James D. Forney

Affiliations: 
1980-1984 Biochemistry Indiana, Tipton, IN, United States 
 1985-1988 Molecular Biology University of California, Berkeley, Berkeley, CA, United States 
 1989- Purdue University, West Lafayette, IN, United States 
Area:
Biochemistry
Website:
https://ag.purdue.edu/biochem/Pages/Profile.aspx?strAlias=forney&intDirDeptID=9
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Children

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Michael A. Kalwat research assistant Purdue (Cell Biology Tree)
Kwan Y. Thai grad student 2000 Purdue
Tania M. Malave grad student 2002 Purdue
Christine Adhiambo grad student 2005 Purdue
Timothy R. Holzer grad student 2005 Purdue
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Publications

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Yang Q, Nasir AM, Coyne RS, et al. (2015) Depletion of UBC9 causes nuclear defects during the vegetative and sexual life cycles in Tetrahymena thermophila. Eukaryotic Cell
Nasir AM, Yang Q, Chalker DL, et al. (2015) SUMOylation is developmentally regulated and required for cell pairing during conjugation in Tetrahymena thermophila. Eukaryotic Cell. 14: 170-81
Kapusta A, Matsuda A, Marmignon A, et al. (2011) Highly precise and developmentally programmed genome assembly in Paramecium requires ligase IV-dependent end joining. Plos Genetics. 7: e1002049
Matsuda A, Shieh AW, Chalker DL, et al. (2010) The conjugation-specific Die5 protein is required for development of the somatic nucleus in both Paramecium and Tetrahymena. Eukaryotic Cell. 9: 1087-99
Holzer TR, Mishra KK, LeBowitz JH, et al. (2008) Coordinate regulation of a family of promastigote-enriched mRNAs by the 3'UTR PRE element in Leishmania mexicana. Molecular and Biochemical Parasitology. 157: 54-64
Cohen-Freue G, Holzer TR, Forney JD, et al. (2007) Global gene expression in Leishmania. International Journal For Parasitology. 37: 1077-86
Matsuda A, Forney JD. (2006) The SUMO pathway is developmentally regulated and required for programmed DNA elimination in Paramecium tetraurelia. Eukaryotic Cell. 5: 806-15
Holzer TR, McMaster WR, Forney JD. (2006) Expression profiling by whole-genome interspecies microarray hybridization reveals differential gene expression in procyclic promastigotes, lesion-derived amastigotes, and axenic amastigotes in Leishmania mexicana. Molecular and Biochemical Parasitology. 146: 198-218
Matsuda A, Forney JD. (2005) Analysis of Paramecium tetraurelia A-51 surface antigen gene mutants reveals positive-feedback mechanisms for maintenance of expression and temperature-induced activation. Eukaryotic Cell. 4: 1613-9
Adhiambo C, Forney JD, Asai DJ, et al. (2005) The two cytoplasmic dynein-2 isoforms in Leishmania mexicana perform separate functions. Molecular and Biochemical Parasitology. 143: 216-25
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