NONLINEAR CONFORMATION OF SECONDARY PROTEIN FOLDING

Author:

JANUAR M.1,SULAIMAN A.2,HANDOKO L.T.31

Affiliation:

1. Department of Physics, University of Indonesia, Kampus UI Depok, Depok 16424, Indonesia

2. Badan Pengkajian dan Penerapan Teknologi, BPPT Bld. II (19th floor), Jl. M.H. Thamrin 8, Jakarta 10340, Indonesia

3. Group for Theoretical and Computational Physics, Research Center for Physics, Indonesian Institute of Sciences, Kompleks Puspiptek Serpong, Tangerang, Indonesia

Abstract

A model to describe the mechanism of conformational dynamics in secondary protein based on matter interactions is proposed. The approach deploys the lagrangian method by imposing certain symmetry breaking. The protein backbone is initially assumed to be nonlinear and represented by the Sine-Gordon equation, while the nonlinear external bosonic sources is represented by ϕ4 interaction. It is argued that the nonlinear source induces the folding pathway in a different way than the previous work with initially linear backbone. Also, the nonlinearity of protein backbone decreases the folding speed.

Publisher

World Scientific Pub Co Pte Lt

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