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1 acilitate the DNA unwinding required for DNA repair synthesis.
2 ion, to produce a 3'-hydroxyl that can prime repair synthesis.
3 distinguish between true replication and DNA repair synthesis.
4 e inhibited NER at the steps of incision and repair synthesis.
5 ation into DNA, during either replication or repair synthesis.
6 orporation of all nucleosides tested through repair synthesis.
7 (s) used to initiate excision and subsequent repair synthesis.
8 mical inhibitors almost completely abolished repair synthesis.
9 the initial induction of cross-links, not in repair synthesis.
10 cts using an assay that does not require DNA repair synthesis.
11 3'-hydroxyl that serves as a primer for DNA repair synthesis.
12 , and promotes its recruitment to facilitate repair synthesis.
13 to form a synaptic complex (SC) and initiate repair synthesis.
14 gous recombination pathways driven by D-loop repair synthesis.
15 on the undamaged strand is filled in by DNA repair synthesis.
16 sely with MCM8-9 to promote postsynaptic DNA repair synthesis.
17 erase delta (Pol delta), RFC and PCNA in LLR repair synthesis.
18 logous recombination, and stimulation of DNA repair synthesis.
19 utilized to enable lesion bypass during DNA repair synthesis.
20 RFC and PCNA are required for large loop DNA repair synthesis.
21 g in damage recognition, strand excision and repair synthesis.
22 ne copy might participate in error-prone DNA repair synthesis.
23 tinct stages: mismatch-provoked excision and repair synthesis.
24 enhancing repair excision, and facilitating repair synthesis.
25 es, thus initiating long-patch base excision repair synthesis.
26 g a DNA lesion, and residues are replaced by repair synthesis.
27 ne at a position 5' of AP sites to prime DNA repair synthesis.
28 both excision activity and single nucleotide repair synthesis.
29 signatures of template switching during DNA repair synthesis.
30 was inhibited, suggesting a requirement for repair synthesis.
31 g in damage recognition, strand excision and repair synthesis.
32 each strand under conditions of limited DNA repair synthesis.
33 DE-2 or (-)-DE-2 adducts exhibited increased repair synthesis.
34 icipation of polymerase delta in myocyte DNA repair/synthesis.
37 eta (Polbeta) carries out most base excision repair synthesis and also can excise deoxyribose 5-phosp
38 pendent excision; the second carries out DNA repair synthesis and DNA ligation; and the third provide
39 e Ape1 exonuclease during BER after both DNA repair synthesis and excision of the abasic deoxyribose-
40 and invasion steps, but differ in subsequent repair synthesis and resolution steps, influencing the g
42 NA polymerase (pol) beta was used to measure repair synthesis, and DNA ligase I was used to seal the
45 Here, we have asked how dual incision and repair synthesis are coordinated in human cells to avoid
46 repair activity, as measured by an in vitro repair synthesis assay and an in vivo host-cell reactiva
48 r G1 or G2, were used as substrates in a DNA repair synthesis assay using human whole cell extracts.
50 H3s can be deposited by the RC pathway, DNA repair synthesis associated with meiotic recombination u
52 C1-dependent short-patch repair increase DNA repair synthesis at neuronal enhancers, whereas defects
53 of repaired M13mp2 DNA, the fidelity of DNA repair synthesis at the target was determined to be abou
54 ereoisomers exhibited significant amounts of repair synthesis, but the (-)-DE-2 adduct experienced no
56 nic (AP) endonuclease family that primes DNA repair synthesis by cleaving the DNA backbone 5' of AP s
57 se to this 8-oxoguanine residue inhibits DNA repair synthesis by DNA polymerase beta, thus delaying r
59 s considered 'dirty' because it cannot prime repair synthesis by DNA polymerases or sealing by classi
60 s are highly defective in the stimulation of repair synthesis by N:-acetoxy-N:- acetylaminofluorene,
64 he complete removal of tandem lesions before repair synthesis can be efficiently performed by DNA pol
67 alizing antibody to Polbeta, which inhibited repair synthesis catalyzed by pure Polbeta by approximat
69 complements the oligonucleotide excision and repair synthesis defects in rad7 and rad16 mutant extrac
70 CNA foci (40-45%) co-localized with sites of repair synthesis detected by bromodeoxyuridine labeling.
71 ' incision by XPG and that the initiation of repair synthesis does not require the catalytic activity
72 on stress-dominated response, highlighted by repair synthesis-driven DNA damage tolerance signalling
75 varepsilon (pol2-16) also led to a deficient repair synthesis during NER, which was complemented by p
77 mical system, we show that PARI inhibits DNA repair synthesis during recombination events in a PCNA i
78 e overall HR and in terminating the extended repair synthesis during sister chromatid recombination (
79 se that a defined order of dual incision and repair synthesis exists in human cells in the form of a
82 earby sequences, suggesting an origin by DNA repair synthesis followed by microhomology-mediated end
85 ne, is functionally compartmentalized toward repair synthesis in a process regulated by ribonucleotid
86 ara-C nucleotide in DNA was incorporated by repair synthesis in CCRF-CEM cells; the remainder was in
87 patch size distribution associated with DNA repair synthesis in cell-free extracts showed that the p
90 ex formation was also found to stimulate DNA repair synthesis in human cell extracts, in a pattern co
92 ducts and double-strand breaks do not induce repair synthesis in the unmodified plasmid, indicating t
93 ciency correlates with reduced levels of DNA repair synthesis in these cells and is not due to reduce
94 erase beta (Pol beta) is responsible for the repair synthesis in this pathway and also removes a 5'-s
95 PCNA and RFC seem to act in LLR only during repair synthesis, in contrast to their roles at both pre
97 been shown to carry out damage-specific DNA repair synthesis induced by a variety of lesions, includ
99 one H2AX does not become phosphorylated, and repair synthesis is not detectable in response to total
101 rporation during replication or DNA excision repair synthesis, leading to stalled replication forks a
102 ould also participate in strand displacement repair synthesis (long patch repair (LP-BER)) mediated b
105 y mitosis via a process known as mitotic DNA repair synthesis (MiDAS), but little is known about how
106 tion of endogenous DNA damage by short-patch repair synthesis might lead to a high spontaneous mutati
107 d mutation assay revealed that errors in DNA repair synthesis occurred predominantly at the position
112 ractionation, we show that the length of the repair synthesis patch differs in the soluble and the pa
113 s were omitted from the reaction to suppress repair synthesis, PCNA was required for the formation of
115 bling nucleotide excision repair factors and repair synthesis proteins around damage-stalled RNAPII,
116 of nucleotide excision repair and in a full repair synthesis reaction, with either UV-damaged or cis
119 How this long-tract homologous recombination repair synthesis responds to complex secondary DNA struc
120 rome promotes homologous strand invasion and repair synthesis, similar to mitotic break repair events
122 tudies have suggested a role for PCNA-in the repair synthesis step of nucleotide excision repair, and
123 a single nucleotide at the AP site, based on repair synthesis studies using oligonucleotide substrate
124 endent on XPC, with entry of DDB2 only after repair synthesis that completes the first repair cycle.
125 s (CFSs) during early mitosis to trigger DNA-repair synthesis that ensures faithful chromosome segreg
127 bination indicates that aRPA can support DNA repair synthesis that requires polymerase delta, PCNA, a
128 model of slip mispairing during error-prone repair synthesis to explain the formation of state II Ds
130 air products from DmBlm mutants have shorter repair synthesis tract lengths compared to wild type and
134 rginal effect, determined by measurements of repair synthesis (unscheduled DNA synthesis), by immunoa
135 s are required to reconstitute base excision repair synthesis using a uracil-containing DNA as a mode
136 plex structure under conditions conducive to repair synthesis, using cell extracts from wild-type and
140 volved in DNA replication, recombination and repair synthesis, we suggest that MDM2 binding to DNA po
141 ular factors activated during S phase or DNA repair synthesis were required for efficient retroviral
142 and on both sides of the lesion, followed by repair synthesis, which fills the gap using the intact s