IV).
58 forms in the peripheral nervous system where pleated-sheet septate junctions bond cells of the nascen
59 structural analogs of the BBB are occlusive (pleated-sheet) septate and tight junctions between perin
60 ) polymers that self-assemble into nanoscale pleated sheets of hairpin RNA, which in turn form sponge
61 support the changing of the alpha-helix/beta-pleated sheets ratio in protein structure analysis.
62  In PD, alpha-syn misfolds into multimeric b-pleated sheets that aggregate in neurons (Lewy Bodies/ne
63 lular and filamentous structure rich in beta-pleated sheets, Biondi ring tangles might attract the ad
64 ere we show that this gB fragment forms beta-pleated sheets, self-assembles into fibrils that are thi
65 iders produce viscid silk consisting of beta-pleated sheets, whereas Arachnocampa has cross-beta-shee
66 osed of two three-stranded antiparallel beta-pleated sheets.
67 peptide (Abeta), which forms fibrils of beta-pleated sheets.
68 oximately perpendicular to the faces of beta-pleated sheets.
69 the elegant shape folded from concentrically pleated squares, with either uniform or non-uniform (e.g
70 ing smooth saddle shapes from concentrically pleated squares.
71 aracteristics consistent with folding in the pleated, stacked geometry characteristic of this class o
72 , adopted an intrachain H-bonding-stabilized pleated structure.
73                  Cultures in collagen-coated pleated surface roller bottles, with hepatocyte growth m
74 ent network to structurally rearrange from a pleated to an intercalated columnar structure.
75 oral protrusion; type IIB, prominent tubular pleated type, with an oral protrusion and > 2 transverse
76 of DNA origami nanotubes and demonstrate how pleated walls can provide a strategy to rigidify nanotub
77                These include structures with pleated walls where the same number of duplexes can form
78 ting model, where each fibrillin molecule is pleated within one microfibril period allowing extensibi