Publications
Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways. BioRxiv. (https://doi.org/10.1101/2021.10.27.466108 )
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2023. Essential embryonic roles of the CKI-1 cyclin-dependent kinase inhibitor in cell-cycle exit and morphogenesis in C elegans.. Dev Biol. 260(1):273-86.
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2003. C. elegans DAF-18/PTEN mediates nutrient-dependent arrest of cell cycle and growth in the germline.. Curr Biol. 16(8):773-9.
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The zinc finger protein DIE-1 is required for late events during epithelial cell rearrangement in C. elegans.. Dev Biol. 236(1):165-80.
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2001. Structural differences in the DNA binding domains of human p53 and its C. elegans ortholog Cep-1.. Structure. 12(7):1237-43.
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2004. Intertwined Functions of Separase and Caspase in Cell Division and Programmed Cell Death.. Sci Rep. 10(1):6159.
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2020. NEGotiating Cell Identity through Regulated Cytoplasmic Polyadenylation.. Dev Cell. 34(1):1-2.
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2015. Nematode gastrulation: having a BLASTocoel!. Curr Biol. 15(13):R495-8.
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2005. Caenorhabditis elegans as a model for stem cell biology.. Dev Dyn. 239(5):1539-54.
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2010. The TBP-like factor CeTLF is required to activate RNA polymerase II transcription during C. elegans embryogenesis.. Mol Cell. 6(3):705-13.
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2000. Protein sorting in yeast: the role of the vacuolar proton-translocating ATPase.. J Cell Sci Suppl. 11:161-78.
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1989. The stem-loop binding protein CDL-1 is required for chromosome condensation, progression of cell death and morphogenesis in Caenorhabditis elegans.. Development. 129(1):187-96.
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2002. ELT-5 and ELT-6 are required continuously to regulate epidermal seam cell differentiation and cell fusion in C. elegans.. Development. 128(15):2867-80.
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2001. Cell fates and fusion in the C. elegans vulval primordium are regulated by the EGL-18 and ELT-6 GATA factors -- apparent direct targets of the LIN-39 Hox protein.. Development. 129(22):5171-80.
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2002. Cell fusion: EFF is enough.. Curr Biol. 15(7):R252-4.
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2005. Repression of cell-cell fusion by components of the C. elegans vacuolar ATPase complex.. Dev Cell. 8(5):787-94.
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2005. Cell death: hook, line and linker.. Curr Biol. 17(8):R286-9.
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2007. Interstellar space biology via Project Starlight. Acta Astronautica. 190:261–272.
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2022. The Wnt effector POP-1 and the PAL-1/Caudal homeoprotein collaborate with SKN-1 to activate C. elegans endoderm development.. Dev Biol. 285(2):510-23.
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2005. Dynamics of a developmental switch: recursive intracellular and intranuclear redistribution of Caenorhabditis elegans POP-1 parallels Wnt-inhibited transcriptional repression.. Dev Biol. 248(1):128-42.
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2002. Genetic redundancy in endoderm specification within the genus Caenorhabditis.. Dev Biol. 284(2):509-22.
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2005. Making worm guts: the gene regulatory network of the Caenorhabditis elegans endoderm.. Dev Biol. 246(1):68-85.
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