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Neil2-null Mice Accumulate Oxidized DNA Bases in the Transcriptionally Active Sequences of the Genome and Are Susceptible to Innate Inflammation.
Chakraborty, Anirban; Wakamiya, Maki; Venkova-Canova, Tatiana; Pandita, Raj K; Aguilera-Aguirre, Leopoldo; Sarker, Altaf H; Singh, Dharmendra Kumar; Hosoki, Koa; Wood, Thomas G; Sharma, Gulshan; Cardenas, Victor; Sarkar, Partha S; Sur, Sanjiv; Pandita, Tej K; Boldogh, Istvan; Hazra, Tapas K.
Afiliação
  • Chakraborty A; From the Department of Internal Medicine, Sealy Center for Molecular Medicine.
  • Wakamiya M; Departments of Neurology and Neuroscience and Cell Biology, Transgenic Mouse Core Facility, University of Texas Medical Branch, Galveston, Texas 77555.
  • Venkova-Canova T; From the Department of Internal Medicine, Sealy Center for Molecular Medicine.
  • Pandita RK; the Department of Radiation Oncology, Houston Methodist Research Institute, Houston, Texas 77030, and.
  • Aguilera-Aguirre L; Microbiology and Immunology, and.
  • Sarker AH; the Department of Cancer and DNA Damage Responses, Life Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720.
  • Singh DK; the Department of Radiation Oncology, Houston Methodist Research Institute, Houston, Texas 77030, and.
  • Hosoki K; From the Department of Internal Medicine, Sealy Center for Molecular Medicine.
  • Wood TG; Biochemistry and Molecular Biology, and.
  • Sharma G; From the Department of Internal Medicine, Sealy Center for Molecular Medicine.
  • Cardenas V; From the Department of Internal Medicine, Sealy Center for Molecular Medicine.
  • Sarkar PS; Departments of Neurology and Neuroscience and Cell Biology.
  • Sur S; From the Department of Internal Medicine, Sealy Center for Molecular Medicine.
  • Pandita TK; the Department of Radiation Oncology, Houston Methodist Research Institute, Houston, Texas 77030, and.
  • Boldogh I; Microbiology and Immunology, and.
  • Hazra TK; From the Department of Internal Medicine, Sealy Center for Molecular Medicine, tkhazra@utmb.edu.
J Biol Chem ; 290(41): 24636-48, 2015 Oct 09.
Article em En | MEDLINE | ID: mdl-26245904
ABSTRACT
Why mammalian cells possess multiple DNA glycosylases (DGs) with overlapping substrate ranges for repairing oxidatively damaged bases via the base excision repair (BER) pathway is a long-standing question. To determine the biological role of these DGs, null animal models have been generated. Here, we report the generation and characterization of mice lacking Neil2 (Nei-like 2). As in mice deficient in each of the other four oxidized base-specific DGs (OGG1, NTH1, NEIL1, and NEIL3), Neil2-null mice show no overt phenotype. However, middle-aged to old Neil2-null mice show the accumulation of oxidative genomic damage, mostly in the transcribed regions. Immuno-pulldown analysis from wild-type (WT) mouse tissue showed the association of NEIL2 with RNA polymerase II, along with Cockayne syndrome group B protein, TFIIH, and other BER proteins. Chromatin immunoprecipitation analysis from mouse tissue showed co-occupancy of NEIL2 and RNA polymerase II only on the transcribed genes, consistent with our earlier in vitro findings on NEIL2's role in transcription-coupled BER. This study provides the first in vivo evidence of genomic region-specific repair in mammals. Furthermore, telomere loss and genomic instability were observed at a higher frequency in embryonic fibroblasts from Neil2-null mice than from the WT. Moreover, Neil2-null mice are much more responsive to inflammatory agents than WT mice. Taken together, our results underscore the importance of NEIL2 in protecting mammals from the development of various pathologies that are linked to genomic instability and/or inflammation. NEIL2 is thus likely to play an important role in long term genomic maintenance, particularly in long-lived mammals such as humans.
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Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Transcrição Gênica / DNA / Genoma / DNA Glicosilases Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: J Biol Chem Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Transcrição Gênica / DNA / Genoma / DNA Glicosilases Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: J Biol Chem Ano de publicação: 2015 Tipo de documento: Article