2011
DOI: 10.1128/mcb.05289-11
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Analysis of Human Syndromes with Disordered Chromatin Reveals the Impact of Heterochromatin on the Efficacy of ATM-Dependent G2/M Checkpoint Arrest

Abstract: Heterochromatin (HC) poses a barrier to γH2AX focus expansion and DNA double-strand break (DSB) repair, the latter being relieved by ATM-dependent KAP-1 phosphorylation. Using high-resolution imaging, we show here that the HC superstructure markedly restricts ATM signaling to cell cycle checkpoint proteins. The impact of HC is greater than anticipated from the percentage of HC-DNA and, in distinction to DSB repair, ATM only partly overcomes the constraints posed by HC. Importantly, we examine ATM signaling in … Show more

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Cited by 34 publications
(31 citation statements)
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References 34 publications
(68 reference statements)
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“…Given the fact that heterochromatin formation seems to be uncoupled from proliferation arrest, it is unlikely that SAHF are essential for repressing proliferation-associated genes [145]. On the other hand, heterochromatin formation has been shown to suppress DNA damage repair and is consistent with the finding that SAHF are devoid of signaled DSBs [145,157] (Fig. 2C).…”
Section: Responses To Dna Damage In Senescent Cellssupporting
confidence: 69%
See 1 more Smart Citation
“…Given the fact that heterochromatin formation seems to be uncoupled from proliferation arrest, it is unlikely that SAHF are essential for repressing proliferation-associated genes [145]. On the other hand, heterochromatin formation has been shown to suppress DNA damage repair and is consistent with the finding that SAHF are devoid of signaled DSBs [145,157] (Fig. 2C).…”
Section: Responses To Dna Damage In Senescent Cellssupporting
confidence: 69%
“…2C). In agreement, human patients suffering from conditions that show disturbed heterochromatin show a hypersensitive and prolonged G2/M checkpoint as well as hyperactivated ATM [157]. However, further investigation is needed to determine how heterochromatin compaction and a decreased DSB signaling are linked to slowly repaired and persistent DSB and the permanent cell cycle arrest during cellular senescence.…”
Section: Responses To Dna Damage In Senescent Cellsmentioning
confidence: 67%
“…The striking finding was that G2/M checkpoint arrest was activated following exposure to lower doses in Rett Syndrome cells compared to control cells and arrest was maintained for a prolonged period of time. Since DSB repair was normal in Rett Syndrome cells, this suggests that checkpoint arrest was activated and maintained by lower DSB numbers compared to control cell lines (depicted in Figure 3) [33]. A similar finding was observed with ICFa syndrome cells.…”
Section: Impact Of Hc On the Efficacy Of Checkpoint Arrestsupporting
confidence: 55%
“…Further, a distinct approach has shown enhanced expansion of γH2AX foci at DSBs within HC relaxed by inhibition, depletion or mutation of defined HC proteins [26,33]. For example, greater γH2AX expansion is observed following addition of HDAC chemical inhibitors [26,34].…”
Section: Evidence That Heterochromatin Influences the Signal Transmentioning
confidence: 99%
“…Results represent the MI relative to untreated cells. 1BR hTERT cells shows similar G2/M checkpoint responses to that in 48BR primary cells [40]. The size and number of γH2AX foci clusters between 48BR primary and 1BR hTERT cells were similar (data not shown).…”
Section: Resultsmentioning
confidence: 71%