[HTML][HTML] Regulation of nucleotide excision repair by nuclear lamin b1

V Butin-Israeli, SA Adam, RD Goldman - PloS one, 2013 - journals.plos.org
V Butin-Israeli, SA Adam, RD Goldman
PloS one, 2013journals.plos.org
The nuclear lamins play important roles in the structural organization and function of the
metazoan cell nucleus. Recent studies on B-type lamins identified a requirement for lamin
B1 (LB1) in the regulation of cell proliferation in normal diploid cells. In order to further
investigate the function of LB1 in proliferation, we disrupted its normal expression in U-2 OS
human osteosarcoma and other tumor cell lines. Silencing LB1 expression induced G1 cell
cycle arrest without significant apoptosis. The arrested cells are unable to mount a timely …
The nuclear lamins play important roles in the structural organization and function of the metazoan cell nucleus. Recent studies on B-type lamins identified a requirement for lamin B1 (LB1) in the regulation of cell proliferation in normal diploid cells. In order to further investigate the function of LB1 in proliferation, we disrupted its normal expression in U-2 OS human osteosarcoma and other tumor cell lines. Silencing LB1 expression induced G1 cell cycle arrest without significant apoptosis. The arrested cells are unable to mount a timely and effective response to DNA damage induced by UV irradiation. Several proteins involved in the detection and repair of UV damage by the nucleotide excision repair (NER) pathway are down-regulated in LB1 silenced cells including DDB1, CSB and PCNA. We propose that LB1 regulates the DNA damage response to UV irradiation by modulating the expression of specific genes and activating persistent DNA damage signaling. Our findings are relevant to understanding the relationship between the loss of LB1 expression, DNA damage signaling, and replicative senescence.
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