Chiasma formation: chromatin/axis interplay and the role(s) of the synaptonemal complex
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[1] E. D. Earle,et al. Nuclear DNA content of some important plant species , 1991, Plant Molecular Biology Reporter.
[2] W. Z. Cande,et al. Coordinating the events of the meiotic prophase. , 2005, Trends in cell biology.
[3] C. Grey,et al. Crossover and noncrossover pathways in mouse meiosis. , 2005, Molecular cell.
[4] M. Whitby. Making crossovers during meiosis. , 2005, Biochemical Society transactions.
[5] E. Sanchez-Moran,et al. The Arabidopsis synaptonemal complex protein ZYP1 is required for chromosome synapsis and normal fidelity of crossing over. , 2005, Genes & development.
[6] C. Heyting. Meiotic Transverse Filament Proteins: Essential for Crossing Over , 2005, Transgenic Research.
[7] M. J. Neale,et al. Endonucleolytic processing of covalent protein-linked DNA double-strand breaks , 2005, Nature.
[8] Gerald R. Smith,et al. Cohesins are required for meiotic DNA breakage and recombination in Schizosaccharomyces pombe. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[9] C. Heyting,et al. Mouse Sycp1 functions in synaptonemal complex assembly, meiotic recombination, and XY body formation. , 2005, Genes & development.
[10] M. McKay,et al. Absence of mouse REC8 cohesin promotes synapsis of sister chromatids in meiosis. , 2005, Developmental cell.
[11] R. Hawley,et al. Juxtaposition of C(2)M and the transverse filament protein C(3)G within the central region of Drosophila synaptonemal complex. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[12] J. Loidl. Cytological aspects of meiotic recombination , 1994, Experientia.
[13] S. K. Dutta,et al. Characterization of DNAs fromCoprinus lagopus andMucor azygospora , 1972, Experientia.
[14] J. Schimenti,et al. Synapsis or silence , 2005, Nature Genetics.
[15] C. Deng,et al. Silencing of unsynapsed meiotic chromosomes in the mouse , 2005, Nature Genetics.
[16] B. Hamkalo,et al. Chromatin organization during meiotic prophase ofBombyx mori , 2005, Chromosoma.
[17] Michael Lichten,et al. DNA damage response pathway uses histone modification to assemble a double-strand break-specific cohesin domain. , 2004, Molecular cell.
[18] L. Reinholdt,et al. Positional cloning and characterization of mouse mei8, a disrupted allele of the meiotic cohesin Rec8 , 2004, Genesis.
[19] R. Hawley,et al. The genetics and molecular biology of the synaptonemal complex. , 2004, Annual review of cell and developmental biology.
[20] M. Hultén,et al. Inter-sex variation in synaptonemal complex lengths largely determine the different recombination rates in male and female germ cells , 2004, Cytogenetic and Genome Research.
[21] Nick Gilbert,et al. Chromatin Architecture of the Human Genome Gene-Rich Domains Are Enriched in Open Chromatin Fibers , 2004, Cell.
[22] Nancy Kleckner,et al. A mechanical basis for chromosome function. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[23] Earl F. Glynn,et al. Genome-Wide Mapping of the Cohesin Complex in the Yeast Saccharomyces cerevisiae , 2004, PLoS biology.
[24] E. Revenkova,et al. Cohesin SMC1β is required for meiotic chromosome dynamics, sister chromatid cohesion and DNA recombination , 2004, Nature Cell Biology.
[25] N. Kleckner,et al. Crossover/Noncrossover Differentiation, Synaptonemal Complex Formation, and Regulatory Surveillance at the Leptotene/Zygotene Transition of Meiosis , 2004, Cell.
[26] D. Zickler,et al. Early Decision Meiotic Crossover Interference prior to Stable Strand Exchange and Synapsis , 2004, Cell.
[27] M. T. Parra,et al. DNA double‐strand breaks, recombination and synapsis: the timing of meiosis differs in grasshoppers and flies , 2004, EMBO reports.
[28] G. Roeder,et al. Imposition of Crossover Interference through the Nonrandom Distribution of Synapsis Initiation Complexes , 2004, Cell.
[29] B. Lu. Spreading the synaptonemal complex of Neurospora crassa , 1993, Chromosoma.
[30] W. Earnshaw,et al. Anti-topoisomerase II recognizes meiotic chromosome cores , 1989, Chromosoma.
[31] L. Anderson,et al. Spreading synaptonemal complexes from Zea mays , 1988, Chromosoma.
[32] G. H. Jones,et al. Synaptonemal complex spreading in Allium cepa and A. fistulosum , 1987, Chromosoma.
[33] L. Anderson,et al. Two-dimensional spreads of synaptonemal complexes from solanaceous plants , 1986, Chromosoma.
[34] D. Zickler,et al. Synaptonemal complexes with modified lateral elements in Sordaria humana: development of and relationship to the “recombination nodules” , 1981, Chromosoma.
[35] D. Zickler. Development of the synaptonemal complex and the “recombination nodules” during meiotic prophase in the seven bivalents of the fungus Sordaria macrospora Auersw , 1977, Chromosoma.
[36] M. Moses. Synaptonemal complex karyotyping in spermatocytes of the Chinese hamster (Cricetulus griseus) , 1977, Chromosoma.
[37] M. Moses. Synaptonemal complex karyotyping in spermatocytes of the Chinese hamster (Cricetulus griseus) , 1977, Chromosoma.
[38] S. W. Rasmussen. The meiotic prophase in Bombyx mori females analyzed by three-dimensional reconstructions of synaptonemal complexes , 1976, Chromosoma.
[39] A. T. Carpenter. Electron microscopy of meiosis in Drosophila melanogaster females , 1975, Chromosoma.
[40] A. T. Carpenter. EM autoradiographic evidence that DNA synthesis occurs at recombination nodules during meiosis in Drosophila melanogaster females , 2004, Chromosoma.
[41] B. Hamkalo,et al. Chromosome organization during male meiosis in Bombyx mori , 2004, Chromosoma.
[42] N. Kleckner,et al. Meiotic double-strand breaks at the interface of chromosome movement, chromosome remodeling, and reductional division. , 2003, Genes & development.
[43] N. Kleckner,et al. Coordinate variation in meiotic pachytene SC length and total crossover/chiasma frequency under conditions of constant DNA length. , 2003, Trends in genetics : TIG.
[44] N. Kleckner,et al. Localization and roles of Ski8p protein in Sordaria meiosis and delineation of three mechanistically distinct steps of meiotic homolog juxtaposition , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[45] K. Benjamin,et al. Polo-like kinase Cdc5 promotes chiasmata formation and cosegregation of sister centromeres at meiosis I , 2003, Nature Cell Biology.
[46] Y. Hiraoka,et al. Linear element formation and their role in meiotic sister chromatid cohesion and chromosome pairing , 2003, Journal of Cell Science.
[47] E. Revenkova,et al. Meiotic cohesin REC8 marks the axial elements of rat synaptonemal complexes before cohesins SMC1β and SMC3 , 2003, The Journal of cell biology.
[48] K. McKim,et al. The Synaptonemal Complex Component C(2)M Regulates Meiotic Crossing over in Drosophila , 2003, Current Biology.
[49] O. Echeverría,et al. Cytochemical study of the distribution of RNA and DNA in the synaptonemal complex of guinea-pig and rat spermatocytes. , 2009, European journal of histochemistry : EJH.
[50] N. Kleckner,et al. Physical and Functional Interactions among Basic Chromosome Organizational Features Govern Early Steps of Meiotic Chiasma Formation , 2002, Cell.
[51] K. McKim,et al. Meiotic recombination and chromosome segregation in Drosophila females. , 2002, Annual review of genetics.
[52] A. Villeneuve,et al. Synapsis-dependent and -independent mechanisms stabilize homolog pairing during meiotic prophase in C. elegans. , 2002, Genes & development.
[53] F. Collins,et al. Meiotic arrest and aneuploidy in MLH3-deficient mice , 2002, Nature Genetics.
[54] P. Cohen,et al. The time course and chromosomal localization of recombination-related proteins at meiosis in the mouse are compatible with models that can resolve the early DNA-DNA interactions without reciprocal recombination. , 2002, Journal of cell science.
[55] G. Copenhaver,et al. Crossover interference in Arabidopsis. , 2002, Genetics.
[56] Y. Hiraoka,et al. Dynamic behavior of microtubules during dynein-dependent nuclear migrations of meiotic prophase in fission yeast. , 2001, Molecular biology of the cell.
[57] C. Heyting,et al. A Meiotic Chromosomal Core Consisting of Cohesin Complex Proteins Recruits DNA Recombination Proteins and Promotes Synapsis in the Absence of an Axial Element in Mammalian Meiotic Cells , 2001, Molecular and Cellular Biology.
[58] N. Kleckner,et al. The Single-End Invasion An Asymmetric Intermediate at the Double-Strand Break to Double-Holliday Junction Transition of Meiotic Recombination , 2001, Cell.
[59] T. Allers,et al. Differential Timing and Control of Noncrossover and Crossover Recombination during Meiosis , 2001, Cell.
[60] S. Keeney,et al. Mechanism and control of meiotic recombination initiation. , 2001, Current topics in developmental biology.
[61] C. Heyting,et al. Sister chromatid cohesion and recombination in meiosis , 2000, Chromosoma.
[62] R. Pearlman,et al. Rad51 and Dmc1 Form Mixed Complexes Associated with Mouse Meiotic Chromosome Cores and Synaptonemal Complexes , 1999, The Journal of cell biology.
[63] C. Lister,et al. The DIF1 gene of Arabidopsis is required for meiotic chromosome segregation and belongs to the REC8/RAD21 cohesin gene family. , 1999, The Plant journal : for cell and molecular biology.
[64] S. Pöggeler,et al. Spo76p Is a Conserved Chromosome Morphogenesis Protein that Links the Mitotic and Meiotic Programs , 1999, Cell.
[65] K. Nairz,et al. A Central Role for Cohesins in Sister Chromatid Cohesion, Formation of Axial Elements, and Recombination during Yeast Meiosis , 1999, Cell.
[66] R. Rothstein,et al. Three-Dimensional Microscopy of the Rad51 Recombination Protein during Meiotic Prophase , 1999, Plant Cell.
[67] N. Kleckner,et al. Meiotic chromosomes: integrating structure and function. , 1999, Annual review of genetics.
[68] M. Hultén,et al. Crossing over analysis at pachytene in man , 1998, European Journal of Human Genetics.
[69] D. Baltimore,et al. ATM and RPA in meiotic chromosome synapsis and recombination , 1997, Nature Genetics.
[70] N. Kleckner,et al. Meiosis: how could it work? , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[71] R. Borts,et al. The mismatch repair system contributes to meiotic sterility in an interspecific yeast hybrid. , 1996, The EMBO journal.
[72] D. Peterson,et al. DNA content of heterochromatin and euchromatin in tomato (Lycopersicon esculentum) pachytene chromosomes. , 1996, Genome.
[73] P. Pukkila,et al. Independent synaptic behavior of sister chromatids in Coprinus cinereus , 1995 .
[74] U. K. Laemmli,et al. SARs are cis DNA elements of chromosome dynamics: Synthesis of a SAR repressor protein , 1995, Cell.
[75] D. J. Clarke,et al. A postprophase topoisomerase II-dependent chromatid core separation step in the formation of metaphase chromosomes , 1995, The Journal of cell biology.
[76] M. P. Maguire. Is the synaptonemal complex a disjunction machine? , 1995, The Journal of heredity.
[77] N. Kleckner,et al. Crossover and noncrossover recombination during meiosis: timing and pathway relationships. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[78] R. Egel. The synaptonemal complex and the distribution of meiotic recombination events. , 1995, Trends in genetics : TIG.
[79] G. Roeder,et al. Crossover interference is abolished in the absence of a synaptonemal complex protein , 1994, Cell.
[80] David A. Agard,et al. Meiotic chromosome pairing in maize is associated with a novel chromatin organization , 1994, Cell.
[81] U. K. Laemmli,et al. Metaphase chromosome structure: Bands arise from a differential folding path of the highly AT-rich scaffold , 1994, Cell.
[82] J. Bähler,et al. Unusual nuclear structures in meiotic prophase of fission yeast: a cytological analysis , 1993, The Journal of cell biology.
[83] R. Lande,et al. Chiasma interference and the distribution of exchanges in Drosophila melanogaster. , 1993, Cold Spring Harbor Symposia on Quantitative Biology.
[84] S. Stack,et al. Silver staining two types of meiotic nodules. , 1992, Genome.
[85] J. Crittenden,et al. Efficient isolation and mapping of rad genes of the fungus Coprinus cinereus using chromosome-specific libraries. , 1992, Nucleic acids research.
[86] N. Kleckner,et al. DMC1: A meiosis-specific yeast homolog of E. coli recA required for recombination, synaptonemal complex formation, and cell cycle progression , 1992, Cell.
[87] P. Pukkila,et al. The rad3-1 mutant is defective in axial core assembly and homologous chromosome pairing during meiosis in the basidiomycete Coprinus cinereus , 1992 .
[88] R. Padmore,et al. Temporal comparison of recombination and synaptonemal complex formation during meiosis in S. cerevisiae , 1991, Cell.
[89] R. Padmore,et al. Meiotic chromosome metabolism: one view. , 1991, Cold Spring Harbor symposia on quantitative biology.
[90] R. Padmore,et al. Analysis of wild-type and rad50 mutants of yeast suggests an intimate relationship between meiotic chromosome synapsis and recombination , 1990, Cell.
[91] N. M. Hollingsworth,et al. The HOP1 gene encodes a meiosis-specific component of yeast chromosomes , 1990, Cell.
[92] R. Pearlman,et al. Chromatin organization at meiosis , 1988, BioEssays : news and reviews in molecular, cellular and developmental biology.
[93] M. P. Maguire,et al. Crossover site determination and interference. , 1988, Journal of theoretical biology.
[94] M. Bojko. Presence of abnormal synaptonemal complexes in heterothallic species of Neurospora. , 1988, Genome.
[95] W. P. Schneider,et al. Cloning of methylated transforming DNA from Neurospora crassa in Escherichia coli , 1988, Molecular and cellular biology.
[96] M. Dresser,et al. Meiotic chromosome behavior in spread preparations of yeast , 1988, The Journal of cell biology.
[97] A. Carpenter,et al. Gene conversion, recombination nodules, and the initiation of meiotic synapsis. , 1987, BioEssays : news and reviews in molecular, cellular and developmental biology.
[98] S. W. Rasmussen. Initiation of synapsis and interlocking of chromosomes during zygotene in Bombyx spermatocytes , 1986 .
[99] M. Hultén,et al. Meiotic chromosome pairing in the normal human female , 1985, Annals of human genetics.
[100] M. Moses,et al. Composition and role of the synaptonemal complex. , 1984, Symposia of the Society for Experimental Biology.
[101] S. W. Rasmussen,et al. The synaptonemal complex in genetic segregation. , 1984, Annual review of genetics.
[102] A. Chandley,et al. Morphological and temporal sequence of meiotic prophase development at puberty in the male mouse. , 1984, Journal of cell science.
[103] P. Holm,et al. Human meiosis V. Substages of pachytene in human spermatogenesis , 1983 .
[104] R. Egel,et al. Meiosis in Aspergillus nidulans: another example for lacking synaptonemal complexes in the absence of crossover interference. , 1982, Hereditas.
[105] D. Zickler,et al. Chromosome pairing, recombination nodules and chiasma formation in the basidiomycete coprinus cinereus , 1981 .
[106] C. Gillies. The Relationship between Synaptinemal Complexes, Recombination Nodules and Crossing over in NEUROSPORA CRASSA Bivalents and Translocation Quadrivalents. , 1979, Genetics.
[107] H. Mogensen,et al. Ultrastructural analysis of female pachynema and the relationship between synaptonemal complex length and crossing-over in zea mays , 1977 .
[108] M. Bennett,et al. The time and duration of meiosis. , 1977, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[109] B. Byers,et al. Electron microscopic observations on the meiotic karyotype of diploid and tetraploid Saccharomyces cerevisiae. , 1975, Proceedings of the National Academy of Sciences of the United States of America.
[110] A. T. Carpenter. Electron microscopy of meiosis in Drosophila melanogaster females: II. The recombination nodule--a recombination-associated structure at pachytene? , 1975, Proceedings of the National Academy of Sciences of the United States of America.
[111] D. von Wettstein,et al. Presynaptic events in meiocytes of Lilium longiflorum and their relation to crossing-over: a preselection hypothesis. , 1975, Proceedings of the National Academy of Sciences of the United States of America.
[112] M. Maguire. The temporal sequence of synaptic initiation, crossing over and synaptic completion. , 1972, Genetics.
[113] M. Moses. Structure and function of the synaptonemal complex. , 1969, Genetics.
[114] L. Lerman,et al. A genetic analysis by transformation of a group of uracil-requiring mutants of Diplococcus pneumoniae. , 1969, Genetics.
[115] M. Maguire. The relationship of crossing over to chromosome synapsis in a short paracentric inversion. , 1966, Genetics.
[116] K.,et al. A Polymerization Model of Chiasma Interference and Corresponding Computer Simulation , 2022 .