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Kerry Bloom
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Research Profile (preview)
Living Beings
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Chemicals & Drugs
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Physiology
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Network (preview)
24
Salmon, Edward
23
Yeh, Elaine
12
Paul, Maddox
9
Pearson, Chad
8
Odde, David
7
Gardner, Melissa
6
Molk, Jeffrey
6
Shaw, Sidney
4
Segal, Marisa
4
Resnick, Michael
3
Reed, Steven
3
Stemple, Jennifer
3
Waterman-Storer, Clare
3
Winey, Mark
3
Beach, DL
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Publications
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Geonetwork of Kerry Bloom (preview)
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All Publications
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2009: Anderson Marybeth; Haase Julian; Yeh Elaine; Bloom Kerry
Function and assembly of DNA looping, clustering, and microtubule attachment complexes within a eukaryotic kinetochore.
Molecular biology of the cell 2009;20(19):4131-9.
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2009: Harrison Benjamin D; Hoang Margaret L; Bloom Kerry
Persistent mechanical linkage between sister chromatids throughout anaphase.
Chromosoma 2009;118(5):633-45.
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2009: Fisher J K; Ballenger M; O'Brien E T; Haase J; Superfine R; Bloom K
DNA relaxation dynamics as a probe for the intracellular environment.
Proceedings of the National Academy of Sciences of the United States of America 2009;106(23):9250-5.
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2009: Joglekar Ajit P; Bloom Kerry; Salmon E D
In vivo protein architecture of the eukaryotic kinetochore with nanometer scale accuracy.
Current biology : CB 2009;19(8):694-9.
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2008: Gardner Melissa K; Bouck David C; Paliulis Leocadia V; Meehl Janet B; O'Toole Eileen T; Haase Julian; Soubry Adelheid; Joglekar Ajit P; Winey Mark; Salmon Edward D; Bloom Kerry; Odde David J
Chromosome congression by Kinesin-5 motor-mediated disassembly of longer kinetochore microtubules.
Cell 2008;135(5):894-906.
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2008: Bloom Kerry
Kinetochores and microtubules wed without a ring.
Cell 2008;135(2):211-3.
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2008: Bloom Kerry
Q & A. Kerry Bloom.
Current biology : CB 2008;18(13):R541-3.
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2008: Gardner Melissa K; Odde David J; Bloom Kerry
Kinesin-8 molecular motors: putting the brakes on chromosome oscillations.
Trends in cell biology 2008;18(7):307-10.
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2008: Gardner Melissa K; Haase Julian; Mythreye Karthikeyan; Molk Jeffrey N; Anderson Marybeth; Joglekar Ajit P; O'Toole Eileen T; Winey Mark; Salmon E D; Odde David J; Bloom Kerry
The microtubule-based motor Kar3 and plus end-binding protein Bim1 provide structural support for the anaphase spindle.
The Journal of cell biology 2008;180(1):91-100.
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2007: Bouck David C; Bloom Kerry
Pericentric chromatin is an elastic component of the mitotic spindle.
Current biology : CB 2007;17(9):741-8.
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2007: Bloom Kerry
Centromere dynamics.
Current opinion in genetics & development 2007;17(2):151-6.
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2007: Gardner Melissa K; Odde David J; Bloom Kerry
Hypothesis testing via integrated computer modeling and digital fluorescence microscopy.
Methods (San Diego, Calif.) 2007;41(2):232-7.
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2007: Salmon E D; Shaw Sidney L; Waters Jennifer C; Waterman-Storer Clare M; Maddox Paul S; Yeh Elaine; Bloom Kerry
A high-resolution multimode digital microscope system.
Methods in cell biology 2007;81():187-218.
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2006: Yeh Elaine; Bloom Kerry
Hitching a ride.
EMBO reports 2006;7(10):985-7.
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2006: Molk Jeffrey N; Bloom Kerry
Microtubule dynamics in the budding yeast mating pathway.
Journal of cell science 2006;119(Pt 17):3485-90.
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2006: Pearson Chad G; Gardner Melissa K; Paliulis Leocadia V; Salmon E D; Odde David J; Bloom Kerry
Measuring nanometer scale gradients in spindle microtubule dynamics using model convolution microscopy.
Molecular biology of the cell 2006;17(9):4069-79.
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2006: Shimogawa Michelle M; Graczyk Beth; Gardner Melissa K; Francis Susan E; White Erin A; Ess Michael; Molk Jeffrey N; Ruse Cristian; Niessen Sherry; Yates John R; Muller Eric G D; Bloom Kerry; Odde David J; Davis Trisha N
Mps1 phosphorylation of Dam1 couples kinetochores to microtubule plus ends at metaphase.
Current biology : CB 2006;16(15):1489-501.
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2006: Bloom Kerry; Sharma Shantanu; Dokholyan Nikolay V
The path of DNA in the kinetochore.
Current biology : CB 2006;16(8):R276-8.
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2006: Bloom Kerry
NoCut: cytokinesis in check.
Cell 2006;125(1):17-8.
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2006: Molk Jeffrey N; Salmon E D; Bloom Kerry
Nuclear congression is driven by cytoplasmic microtubule plus end interactions in S. cerevisiae.
The Journal of cell biology 2006;172(1):27-39.
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2005: Roumanie Olivier; Wu Hao; Molk Jeffrey N; Rossi Guendalina; Bloom Kerry; Brennwald Patrick
Rho GTPase regulation of exocytosis in yeast is independent of GTP hydrolysis and polarization of the exocyst complex.
The Journal of cell biology 2005;170(4):583-94.
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2005: Gardner Melissa K; Pearson Chad G; Sprague Brian L; Zarzar Ted R; Bloom Kerry; Salmon E D; Odde David J
Tension-dependent regulation of microtubule dynamics at kinetochores can explain metaphase congression in yeast.
Molecular biology of the cell 2005;16(8):3764-75.
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2005: Bloom Kerry
Chromosome segregation: seeing is believing.
Current biology : CB 2005;15(13):R500-3.
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2005: Jones Michele H; Huneycutt Brenda J; Pearson Chad G; Zhang Chao; Morgan Garry; Shokat Kevan; Bloom Kerry; Winey Mark
Chemical genetics reveals a role for Mps1 kinase in kinetochore attachment during mitosis.
Current biology : CB 2005;15(2):160-5.
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2004: Lobachev Kirill; Vitriol Eric; Stemple Jennifer; Resnick Michael A; Bloom Kerry
Chromosome fragmentation after induction of a double-strand break is an active process prevented by the RMX repair complex.
Current biology : CB 2004;14(23):2107-12.
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2004: Pearson Chad G; Yeh Elaine; Gardner Melissa; Odde David; Salmon E D; Bloom Kerry
Stable kinetochore-microtubule attachment constrains centromere positioning in metaphase.
Current biology : CB 2004;14(21):1962-7.
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2004: Pearson Chad G; Bloom Kerry
Dynamic microtubules lead the way for spindle positioning.
Nature reviews. Molecular cell biology 2004;5(6):481-92.
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2004: Bloom Kerry
Microtubule composition: cryptography of dynamic polymers.
Proceedings of the National Academy of Sciences of the United States of America 2004;101(18):6839-40.
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2004: Molk Jeffrey N; Schuyler Scott C; Liu Jenny Y; Evans James G; Salmon E D; Pellman David; Bloom Kerry
The differential roles of budding yeast Tem1p, Cdc15p, and Bub2p protein dynamics in mitotic exit.
Molecular biology of the cell 2004;15(4):1519-32.
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2003: Pearson Chad G; Maddox Paul S; Zarzar Ted R; Salmon E D; Bloom Kerry
Yeast kinetochores do not stabilize Stu2p-dependent spindle microtubule dynamics.
Molecular biology of the cell 2003;14(10):4181-95.
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2003: Maddox Paul S; Stemple Jennifer K; Satterwhite Lisa; Salmon E D; Bloom Kerry
The minus end-directed motor Kar3 is required for coupling dynamic microtubule plus ends to the cortical shmoo tip in budding yeast.
Current biology : CB 2003;13(16):1423-8.
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2003: Yoder Tennessee J; Pearson Chad G; Bloom Kerry; Davis Trisha N
The Saccharomyces cerevisiae spindle pole body is a dynamic structure.
Molecular biology of the cell 2003;14(8):3494-505.
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2003: Bloom Kerry
Microtubule cytoskeleton: navigating the intracellular landscape.
Current biology : CB 2003;13(11):R430-2.
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2003: Thrower Douglas A; Stemple Jennifer; Yeh Elaine; Bloom Kerry
Nuclear oscillations and nuclear filament formation accompany single-strand annealing repair of a dicentric chromosome in Saccharomyces cerevisiae.
Journal of cell science 2003;116(Pt 3):561-9.
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2003: Salmon E D; Shaw Sidney L; Waters Jennifer; Waterman-Storer Clare M; Maddox Paul S; Yeh Elaine; Bloom Kerry
A high-resolution multimode digital microscope system.
Methods in cell biology 2003;72():185-216.
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2002: Segal Marisa; Bloom Kerry; Reed Steven I
Kar9p-independent microtubule capture at Bud6p cortical sites primes spindle polarity before bud emergence in Saccharomyces cerevisiae.
Molecular biology of the cell 2002;13(12):4141-55.
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2001: Kosco K A; Pearson C G; Maddox P S; Wang P J; Adams I R; Salmon E D; Bloom K; Huffaker T C
Control of microtubule dynamics by Stu2p is essential for spindle orientation and metaphase chromosome alignment in yeast.
Molecular biology of the cell 2001;12(9):2870-80.
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2001: Thrower D A; Bloom K
Dicentric chromosome stretching during anaphase reveals roles of Sir2/Ku in chromatin compaction in budding yeast.
Molecular biology of the cell 2001;12(9):2800-12.
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2001: Beach D L; Bloom K
ASH1 mRNA localization in three acts.
Molecular biology of the cell 2001;12(9):2567-77.
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2001: Bloom K
Nuclear migration: cortical anchors for cytoplasmic dynein.
Current biology : CB 2001;11(8):R326-9.
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2001: Segal M; Bloom K
Control of spindle polarity and orientation in Saccharomyces cerevisiae.
Trends in cell biology 2001;11(4):160-6.
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2001: Pearson C G; Maddox P S; Salmon E D; Bloom K
Budding yeast chromosome structure and dynamics during mitosis.
The Journal of cell biology 2001;152(6):1255-66.
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2000: Beach D L; Thibodeaux J; Maddox P; Yeh E; Bloom K
The role of the proteins Kar9 and Myo2 in orienting the mitotic spindle of budding yeast.
Current biology : CB 2000;10(23):1497-506.
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2000: Yeh E; Yang C; Chin E; Maddox P; Salmon E D; Lew D J; Bloom K
Dynamic positioning of mitotic spindles in yeast: role of microtubule motors and cortical determinants.
Molecular biology of the cell 2000;11(11):3949-61.
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2000: Segal M; Bloom K; Reed S I
Bud6 directs sequential microtubule interactions with the bud tip and bud neck during spindle morphogenesis in Saccharomyces cerevisiae.
Molecular biology of the cell 2000;11(11):3689-702.
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2000: Segal M; Clarke D J; Maddox P; Salmon E D; Bloom K; Reed S I
Coordinated spindle assembly and orientation requires Clb5p-dependent kinase in budding yeast.
The Journal of cell biology 2000;148(3):441-52.
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1999: Bloom K; Beach D L
mRNA localization: motile RNA, asymmetric anchors.
Current opinion in microbiology 1999;2(6):604-9.
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1999: Theesfeld C L; Irazoqui J E; Bloom K; Lew D J
The role of actin in spindle orientation changes during the Saccharomyces cerevisiae cell cycle.
The Journal of cell biology 1999;146(5):1019-32.
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1999: Beach D L; Salmon E D; Bloom K
Localization and anchoring of mRNA in budding yeast.
Current biology : CB 1999;9(11):569-78.
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1999: Maddox P; Chin E; Mallavarapu A; Yeh E; Salmon E D; Bloom K
Microtubule dynamics from mating through the first zygotic division in the budding yeast Saccharomyces cerevisiae.
The Journal of cell biology 1999;144(5):977-87.
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1998: Shaw S L; Maddox P; Skibbens R V; Yeh E; Salmon E D; Bloom K
Nuclear and spindle dynamics in budding yeast.
Molecular biology of the cell 1998;9(7):1627-31.
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1998: Salmon E D; Yeh E; Shaw S; Skibbens B; Bloom K
High-resolution video and digital-enhanced differential interference contrast light microscopy of cell division in budding yeast.
Methods in enzymology 1998;298():317-31.
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1998: Salmon E D; Shaw S L; Waters J; Waterman-Storer C M; Maddox P S; Yeh E; Bloom K
A high-resolution multimode digital microscope system.
Methods in cell biology 1998;56():185-215.
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1997: Shaw S L; Yeh E; Maddox P; Salmon E D; Bloom K
Astral microtubule dynamics in yeast: a microtubule-based searching mechanism for spindle orientation and nuclear migration into the bud.
The Journal of cell biology 1997;139(4):985-94.
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1997: Shaw S L; Yeh E; Bloom K; Salmon E D
Imaging green fluorescent protein fusion proteins in Saccharomyces cerevisiae.
Current biology : CB 1997;7(9):701-4.
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1997: Yang S S; Yeh E; Salmon E D; Bloom K
Identification of a mid-anaphase checkpoint in budding yeast.
The Journal of cell biology 1997;136(2):345-54.
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1995: Yeh E; Skibbens R V; Cheng J W; Salmon E D; Bloom K
Spindle dynamics and cell cycle regulation of dynein in the budding yeast, Saccharomyces cerevisiae.
The Journal of cell biology 1995;130(3):687-700.
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1994: Brock J A; Bloom K
A chromosome breakage assay to monitor mitotic forces in budding yeast.
Journal of cell science 1994;107 ( Pt 4)():891-902.
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1994: Kramer K M; Brock J A; Bloom K; Moore J K; Haber J E
Two different types of double-strand breaks in Saccharomyces cerevisiae are repaired by similar RAD52-independent, nonhomologous recombination events.
Molecular and cellular biology 1994;14(2):1293-301.
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1993: Li Y Y; Yeh E; Hays T; Bloom K
Disruption of mitotic spindle orientation in a yeast dynein mutant.
Proceedings of the National Academy of Sciences of the United States of America 1993;90(21):10096-100.
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1993: Schulman I G; Bloom K
Genetic dissection of centromere function.
Molecular and cellular biology 1993;13(6):3156-66.
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1993: Bloom K
The centromere frontier: kinetochore components, microtubule-based motility, and the CEN-value paradox.
Cell 1993;73(4):621-4.
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1991: Yeh E; Driscoll R; Coltrera M; Olins A; Bloom K
A dynamin-like protein encoded by the yeast sporulation gene SPO15.
Nature 1991;349(6311):713-5.
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1990: Saunders M J; Yeh E; Grunstein M; Bloom K
Nucleosome depletion alters the chromatin structure of Saccharomyces cerevisiae centromeres.
Molecular and cellular biology 1990;10(11):5721-7.
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1990: Resnick M A; Westmoreland J; Bloom K
Heterogeneity and maintenance of centromere plasmid copy number in Saccharomyces cerevisiae.
Chromosoma 1990;99(4):281-8.
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1989: Bloom K; Yeh E
Centromeres and telomeres: structural elements of eukaryotic chromosomes.
Current opinion in cell biology 1989;1(3):526-32.
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1989: Bloom K; Hill A; Kenna M; Saunders M
The structure of a primitive kinetochore.
Trends in biochemical sciences 1989;14(6):223-7.
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1989: Hill A; Bloom K
Acquisition and processing of a conditional dicentric chromosome in Saccharomyces cerevisiae.
Molecular and cellular biology 1989;9(3):1368-70.
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1989: Resnick M A; Westmoreland J; Bloom K; Nilsson-Tillgren T
Chromosome interactions and number of centromeres per cell are important to chromosome stability in yeast.
Progress in clinical and biological research 1989;318():317-24.
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1989: Bloom K; Hill A; Jones E
Conditional dicentric chromosomes in yeast.
Progress in clinical and biological research 1989;318():149-58.
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1989: Bloom K; Kenna M; Saunders M
Cis- and trans-acting factors affecting the structure of yeast centromeres.
Journal of cell science. Supplement 1989;12():231-42.
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1988: Kenna M; Amaya E; Bloom K
Selective excision of the centromere chromatin complex from Saccharomyces cerevisiae.
The Journal of cell biology 1988;107(1):9-15.
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1988: Saunders M; Fitzgerald-Hayes M; Bloom K
Chromatin structure of altered yeast centromeres.
Proceedings of the National Academy of Sciences of the United States of America 1988;85(1):175-9.
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1987: Resnick M A; Westmoreland J; Amaya E; Bloom K
UV-induced damage and repair in centromere DNA of yeast.
Molecular & general genetics : MGG 1987;210(1):16-22.
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1986: Bloom K; Hill A; Yeh E
Structural analysis of a yeast centromere.
BioEssays : news and reviews in molecular, cellular and developmental biology 1986;4(3):100-4.
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1986: Yeh E; Carbon J; Bloom K
Tightly centromere-linked gene (SPO15) essential for meiosis in the yeast Saccharomyces cerevisiae.
Molecular and cellular biology 1986;6(1):158-67.
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1985: Yeh E; Bloom K
Characterization of a tightly centromere-linked gene essential for meiosis in the yeast Saccharomyces cerevisiae.
Basic life sciences 1985;36():231-42.
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