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Facilitation of base excision repair by chromatin remodeling
Affiliation:1. Genetics Department, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre, RS, Brazil;2. Laboratory of Tropical Gastroenterology and Hepatology “João Alves de Queiroz and Castorina Bittencourt Alves”, Institute of Tropical Medicine, Department of Gastroenterology, University of São Paulo School of Medicine, São Paulo, SP, Brazil;3. VIZLab — Advanced Visualization Laboratory, UNISINOS, São Leopoldo, RS, Brazil;4. Hospital Israelita Albert Einstein, São Paulo, SP, Brazil;1. Division of Dermatology, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan;2. Division of Microscopic Anatomy, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan
Abstract:Base Excision Repair (BER) is a conserved, intracellular DNA repair system that recognizes and removes chemically modified bases to insure genomic integrity and prevent mutagenesis. Aberrant BER has been tightly linked with a broad spectrum of human pathologies, such as several types of cancer, neurological degeneration, developmental abnormalities, immune dysfunction and aging. In the cell, BER must recognize and remove DNA lesions from the tightly condensed, protein-coated chromatin. Because chromatin is necessarily refractory to DNA metabolic processes, like transcription and replication, the compaction of the genomic material is also inhibitory to the repair systems necessary for its upkeep. Multiple ATP-dependent chromatin remodelling (ACR) complexes play essential roles in modulating the protein-DNA interactions within chromatin, regulating transcription and promoting activities of some DNA repair systems, including double-strand break repair and nucleotide excision repair. However, it remains unclear how BER operates in the context of chromatin, and if the chromatin remodelling processes that govern transcription and replication also actively regulate the efficiency of BER. In this review we highlight the emerging role of ACR in regulation of BER.
Keywords:Chromatin remodeling  DNA damage  Nucleosomes  Glycosylase  AP endonuclease  Polymerase β  Ligase  SNF2  BRG1  PARP-1  SWI/SNF  RSC  ISWI  INO80
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