Protein structure prediction method based on distance constraint copy exchange

A protein structure and prediction method technology, applied in the analysis of two-dimensional or three-dimensional molecular structure, special data processing applications, instruments, etc., can solve problems such as low prediction accuracy, slow convergence speed, and high dimensionality of conformational space search

Inactive Publication Date: 2016-09-28
ZHEJIANG UNIV OF TECH
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AI Technical Summary

Problems solved by technology

[0006] In order to overcome the deficiencies of the existing population conformation space optimization methods, such as high conformation space search dimension, slow convergence speed, and low prediction accuracy, the present invention proposes a distance-constrained replica with better conformation space sampling ability and high prediction accuracy. Exchanged Protein Structure Prediction Methods

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  • Protein structure prediction method based on distance constraint copy exchange
  • Protein structure prediction method based on distance constraint copy exchange
  • Protein structure prediction method based on distance constraint copy exchange

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Embodiment Construction

[0041] The present invention will be further described below in conjunction with the accompanying drawings.

[0042] refer to figure 1 and figure 2 , a protein structure prediction method based on distance-constrained copy exchange, the conformational space optimization method comprising the following steps:

[0043] 1) given input sequence information;

[0044] 2) Obtain the distance spectrum file DP, rp from the QUARK server according to the sequence information k is the residue pair recorded in the distance spectrum, D k is the distance between the residue pairs, where k∈(1,N), N is the number of residue pairs in the distance spectrum;

[0045] 3) Initialization: set the population size popSize, crossover probability CR, 8 temperature layers T, and use Rosetta Score3 as the energy function. First, generate an initial population with a size of popSize by randomly folding and transforming the query sequence in each temperature layer. The initial population is P T ={x ...

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Abstract

The invention discloses a protein structure prediction method based on distance constraint copy exchange. The protein structure prediction method comprises the following steps: firstly, carrying out random folding and transformation on a query sequence in each temperature layer to generate an initial population; in population update, taking Rosetta Score3 as an optimal object function, and taking each individual in the population as a target individual in each temperature layer on the basis of a structure with lowest free energy when a protein native state structure which is put forward by Anfinsen is adopted; then, randomly selecting two individuals different from the target individual to carry out variation and cross to generate variation individuals, randomly selecting one section from another individual to carry out transformation with the variation individual to generate a test individual; carrying out energy value comparison on the test individual and the target individual, and introducing the knowledge of a distance spectrum for the test individual of which the energy rises; and carrying out copy exchange on the corresponding individual of an adjacent temperature layer. The protein structure prediction method has good conformational space sampling capability and high prediction accuracy.

Description

technical field [0001] The invention relates to the fields of bioinformatics and computer applications, in particular to a protein structure prediction method based on distance-constrained copy exchange. Background technique [0002] Protein molecules play a vital role in the process of biological and cellular chemical reactions. Their structural models and bioactive states have important implications for our understanding and cure of many diseases. Only when proteins are folded into a specific three-dimensional structure can they produce their unique biological functions. Therefore, to understand the function of a protein, it is necessary to obtain its three-dimensional structure. [0003] Protein tertiary structure prediction is an important task in bioinformatics. The biggest challenge facing the protein conformation optimization problem is to search the extremely complex protein energy function surface. The protein energy model takes into account the bonding of molec...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F19/16
CPCG16B15/00
Inventor 张贵军俞旭锋周晓根郝小虎王柳静张丹
Owner ZHEJIANG UNIV OF TECH
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