2001•Nucleic Acids Symposium SeriesRequires access

Structure of the DNA-binding domain of human telomeric protein, TRF1 and its interaction with telomeric DNA

Tomomi Nishikawa, Hideyuki Okamura, Aritaka Nagadoi, P. Koig, Daniela Rhodes, Yoshifumi Nishimura

Open publisher page 10 citations

Abstract

TRF1, a key player in regulation of the telomere length, is a double-stranded telomeric DNA binding factor in vertebrate. The DNA-binding domain of TRF1 shows a sequence similarity to each of the tandem repeat in the DNA-binding domain of the c-Myb protein. Here, the solution structure of the DNA-binding domain of human TRF1 has been determined by NMR. It consists of three helices, and its topological arrangement is very close to that of each c-Myb repeat and also to that of each subdomain of the DNA-binding domain in yeast telomeric protein, Rap1p. The interaction with DNA has been investigated by chemical shift perturbations. The result suggests that TRF1 recognizes the sequence centered on AGGGTTA mainly with its N-terminal arm, N-terminal portion of second helix and both ends of third helix.

About this research paper

What this paper is about

TRF1, a key player in regulation of the telomere length, is a double-stranded telomeric DNA binding factor in vertebrate. The DNA-binding domain of TRF1 shows a sequence similarity to each of the tandem repeat in the DNA-binding domain of the c-Myb protein. Here, the solution structure of the DNA-binding domain of human TRF1 has been determined by NMR. It consists of three helices, and its topological arrangement is very close to that of each c-Myb repeat and also to that of each subdomain of the DNA-binding domain in yeast telomeric protein, Rap1p. The interaction with DNA has been investigated by chemical shift perturbations. The result suggests that TRF1 recognizes the sequence centered on AGGGTTA mainly with its N-terminal arm, N-terminal portion of second helix and both ends of third helix.

Why it matters

OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

TRF1, a key player in regulation of the telomere length, is a double-stranded telomeric DNA binding factor in vertebrate. The DNA-binding domain of TRF1 shows a sequence similarity to each of the tandem repeat in the DNA-binding domain of the c-Myb protein. Here, the solution structure of the DNA-binding domain of human TRF1 has been determined by NMR. It consists of three helices, and its topological arrangement is very close to that of each c-Myb repeat and also to that of each subdomain of the DNA-binding domain in yeast telomeric protein, Rap1p. The interaction with DNA has been investigated by chemical shift perturbations. The result suggests that TRF1 recognizes the sequence centered on AGGGTTA mainly with its N-terminal arm, N-terminal portion of second helix and both ends of third helix.

Key concepts: DNA, Telomere, DNA-binding domain, Telomere-binding protein, DNA-binding protein, Cell biology, Domain (mathematical analysis), HMG-box

Related papers

Back to paper searchBrowse research topicsOriginal source
Structure of the DNA-binding domain of human telomeric protein, TRF1 and its interaction with telomeric DNA — Research Paper | ScholarLens