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De novo Mutation Enables NOTCH3ECD Aggregation and Mitochondrial Dysfunction via Interactions with BAX and BCL-2.

Authors :
Liu, Ruijie
Gao, Chenhao
Shang, Junkui
Sun, Ruihua
Wang, Wenjing
Li, Wei
Gao, Dandan
Huo, Xuejing
Shi, Yingying
Wang, Yanliang
Wang, Fengyu
Zhang, Jiewen
Source :
Journal of Alzheimer's Disease; 2022, Vol. 86 Issue 1, p67-81, 15p
Publication Year :
2022

Abstract

<bold>Background: </bold>Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) caused by NOTCH3 mutations is the most common monogenic hereditary pattern of cerebral small vessel disease. The aggregation of the mutant NOTCH3 may play a cytotoxic role in CADASIL. However, the main mechanism of this process remains unclear.<bold>Objective: </bold>We aimed to investigate the possible pathogenesis of the mutant NOTCH3 in CADASIL.<bold>Methods: </bold>The clinical information of two pedigrees were collected and analyzed. Furthermore, we constructed cell lines corresponding to this mutation in vitro. The degradation of the extracellular domain of NOTCH3 (NOTCH3ECD) was analyzed by Cycloheximide Pulse-Chase Experiment. Flow cytometry and cell counting kit-8 assay were performed to observe the effects of the NOTCH3 mutation on mitochondrial function and apoptosis.<bold>Results: </bold>We confirmed a de novo heterozygous missense NOTCH3 mutation (c.1690G > A, p. A564T) in two pedigrees. In vitro, the NOTCH3ECD aggregation of A564T mutant may be related to their more difficult to degrade. The mitochondrial membrane potential was attenuated, and cell viability was significant decreased in NOTCH3ECD A564T group. Interestingly, BAX and cytochrome c were significantly increased, which are closely related to the mitochondrial-mediated pathway to apoptosis.<bold>Conclusion: </bold>In our study, the aggregation of NOTCH3ECD A564T mutation may be associated with more difficult degradation of the mutant, and the aggregation may produce toxic effects to induce apoptosis through the mitochondrial-mediated pathway. Therefore, we speculated that mitochondrial dysfunction may hopefully become a new breakthrough point to explain the pathogenesis of cysteine-sparing NOTCH3 mutations. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13872877
Volume :
86
Issue :
1
Database :
Complementary Index
Journal :
Journal of Alzheimer's Disease
Publication Type :
Academic Journal
Accession number :
155833113
Full Text :
https://doi.org/10.3233/JAD-215256