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Maria Jasin
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Roger D.; Thompson, Larry H.; Jasin, Maria (1999). "XRCC3 promotes homology-directed repair of DNA damage in mammalian cells". Genes & Development. 13 (20):Glabrousness (529 words) [view diff] no match in snippet view article find links to article
Marion; Mantegazza, Otho; Weber, Andreas P. M. (5 April 2018). "Homology-Directed Repair of a Defective Glabrous Gene in Arabidopsis With Cas9-Based GeneSynthesis-dependent strand annealing (1,822 words) [view diff] no match in snippet view article find links to article
Synthesis-dependent strand annealing (SDSA) is a major mechanism of homology-directed repair of DNA double-strand breaks (DSBs). Although many of the featuresXRCC3 (1,745 words) [view diff] no match in snippet view article find links to article
Pierce AJ, Johnson RD, Thompson LH, Jasin M (1999). "XRCC3 promotes homology-directed repair of DNA damage in mammalian cells". Genes Dev. 13 (20): 2633–2638Trichome (2,951 words) [view diff] no match in snippet view article find links to article
Marion; Mantegazza, Otho; Weber, Andreas P. M. (5 April 2018). "Homology-Directed Repair of a Defective Glabrous Gene in Arabidopsis With Cas9-Based GeneDownregulation and upregulation (2,016 words) [view diff] no match in snippet view article find links to article
Gottesman, Max E; Avvedimento, Enrico V (6 July 2007). "DNA Damage, Homology-Directed Repair, and DNA Methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalNOVA1 (843 words) [view diff] no match in snippet view article find links to article
N, Maricic T, Pääbo S (2023-07-20). "Efficient high-precision homology-directed repair-dependent genome editing by HDRobust". Nature Methods. 20 (9):Enhancer of polycomb homolog 2 (drosophila) (516 words) [view diff] no match in snippet view article
PR (April 2010). "MRG15 binds directly to PALB2 and stimulates homology-directed repair of chromosomal breaks". Journal of Cell Science. 123 (Pt 7): 1124–30DNA methylation in cancer (3,792 words) [view diff] no match in snippet view article find links to article
C, Porcellini A, Angrisano T, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalNEIL1 (1,846 words) [view diff] no match in snippet view article find links to article
Chiariotti L, Gottesman ME, Avvedimento EV (Jul 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalJoachim Lingner (1,064 words) [view diff] exact match in snippet view article find links to article
chromatin structure and telomere maintenance by telomerase and homology directed repair. Finally, they developed technologies to uncover the changes thatChromosomal crossover (3,787 words) [view diff] exact match in snippet view article find links to article
of double-strand breaks (DSBs). DSBs are often repaired using homology directed repair, a process which involves invasion of a template strand by theG2 phase (2,818 words) [view diff] no match in snippet view article find links to article
cell in G2 until the damage is repaired by mechanisms such as homology-directed repair (see above). Long-term maintenance of the G2 arrest is also mediatedEpigenetic clock (7,293 words) [view diff] no match in snippet view article find links to article
Morano A, Lee B, Di Pardo A, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalNeoplasm (5,895 words) [view diff] no match in snippet view article find links to article
Chiariotti L, Gottesman ME, Avvedimento EV (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genet. 3 (7): e110. doi:10.1371/journalNon-small-cell lung cancer (5,439 words) [view diff] no match in snippet view article find links to article
Morano A, Lee B, Di Pardo A, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalCpG site (5,478 words) [view diff] no match in snippet view article find links to article
C, Porcellini A, Angrisano T, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalEpigenetics (18,274 words) [view diff] no match in snippet view article find links to article
Morano A, Lee B, Di Pardo A, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalRegulation of transcription in cancer (2,390 words) [view diff] no match in snippet view article find links to article
C, Porcellini A, Angrisano T, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalZinc finger (4,882 words) [view diff] exact match in snippet view article find links to article
the genomic locus can be converted to a defined sequence via the homology directed repair pathway. An ongoing clinical trial is evaluating Zinc finger nucleasesRAD52 (3,093 words) [view diff] no match in snippet view article find links to article
Chiariotti L, Gottesman ME, Avvedimento EV (Jul 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalProvirus silencing (1,273 words) [view diff] no match in snippet view article find links to article
demonstrated that targeted integration of a lentiviral payload using homology-directed repair can result in stable integration and expression. In this approachGenome instability (4,560 words) [view diff] no match in snippet view article find links to article
Chiariotti, L; Gottesman, ME; Avvedimento, EV (2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genet. 3 (7): e110. doi:10.1371/journalGlioma (6,991 words) [view diff] no match in snippet view article find links to article
Morano A, Lee B, Di Pardo A, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalProtein inhibitor of activated STAT (3,257 words) [view diff] no match in snippet view article find links to article
Z, Zhang H, Ye Q, Jiao S, Xu X (October 2013). "PIAS3 promotes homology-directed repair and distal non-homologous end joining". Oncology Letters. 6 (4):ATM serine/threonine kinase (5,695 words) [view diff] no match in snippet view article find links to article
Morano A, Lee B, Di Pardo A, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalDNA-PKcs (3,754 words) [view diff] no match in snippet view article find links to article
Morano A, Lee B, Di Pardo A, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalCancer epigenetics (12,533 words) [view diff] no match in snippet view article find links to article
Morano A, Lee B, Di Pardo A, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalEvolution of the brain (7,812 words) [view diff] no match in snippet view article find links to article
Kowalewski J, et al. (September 2023). "Efficient high-precision homology-directed repair-dependent genome editing by HDRobust". Nature Methods. 20 (9):Human genetic enhancement (10,225 words) [view diff] no match in snippet view article find links to article
specific CRISPR/Cas method. It can help with single-base exchanges, homology-directed repair, and non-homologous end joining. The primary application is targetedCancer (20,132 words) [view diff] no match in snippet view article find links to article
Morano A, Lee B, Di Pardo A, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalOncogenomics (7,684 words) [view diff] no match in snippet view article find links to article
C, Porcellini A, Angrisano T, et al. (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalSurveyor nuclease assay (3,176 words) [view diff] no match in snippet view article find links to article
followed by repair through the non-homologous end-joining (NHEJ) or homology-directed repair (HDR) pathways. While HDR is expected to introduce a consistentJian-Kang Zhu (2,374 words) [view diff] no match in snippet view article find links to article
Arabidopsis. They have also developed an elegant tandem repeat-HDR (homology-directed repair) approach for efficient sequence insertion and replacement in riceRetinal vasculopathy with cerebral leukoencephalopathy and systemic manifestations (1,801 words) [view diff] no match in snippet view article find links to article
Shin (2024-06-01). "Inherited C-terminal TREX1 variants disrupt homology-directed repair to cause senescence and DNA damage phenotypes in Drosophila, miceCarcinogenesis (13,967 words) [view diff] no match in snippet view article find links to article
Chiariotti L, Gottesman ME, Avvedimento EV (July 2007). "DNA damage, homology-directed repair, and DNA methylation". PLOS Genetics. 3 (7): e110. doi:10.1371/journalHuman germline engineering (6,512 words) [view diff] no match in snippet view article find links to article
mutation in human embryos. The study claimed precise CRISPR/Cas9 and homology-directed repair response with high accuracy and precision. By modifying the cellNo-SCAR genome editing (5,650 words) [view diff] exact match in snippet view article find links to article
specific to the cleaved location as a template to rebuild using homology directed repair. This method is advantageous in that it allows multiple mutationsJanuary–March 2021 in science (13,101 words) [view diff] no match in snippet view article find links to article
Tomislav; Pääbo, Svante (20 July 2023). "Efficient high-precision homology-directed repair-dependent genome editing by HDRobust". Nature Methods. 20 (9):