Literature DB >> 19017634

A comprehensive model for packing and hydration for amyloid fibrils of beta2-microglobulin.

Young-Ho Lee1, Eri Chatani, Kenji Sasahara, Hironobu Naiki, Yuji Goto.   

Abstract

Volume can provide informative structural descriptions of macromolecules such as proteins in solution because a final volumetric outcome accompanies the exquisite equipoise of packing effects between residues, and residues and waters inside and outside proteins. Here we performed systematic investigations on the volumetric nature of the amyloidogenic conformations of beta2-microglobulin (beta2-m) and its amyloidogenic core peptide, K3, using a high precision densitometer. The transition from the acid-denatured beta2-m to the mature amyloid fibrils was accompanied by a positive change in the partial specific volume, which was larger than that observed for the transition from the acid-denatured beta2-m to the native structure. The data imply that the mature amyloid fibrils are more voluminous than the native structure because of a sparse packing density of side chains. In contrast, the formation of the mature amyloid-like fibrils of the K3 from the random coil was followed by a considerable decrease in the partial specific volume, suggesting a highly compact core structure. Interestingly, the immature amyloid-like fibrils of beta2-m exhibited a volume intermediate between those of the mature fibrils of beta2-m and K3, because of the core structure at their center and the relatively noncompact region around the core with much hydration. These volumetric differences would result from the nature of main-chain-dominated fibrillogenesis. We suggest comprehensive models for these three types of fibrils illustrating packing and hydrational states.

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Year:  2008        PMID: 19017634     DOI: 10.1074/jbc.M806939200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  22 in total

1.  Structural and mechanical properties of TTR105-115 amyloid fibrils from compression experiments.

Authors:  Filip Meersman; Raúl Quesada Cabrera; Paul F McMillan; Vladimir Dmitriev
Journal:  Biophys J       Date:  2011-01-05       Impact factor: 4.033

2.  Ultrasonication-dependent production and breakdown lead to minimum-sized amyloid fibrils.

Authors:  Eri Chatani; Young-Ho Lee; Hisashi Yagi; Yuichi Yoshimura; Hironobu Naiki; Yuji Goto
Journal:  Proc Natl Acad Sci U S A       Date:  2009-06-29       Impact factor: 11.205

3.  Heat of supersaturation-limited amyloid burst directly monitored by isothermal titration calorimetry.

Authors:  Tatsuya Ikenoue; Young-Ho Lee; József Kardos; Hisashi Yagi; Takahisa Ikegami; Hironobu Naiki; Yuji Goto
Journal:  Proc Natl Acad Sci U S A       Date:  2014-04-21       Impact factor: 11.205

Review 4.  Application and use of differential scanning calorimetry in studies of thermal fluctuation associated with amyloid fibril formation.

Authors:  Kenji Sasahara; Yuji Goto
Journal:  Biophys Rev       Date:  2012-11-13

5.  Supersaturation-limited amyloid fibrillation of insulin revealed by ultrasonication.

Authors:  Hiroya Muta; Young-Ho Lee; József Kardos; Yuxi Lin; Hisashi Yagi; Yuji Goto
Journal:  J Biol Chem       Date:  2014-05-20       Impact factor: 5.157

6.  Cryo-EM reveals the steric zipper structure of a light chain-derived amyloid fibril.

Authors:  Andreas Schmidt; Karthikeyan Annamalai; Matthias Schmidt; Nikolaus Grigorieff; Marcus Fändrich
Journal:  Proc Natl Acad Sci U S A       Date:  2016-05-16       Impact factor: 11.205

7.  High-throughput analysis of ultrasonication-forced amyloid fibrillation reveals the mechanism underlying the large fluctuation in the lag time.

Authors:  Ayaka Umemoto; Hisashi Yagi; Masatomo So; Yuji Goto
Journal:  J Biol Chem       Date:  2014-08-12       Impact factor: 5.157

8.  Stacked sets of parallel, in-register beta-strands of beta2-microglobulin in amyloid fibrils revealed by site-directed spin labeling and chemical labeling.

Authors:  Carol L Ladner; Min Chen; David P Smith; Geoffrey W Platt; Sheena E Radford; Ralf Langen
Journal:  J Biol Chem       Date:  2010-03-24       Impact factor: 5.157

9.  Fibril fragmentation enhances amyloid cytotoxicity.

Authors:  Wei-Feng Xue; Andrew L Hellewell; Walraj S Gosal; Steve W Homans; Eric W Hewitt; Sheena E Radford
Journal:  J Biol Chem       Date:  2009-10-06       Impact factor: 5.157

Review 10.  Ligand binding and hydration in protein misfolding: insights from studies of prion and p53 tumor suppressor proteins.

Authors:  Jerson L Silva; Tuane C R G Vieira; Mariana P B Gomes; Ana Paula Ano Bom; Luis Mauricio T R Lima; Monica S Freitas; Daniella Ishimaru; Yraima Cordeiro; Debora Foguel
Journal:  Acc Chem Res       Date:  2010-02-16       Impact factor: 22.384

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