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DNA Intercalators Inhibit Eukaryotic Ribosomal RNA Synthesis by Impairing the Initiation of Transcription

Version 4 2024-03-12, 19:44
Version 3 2023-10-29, 17:00
journal contribution
posted on 2024-03-12, 19:44 authored by William J Andrews, Swagat RaySwagat Ray, Tatiana Panova, Christoph Engel, Konstantin I Panov

In eukaryotes, ribosome biogenesis is driven by the synthesis of the ribosomal RNA (rRNA) by RNA polymerase I (Pol-I) and is tightly linked to cell growth and proliferation. The 3D-structure of the rDNA promoter plays an important, yet not fully understood role in regulating rRNA synthesis. We hypothesized that DNA intercalators/groove binders could affect this structure and disrupt rRNA transcription. To test this hypothesis, we investigated the effect of a number of compounds on Pol-I transcription in vitro and in cells. We find that intercalators/groove binders are potent inhibitors of Pol-I specific transcription both in vitro and in cells, regardless of their specificity and the strength of its interaction with DNA. Importantly, the synthetic ability of Pol-I is unaffected, suggesting that these compounds are not targeting post-initiating events. Notably, the tested compounds have limited effect on transcription by Pol-II and III, demonstrating the hypersensitivity of Pol-I transcription. We propose that stability of pre-initiation complex and initiation are affected as result of altered 3D architecture of the rDNA promoter, which is well in line with the recently reported importance of biophysical rDNA promoter properties on initiation complex formation in the yeast system.

History

School affiliated with

  • Department of Life Sciences (Research Outputs)

Publication Title

Genes

Volume

12

Issue

9

Publisher

MDPI

ISSN

2073-4425

Date Submitted

2021-10-05

Date Accepted

2021-09-10

Date of First Publication

2021-09-14

Date of Final Publication

2021-09-14

Date Document First Uploaded

2021-10-05

ePrints ID

46544

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