Emory G Malone
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Explore the profile of Emory G Malone including associated specialties, affiliations and a list of published articles.
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7
Citations
13
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Recent Articles
1.
Protacio R, Davidson M, Malone E, Helmlinger D, Smith J, Gibney P, et al.
G3 (Bethesda)
. 2024 Sep;
PMID: 39312221
The fission yeast Schizosaccharomyces pombe and the budding yeast Saccharomyces cerevisiae are highly diverged (530 mya), single-celled, model eukaryotic organisms. Scientists employ mating, meiosis, and the plating of ascospores and...
2.
Protacio R, Malone E, Wahls W
MicroPubl Biol
. 2024 Aug;
2024.
PMID: 39132053
Discrete DNA sites position meiotic recombination at hotspots. We sought to create four different, 15 bp long, candidate regulatory DNA sites within the reporter gene. Each effort employed a fission...
3.
Hong Z, Byrd A, Gao J, Das P, Tan V, Malone E, et al.
Nat Commun
. 2024 Jul;
15(1):6104.
PMID: 39030241
G-quadruplexes (G4s) formed by guanine-rich nucleic acids induce genome instability through impeding DNA replication fork progression. G4s are stable DNA structures, the unfolding of which require the functions of DNA...
4.
Protacio R, Malone E, Wahls W
MicroPubl Biol
. 2024 Mar;
2024.
PMID: 38440330
The gene of the fission yeast supports both positive and negative selection; consequently, this gene is widely employed as a powerful tool to study diverse biological processes. Here we report...
5.
Thompson M, Malone E, Byrd A
Methods Enzymol
. 2022 Aug;
672:1-27.
PMID: 35934470
Helicases catalyze the unwinding of duplex nucleic acids to aid a variety of cellular processes. Although helicases unwind duplex DNA in the same direction that they translocate on single-stranded DNA,...
6.
Malone E, Thompson M, Byrd A
Int J Mol Sci
. 2022 Apr;
23(7).
PMID: 35409096
Pif1 helicases are a multifunctional family of DNA helicases that are important for many aspects of genomic stability in the nucleus and mitochondria. Pif1 helicases are conserved from bacteria to...
7.
Byrd A, Malone E, Hazeslip L, Zafar M, Harrison D, Thompson M, et al.
Protein Sci
. 2021 Nov;
31(2):407-421.
PMID: 34761452
Helicases are molecular motors with many activities. They use the energy from ATP hydrolysis to unwind double-stranded nucleic acids while translocating on the single-stranded DNA. In addition to unwinding, many...