Regulation and Localization of the Bloom Syndrome Protein in Response to DNA Damage
Регуляция и локализация белка при синдроме Блума в ответ на повреждение ДНК
2001-04-16
SCID: 54.1/jjpmxkve
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Bloom syndrome protein (BLM)G2 phase inductionPML nuclear bodieshRAD51replication protein A (RP-A)
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Abstract (AI)
Bloom syndrome (BS) is an autosomal recessive disorder characterized by a high incidence of cancer and genomic instability. BLM, the protein defective in BS, is a RecQ-like helicase, presumed to function in DNA replication, recombination, or repair. BLM localizes to promyelocytic leukemia protein (PML) nuclear bodies and is expressed during late S and G2. We show, in normal human cells, that the recombination/repair proteins hRAD51 and replication protein (RP)-A assembled with BLM into a fraction of PML bodies during late S/G2. Biochemical experiments suggested that BLM resides in a nuclear matrix-bound complex in which association with hRAD51 may be direct. DNA-damaging agents that cause double strand breaks and a G2 delay induced BLM by a p53- and ataxia-telangiectasia mutated independent mechanism. This induction depended on the G2 delay, because it failed to occur when G2 was prevented or bypassed. It coincided with the appearance of foci containing BLM, PML, hRAD51 and RP-A, which resembled ionizing radiation-induced foci. After radiation, foci containing BLM and PML formed at sites of single-stranded DNA and presumptive repair in normal cells, but not in cells with defective PML. Our findings suggest that BLM is part of a dynamic nuclear matrix-based complex that requires PML and functions during G2 in undamaged cells and recombinational repair after DNA damage.
Key Findings
1
After radiation, BLM and PML form foci at sites of single-stranded DNA and presumptive repair in normal cells but not in PML-defective cells.
2
BLM functions as part of a dynamic nuclear matrix–based complex that requires PML, acting during G2 in undamaged cells and in recombinational repair after DNA damage.
3
BLM localizes to PML nuclear bodies and is predominantly expressed during late S and G2 phases.
4
BLM resides in a nuclear matrix-bound complex and may associate directly with hRAD51.
5
DNA double-strand break–inducing agents that cause a G2 delay induce BLM by a mechanism independent of p53 and ATM.
6
Induction of BLM after DNA damage depends on the G2 delay and does not occur when G2 is prevented or bypassed.
7
hRAD51 and replication protein A (RP-A) assemble with BLM into a subset of PML bodies during late S/G2.
Research Object
Bloom syndrome protein (BLM) localization and complex formation in human cell nuclei
Research Subject
Regulation and dynamics of BLM expression, induction after DNA damage, assembly with PML nuclear bodies, hRAD51 and RPA, and role in G2-phase and recombinational repair
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2001-04-16
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