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Found 38 results
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Holloman, William K
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2002
Kojic M
,
Kostrub CF
,
Buchman AR
,
Holloman WK
. 2002.
BRCA2 homolog required for proficiency in DNA repair, recombination, and genome stability in Ustilago maydis.
.
Mol Cell. 10(3):683-91.
2003
Zan H
,
Wu X
,
Komori A
,
Holloman WK
,
Casali P
. 2003.
AID-dependent generation of resected double-strand DNA breaks and recruitment of Rad52/Rad51 in somatic hypermutation.
.
Immunity. 18(6):727-38.
Kojic M
,
Yang H
,
Kostrub CF
,
Pavletich NP
,
Holloman WK
. 2003.
The BRCA2-interacting protein DSS1 is vital for DNA repair, recombination, and genome stability in Ustilago maydis.
.
Mol Cell. 12(4):1043-9.
2004
Kojic M
,
Holloman WK
. 2004.
BRCA2-RAD51-DSS1 interplay examined from a microbial perspective.
.
Cell Cycle. 3(3):247-8.
Symington LS
,
Holloman WK
. 2004.
Molecular biology. New Year's resolution--resolving resolvases.
.
Science. 303(5655):184-5.
2005
Yang H
,
Li Q
,
Fan J
,
Holloman WK
,
Pavletich NP
. 2005.
The BRCA2 homologue Brh2 nucleates RAD51 filament formation at a dsDNA-ssDNA junction.
.
Nature. 433(7026):653-7.
Kojic M
,
Zhou Q
,
Lisby M
,
Holloman WK
. 2005.
Brh2-Dss1 interplay enables properly controlled recombination in Ustilago maydis.
.
Mol Cell Biol. 25(7):2547-57.
2006
Kojic M
,
Zhou Q
,
Lisby M
,
Holloman WK
. 2006.
Rec2 interplay with both Brh2 and Rad51 balances recombinational repair in Ustilago maydis.
.
Mol Cell Biol. 26(2):678-88.
2007
Mazloum N
,
Zhou Q
,
Holloman WK
. 2007.
DNA binding, annealing, and strand exchange activities of Brh2 protein from Ustilago maydis.
.
Biochemistry. 46(24):7163-73.
Zhou Q
,
Kojic M
,
Cao Z
,
Lisby M
,
Mazloum NA
,
Holloman WK
. 2007.
Dss1 interaction with Brh2 as a regulatory mechanism for recombinational repair.
.
Mol Cell Biol. 27(7):2512-26.
Mao N
,
Zhou Q
,
Kojic M
,
Pérez-Martín J
,
Holloman WK
. 2007.
Ortholog of BRCA2-interacting protein BCCIP controls morphogenetic responses during DNA replication stress in Ustilago maydis.
.
DNA Repair (Amst). 6(11):1651-60.
Holloman WK
,
Schirawski J
,
Holliday R
. 2007.
Towards understanding the extreme radiation resistance of Ustilago maydis.
.
Trends Microbiol. 15(12):525-9.
2008
Kojic M
,
Mao N
,
Zhou Q
,
Lisby M
,
Holloman WK
. 2008.
Compensatory role for Rad52 during recombinational repair in Ustilago maydis.
.
Mol Microbiol. 67(5):1156-68.
Mazloum N
,
Zhou Q
,
Holloman WK
. 2008.
D-loop formation by Brh2 protein of Ustilago maydis.
.
Proc Natl Acad Sci U S A. 105(2):524-9.
Holloman WK
,
Schirawski J
,
Holliday R
. 2008.
The homologous recombination system of Ustilago maydis.
.
Fungal Genet Biol. 45 Suppl 1:S31-9.
Symington LS
,
Holloman WK
. 2008.
Resolving resolvases: the final act?
Mol Cell. 32(5):603-4.
2009
Mazloum N
,
Holloman WK
. 2009.
Brh2 promotes a template-switching reaction enabling recombinational bypass of lesions during DNA synthesis.
.
Mol Cell. 36(4):620-30.
Zhou Q
,
Kojic M
,
Holloman WK
. 2009.
DNA-binding Domain within the Brh2 N Terminus Is the Primary Interaction Site for Association with DNA.
.
J Biol Chem. 284(13):8265-73.
Zhou Q
,
Mazloum N
,
Mao N
,
Kojic M
,
Holloman WK
. 2009.
Dss1 regulates interaction of Brh2 with DNA.
.
Biochemistry. 48(50):11929-38.
Mao N
,
Kojic M
,
Holloman WK
. 2009.
Role of Blm and collaborating factors in recombination and survival following replication stress in Ustilago maydis.
.
DNA Repair (Amst). 8(6):752-9.
Mazloum N
,
Holloman WK
. 2009.
Second-end capture in DNA double-strand break repair promoted by Brh2 protein of Ustilago maydis.
.
Mol Cell. 33(2):160-70.
2011
de Sena-Tomás C
,
Fernández-Álvarez A
,
Holloman WK
,
Pérez-Martín J
. 2011.
The DNA damage response signaling cascade regulates proliferation of the phytopathogenic fungus Ustilago maydis in planta.
.
Plant Cell. 23(4):1654-65.
Kojic M
,
Zhou Q
,
Fan J
,
Holloman WK
. 2011.
Mutational analysis of Brh2 reveals requirements for compensating mediator functions.
.
Mol Microbiol. 79(1):180-91.
Holloman WK
. 2011.
Unraveling the mechanism of BRCA2 in homologous recombination.
.
Nat Struct Mol Biol. 18(7):748-54.
2012
Kojic M
,
Holloman WK
. 2012.
Brh2 domain function distinguished by differential cellular responses to DNA damage and replication stress.
.
Mol Microbiol. 83(2):351-61.
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