Progerin reduces LAP2α-telomere association in Hutchinson-Gilford progeria

Author:

Chojnowski Alexandre1,Ong Peh Fern2,Wong Esther SM1,Lim John SY3,Mutalif Rafidah A1,Navasankari Raju1,Dutta Bamaprasad4,Yang Henry5,Liow Yi Y1,Sze Siu K4,Boudier Thomas67,Wright Graham D3ORCID,Colman Alan8,Burke Brian9,Stewart Colin L110,Dreesen Oliver2

Affiliation:

1. Developmental and Regenerative Biology, Institute of Medical Biology, Singapore, Singapore

2. Cellular Ageing, Institute of Medical Biology, Singapore, Singapore

3. Microscopy Unit, Institute of Medical Biology, Singapore, Singapore

4. School of Biological Sciences, Nanyang Technological University, Singapore, Singapore

5. Bioinformatics Core, Cancer Science Institute of Singapore, National University of Singapore, Singapore, Singapore

6. Bioinformatics Institute, IPAL UMI 2955, Singapore, Singapore

7. Image and Pervasive Access Lab, Sorbonne Universites, Paris, France

8. Stem Cell Disease Models, Institute of Medical Biology, Singapore, Singapore

9. Nuclear Dynamics and Architecture, Institute of Medical Biology, Singapore, Singapore

10. Department of Biological Sciences, National University of Singapore, Singapore, Singapore

Abstract

Hutchinson-Gilford progeria (HGPS) is a premature ageing syndrome caused by a mutation in LMNA, resulting in a truncated form of lamin A called progerin. Progerin triggers loss of the heterochromatic marker H3K27me3, and premature senescence, which is prevented by telomerase. However, the mechanism how progerin causes disease remains unclear. Here, we describe an inducible cellular system to model HGPS and find that LAP2α (lamina-associated polypeptide-α) interacts with lamin A, while its interaction with progerin is significantly reduced. Super-resolution microscopy revealed that over 50% of telomeres localize to the lamina and that LAP2α association with telomeres is impaired in HGPS. This impaired interaction is central to HGPS since increasing LAP2α levels rescues progerin-induced proliferation defects and loss of H3K27me3, whereas lowering LAP2 levels exacerbates progerin-induced defects. These findings provide novel insights into the pathophysiology underlying HGPS, and how the nuclear lamina regulates proliferation and chromatin organization.

Funder

Progeria Research Foundation (PRF)

Agency for Science, Technology and Research (A*STAR)

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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