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Loss of FAM111B protease mutated in hereditary fibrosing poikiloderma syndrome negatively regulates telomere length

View ORCID ProfileMaciej Kliszczak, View ORCID ProfileDaniela Moralli, View ORCID ProfileJulia D. Jankowska, Paulina Bryjka, Lamia Subha Meem, View ORCID ProfileTomas Goncalves, View ORCID ProfileSvenja S. Hester, View ORCID ProfileRoman Fisher, View ORCID ProfileDavid Clynes, View ORCID ProfileCatherine M. Green
doi: https://doi.org/10.1101/2023.01.22.525054
Maciej Kliszczak
1Wellcome Centre for Human Genetics, University of Oxford, Old Road Campus, Oxford OX3 7BN, United Kingdom
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  • ORCID record for Maciej Kliszczak
  • For correspondence: maciej.kliszczak@ndm.ox.ac.uk
Daniela Moralli
2The MRC Weatherall Institute of Molecular Medicine, University of Oxford, John Ratcliffe Hospital, Oxford OX3 9DS, United Kingdom
4Clinical BioManufacturing Facility, University of Oxford, Old Road Campus, Oxford OX3 7JT, United Kingdom
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Julia D. Jankowska
1Wellcome Centre for Human Genetics, University of Oxford, Old Road Campus, Oxford OX3 7BN, United Kingdom
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Paulina Bryjka
1Wellcome Centre for Human Genetics, University of Oxford, Old Road Campus, Oxford OX3 7BN, United Kingdom
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Lamia Subha Meem
1Wellcome Centre for Human Genetics, University of Oxford, Old Road Campus, Oxford OX3 7BN, United Kingdom
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Tomas Goncalves
2The MRC Weatherall Institute of Molecular Medicine, University of Oxford, John Ratcliffe Hospital, Oxford OX3 9DS, United Kingdom
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Svenja S. Hester
3Target Discovery Institute, University of Oxford, Old Road Campus, Oxford OX3 7FZ, United Kingdom
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Roman Fisher
3Target Discovery Institute, University of Oxford, Old Road Campus, Oxford OX3 7FZ, United Kingdom
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David Clynes
2The MRC Weatherall Institute of Molecular Medicine, University of Oxford, John Ratcliffe Hospital, Oxford OX3 9DS, United Kingdom
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Catherine M. Green
1Wellcome Centre for Human Genetics, University of Oxford, Old Road Campus, Oxford OX3 7BN, United Kingdom
4Clinical BioManufacturing Facility, University of Oxford, Old Road Campus, Oxford OX3 7JT, United Kingdom
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Abstract

Hereditary fibrosing poikiloderma (HFP) is a rare human dominant negative disorder caused by mutations in the FAM111B gene that encodes a nuclear trypsin-like serine protease. HFP patients present with symptoms including skin abnormalities, tendon contractures, myopathy and lung fibrosis. We characterised the cellular roles of human FAM111B using U2OS and MCF7 cell lines and report here that the protease interacts with components of the nuclear pore complex. Loss of FAM111B expression resulted in abnormal nuclear shape and reduced telomeric DNA content suggesting that FAM111B protease is required for normal telomere length; we show that this function is independent of telomerase or recombination driven telomere extension. Even though FAM111B-deficient cells were proficient in DNA repair, they showed hallmarks of genomic instability such as increased levels of micronuclei and ultra-fine DNA bridges. Interestingly, FAM111B variants, including mutations that cause HFP, showed more frequent localisation to the nuclear lamina suggesting that accumulation of mutant FAM111B at the nuclear periphery may drive the disease pathology.

Competing Interest Statement

The authors have declared no competing interest.

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Posted January 23, 2023.
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Loss of FAM111B protease mutated in hereditary fibrosing poikiloderma syndrome negatively regulates telomere length
Maciej Kliszczak, Daniela Moralli, Julia D. Jankowska, Paulina Bryjka, Lamia Subha Meem, Tomas Goncalves, Svenja S. Hester, Roman Fisher, David Clynes, Catherine M. Green
bioRxiv 2023.01.22.525054; doi: https://doi.org/10.1101/2023.01.22.525054
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Loss of FAM111B protease mutated in hereditary fibrosing poikiloderma syndrome negatively regulates telomere length
Maciej Kliszczak, Daniela Moralli, Julia D. Jankowska, Paulina Bryjka, Lamia Subha Meem, Tomas Goncalves, Svenja S. Hester, Roman Fisher, David Clynes, Catherine M. Green
bioRxiv 2023.01.22.525054; doi: https://doi.org/10.1101/2023.01.22.525054

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