Binding of glutamine to glutamine-binding protein from Escherichia coli induces changes in protein structure and increases protein stability.


Abstract

Glutamine-binding protein (GlnBP) from Escherichia coli is a monomeric protein localized in the periplasmic space of the bacterium. It is responsible for the first step in the active transport of L-glutamine across the cytoplasmic membrane. The protein consists of two similar globular domains linked by two peptide hinges, and X-ray crystallographic data indicate that the two domains undergo large movements upon ligand binding. Fourier transform infrared spectroscopy (FTIR) was used to analyze the structure and thermal stability of the protein in detail. The data indicate that glutamine binding induces small changes in the secondary structure of the protein and that it renders the structure more thermostable and less flexible. Detailed analyses of IR spectra show a lower thermal sensitivity of alpha-helices than beta-sheets in the protein both in the absence and in the presence of glutamine. Generalized two-dimensional (2D) analyses of IR spectra reveal the same sequence of unfolding events in the protein in the absence and in the presence of glutamine, indicating that the amino acid does not affect the unfolding pathway of the protein. The data give new insight into the structural characteristics of GlnBP that are useful for both basic knowledge and biotechnological applications. Study holds ProTherm entries: 19399, 19400 Extra Details: glutamine-binding protein; infrared; FTIR; protein structure; 2D-IR correlation analysis; thermostability

Submission Details

ID: v33fUY9e

Submitter: Connie Wang

Submission Date: April 24, 2018, 8:51 p.m.

Version: 1

Publication Details
D'Auria S;Scirè A;Varriale A;Scognamiglio V;Staiano M;Ausili A;Marabotti A;Rossi M;Tanfani F,Proteins (2005) Binding of glutamine to glutamine-binding protein from Escherichia coli induces changes in protein structure and increases protein stability. PMID:15517590
Additional Information

Structure view and single mutant data analysis

Study data

No weblogo for data of varying length.
Colors: D E R H K S T N Q A V I L M F Y W C G P
 

Data Distribution

Studies with similar sequences (approximate matches)

Correlation with other assays (exact sequence matches)


Relevant UniProtKB Entries

Percent Identity Matching Chains Protein Accession Entry Name
100.0 Glutamine-binding periplasmic protein P0AEQ5 GLNH_ECO57
100.0 Glutamine-binding periplasmic protein P0AEQ4 GLNH_ECOL6
100.0 Glutamine-binding periplasmic protein P0AEQ3 GLNH_ECOLI