Perspectives in Proteomics: Structural Folds of a Predicted and an Experimentally Determined Cation Channel

Authors: Mager, Peter P.1; Weber, Anje1; Walter, Horst1; Wirkner, Kerstin1; Illes, Peter1

Source: Current Proteomics, Volume 2, Number 4, December 2005 , pp. 319-324(6)

Publisher: Bentham Science Publishers

Key:
Free Content - Free Content
New Content - New Content
Subscribed Content - Subscribed Content
Free Trial Content - Free Trial Content

Abstract:

A novel method of structure prediction for membrane-bound proteins is reviewed. The approach is based on a sequence-function analysis, secondary structure prediction and subsequent geometry optimization. The prediction of the structure of ligand-gated P2X4 receptor subunit, which is a membrane-embedded cation channelforming protein with extracellularly occuring ATP binding sites, is shown as an example. The potential Nglycosylation sites of the glycoprotein, location of the five disulfide bridges, and phospholipid-dependent protein kinase C (PKC) phosphorylation attachment sites were determined by sequence-function analysis. Subsequently an attempt was made to predict its conformation using homology-based comparative modeling and threading; however, the modeling could not be accomplished. Because of this, secondary structure prediction of the protein was carried out. The input coordinates of the spatial structure were obtained by a profile-based neural network prediction method. The resulting secondary structure was converted into a three-dimensional geometry. The secondary and tertiary structures were optimized by the quantum chemistry RHF/3-21G minimal basic set and all-atom molecular mechanics AMBER96 force field. The predicted shape is similar to the shape of the experimentally obtained monomeric structure of the classical ion channel, the K+ion channel from Streptomyces lividans (KcsA channel), and agrees with the P2X shape proposed by biological experimenters. The geometry optimized structure of the P2X4 receptor is freely available (Protein Data Bank format) from the authors on e-mail request (magp@medizin.unileipzig. de).

Keywords: Proteomics; structural bioinformatics; ATP-activated purinergic receptor; P2X receptor; cation channel; KcsA protein

Document Type: Research article

DOI: 10.2174/157016405775201775

Affiliations: 1: Research Group of Pharmacochemistry, Institute of Pharmacology and Toxicology, University of Leipzig, D-04107 Leipzig, Härtelstr. 16-18, Saxony, Germany;

The full text electronic article is available for purchase. You will be able to download the full text electronic article after payment.

$55.10 plus tax

 

OR

Back to top

Key:
Free Content - Free Content
New Content - New Content
Subscribed Content - Subscribed Content
Free Trial Content - Free Trial Content
Page Help Click here for Page Help
Shopping cart
Tools
Sign in






Need to register?
Sign up here
Text size: A | A | A | A