During development multicellular organisms must coordinate differentiation with cell proliferation, and the cell cycle is modified to achieve particular developmental goals. The regulation of two variant cell cycles is being investigated using Drosophila as a model: meiosis, a modified cell cycle in which two rounds of chromosome segregation permit the production of haploid gametes, and a rapid cell cycle used during early embryogenesis. The meiotic cell cycle is subject to developmental control to coordinate progression through meiosis with oocyte differentiation and fertilization. Understanding the control circuitry for these cycles will provide insights into causes of human infertility, and the regulatory genes identified are likely to be important in preventing cancer. Drosophila is an ideal model organism for the discovery of gene function because of the ready link between mutant recovery and protein identification. Cell cycle control genes identified in Drosophila most often have orthologs that play essential roles in humans. A protein kinase complex, PAN GU, drives the embryonic cycles by controlling translation of Cyclin B, a key protein that when complexed with the CDK1 kinase subunit promotes mitosis and inhibits DNA replication. The mechanism by which PAN GU regulates Cyclin B translation will be defined, elucidating the role of translational control in triggering the onset of mitosis. In the previous funding period mutants defective in controlling the meiotic cell cycle were recovered. Two of the affected proteins appear to be necessary for ubiquitin-mediated protein degradation. Their mechanisms of action will be determined and protein targets identified. This will reveal the role of protein degradation in meiotic chromosome segregation and lead to the identification of proteins critical for meiosis. The protein products of other genes necessary for the completion of meiosis and the restart of the cell cycle at fertilization will be isolated.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM039341-20
Application #
7249404
Study Section
Molecular Genetics C Study Section (MGC)
Program Officer
Zatz, Marion M
Project Start
1988-02-01
Project End
2009-06-30
Budget Start
2007-07-01
Budget End
2008-06-30
Support Year
20
Fiscal Year
2007
Total Cost
$379,036
Indirect Cost
Name
Whitehead Institute for Biomedical Research
Department
Type
DUNS #
120989983
City
Cambridge
State
MA
Country
United States
Zip Code
02142
Hara, Masatoshi; Lourido, Sebastian; Petrova, Boryana et al. (2018) Identification of PNG kinase substrates uncovers interactions with the translational repressor TRAL in the oocyte-to-embryo transition. Elife 7:
Hara, Masatoshi; Petrova, Boryana; Orr-Weaver, Terry L (2017) Control of PNG kinase, a key regulator of mRNA translation, is coupled to meiosis completion at egg activation. Elife 6:
Eichhorn, Stephen W; Subtelny, Alexander O; Kronja, Iva et al. (2016) mRNA poly(A)-tail changes specified by deadenylation broadly reshape translation in Drosophila oocytes and early embryos. Elife 5:
Kronja, Iva; Yuan, Bingbing; Eichhorn, Stephen W et al. (2014) Widespread changes in the posttranscriptional landscape at the Drosophila oocyte-to-embryo transition. Cell Rep 7:1495-1508
Kronja, Iva; Whitfield, Zachary J; Yuan, Bingbing et al. (2014) Quantitative proteomics reveals the dynamics of protein changes during Drosophila oocyte maturation and the oocyte-to-embryo transition. Proc Natl Acad Sci U S A 111:16023-8
Whitfield, Zachary J; Chisholm, Jennifer; Hawley, R Scott et al. (2013) A meiosis-specific form of the APC/C promotes the oocyte-to-embryo transition by decreasing levels of the Polo kinase inhibitor matrimony. PLoS Biol 11:e1001648
Unhavaithaya, Yingdee; Orr-Weaver, Terry L (2013) Centromere proteins CENP-C and CAL1 functionally interact in meiosis for centromere clustering, pairing, and chromosome segregation. Proc Natl Acad Sci U S A 110:19878-83
Unhavaithaya, Yingdee; Park, Eugenia A; Royzman, Irena et al. (2013) Drosophila embryonic cell-cycle mutants. G3 (Bethesda) 3:1875-80
Kronja, Iva; Orr-Weaver, Terry L (2011) Translational regulation of the cell cycle: when, where, how and why? Philos Trans R Soc Lond B Biol Sci 366:3638-52
Von Stetina, Jessica R; Orr-Weaver, Terry L (2011) Developmental control of oocyte maturation and egg activation in metazoan models. Cold Spring Harb Perspect Biol 3:a005553

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