Orphan nuclear receptors-induced ALT-associated PML bodies are targets for ALT inhibition

Author:

Gaela Venus Marie12ORCID,Hsia Hsuan-Yu2,Joseph Nithila A2,Tzeng Wan-Yi23,Ting Pin-Chao24,Shen Yi-Ling2,Tsai Chia-Tsen12,Boudier Thomas5ORCID,Chen Liuh-Yow12ORCID

Affiliation:

1. Molecular and Cell Biology, Taiwan International Graduate Program, Academia Sinica and Graduate Institute of Life Sciences, National Defense Medical Center , Taipei 11529 , Taiwan

2. Institute of Molecular Biology, Academia Sinica , Taipei 11529 , Taiwan

3. Insitute of Molecular and Cellular Biology, National Taiwan University , Taipei 106319 , Taiwan

4. Department and Graduate Institute of Microbiology and Immunology, National Defense Medical Center , Taipei 11490 , Taiwan

5. CENTURI multi-engineering platform, Aix-Marseille Université , Marseille 13288 , France

Abstract

Abstract Orphan nuclear receptors (NRs), such as COUP-TF1, COUP-TF2, EAR2, TR2 and TR4, are implicated in telomerase-negative cancers that maintain their telomeres through the alternative lengthening of telomeres (ALT) mechanism. However, how telomere association of orphan NRs is involved in ALT activation remains unclear. Here, we demonstrate that telomeric tethering of orphan NRs in human fibroblasts initiates formation of ALT-associated PML bodies (APBs) and features of ALT activity, including ALT telomere DNA synthesis, telomere sister chromatid exchange, and telomeric C-circle generation, suggesting de novo ALT induction. Overexpression of orphan NRs exacerbates ALT phenotypes in ALT cells, while their depletion limits ALT. Orphan NRs initiate ALT via the zinc finger protein 827, suggesting the involvement of chromatin structure alterations for ALT activation. Furthermore, we found that orphan NRs and deficiency of the ALT suppressor ATRX-DAXX complex operate in concert to promote ALT activation. Moreover, PML depletion by gene knockout or arsenic trioxide treatment inhibited ALT induction in fibroblasts and ALT cancer cells, suggesting that APB formation underlies the orphan NR-induced ALT activation. Importantly, arsenic trioxide administration abolished APB formation and features of ALT activity in ALT cancer cell line-derived mouse xenografts, suggesting its potential for further therapeutic development to treat ALT cancers.

Funder

Ministry of Science and Technology

Academia Sinica

Publisher

Oxford University Press (OUP)

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