Statistical potential

Statistical potential

In protein structure prediction, a statistical potential (also knowledge-based potential, empirical potential, or residue contact potential) is an energy function derived from an analysis of known structures in the Protein Data Bank. Typical measures could be phi / psi backbone torsion angles, binned by residue pairs or triplets, solvent accessibility, hydrogen bond characteristics, or empirical observations about the likelihood of native contacts between any two amino acid residues in the native state tertiary structure of a protein. Taking the last case as our example, in its simplest form, a statistical potential is formulated as an interaction matrix that assigns a weight or energy value to each possible contact pair of standard amino acids. The energy of a particular structural model is then the combined energy of all the residue-residue contacts (often defined as residues within 4Å) identified in the structure. The probabilities or weights are determined by statistical examination of native contacts present in a database of structures represented in the Protein Data Bank. According to the energy landscape view of protein folding, structures that closely resemble the native state will be distinguishably lower in free energy than those that are different from the native state.

The equation for converting a statistical potential to an energy level is

delta w [i] = - k T log( p [i] / p [reference] )

p [i] - the probability of observing a protein in bin i.p [reference] - the probability of observing the protein in the reference state.

k - Boltzmann constant.T - Temperature.

This derives from the Boltzmann distribution. Molecules spend some of their time is less energetically favourable configurations when the temperature rises above absolute zero . The reference state is required because we cannot calcuate an absolute free energy level.

Statistical potentials are used as energy functions in the assessment of an ensemble of structural models produced by homology modeling or protein threading - predictions for the tertiary structure assumed by a particular amino acid sequence made on the basis of comparisons to one or more homologous proteins whose structures have been experimentally determined. Many differently parameterized statistical potentials have been shown to successfully identify the native state structure from an ensemble of "decoy" or non-native structures.Narang P, Bhushan K, Bose S, Jayaram B. (2006). Protein structure evaluation using an all-atom energy based empirical scoring function. "J Biomol Struct Dyn" 23(4):385-406. ] Sippl MJ. (1993). Recognition of Errors in Three-Dimensional Structures of Proteins. "Proteins" 17:355-62.] Bryant SH, Lawrence CE. (1993). An empirical energy function for threading protein sequence through the folding motif. "Proteins" 16(1):92-112. ] In response to criticism that statistical potentials capture only the tendency of hydrophobic amino acids to pack closely in the hydrophobic core of a globular protein, refinements have included the creation of two interaction matrices parameterized separately for residues in the core and those on the solvent-accessible surface of the protein.Park K, Vendruscolo M, Domany E. (2000). Toward an energy function for the contact map representation of proteins. "Proteins" 40(2):237-48. ] The primary alternative method for assessing ensembles of models and identifying the lowest-energy structure represented relies on direct energy calculations, which are more computationally expensive than statistical potentials due to the necessity of calculating long-range electrostatic interactions.

Statistical potentials are not only useful in protein structure prediction, but are also capable of reproducing the protein folding pathways cite journal |author=Kmiecik S and Kolinski A |title=Characterization of protein-folding pathways by reduced-space modeling |journal=Proc. Natl. Acad. Sci. U.S.A. |volume=104 |issue=30 |pages=12330–12335 |year=2007 |url=http://www.pnas.org/cgi/content/abstract/104/30/12330 |pmid=17636132 |doi=10.1073/pnas.0702265104] . This observation strongly suggests that the interactions in the denatured state are very similar to those in the native structures. Consequently, the knowledge-based potentials derived from native structures are a good approximation of the interactions in the denatured state.

References

ee also

* Potential energy
* Molecular dynamics
* Bond order potential


Wikimedia Foundation. 2010.

Игры ⚽ Нужна курсовая?

Look at other dictionaries:

  • Statistical semantics — is the study of how the statistical patterns of human word usage can be used to figure out what people mean, at least to a level sufficient for information access (Furnas, 2006). How can we figure out what words mean, simply by looking at… …   Wikipedia

  • Statistical assumption — Statistical assumptions are general assumptions about statistical populations.Statistics, like all mathematical disciplines, does not generate valid conclusions from nothing. In order to generate interesting conclusions about real statistical… …   Wikipedia

  • Statistical survey — Statistical surveys are used to collect quantitative information about items in a population. Surveys of human populations and institutions are common in political polling and government, health, social science and marketing research. A survey… …   Wikipedia

  • Statistical Energy Analysis — or SEA is a method for predicting vibration transmission in dynamical systems made of coupled acoustic cavities and structures. The vibrational behavior of the system is described in the energy domain. The energy is here the potential and kinetic …   Wikipedia

  • Statistical methodology analysis reporting technique — (SMART) is an approach that was developed in 1995 by Dr Gerard Macioce to improve an organization s performance monitoring platform. The proof of concept was performed in the commercial sector and later in the US federal government. The processes …   Wikipedia

  • Potential energy — This article is about a form of energy in physics. For the statistical method, see Potential energy statistics. Classical mechanics Newton s Second Law …   Wikipedia

  • Statistical classification — See also: Pattern recognition See also: Classification test In machine learning, statistical classification is the problem of identifying the sub population to which new observations belong, where the identity of the sub population is unknown, on …   Wikipedia

  • Potential energy surface — A potential energy surface is generally used within the adiabatic or Born–Oppenheimer approximation in quantum mechanics and statistical mechanics to model chemical reactions and interactions in simple chemical and physical systems. The… …   Wikipedia

  • Statistical static timing analysis — Conventional static timing analysis (STA) has been a stock analysis algorithm for the design of digital circuits over the last 30 years. However, in recent years the increased variation in semiconductor devices and interconnect has introduced a… …   Wikipedia

  • Statistical population — In statistics, a statistical population is a set of entities concerning which statistical inferences are to be drawn, often based on a random sample taken from the population. For example, if we were interested in generalizations about crows,… …   Wikipedia

Share the article and excerpts

Direct link
Do a right-click on the link above
and select “Copy Link”