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Guanine quadruplex monoclonal antibody 1H6 cross-reacts with restrained thymidine-rich single stranded DNA

Authors :
Katrin Paeschke
Peter M. Lansdorp
Hinke G. Kazemier
Damage and Repair in Cancer Development and Cancer Treatment (DARE)
Source :
Nucleic Acids Research, 45(10), 5913-5919. Oxford University Press, Nucleic Acids Research

Abstract

Previously we reported the production and characterization of monoclonal antibody 1H6 raised against (T(4)G(4))(2) intermolecular guanine quadruplex (G4) DNA structures (Henderson A. et al. (2014) Nucleic Acids Res., 42, 860-869; Hoffmann R. F. et al. (2016) Nucleic Acids Res., 44, 152-163). It was shown that 1H6 strongly stains nuclei and has exquisite specificity for heterochromatin by immuno-electron microscopy. Here we extend our studies of 1H6 reactivity using enzyme-linked immunosorbent assay (ELISA) and microscale thermophoresis (MST). As previously reported, 1H6 was found to strongly bind intermolecularG4 structureswith a (T(4)G(4))(2) sequence motif. However, using both methods we did not detect significant binding to G4 structures without thymidines in their sequence motif or to G4 structures made with (T(2)G(4))(2) oligonucleotides. In addition, we observed strong, sequence-specific binding of 1H6 by ELISA to immobilized single stranded poly(T) DNA but not to immobilized poly(C) or poly(A) homo-polymers. Cross-reactivity of 1H6 to poly(T) was not measured in solution using MST. 1H6 was furthermore found to bind to selected areas on DNA fibers but only after DNA denaturation. Based on these observations we propose that 1H6 binds with high affinity to adjacent T's that are restricted in their movement in selected G4 structures and denatured DNA. Cross-reactivity of 1H6 to immobilized single stranded T-rich DNA next to its previously reported specificity for bona fide G4 structures needs to be taken into account in the interpretation of 1H6 binding to (sub-) cellular structures.

Details

Language :
English
ISSN :
13624962 and 03051048
Volume :
45
Issue :
10
Database :
OpenAIRE
Journal :
Nucleic Acids Research
Accession number :
edsair.doi.dedup.....0edc28592fff39de5cedd33384e8bf9f
Full Text :
https://doi.org/10.1093/nar/gkx245