Abstract
G-Quadruplexes are secondary structures that can form in guanine-rich DNA and RNA that have been implicated in regulating multiple biological processes, including transcription. G-Quadruplex-forming sequences are prevalent in promoter regions of proto-oncogenes and DNA repair proteins. HELB is a human helicase involved in DNA replication and repair with 12 runs of three to four guanines in the proximal promoter. This sequence has the potential to form three canonical three-tetrad G-quadruplexes. Our results show that although all three G-quadruplexes can form, a structure containing two noncanonical G-quadruplexes with longer loops containing runs of three to four guanines is the most prevalent. These HELB G-quadruplexes are stable under physiological conditions. In cells, stabilization of the G-quadruplexes results in a decrease in the level of HELB expression, suggesting that the G-quadruplexes in the HELB promoter serve as transcriptional repressors.
Cite
CITATION STYLE
Zafar, M. K., Hazeslip, L., Chauhan, M. Z., & Byrd, A. K. (2020). The Expression of Human DNA Helicase B Is Affected by G-Quadruplexes in the Promoter. Biochemistry, 59(26), 2401–2409. https://doi.org/10.1021/acs.biochem.0c00218
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.