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The leukemia-associated Rho guanine nucleotide exchange factor LARG is required for efficient replication stress signaling

机译:白血病相关的Rho鸟嘌呤核苷酸交换因子LARG是有效的复制应激信号传递所必需的

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We previously identified and characterized TELO2 as a human protein that facilitates efficient DNA damage response (DDR) signaling. A subsequent yeast 2-hybrid screen identified LARG; Leukemia-Associated Rho Guanine Nucleotide Exchange Factor (also known as Arhgef12), as a potential novel TELO2 interactor. LARG was previously shown to interact with Pericentrin (PCNT), which, like TELO2, is required for efficient replication stress signaling. Here we confirm interactions between LARG, TELO2 and PCNT and show that a sub-set of LARG co-localizes with PCNT at the centrosome. LARG-deficient cells exhibit replication stress signaling defects as evidenced by; supernumerary centrosomes, reduced replication stress-induced H2AX and RPA nuclear foci formation, and reduced activation of the replication stress signaling effector kinase Chk1 in response to hydroxyurea. As such, LARG-deficient cells are sensitive to replication stress-inducing agents such as hydroxyurea and mitomycin C. Conversely we also show that depletion of TELO2 and the replication stress signaling kinase ATR leads to RhoA signaling defects. These data therefore reveal a level of crosstalk between the RhoA and DDR signaling pathways. Given that mutations in both ATR and PCNT can give rise to the related primordial dwarfism disorders of Seckel Syndrome and Microcephalic osteodysplastic primordial dwarfism type II (MOPDII) respectively, which both exhibit defects in ATR-dependent checkpoint signaling, these data also raise the possibility that mutations in LARG or disruption to RhoA signaling may be contributory factors to the etiology of a sub-set of primordial dwarfism disorders.
机译:我们之前将TELO2鉴定和表征为促进有效DNA损伤反应(DDR)信号传导的人类蛋白质。随后的酵母2杂交筛选确定了LARG;白血病相关的Rho鸟嘌呤核苷酸交换因子(也称为Arhgef12),是潜在的新型TELO2相互作用子。先前已证明LARG与Pericentrin(PCNT)相互作用,而Pericentrin(PCNT)与TELO2一样,是有效的复制应激信号传导所必需的。在这里,我们确认了LARG,TELO2和PCNT之间的相互作用,并显示LARG的一个子集与PCNT在中心体处共定位。 LARG缺陷细胞表现出复制应激信号缺陷,这一点已得到证明。多余的中心体,减少了复制应激诱导的H2AX和RPA核灶的形成,并减少了复制应激信号效应子激酶Chk1对羟基脲的激活。因此,缺乏LARG的细胞对复制应激诱导剂(如羟基脲和丝裂霉素C)敏感。相反,我们还显示,耗尽TELO2和复制应激信号激酶ATR会导致RhoA信号缺陷。因此,这些数据揭示了RhoA和DDR信号通路之间的串扰水平。鉴于ATR和PCNT的突变均会引起Seckel综合征和II型小头畸形原发性侏儒症(MOPDII)的相关原发性侏儒症,它们均表现出ATR依赖性检查点信号的缺陷,这些数据也增加了以下可能性: LARG中的突变或RhoA信号的破坏可能是原发性侏儒症亚型病因的病因。

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