keyword
https://read.qxmd.com/read/35939452/dna-binding-by-the-rad9a-subunit-of-the-rad9-rad1-hus1-complex
#21
JOURNAL ARTICLE
Bor-Jang Hwang, Rex Gonzales, Sage Corzine, Emilee Stenson, Lakshmi Pidugu, A-Lien Lu
The Rad9-Rad1-Hus1 checkpoint clamp activates the DNA damage response and promotes DNA repair. DNA loading on the central channel of the Rad9-Rad1-Hus1 complex is required to execute its biological functions. Because Rad9A has the highest DNA affinity among the three subunits, we determined the domains and functional residues of human Rad9A that are critical for DNA interaction. The N-terminal globular domain (residues 1-133) had 3.7-fold better DNA binding affinity than the C-terminal globular domain (residues 134-266) of Rad9A1-266...
2022: PloS One
https://read.qxmd.com/read/35819203/structure-of-the-human-rad17-rfc-clamp-loader-and-9-1-1-checkpoint-clamp-bound-to-a-dsdna-ssdna-junction
#22
JOURNAL ARTICLE
Matthew Day, Antony W Oliver, Laurence H Pearl
The RAD9-RAD1-HUS1 (9-1-1) clamp forms one half of the DNA damage checkpoint system that signals the presence of substantial regions of single-stranded DNA arising from replication fork collapse or resection of DNA double strand breaks. Loaded at the 5'-recessed end of a dsDNA-ssDNA junction by the RAD17-RFC clamp loader complex, the phosphorylated C-terminal tail of the RAD9 subunit of 9-1-1 engages with the mediator scaffold TOPBP1 which in turn activates the ATR kinase, localised through the interaction of its constitutive partner ATRIP with RPA-coated ssDNA...
August 12, 2022: Nucleic Acids Research
https://read.qxmd.com/read/35812693/mammalian-muty-homolog-myh-or-mutyh-is-critical-for-telomere-integrity-under-oxidative-stress
#23
JOURNAL ARTICLE
Aditi Gupta, Bor-Jang Hwang, Daniel Benyamien-Roufaeil, Sara Jain, Sophie Liu, Rex Gonzales, Robert A Brown, Michal Zalzman, A-Lien Lu
Telomeres consist of special features and proteins to protect the ends of each chromosome from deterioration and fusion. The telomeric DNA repeats are highly susceptible to oxidative damage that can accelerate telomere shortening and affect telomere integrity. Several DNA repair factors including MYH/MUTYH DNA glycosylase, its interacting partners Rad9/Rad1/Hus1 checkpoint clamp, and SIRT6 aging regulator, are associated with the telomeres. MYH prevents C:G to A:T mutation by removing adenine mispaired with a frequent oxidative DNA lesion, 8-oxoguanine...
2022: OBM geriatrics
https://read.qxmd.com/read/35736042/fun30-and-rtt109-mediate-epigenetic-regulation-of-the-dna-damage-response-pathway-in-c-albicans
#24
JOURNAL ARTICLE
Prashant Kumar Maurya, Pramita Garai, Kaveri Goel, Himanshu Bhatt, Anindita Dutta, Aarti Goyal, Sakshi Dewasthale, Meghna Gupta, Dominic Thangminlen Haokip, Sanju Barik, Rohini Muthuswami
Fun30, an ATP-dependent chromatin remodeler from S. cerevisiae , is known to mediate both regulation of gene expression as well as DNA damage response/repair. The Fun30 from C. albicans has not yet been elucidated. We show that C. albicans Fun30 is functionally homologous to both S. cerevisiae Fun30 and human SMARCAD1. Further, C. albicans Fun30 can mediate double-strand break end resection as well as regulate gene expression. This protein regulates transcription of RTT109 , TEL1 , MEC1 , and SNF2 -genes that encode for proteins involved in DNA damage response and repair pathways...
May 25, 2022: Journal of Fungi (Basel, Switzerland)
https://read.qxmd.com/read/35731009/structural-basis-for-molecular-interactions-on-the-eukaryotic-dna-sliding-clamps-pcna-and-rad9-rad1-hus1
#25
JOURNAL ARTICLE
Hiroshi Hashimoto, Kodai Hara, Asami Hishiki
DNA sliding clamps are widely conserved in all living organisms and play crucial roles in DNA replication and repair. Each DNA sliding clamp is a doughnut-shaped protein with a quaternary structure that encircles the DNA strand and recruits various factors involved in DNA replication and repair, thereby stimulating their biological functions. Eukaryotes have two types of DNA sliding clamp, proliferating cell nuclear antigen (PCNA) and RAD9-RAD1-HUS1 (9-1-1). The homo-trimer PCNA physically interacts with multiple proteins containing a PCNA-interacting protein box and/or AlkB homologue 2 PCNA-interacting motif...
September 30, 2022: Journal of Biochemistry
https://read.qxmd.com/read/35456300/hus1-as-a-potential-therapeutic-target-in-urothelial-cancer
#26
JOURNAL ARTICLE
Andrea Katharina Lindner, Tobias Furlan, Jacob J Orme, Gennadi Tulchiner, Nina Staudacher, David D'Andrea, Zoran Culig, Renate Pichler
Platinum-based chemotherapy is the standard of care with concern to first-line systemic therapy for metastatic disease in urothelial cancer (UC). Resistance to chemotherapy despite an initial response is linked with the ability to remove platinum-based DNA adducts and to repair chemotherapy-induced DNA lesions by various DNA repair proteins. The Rad9-Rad1-HUS1 complex that is loaded onto DNA at sites of damage is involved in checkpoint activation as well as DNA repair. Here, we addressed for the first time the potential influence of HUS1 expression in urothelial carcinogenesis (using two human basal urothelial cancer cell lines UM-UC-3 and HT1197) and its role as a potential therapeutic target for predicting responses to platinum-based chemotherapy...
April 15, 2022: Journal of Clinical Medicine
https://read.qxmd.com/read/35439302/the-rad9-rad1-hus1-dna-repair-clamp-is-found-in-microsporidia
#27
JOURNAL ARTICLE
Anne Caroline Mascarenhas Dos Santos, Alexander Thomas Julian, Jean-François Pombert
DNA repair is an important component of genome integrity and organisms with reduced repair capabilities tend to accumulate mutations at elevated rates. Microsporidia are intracellular parasites exhibiting high levels of genetic divergence postulated to originate from the lack of several proteins, including the heterotrimeric Rad9-Rad1-Hus1 DNA repair clamp. Microsporidian species from the Encephalitozoonidae have undergone severe streamlining with small genomes coding for about 2,000 proteins. The highly divergent sequences found in Microsporidia render functional inferences difficult such that roughly half of these 2,000 proteins have no known function...
April 19, 2022: Genome Biology and Evolution
https://read.qxmd.com/read/34849883/rad9-mediated-checkpoint-activation-is-responsible-for-elevated-expansions-of-gaa-repeats-in-cst-deficient-yeast
#28
JOURNAL ARTICLE
Ekaterina Spivakovsky-Gonzalez, Erica J Polleys, Chiara Masnovo, Jorge Cebrian, Adrian M Molina-Vargas, Catherine H Freudenreich, Sergei M Mirkin
Large-scale expansion of (GAA)n repeats in the first intron of the FXN gene is responsible for the severe neurodegenerative disease, Friedreich's ataxia in humans. We have previously conducted an unbiased genetic screen for GAA repeat instability in a yeast experimental system. The majority of genes that came from this screen encoded the components of DNA replication machinery, strongly implying that replication irregularities are at the heart of GAA repeat expansions. This screen, however, also produced two unexpected hits: members of the CST complex, CDC13 and TEN1 genes, which are required for telomere maintenance...
October 2, 2021: Genetics
https://read.qxmd.com/read/34746147/alternative-functions-of-cell-cycle-related-and-dna-repair-proteins-in-post-mitotic-neurons
#29
JOURNAL ARTICLE
Remi Akagawa, Yo-Ichi Nabeshima, Takeshi Kawauchi
Proper regulation of neuronal morphological changes is essential for neuronal migration, maturation, synapse formation, and high-order function. Many cytoplasmic proteins involved in the regulation of neuronal microtubules and the actin cytoskeleton have been identified. In addition, some nuclear proteins have alternative functions in neurons. While cell cycle-related proteins basically control the progression of the cell cycle in the nucleus, some of them have an extra-cell cycle-regulatory function (EXCERF), such as regulating cytoskeletal organization, after exit from the cell cycle...
2021: Frontiers in Cell and Developmental Biology
https://read.qxmd.com/read/34570618/dna-damage-induced-phosphorylation-of-histone-h2a-at-serine-15-is-linked-to-dna-end-resection
#30
JOURNAL ARTICLE
Salar Ahmad, Valérie Côté, Jacques Côté
The repair of DNA double-strand breaks (DSBs) occurs in chromatin, and several histone posttranslational modifications have been implicated in the process. Modifications of the histone H2A N-terminal tail have also been linked to DNA damage response, through acetylation or ubiquitination of lysine residues that regulate repair pathway choice. Here, we characterize a new DNA damage-induced phosphorylation on chromatin, at serine 15 of H2A in yeast. We show that this SQ motif functions independently of the classical S129 C-terminal site (γ-H2A) and that mutant-mimicking constitutive phosphorylation increases cell sensitivity to DNA damage...
November 22, 2021: Molecular and Cellular Biology
https://read.qxmd.com/read/34543274/antagonistic-relationship-of-nua4-with-the-non-homologous-end-joining-machinery-at-dna-damage-sites
#31
JOURNAL ARTICLE
Salar Ahmad, Valérie Côté, Xue Cheng, Gaëlle Bourriquen, Vasileia Sapountzi, Mohammed Altaf, Jacques Côté
The NuA4 histone acetyltransferase complex, apart from its known role in gene regulation, has also been directly implicated in the repair of DNA double-strand breaks (DSBs), favoring homologous recombination (HR) in S/G2 during the cell cycle. Here, we investigate the antagonistic relationship of NuA4 with non-homologous end joining (NHEJ) factors. We show that budding yeast Rad9, the 53BP1 ortholog, can inhibit NuA4 acetyltransferase activity when bound to chromatin in vitro. While we previously reported that NuA4 is recruited at DSBs during the S/G2 phase, we can also detect its recruitment in G1 when genes for Rad9 and NHEJ factors Yku80 and Nej1 are mutated...
September 2021: PLoS Genetics
https://read.qxmd.com/read/34493312/the-budding-yeast-protein-chl1p-is-required-for-delaying-progression-through-g1-s-phase-after-dna-damage
#32
JOURNAL ARTICLE
Muhseena N Katheeja, Shankar Prasad Das, Suparna Laha
BACKGROUND: The budding yeast protein Chl1p is a nuclear protein required for sister-chromatid cohesion, transcriptional silencing, rDNA recombination, ageing and plays an instrumental role in chromatin remodeling. This helicase is known to preserve genome integrity and spindle length in S-phase. Here we show additional roles of Chl1p at G1/S phase of the cell cycle following DNA damage. RESULTS: G1 arrested cells when exposed to DNA damage are more sensitive and show bud emergence with faster kinetics in chl1 mutants compared to wild-type cells...
September 8, 2021: Cell Division
https://read.qxmd.com/read/34362907/dpb4-promotes-resection-of-dna-double-strand-breaks-and-checkpoint-activation-by-acting-in-two-different-protein-complexes
#33
JOURNAL ARTICLE
Erika Casari, Elisa Gobbini, Marco Gnugnoli, Marco Mangiagalli, Michela Clerici, Maria Pia Longhese
Budding yeast Dpb4 (POLE3/CHRAC17 in mammals) is a highly conserved histone fold protein that is shared by two protein complexes: the chromatin remodeler ISW2/hCHRAC and the DNA polymerase ε (Pol ε) holoenzyme. In Saccharomyces cerevisiae, Dpb4 forms histone-like dimers with Dls1 in the ISW2 complex and with Dpb3 in the Pol ε complex. Here, we show that Dpb4 plays two functions in sensing and processing DNA double-strand breaks (DSBs). Dpb4 promotes histone removal and DSB resection by interacting with Dls1 to facilitate the association of the Isw2 ATPase to DSBs...
August 6, 2021: Nature Communications
https://read.qxmd.com/read/34298089/foxp1-and-ndrg1-act-differentially-as-downstream-effectors-of-rad9-mediated-prostate-cancer-cell-functions
#34
JOURNAL ARTICLE
Sunil K Panigrahi, Constantinos G Broustas, Ping Q Cuiper, Renu K Virk, Howard B Lieberman
Metastatic progression is the key feature of prostate cancer primarily responsible for mortality caused by this disease. RAD9 is an oncogene for prostate cancer, and the encoded protein enhances metastasis-related phenotypes. RAD9 is a transcription factor with a limited set of regulated target genes, but the complete list of downstream genes critical for prostate carcinogenesis is unknown. We used microarray gene expression profiling and chromatin immunoprecipitation in parallel to identify genes transcriptionally controlled by RAD9 that contribute to this cancer...
October 2021: Cellular Signalling
https://read.qxmd.com/read/34142156/structure-of-the-mammalian-adenine-dna-glycosylase-mutyh-insights-into-the-base-excision-repair-pathway-and-cancer
#35
JOURNAL ARTICLE
Teruya Nakamura, Kohtaro Okabe, Shogo Hirayama, Mami Chirifu, Shinji Ikemizu, Hiroshi Morioka, Yusaku Nakabeppu, Yuriko Yamagata
Mammalian MutY homologue (MUTYH) is an adenine DNA glycosylase that excises adenine inserted opposite 8-oxoguanine (8-oxoG). The inherited variations in human MUTYH gene are known to cause MUTYH-associated polyposis (MAP), which is associated with colorectal cancer. MUTYH is involved in base excision repair (BER) with proliferating cell nuclear antigen (PCNA) in DNA replication, which is unique and critical for effective mutation-avoidance. It is also reported that MUTYH has a Zn-binding motif in a unique interdomain connector (IDC) region, which interacts with Rad9-Rad1-Hus1 complex (9-1-1) in DNA damage response, and with apurinic/apyrimidinic endonuclease 1 (APE1) in BER...
July 9, 2021: Nucleic Acids Research
https://read.qxmd.com/read/33952527/phf8-promoted-topbp1-demethylation-drives-atr-activation-and-preserves-genome-stability
#36
JOURNAL ARTICLE
Shuai Ma, Cheng Cao, Shiyou Che, Yuejiao Wang, Dongxue Su, Shuai Liu, Wenchen Gong, Ling Liu, Jixue Sun, Jiao Zhao, Qian Wang, Nan Song, Tong Ge, Qiushi Guo, Shanshan Tian, Charlie Degui Chen, Tao Zhang, Ju Wang, Xiang Ding, Fuquan Yang, Guoguang Ying, Jie Yang, Kai Zhang, Yi Zhu, Zhi Yao, Na Yang, Lei Shi
The checkpoint kinase ATR [ATM (ataxia-telangiectasia mutated) and rad3-related] is a master regulator of DNA damage response. Yet, how ATR activity is regulated remains to be investigated. We report here that histone demethylase PHF8 (plant homeodomain finger protein 8) plays a key role in ATR activation and replication stress response. Mechanistically, PHF8 interacts with and demethylates TOPBP1 (DNA topoisomerase 2-binding protein 1), an essential allosteric activator of ATR, under unperturbed conditions, but replication stress results in PHF8 phosphorylation and dissociation from TOPBP1...
May 2021: Science Advances
https://read.qxmd.com/read/33933452/catalysis-dependent-and-redundant-roles-of-dma1-and-dma2-in-maintenance-of-genome-stability-in-saccharomyces-cerevisiae
#37
JOURNAL ARTICLE
Andrew R Yoblinski, Seoyoung Chung, Sophie B Robinson, Kaitlyn E Forester, Brian D Strahl, Raghuvar Dronamraju
DNA double-strand breaks (DSBs) are among the deleterious lesions that are both endogenous and exogenous in origin and are repaired by nonhomologous end joining or homologous recombination. However, the molecular mechanisms responsible for maintaining genome stability remain incompletely understood. Here, we investigate the role of two E3 ligases, Dma1 and Dma2 (homologs of human RNF8), in the maintenance of genome stability in budding yeast. Using yeast spotting assays, chromatin immunoprecipitation and plasmid and chromosomal repair assays, we establish that Dma1 and Dma2 act in a redundant and a catalysis-dependent manner in the maintenance of genome stability, as well as localize to transcribed regions of the genome and increase in abundance upon phleomycin treatment...
January 2021: Journal of Biological Chemistry
https://read.qxmd.com/read/33842461/rad9-a-53bp1-ortholog-of-budding-yeast-is-insensitive-to-spo11-induced-double-strand-breaks-during-meiosis
#38
JOURNAL ARTICLE
Takehiko Usui, Akira Shinohara
Exogenous double-strand breaks (DSBs) induce a DNA damage response during mitosis as well as meiosis. The DNA damage response is mediated by a cascade involving Mec1/Tel1 (ATR/ATM) and Rad53 (Chk2) kinases. Meiotic cells are programmed to form DSBs for the initiation of meiotic recombination. In budding yeast, Spo11-mediated meiotic DSBs activate Mec1/Tel1, but not Rad53; however, the mechanism underlying the insensitivity of Rad53 to meiotic DSBs remains largely unknown. In this study, we found that meiotic cells activate Rad53 in response to exogenous DSBs and that this activation is dependent on an epigenetic marker, Dot1-dependent histone H3K79 methylation, which becomes a scaffold of an Rad53 mediator, Rad9, an ortholog of 53BP1...
2021: Frontiers in Cell and Developmental Biology
https://read.qxmd.com/read/33764556/phosphoproteomics-reveals-a-distinctive-mec1-atr-signaling-response-upon-dna-end-hyper-resection
#39
JOURNAL ARTICLE
Ethan J Sanford, William J Comstock, Vitor M Faça, Stephanie C Vega, Robert Gnügge, Lorraine S Symington, Marcus B Smolka
The Mec1/ATR kinase is crucial for genome maintenance in response to a range of genotoxic insults, but it remains unclear how it promotes context-dependent signaling and DNA repair. Using phosphoproteomic analyses, we uncovered a distinctive Mec1/ATR signaling response triggered by extensive nucleolytic processing (resection) of DNA ends. Budding yeast cells lacking Rad9, a checkpoint adaptor and an inhibitor of resection, exhibit a selective increase in Mec1-dependent phosphorylation of proteins associated with single-strand DNA (ssDNA) transactions, including the ssDNA-binding protein Rfa2, the translocase/ubiquitin ligase Uls1, and the Sgs1-Top3-Rmi1 (STR) complex that regulates homologous recombination (HR)...
May 17, 2021: EMBO Journal
https://read.qxmd.com/read/33086066/the-9-1-1-complex-controls-mre11-nuclease-and-checkpoint-activation-during-short-range-resection-of-dna-double-strand-breaks
#40
JOURNAL ARTICLE
Elisa Gobbini, Erika Casari, Chiara Vittoria Colombo, Diego Bonetti, Maria Pia Longhese
Homologous recombination is initiated by nucleolytic degradation (resection) of DNA double-strand breaks (DSBs). DSB resection is a two-step process in which an initial short-range step is catalyzed by the Mre11-Rad50-Xrs2 (MRX) complex and limited to the vicinity of the DSB end. Then the two long-range resection Exo1 and Dna2-Sgs1 nucleases extend the resected DNA tracts. How short-range resection is regulated and contributes to checkpoint activation remains to be determined. Here, we show that abrogation of long-range resection induces a checkpoint response that decreases DNA damage resistance...
October 20, 2020: Cell Reports
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