» Articles » PMID: 28422997

Promoter Hypermethylation As a Mechanism for Lamin A/C Silencing in a Subset of Neuroblastoma Cells

Overview
Journal PLoS One
Date 2017 Apr 20
PMID 28422997
Citations 13
Authors
Affiliations
Soon will be listed here.
Abstract

Nuclear lamins support the nuclear envelope and provide anchorage sites for chromatin. They are involved in DNA synthesis, transcription, and replication. It has previously been reported that the lack of Lamin A/C expression in lymphoma and leukaemia is due to CpG island promoter hypermethylation. Here, we provide evidence that Lamin A/C is silenced via this mechanism in a subset of neuroblastoma cells. Moreover, Lamin A/C expression can be restored with a demethylating agent. Importantly, Lamin A/C reintroduction reduced cell growth kinetics and impaired migration, invasion, and anchorage-independent cell growth. Cytoskeletal restructuring was also induced. In addition, the introduction of lamin Δ50, known as Progerin, caused senescence in these neuroblastoma cells. These cells were stiffer and developed a cytoskeletal structure that differed from that observed upon Lamin A/C introduction. Of relevance, short hairpin RNA Lamin A/C depletion in unmethylated neuroblastoma cells enhanced the aforementioned tumour properties. A cytoskeletal structure similar to that observed in methylated cells was induced. Furthermore, atomic force microscopy revealed that Lamin A/C knockdown decreased cellular stiffness in the lamellar region. Finally, the bioinformatic analysis of a set of methylation arrays of neuroblastoma primary tumours showed that a group of patients (around 3%) gives a methylation signal in some of the CpG sites located within the Lamin A/C promoter region analysed by bisulphite sequencing PCR. These findings highlight the importance of Lamin A/C epigenetic inactivation for a subset of neuroblastomas, leading to enhanced tumour properties and cytoskeletal changes. Additionally, these findings may have treatment implications because tumour cells lacking Lamin A/C exhibit more aggressive behaviour.

Citing Articles

Targeting c-Myc transactivation by LMNA inhibits tRNA processing essential for malate-aspartate shuttle and tumour progression.

Wang J, Hong M, Cheng Y, Wang X, Li D, Chen G Clin Transl Med. 2024; 14(5):e1680.

PMID: 38769668 PMC: 11106511. DOI: 10.1002/ctm2.1680.


A biomechanical view of epigenetic tumor regulation.

Zhao B, Lv Y J Biol Phys. 2023; 49(3):283-307.

PMID: 37004697 PMC: 10397176. DOI: 10.1007/s10867-023-09633-3.


Lamin A and the LINC complex act as potential tumor suppressors in Ewing Sarcoma.

Chiarini F, Paganelli F, Balestra T, Capanni C, Fazio A, Manara M Cell Death Dis. 2022; 13(4):346.

PMID: 35422060 PMC: 9010457. DOI: 10.1038/s41419-022-04729-5.


NTRK1/TrkA Signaling in Neuroblastoma Cells Induces Nuclear Reorganization and Intra-Nuclear Aggregation of Lamin A/C.

Funke L, Bracht T, Oeck S, Schork K, Stepath M, Dreesmann S Cancers (Basel). 2021; 13(21).

PMID: 34771457 PMC: 8582546. DOI: 10.3390/cancers13215293.


Hyperglycemia and hyperlipidemia can induce morphophysiological changes in rat cardiac cell line.

Varela R, Rauschert I, Romanelli G, Alberro A, Benech J Biochem Biophys Rep. 2021; 26:100983.

PMID: 33912691 PMC: 8063753. DOI: 10.1016/j.bbrep.2021.100983.


References
1.
Kennedy B, Pennypacker J . RB and lamins in cell cycle regulation and aging. Adv Exp Med Biol. 2014; 773:127-42. DOI: 10.1007/978-1-4899-8032-8_6. View

2.
Eriksson M, Brown W, Gordon L, Glynn M, Singer J, Scott L . Recurrent de novo point mutations in lamin A cause Hutchinson-Gilford progeria syndrome. Nature. 2003; 423(6937):293-8. PMC: 10540076. DOI: 10.1038/nature01629. View

3.
Halaschek-Wiener J, Brooks-Wilson A . Progeria of stem cells: stem cell exhaustion in Hutchinson-Gilford progeria syndrome. J Gerontol A Biol Sci Med Sci. 2007; 62(1):3-8. DOI: 10.1093/gerona/62.1.3. View

4.
Domingo-Fernandez R, Watters K, Piskareva O, Stallings R, Bray I . The role of genetic and epigenetic alterations in neuroblastoma disease pathogenesis. Pediatr Surg Int. 2013; 29(2):101-19. PMC: 3557462. DOI: 10.1007/s00383-012-3239-7. View

5.
Takamori Y, Tamura Y, Kataoka Y, Cui Y, Seo S, Kanazawa T . Differential expression of nuclear lamin, the major component of nuclear lamina, during neurogenesis in two germinal regions of adult rat brain. Eur J Neurosci. 2007; 25(6):1653-62. DOI: 10.1111/j.1460-9568.2007.05450.x. View