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Updated: Jul 30, 2025

Artificial RNA Polymerase II Elongation Complexes for Dissecting Co-transcriptional RNA Processing Events
Published on: May 13, 2019
Autophagy receptor NDP52 alters DNA conformation to modulate RNA polymerase II transcription
Ália Dos Santos1,2, Daniel E Rollins3, Yukti Hari-Gupta4,5
1Department of Oncology and Metabolism, University of Sheffield, Sheffield, S10 2RX, UK.
Abstract:
NDP52 is an autophagy receptor involved in the recognition and degradation of invading pathogens and damaged organelles. Although NDP52 was first identified in the nucleus and is expressed throughout the cell, to date, there is no clear nuclear functions for NDP52. Here, we use a multidisciplinary approach to characterise the biochemical properties and nuclear roles of NDP52. We find that NDP52 clusters with RNA Polymerase II (RNAPII) at transcription initiation sites and that its overexpression promotes the formation of additional transcriptional clusters. We also show that depletion of NDP52 impacts overall gene expression levels in two model mammalian cells, and that transcription inhibition affects the spatial organisation and molecular dynamics of NDP52 in the nucleus. This directly links NDP52 to a role in RNAPII-dependent transcription. Furthermore, we also show that NDP52 binds specifically and with high affinity to double-stranded DNA (dsDNA) and that this interaction leads to changes in DNA structure in vitro. This, together with our proteomics data indicating enrichment for interactions with nucleosome remodelling proteins and DNA structure regulators, suggests a possible function for NDP52 in chromatin regulation. Overall, here we uncover nuclear roles for NDP52 in gene expression and DNA structure regulation.
Insights
Nuclear factor NDP52 regulates gene expression and DNA structure. This autophagy receptor interacts with RNA Polymerase II, influencing transcription and chromatin organization, revealing novel nuclear functions.
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- NDP52 is known as an autophagy receptor involved in cellular defense mechanisms.
- Despite its presence in the nucleus, NDP52's specific nuclear functions remained largely uncharacterized.
Purpose of the Study:
- To elucidate the biochemical properties and nuclear roles of NDP52.
- To investigate NDP52's involvement in gene expression and DNA regulation within the nucleus.
Main Methods:
- Multidisciplinary approach including biochemical assays, microscopy, and proteomics.
- Analysis of NDP52's interaction with RNA Polymerase II (RNAPII) and double-stranded DNA (dsDNA).
- Gene expression analysis in mammalian cells upon NDP52 depletion or transcription inhibition.
Main Results:
- NDP52 clusters with RNAPII at transcription sites, and its overexpression enhances transcriptional cluster formation.
- Depletion of NDP52 affects global gene expression levels in mammalian cells.
- NDP52 binds with high affinity to dsDNA, altering its structure in vitro, and interacts with chromatin-modulating proteins.
Conclusions:
- NDP52 plays a significant role in regulating RNAPII-dependent transcription.
- NDP52 is implicated in chromatin regulation through its interaction with DNA and associated proteins.
- This study reveals novel nuclear functions for NDP52 in gene expression and DNA structure modulation.
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