Related Experiment Video
Updated: Jul 17, 2026

CD Spectroscopy to Study DNA-Protein Interactions
Published on: February 10, 2022
Structural approach to a novel tandem repeat DNA-binding domain, STPR, by CD and NMR
Shin Saito1, Tomoyasu Aizawa, Kyosuke Kawaguchi
1Graduate School of Science, Hokkaido University, Sapporo 060-0810, Japan.
Abstract:
Fibroin-modulator-binding protein 1 (FMBP-1) is a factor that binds the transcriptional activation elements of the fibroin gene. It has a novel structure, consisting of four tandem repeats (R1-R4) of 23 amino acids each in the C-terminal half. This region is referred to as the STPR (score and three amino acid peptide repeat) domain and acts as a DNA-binding domain in FMBP-1. Interestingly, the homology among the four repeats is remarkably high. Here, we have determined the three-dimensional structures of the four repeats by NMR. All four repeat units have basically the same structure: a short alpha-helix in the N-terminal half maintained by a salt bridge and an N-capping box. CD studies showed that the full-length STPR domain was 31% helical in solution. This is explained by the connections among the four short helices that were determined separately by NMR. From the thermal-denaturation study, it can be deduced that these four helices in the full-length STPR domain moved flexibly with no interaction among them. However, the specific DNA caused a distinct increase, of up to 76%, in the alpha-helical content of the full-length STPR domain. This finding suggests that the binding of the full-length STPR domain to specific DNA causes an induced-fit conformational change that increases alpha-helicity; the poorly structured regions of the protein may form a regular secondary structure. Furthermore, the mutation analysis showed that the four repeats of the STPR domain raise the possibility of interaction with DNA in different ways.
Related Concept Videos
Conserved Binding Sites
Binding sites are often located in large pockets, and if their location on a protein’s surface is unknown, it can be predicted using various approaches. The energetic method computationally analyses the...
Single-Strand DNA Binding Proteins

