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searching for Eukaryotic DNA replication 16 found (33 total)

alternate case: eukaryotic DNA replication

John Diffley (biologist) (138 words) [view diff] exact match in snippet view article

studying eukaryotic DNA replication. He was awarded the 2019 Canada Gairdner International Award for his "pioneering research on the eukaryotic DNA replication
SV40 (2,451 words) [view diff] exact match in snippet view article find links to article
model eukaryotic virus, leading to many early discoveries in eukaryotic DNA replication and transcription. The hypothesis that SV40 might cause cancer
Control of chromosome duplication (2,036 words) [view diff] exact match in snippet view article find links to article
(2003). "Enigmatic variations: divergent modes of regulating eukaryotic DNA replication". Mol. Cell. 12 (5): 1067–1075. doi:10.1016/S1097-2765(03)00441-6
CDC45-related protein (1,096 words) [view diff] exact match in snippet view article find links to article
PMID 10518787. Leatherwood J (1998). "Emerging mechanisms of eukaryotic DNA replication initiation". Curr. Opin. Cell Biol. 10 (6): 742–8. doi:10
Anindya Dutta (2,385 words) [view diff] exact match in snippet view article find links to article
and organized three Cold Spring Harbor Laboratory meetings on Eukaryotic DNA replication and Genome Maintenance. He has served on the Program Committees
RFC1 (2,253 words) [view diff] exact match in snippet view article find links to article
Replication factor C is a DNA-dependent ATPase that is required for eukaryotic DNA replication and repair. The protein acts as an activator of DNA polymerases
DNA synthesis (1,791 words) [view diff] exact match in snippet view article find links to article
PMID 30514768. Reusswig, Karl-Uwe; Pfander, Boris (2019). "Control of Eukaryotic DNA replication Initiation - Mechanisms to Ensure Smooth Transitions". Genes (Basel)
Walker motifs (1,264 words) [view diff] exact match in snippet view article find links to article
ATPases including MCM proteins involved in the initiation of eukaryotic DNA replication". Nucleic Acids Research. 21 (11): 2541–7. doi:10.1093/nar/21
Replication timing (1,423 words) [view diff] exact match in snippet view article find links to article
diseases. Gilbert DM (2010) Evaluating genome-scale approaches to eukaryotic DNA replication. Nat Rev Genet 11: 673-684. Ryba T, Battaglia D, Pope BD, Hiratani
Suman Kumar Dhar (1,478 words) [view diff] exact match in snippet view article find links to article
Cvetic C, Walter JC, Dutta A (December 2000). "Inhibition of eukaryotic DNA replication by geminin binding to Cdt1". Science. 290 (5500): 2309–12. doi:10
Geminin (1,950 words) [view diff] exact match in snippet view article find links to article
Dhar SK, Cvetic C, Walter JC, Dutta A (2000). "Inhibition of eukaryotic DNA replication by geminin binding to Cdt1". Science. 290 (5500): 2309–2312. Bibcode:2000Sci
DNA unwinding element (2,271 words) [view diff] exact match in snippet view article find links to article
doi:10.1074/jbc.M609632200. PMID 17264083. DePamphilis ML (1993). "Eukaryotic DNA replication: anatomy of an origin". Annual Review of Biochemistry. 62 (1):
RRM3 (2,020 words) [view diff] exact match in snippet view article find links to article
proliferating cell nuclear antigen (PCNA), a protein essential to eukaryotic DNA replication. PCNA interacts with Rrm3p via the PIP-box motif at the N-terminus
DNA re-replication (2,828 words) [view diff] exact match in snippet view article find links to article
of mitosis. Thus, CDKs serve a dual role in the regulation of eukaryotic DNA replication: elevated CDK activity initiates replication at the origins and
CUL4A (4,397 words) [view diff] exact match in snippet view article find links to article
some cases induction of apoptosis. After promoting initiation of eukaryotic DNA replication at the origin, Cdt1 is inactivated by Geminin and targeted for
Cruciform DNA (3,480 words) [view diff] exact match in snippet view article find links to article
(January 2008). "14-3-3 cruciform-binding proteins as regulators of eukaryotic DNA replication". Trends in Biochemical Sciences. 33 (1): 44–50. doi:10.1016/j