Human RTEL1 Interacts with KPNB1 (Importin β) and NUP153 and Connects Nuclear Import to Nuclear Envelope Stability in S-Phase

Author:

Schertzer Michael12,Jullien Laurent34ORCID,Pinto André L.5ORCID,Calado Rodrigo T.5,Revy Patrick34ORCID,Londoño-Vallejo Arturo12

Affiliation:

1. Institut Curie, PSL Research University, CNRS, UMR3244, F-75005 Paris, France

2. Sorbonne Universités, CNRS, UMR3244, F-75005 Paris, France

3. INSERM UMR 1163, Laboratory of Genome Dynamics in the Immune System, Equipe Labellisée Ligue Contre le Cancer, F-75006 Paris, France

4. Paris Descartes–Sorbonne Paris Cité University, Imagine Institute, F-75015 Paris, France

5. Department of Medical Imaging, Hematology, and Oncology, Ribeirao Preto Medical School, University of Sao Paulo, Ribeirao Preto 14049-900, Brazil

Abstract

Regulator of TElomere Length Helicase 1 (RTEL1) is a helicase required for telomere maintenance and genome replication and repair. RTEL1 has been previously shown to participate in the nuclear export of small nuclear RNAs. Here we show that RTEL1 deficiency leads to a nuclear envelope destabilization exclusively in cells entering S-phase and in direct connection to origin firing. We discovered that inhibiting protein import also leads to similar, albeit non-cell cycle-related, nuclear envelope disruptions. Remarkably, overexpression of wild-type RTEL1, or of its C-terminal part lacking the helicase domain, protects cells against nuclear envelope anomalies mediated by protein import inhibition. We identified distinct domains in the C-terminus of RTEL1 essential for the interaction with KPNB1 (importin β) and NUP153, respectively, and we demonstrated that, on its own, the latter domain can promote the dynamic nuclear internalization of peptides that freely diffuse through the nuclear pore. Consistent with putative functions exerted in protein import, RTEL1 can be visualized on both sides of the nuclear pore using high-resolution microscopy. In all, our work points to an unanticipated, helicase-independent, role of RTEL1 in connecting both nucleocytoplasmic trafficking and nuclear envelope integrity to genome replication initiation in S-phase.

Funder

Agence Nationale de la Recherche

CNRS and the Institut Curie

Cell and Tissue Imaging (PICT-IBiSA) and Nikon Imaging Centre, Institut Curie, member of the French National Research Infrastructure France-BioImaging

Institut Curie (Paris) FACs facility

Inserm and Imagine Institute

Publisher

MDPI AG

Subject

General Medicine

Reference53 articles.

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2. Human RTEL1 stabilizes long G-overhangs allowing telomerase-dependent over-extension;Porreca;Nucleic Acids Res.,2018

3. RTEL1 dismantles T loops and counteracts telomeric G4-DNA to maintain telomere integrity;Vannier;Cell,2012

4. TRF2 Recruits RTEL1 to Telomeres in S Phase to Promote T-Loop Unwinding;Sarek;Mol. Cell,2016

5. Full length RTEL1 is required for the elongation of the single-stranded telomeric overhang by telomerase;Awad;Nucleic Acids Res.,2020

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1. Advances in the understanding of nuclear pore complexes in human diseases;Journal of Cancer Research and Clinical Oncology;2024-07-30

2. The Immunologic Complications and Genetic Origins of Telomere Biology Disorders;Reference Module in Life Sciences;2024

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