TransLISA, a novel quantitative, nonradioactive assay for transcription factor DNA-binding analyses

A1 Originalartikel i en vetenskaplig tidskrift (referentgranskad)

Interna författare/redaktörer

Publikationens författare: Vuori KA, Ahlskog JK, Sistonen L, Nikinmaa M
Publiceringsår: 2009
Tidskrift: FEBS Journal
Tidskriftsakronym: FEBS J
Volym: 276
Nummer: 24
Artikelns första sida, sidnummer: 7366
Artikelns sista sida, sidnummer: 7374
Antal sidor: 9
ISSN: 1742-464X
eISSN: 1742-4658


Transcription factors are DNA-binding proteins that regulate key biological processes. Their interactions with DNA are commonly analyzed with gel-based electrophoretic mobility shift assay (EMSA) using radioactively labeled probes. Within various fields of research, there exists an increasing demand to develop assays with faster sample throughput combined with improved sensitivity, increased analytical range, and precise quantification. Here, we describe the development and performance of a 384-well plate immunoassay, termed TransLISA, which is a novel homogeneous assay for rapid and sensitive quantification of the DNA-binding activity of transcription factors in cell and tissue lysates. TransLISA outperforms EMSAs, because it eliminates the need to use radioactive chemicals and allows fast and precise quantification of DNA-binding activity of transcription factors from large number of samples simultaneously. We have used TransLISA to demonstrate the DNA-binding activity of heat shock factor 1, representing a well-known model of inductive transcriptional regulatory responses, but the method is easily adaptable for the study of any transcription factor. Thus, TransLISA can replace EMSAs and may be used in various applications and research fields where quantitative, cost-effective and large-scale measurements of the DNA-binding activity of transcription factors are required, including screening of responses in multiple treatments in cellular and molecular biology, evolutionary research, environmental monitoring, and drug discovery.


DNA-binding activity, HSF1, transcription factor, TransLISA

Senast uppdaterad 2019-20-10 vid 03:13