Buettner Jannik M, Sowoidnich Leonie, Gerstner Florian, Blanco-Redondo Beatriz, Hallermann Stefan, Simon Christian M
Carl-Ludwig-Institute for Physiology, Leipzig University, Leipzig, Germany.
Division of General Biochemistry, Rudolf Schönheimer Institute of Biochemistry, Medical Faculty, Leipzig University, Leipzig, Germany.
Front Cell Neurosci. 2022 Nov 7;16:1038276. doi: 10.3389/fncel.2022.1038276. eCollection 2022.
The activation of the p53 pathway has been associated with neuronal degeneration in different neurological disorders, including spinal muscular atrophy (SMA) where aberrant expression of p53 drives selective death of motor neurons destined to degenerate. Since direct p53 inhibition is an unsound therapeutic approach due carcinogenic effects, we investigated the expression of the cell death-associated p53 downstream targets , and in vulnerable motor neurons of SMA mice. Fluorescence hybridization (FISH) of SMA motor neurons revealed RNA as a promising candidate. Accordingly, we identified p53-dependent nuclear upregulation of c-Fos protein in degenerating motor neurons from the severe Δ and intermediate SMA mouse models. Although motor neuron-specific genetic deletion in SMA mice did not improve motor neuron survival or motor behavior, p53-dependent c-Fos upregulation marks vulnerable motor neurons in different mouse models. Thus, nuclear c-Fos accumulation may serve as a readout for therapeutic approaches targeting neuronal death in SMA and possibly other p53-dependent neurodegenerative diseases.
p53信号通路的激活与不同神经疾病中的神经元变性有关,包括脊髓性肌萎缩症(SMA),其中p53的异常表达导致注定要变性的运动神经元选择性死亡。由于直接抑制p53因致癌作用而不是一种合理的治疗方法,我们研究了细胞死亡相关的p53下游靶点 、 和 在SMA小鼠易损运动神经元中的表达。对SMA运动神经元进行荧光原位杂交(FISH)显示 RNA是一个有前景的候选靶点。因此,我们在严重Δ型和中间型SMA小鼠模型的变性运动神经元中鉴定出p53依赖性的c-Fos蛋白核上调。尽管在SMA小鼠中进行运动神经元特异性基因缺失并不能改善运动神经元存活或运动行为,但p53依赖性的c-Fos上调在不同小鼠模型中标记了易损运动神经元。因此,核c-Fos积累可能作为针对SMA以及可能其他p53依赖性神经退行性疾病中神经元死亡的治疗方法的一个指标。