Leibniz Institute on Aging - Fritz Lipmann Institute (FLI), Jena, Germany.
School of Medicine (Shenzhen), Sun Yat-Sen University, Guangzhou, China.
Nucleic Acids Res. 2020 Nov 4;48(19):10924-10939. doi: 10.1093/nar/gkaa716.
NBS1 is a critical component of the MRN (MRE11/RAD50/NBS1) complex, which regulates ATM- and ATR-mediated DNA damage response (DDR) pathways. Mutations in NBS1 cause the human genomic instability syndrome Nijmegen Breakage Syndrome (NBS), of which neuronal deficits, including microcephaly and intellectual disability, are classical hallmarks. Given its function in the DDR to ensure proper proliferation and prevent death of replicating cells, NBS1 is essential for life. Here we show that, unexpectedly, Nbs1 deletion is dispensable for postmitotic neurons, but compromises their arborization and migration due to dysregulated Notch signaling. We find that Nbs1 interacts with NICD-RBPJ, the effector of Notch signaling, and inhibits Notch activity. Genetic ablation or pharmaceutical inhibition of Notch signaling rescues the maturation and migration defects of Nbs1-deficient neurons in vitro and in vivo. Upregulation of Notch by Nbs1 deletion is independent of the key DDR downstream effector p53 and inactivation of each MRN component produces a different pattern of Notch activity and distinct neuronal defects. These data indicate that neuronal defects and aberrant Notch activity in Nbs1-deficient cells are unlikely to be a direct consequence of loss of MRN-mediated DDR function. This study discloses a novel function of NBS1 in crosstalk with the Notch pathway in neuron development.
NBS1 是 MRN(MRE11/RAD50/NBS1)复合物的关键组成部分,该复合物调节 ATM 和 ATR 介导的 DNA 损伤反应(DDR)途径。NBS1 中的突变导致人类基因组不稳定性综合征 Nijmegen 断裂综合征(NBS),其神经元缺陷,包括小头畸形和智力障碍,是经典的特征。鉴于其在 DDR 中的功能,可确保适当的增殖并防止复制细胞死亡,NBS1 对生命至关重要。在这里,我们出乎意料地发现,Nbs1 缺失对有丝分裂后神经元是可有可无的,但由于 Notch 信号的失调会损害其分支和迁移。我们发现 Nbs1 与 NICD-RBPJ 相互作用,NICD-RBPJ 是 Notch 信号的效应物,并抑制 Notch 活性。 Notch 信号的遗传缺失或药物抑制可挽救体外和体内 Nbs1 缺失神经元的成熟和迁移缺陷。Nbs1 缺失导致 Notch 上调不依赖于关键 DDR 下游效应物 p53,并且每个 MRN 成分的失活会产生不同的 Notch 活性和不同的神经元缺陷模式。这些数据表明,Nbs1 缺失细胞中的神经元缺陷和异常 Notch 活性不太可能是 MRN 介导的 DDR 功能丧失的直接后果。这项研究揭示了 NBS1 在神经元发育中与 Notch 途径相互作用的新功能。