Protective Mechanisms Against DNA Replication Stress in the Nervous System

被引:10
|
作者
Charlier, Clara Forrer [1 ]
Martins, Rodrigo A. P. [1 ]
机构
[1] Univ Fed Rio de Janeiro UFRJ, Inst Ciencias Biomed, Programa Biol Celular & Desenvolvimento, BR-21941902 Rio De Janeiro, Brazil
关键词
genome stability; neurologic disease; DNA damage; neurodevelopment; neurodegeneration; ATR; CNS; replication stress; DDR; AICARDI-GOUTIERES-SYNDROME; DEPENDENT PROTEIN-KINASE; STRAND BREAK REPAIR; OCULOMOTOR APRAXIA TYPE-2; ROTHMUND-THOMSON-SYNDROME; MAINTAINING GENOME STABILITY; EARLY EMBRYONIC LETHALITY; BLOOMS-SYNDROME HELICASE; CGAMP-STING PATHWAY; HEAD-ON COLLISION;
D O I
10.3390/genes11070730
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The precise replication of DNA and the successful segregation of chromosomes are essential for the faithful transmission of genetic information during the cell cycle. Alterations in the dynamics of genome replication, also referred to as DNA replication stress, may lead to DNA damage and, consequently, mutations and chromosomal rearrangements. Extensive research has revealed that DNA replication stress drives genome instability during tumorigenesis. Over decades, genetic studies of inherited syndromes have established a connection between the mutations in genes required for proper DNA repair/DNA damage responses and neurological diseases. It is becoming clear that both the prevention and the responses to replication stress are particularly important for nervous system development and function. The accurate regulation of cell proliferation is key for the expansion of progenitor pools during central nervous system (CNS) development, adult neurogenesis, and regeneration. Moreover, DNA replication stress in glial cells regulates CNS tumorigenesis and plays a role in neurodegenerative diseases such as ataxia telangiectasia (A-T). Here, we review how replication stress generation and replication stress response (RSR) contribute to the CNS development, homeostasis, and disease. Both cell-autonomous mechanisms, as well as the evidence of RSR-mediated alterations of the cellular microenvironment in the nervous system, were discussed.
引用
收藏
页码:1 / 39
页数:38
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