Published May 14, 2018 | Version v1
Report Restricted

Implication of lysine acetyltransferases in the alternative lengthening of telomeres

Description

Some cancer cells can use a telomerase-independent mechanism, known as alternative lengthening of telomeres (ALT), to elongate their telomeres. ALT cells present unusual characteristics: extremely long and heterogeneous telomeres that co-localize with PML bodies to form nuclear structures called ALT-associated PML Bodies (APB), and high frequency of exchange events between sisters chromatid telomere referred to as Telomeric Sister Chromatid Exchange (T-SCE). Although it is agreed that homologous recombination is the key mechanism allowing the maintenance of the telomeres of ALT cells, the molecular actors involved are not yet known. We identified new actors potentially involved in the ALT mechanism: general control non-derepressible 5 (GCN5) and P300/CBP-associated factor (PCAF). Although they represent transcription factors, they can also acetylate non-histone proteins. They are mutually exclusive subunits in SAGA-like complexes. Here, we reveal that down regulation of GCN5 and PCAF had differential effects on some phenotypic characteristics of ALT cells. While GCN5 knockdown increased T-SCE and telomere instability, PCAF knockdown decreased T-SCE, APBs formation and telomere instability. GCN5 and PCAF knockdowns had thus differential effects on ALT, up-regulating it or down-regulating it respectively. Our results suggest that in ALT cells GCN5 is present at telomeres and opposes telomere recombination and does not affect the formation of APBs, unlike PCAF which may indirectly favour them and stimulate the APB formation. Then we evaluate the mechanisms by which PCAF and GCN5 contribute to the maintenance of telomeres in ALT cells. We have proposed that the participation of these two proteins should involve regulating the turnover of the telomeric protein TRF1 via USP22, a deubiquitinase identified for the first time as a component of APBs. In addition, the interest of targeting lysine acetyl transferase activities in ALT cells to oppose the maintenance of telomeres was subsequently tested in vitro using inhibitors alone or combined to irradiation. We have shown that ALT cells are particularly sensitive to the inhibition of acetyltransferases activities using Anacardic Acid (AA). AA treatment recapitulates the effect of PCAF knockdown on several ALT features, suggesting that AA decreased the ALT mechanism through the inhibition of lysine transferase activity of PCAF, but not that of GCN5. Furthermore, AA specifically sensitizes human ALT cells to radiation as compared to telomerase-positive cells suggesting that the inhibition of lysine acetyltransferases activity may be used to increase the radiotherapy efficiency against ALT cancers. (author)

Abstract (French)

Certaines cellules cancereuses peuvent utiliser un mecanisme independant de la telomerase, connu sous le nom ALT (Alternative Lengthening of Telomeres) pour allonger leurs telomeres. Les cellules ALT sont caracterisees par des telomeres heterogenes extremement longs et d'autres tres courts voire indetectables qui co-localisent avec les corps PML pour former des structures nucleaires appelees APB (ALT-associated PML Bodies), et une frequence elevee d'echange entre les telomeres des chromatides soeurs appelees T- SCE (Telomeric Sister Chromatid Exchange). Bien qu'il soit concevable que la recombinaison homologue soit le mecanisme cle pour le maintien des telomeres par la voie ALT, les acteurs moleculaires ne sont pas tres bien connus. Nous avons identifie de nouveaux regulateurs potentiellement impliques dans le mecanisme ALT: PCAF (P300/CBP-associated factor) et GCN5 (General Control Non-derepressible 5), deux lysines acetyl transferases homologues. Elles representent generalement des facteurs de transcription, cependant, elles peuvent aussi acetyler des proteines non histones. Elles sont mutuellement exclusives dans de multiples complexes y compris le complexe SAGA. Nous avons montre que l'inhibition de ces deux proteines induit des effets opposes sur le phenotype ALT. Bien que l'absence de GCN5 augmentait l'instabilite des telomeres et la frequence des T-SCE et, la sous-expression de PCAF diminuait les T-SCE, la formation des APB et l'instabilite des telomeres. Nos resultats suggerent que dans les cellules ALT GCN5 est present au niveau de l'ADN telomerique il inhibe la recombinaison entre les telomeres et n'affecte pas la formation des APB, contrairement a PCAF qui peut indirectement les favoriser et stimuler aussi la formation des APB. Ensuite, nous avons cherche les mecanismes par lesquels PCAF et GCN5 contribuent au maintien des telomeres dans les cellules ALT. Nous avons propose que la participation de ces deux proteines consiste a reguler le turnover de la proteine telomerique TRF1 via USP22, une deubiquitinase identifiee pour la premiere fois comme un constituant des APB. En outre, l'interet de cibler l'activite de ces lysines acetyl transferase dans les cellules ALT a ete teste in vitro en utilisant des inhibiteurs seuls ou combines a l'irradiation. Nous avons montre que les cellules ALT sont particulierement sensibles a l'inhibition de l'activite lysine acetyl transferase par l'acide anacardique (AA). Le traitement par cette molecule recapitule l'effet de la sous-expression de PCAF sur le phenotype ALT, suggerant que l'AA defavorise le mecanisme ALT en inhibant l'activite lysine acetyl transferase de PCAF, et non pas celle du GCN5. De plus, l'AA sensibilise specifiquement les cellules ALT humaines a l'irradiation en comparant aux cellules telomerase-positives, prouvant que l'inhibition de l'activite des lysines acetyl transferases peut etre un outil pour traiter les cellules ALT en augmentant l'efficacite de la radiotherapie.

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Additional details

Additional titles

Original title (French)
Implication des lysines acetyl transferases dans les mecanismes ALTernatifs de maintenance des telomeres

Publishing Information

Imprint Pagination
204 p.
Report number
FRCEA-TH--12404

INIS

Country of Publication
France
Country of Input or Organization
France
INIS RN
52022060
Subject category
S60: APPLIED LIFE SCIENCES; S62: RADIOLOGY AND NUCLEAR MEDICINE;
Resource subtype / Literary indicator
Thesis
Descriptors DEI
ACETYLATION; EFFICIENCY; IN VITRO; IRRADIATION; NUCLEAR STRUCTURE; RADIOTHERAPY; TELOMERES; TRANSCRIPTION FACTORS; TRANSFERASES
Descriptors DEC
ACYLATION; CHEMICAL REACTIONS; ENZYMES; MEDICINE; NUCLEAR MEDICINE; ORGANIC COMPOUNDS; PROTEINS; RADIOLOGY; THERAPY

Optional Information

Notes
431 refs.; Available from the INIS Liaison Officer for France, see the INIS website for current contact and E-mail addresses