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A.M. (2012) COSA-1 Reveals Separable Licensing and Reinforcement Steps
and Efficient Homeostasis Governing Meiotic Crossovers. Cell. in press.
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assurance and regulated interhomolog access maintain crossover number during
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painting reveals asynaptic full-length homolog alignment and HIM-8-dependent
remodeling of X chromosome territories during C. elegans meiosis. Plos
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KJ. (2011). An asymmetric chromosome pair undergoes synaptic adjustment
and crossover redistribution during Caenorhabditis elegans meiosis: implications
for sex chromosome evolution. Genetics 187: 685-99.
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(2010). Meiotic errors activate checkpoints that improve gamete quality
without triggering apoptosis in male germ cells. Curr Biol. 23 :2078-89.
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Complex Shapes the Crossover Landscape Through Cooperative Assembly, Crossover
Promotion and Crossover Inhibition During Caenorhabditis elegans Meiosis.
Genetics. 186:45-58. Epub 2010 Jun 30.
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cohesion, coorientation and congression during meiosis: Lessons from holocentric
chromosomes. Genes Dev 24, 219-28.
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Localization and Independent Acquisition of the H3K9me2 and H3K9me3 Chromatin
Modifications in the C. elegans Adult Germ Line. PLoS Genetics 6(1):e1000830.
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promote chromosome alignment during acentrosomal oocyte meiosis. Nat Cell
Biol. 11, 839-44.
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E, Schvarzstein M, Barroso C, Lightfoot J, Dernburg AF, Villeneuve AM "Crossovers trigger a remodeling of meiotic chromosome
axis composition that is linked to two-step loss of sister chromatid cohesion." Genes
Dev. 2008 Oct 15;22(20):2886-901.
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M, Chin GM, Villeneuve AM "C. elegans germ cells switch
between distinct modes of double-strand break repair during meiotic prophase
progression." PLoS Genet. 2007 Nov;3(11):e191.
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A, Ellefson M, Villeneuve AM, Engebrecht J. "Differential
timing of S phases, X chromosome replication, and meiotic prophase in the
C. elegans germ line." Dev Biol. 2007 Aug 1;308(1):206-21.
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S, Eizinger A, Hurlburt A, Rogers E, Villeneuve AM, Colaiácovo MP. "Synapsis-defective mutants reveal a correlation between chromosome
conformation and the mode of double-strand break repair during Caenorhabditis
elegans meiosis." Genetics. 2007 Aug;176(4):2027-33.
- Smolikov
S, Eizinger A, Schild-Prufert K, Hurlburt A, McDonald K, Engebrecht J,
Villeneuve AM, Colaiácovo MP "SYP-3 restricts synaptonemal
complex assembly to bridge paired chromosome axes during meiosis in Caenorhabditis
elegans." Genetics. 2007 Aug;176(4):2015-25.
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JB, Reddy KC, Hayashi M, Hodgkin J, Villeneuve AM "A role
for Caenorhabditis elegans chromatin-associated protein HIM-17 in the proliferation
vs. meiotic entry decision." Genetics. 2007 Apr;175(4):2029-37.
Stanfield
GM, Villeneuve AM "Regulation of sperm activation by SWM-1
is required for reproductive success of C. elegans males." Curr Biol.
2006 Feb 7;16(3):252-63.
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AJ, Phillips CM, Bhalla N, Weiser P, Villeneuve AM, Dernburg AF "Chromosome
sites play dual roles to establish homologous synapsis during meiosis in
C. elegans." Cell. 2005 Dec 16;123(6):1037-50.
- Martinez-Perez
E, Villeneuve AM "HTP-1-dependent constraints coordinate
homolog pairing and synapsis and promote chiasma formation during C. elegans
meiosis." Genes Dev. 2005 Nov 15;19(22):2727-43.
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K, Villeneuve AM, Colaiácovo MP "Crossing over is coupled
to late meiotic prophase bivalent differentiation through asymmetric disassembly
of the SC." J Cell Biol 2005; 168: 5: 683-9:
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E, Villeneuve AM "HTP-1-dependent constraints coordinate
homolog pairing and synapsis and promote chiasma formation during C. elegans
meiosis." Genes Dev 2005; 19: 22: 2727-43
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AJ, Phillips CM, Bhalla N, Weiser P, Villeneuve AM, Dernburg AF "Chromosome
sites play dual roles to establish homologous synapsis during meiosis in
C. elegans." Cell 2005; 123: 6: 1037-50
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Villeneuve AM "C. elegans HIM-17 links chromatin modification
and competence for initiation of meiotic recombination." Cell 2004;
118: 4: 439-52
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A, MacQueen AJ, Villeneuve AM "Methods for analyzing checkpoint
responses in Caenorhabditis elegans." Methods Mol Biol 2004; 280:
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F, Nabeshima K, Villeneuve A, Zetka M "A component of C. elegans
meiotic chromosome axes at the interface of homolog alignment, synapsis,
nuclear reorganization, and recombination." Curr Biol 2004; 14: 7:
585-92
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Villeneuve AM, Hillers KJ "Chromosome-wide regulation
of meiotic crossover formation in Caenorhabditis elegans requires properly
assembled chromosome axes." Genetics 2004; 168: 3: 1275-92
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KJ, Villeneuve AM "Chromosome-wide control of meiotic crossing
over in C. elegans." Curr Biol 2003; 13: 18: 1641-7
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MP, MacQueen AJ, Martinez-Perez E, McDonald K, Adamo A, La Volpe A, Villeneuve
AM "Synaptonemal complex assembly in C. elegans is dispensable
for loading strand-exchange proteins but critical for proper completion of
recombination." Dev Cell 2003; 5: 3: 463-74
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AB, Stuart J, Mach K, Villeneuve AM, Kim S "A gene recommender
algorithm to identify coexpressed genes in C. elegans." Genome Res
2003; 13: 8: 1828-37
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MP, Stanfield GM, Reddy KC, Reinke V, Kim SK, Villeneuve AM "A
targeted RNAi screen for genes involved in chromosome morphogenesis and nuclear
organization in the Caenorhabditis elegans germline." Genetics 2002;
162: 1: 113-28
- MacQueen
AJ, Colaiácovo MP, McDonald K, Villeneuve AM "Synapsis-dependent
and -independent mechanisms stabilize homolog pairing during meiotic prophase
in C. elegans." Genes Dev 2002; 16: 18: 2428-42
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AM, Hillers KJ "Whence meiosis?" Cell 2001; 106:
6: 647-50
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AJ, Villeneuve AM "Nuclear reorganization and homologous chromosome
pairing during meiotic prophase require C. elegans chk-2." Genes Dev
2001; 15: 13: 1674-87
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AM, "Development. How to stimulate your partner." Science
2001; 291: 5511: 2099-101
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Villeneuve AM "C. elegans mre-11 is required for meiotic recombination
and DNA repair but is dispensable for the meiotic G(2) DNA damage checkpoint." Genes
Dev 2001; 15: 5: 522-34
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KO, Dernburg AF, Stanfield GM, Villeneuve AM "Caenorhabditis
elegans msh-5 is required for both normal and radiation-induced meiotic crossing
over but not for completion of meiosis." Genetics 2000; 156: 2: 617-30
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AF, Zalevsky J, Colaiácovo MP, Villeneuve AM "Transgene-mediated
cosuppression in the C. elegans germ line." Genes Dev 2000; 14: 13:
1578-83
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MacQueen AJ, Duffy JB, Kemphues KJ, Villeneuve AM "Crossing
over during Caenorhabditis elegans meiosis requires a conserved MutS-based
pathway that is partially dispensable in budding yeast." Genetics
1999; 153: 3: 1271-83
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AF, McDonald K, Moulder G, Barstead R, Dresser M, Villeneuve AM "Meiotic
recombination in C. elegans initiates by a conserved mechanism and is dispensable
for homologous chromosome synapsis." Cell 1998; 94: 3: 387-98
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A. M., Albertson, D. G., Rose, A. M., "Chromosome Organization,
Meiosis and Mitosis". in C. elegans, II. (ed. D. Riddle, B. Meyer, Blumenthal,
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AM, Lauper N, Codourey L, Tobler H, Müller F "Telomeric
repeats (TTAGGC)n are sufficient for chromosome capping function in Caenorhabditis
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AM, "A cis-acting locus that promotes crossing over between
X chromosomes in Caenorhabditis elegans." Genetics 1994; 136: 3: 887-902