scholarly journals ATM modulates subventricular zone neural stem cell maintenance and senescence through Notch signaling pathway

2021 ◽  
pp. 102618
Author(s):  
Chuanming Dong ◽  
Xianli Wang ◽  
Lixin Sun ◽  
Liang Zhu ◽  
Danjing Yang ◽  
...  
2017 ◽  
Author(s):  
Fatih Semerci ◽  
William Tin-Shing Choi ◽  
Aleksandar Bajic ◽  
Aarohi Thakkar ◽  
Juan Manuel Encinas ◽  
...  

2018 ◽  
Vol 2018 ◽  
pp. 1-12 ◽  
Author(s):  
Li Chen ◽  
Kuan Huang ◽  
Rong Wang ◽  
Qiong Jiang ◽  
Zhenghua Wu ◽  
...  

Cerebral ischemia-reperfusion (I/R) injury is a major problem worldwide. The Notch signaling pathway plays an important role in neural progenitor cell differentiation and in the inflammatory response after central nervous system injury. This study evaluated whether the neuroprotective effect of cerebral ischemic preconditioning (cIPC) is mediated by the preactivation of the Notch signaling pathway. A rat middle cerebral artery occlusion/reperfusion (MCAO/R) model and glucose deprivation/reoxygenation (OGD/R) cell model were constructed to detect the neuroprotective effects of cIPC. In in vivo experiments, cIPC reduces the neurological functional deficit, cerebral infarction, and cellular apoptosis in the hippocampus induced by middle cerebral artery occlusion/reperfusion (MCAO/R), thus indicating that cIPC can improve neurologic function. Moreover, cIPC can reveal the expression peak of Jagged1, Notch1, NICD, and Hes1 protein, thereby indicating that cIPC can preactivate Notch signaling. However, cIPC-induced improvements in neurologic function are compromised by the γ-secretase inhibitor N-(N-(3,5-difluorophenacetyl)-1-alanyl)-S-phenylglycine t-butyl ester (DAPT). In in vitro experiments, OGD preconditioning (OGDPC) can clearly upregulate Notch1 expression in the OGD/R-treated neuron and neural stem cell. Notch1 pre-overexpression can decrease neuron death and apoptosis under OGD/R treatment. Notch1 pre-overexpression can decrease the percentage of G1 stage cells and increase the percentage of S stage cells in OGD/R-treated neural stem cell. Furthermore, Notch1 pre-knockdown has the opposite effect on cell survival, apoptosis, and cycle in both OGD/R-treated neuron and neural stem cell. In conclusion, our results demonstrate that the neuroprotective effects of cIPC in a rat MCAO/R model are mediated by the preactivation of the Notch signaling pathway.


EMBO Reports ◽  
2018 ◽  
Vol 19 (11) ◽  
Author(s):  
Juwan Kim ◽  
Dasol Han ◽  
Sung‐Hyun Byun ◽  
Mookwang Kwon ◽  
Jae Youl Cho ◽  
...  

eLife ◽  
2019 ◽  
Vol 8 ◽  
Author(s):  
Evanthia Zacharioudaki ◽  
Julia Falo Sanjuan ◽  
Sarah Bray

To progress towards differentiation, progeny of stem cells need to extinguish expression of stem-cell maintenance genes. Failures in such mechanisms can drive tumorigenesis. In Drosophila neural stem cell (NSC) lineages, excessive Notch signalling results in supernumerary NSCs causing hyperplasia. However, onset of hyperplasia is considerably delayed implying there are mechanisms that resist the mitogenic signal. Monitoring the live expression of a Notch target gene, E(spl)mγ, revealed that normal attenuation is still initiated in the presence of excess Notch activity so that re-emergence of NSC properties occurs only in older progeny. Screening for factors responsible, we found that depletion of Mi-2/NuRD ATP remodeling complex dramatically enhanced Notch-induced hyperplasia. Under these conditions, E(spl)mγ was no longer extinguished in NSC progeny. We propose that Mi-2 is required for decommissioning stem-cell enhancers in their progeny, enabling the switch towards more differentiated fates and rendering them insensitive to mitogenic factors such as Notch.


2014 ◽  
Vol 243 (9) ◽  
pp. 1130-1142 ◽  
Author(s):  
Yun-Ju Lai ◽  
Ming-Yang Li ◽  
Cheng-Yao Yang ◽  
Kao-Hua Huang ◽  
Jui-Cheng Tsai ◽  
...  

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