2013 Fiscal Year Final Research Report
Computational Analysis for Amyloid Formation
Project/Area Number |
23770175
|
Research Category |
Grant-in-Aid for Young Scientists (B)
|
Allocation Type | Multi-year Fund |
Research Field |
Biophysics
|
Research Institution | Chiba Institute of Technology (2012-2013) Nagoya University (2011) |
Principal Investigator |
|
Project Period (FY) |
2011 – 2013
|
Keywords | アミロイド / シミュレーション / タンパク質 / プリオン / 分子動力学 |
Research Abstract |
The developing mechanism of prion diseases has remained unclear. In this study, based on molecular dynamics simulations, we investigated the structural instability in prion protein (PrP), which promotes a partial helix-to-sheet conformational conversion. This instability of PrP facilitates the formation of active intermediate precursors (PrP*) that can lead to the conformational conversion of the normal prion protein (PrPC) to the pathogenic isoform (PrPSc). We propose a novel method to systematically construct a free-energy landscape by mapping massive protein structural data into a reduced space according to their secondary structures, named secondary structure principal component analysis (SSPCA). The definite existence of PrP* was confirmed in the free-energy landscape. The existence ratio in number of PrP* to its normal form was estimated to be 0.07. The SSPCA method has great potential to solve various challenges in studying highly flexible molecular systems, other than PrPs.
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Research Products
(4 results)