The Tetrahymena thermophila Phagosome Proteome
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M. E. Jacobs | L. Klobutcher | R. Pearlman | L. Desouza | K. M. Siu | Haresha Samaranayake | K. M. Siu
[1] William H. Majoros,et al. Macronuclear Genome Sequence of the Ciliate Tetrahymena thermophila, a Model Eukaryote , 2006, PLoS biology.
[2] R. Campenot,et al. The Niemann-Pick C1 protein in recycling endosomes of presynaptic nerve terminals Published, JLR Papers in Press, December 10, 2005. , 2006, Journal of Lipid Research.
[3] D. Cassidy-Hanley,et al. Metallothionein Gene from Tetrahymena thermophila with a Copper-Inducible-Repressible Promoter , 2006, Eukaryotic Cell.
[4] T. Nozaki,et al. New insights into molecular mechanisms of phagocytosis in Entamoeba histolytica by proteomic analysis. , 2006, Archives of medical research.
[5] K. Elkon,et al. Role of complement and other innate immune mechanisms in the removal of apoptotic cells. , 2006, Current directions in autoimmunity.
[6] L. Klobutcher,et al. The Bacillus subtilis spore coat provides "eat resistance" during phagocytic predation by the protozoan Tetrahymena thermophila. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[7] Shuai Weng,et al. Tetrahymena Genome Database (TGD): a new genomic resource for Tetrahymena thermophila research , 2005, Nucleic Acids Res..
[8] T. Foster. Immune evasion by staphylococci , 2005, Nature Reviews Microbiology.
[9] M. Houde,et al. Phagocytosis: the convoluted way from nutrition to adaptive immunity , 2005, Immunological reviews.
[10] T. Kinzy,et al. Translation elongation factor 1A is essential for regulation of the actin cytoskeleton and cell morphology , 2005, Nature Structural &Molecular Biology.
[11] Ming Yan,et al. Coronin-1 function is required for phagosome formation. , 2005, Molecular biology of the cell.
[12] R. Pearlman,et al. Genomic and Proteomic Evidence for a Second Family of Dense Core Granule Cargo Proteins in Tetrahymena thermophila , 2005, The Journal of eukaryotic microbiology.
[13] Ray H. Gavin,et al. Directed motility of phagosomes in Tetrahymena thermophila requires actin and Myo1p, a novel unconventional myosin. , 2005, Cell motility and the cytoskeleton.
[14] Jeffrey C. Smith,et al. Robust method for proteome analysis by MS/MS using an entire translated genome: demonstration on the ciliome of Tetrahymena thermophila. , 2005, Journal of proteome research.
[15] M. Winey,et al. Core Formation and the Acquisition of Fusion Competence are Linked During Secretory Granule Maturation in Tetrahymena , 2005, Traffic.
[16] T. Nozaki,et al. Proteomic Analysis of Phagocytosis in the Enteric Protozoan Parasite Entamoeba histolytica , 2005, Eukaryotic Cell.
[17] M. Olivier,et al. Subversion of host cell signalling by the protozoan parasite Leishmania , 2005, Parasitology.
[18] G. Bokoch. Regulation of innate immunity by Rho GTPases. , 2005, Trends in cell biology.
[19] G. Schmitz,et al. Association of ABCA1 with syntaxin 13 and flotillin-1 and enhanced phagocytosis in tangier cells. , 2004, Molecular biology of the cell.
[20] M. D'Esposito,et al. Longins and their longin domains: regulated SNAREs and multifunctional SNARE regulators. , 2004, Trends in biochemical sciences.
[21] Vojo Deretic,et al. Cell biology of mycobacterium tuberculosis phagosome. , 2004, Annual review of cell and developmental biology.
[22] M. J. Chalmers,et al. Characterization of Tetrahymena Histone H2B Variants and Posttranslational Populations by Electron Capture Dissociation (ECD) Fourier Transform Ion Cyclotron Mass Spectrometry (FT-ICR MS)*S , 2004, Molecular & Cellular Proteomics.
[23] A. Monaco,et al. Analysis of the human VPS13 gene family. , 2004, Genomics.
[24] M. E. Jacobs,et al. Assessing the Effectiveness of Coding and Non-coding Regions in Antisense Ribosome Inhibition of Gene Expression in Tetrahymena , 2004, The Journal of eukaryotic microbiology.
[25] E. Ikonen,et al. Cellular pathology of Niemann-Pick type C disease. , 2004, Seminars in cell & developmental biology.
[26] A. Turkewitz. Out with a Bang! Tetrahymena as a Model System to Study Secretory Granule Biogenesis , 2004, Traffic.
[27] Bernhard Kuster,et al. Profiling Core Proteomes of Human Cell Lines by One-dimensional PAGE and Liquid Chromatography-Tandem Mass Spectrometry*S , 2003, Molecular & Cellular Proteomics.
[28] P. Walther,et al. Fusion between phagosomes, early and late endosomes: a role for actin in fusion between late, but not early endocytic organelles. , 2003, Molecular biology of the cell.
[29] T. Veenstra,et al. Characterization of the Low Molecular Weight Human Serum Proteome*S , 2003, Molecular & Cellular Proteomics.
[30] S. Grinstein,et al. Phagosomes Fuse with Late Endosomes and/or Lysosomes by Extension of Membrane Protrusions along Microtubules: Role of Rab7 and RILP , 2003, Molecular and Cellular Biology.
[31] G. Griffiths,et al. Phagocytosis: latex leads the way. , 2003, Current opinion in cell biology.
[32] T. Nishi,et al. Proton translocation driven by ATP hydrolysis in V‐ATPases , 2003, FEBS letters.
[33] S. Grinstein,et al. Phagosome Maturation: A Few Bugs in the System , 2003, The Journal of Membrane Biology.
[34] Carrie M. Rosenberger,et al. Phagocyte sabotage: disruption of macrophage signalling by bacterial pathogens , 2003, Nature Reviews Molecular Cell Biology.
[35] P. Saftig,et al. At the acidic edge: emerging functions for lysosomal membrane proteins. , 2003, Trends in cell biology.
[36] S. Grinstein,et al. Differential Role of Actin, Clathrin, and Dynamin in Fcγ Receptor-mediated Endocytosis and Phagocytosis* , 2003, The Journal of Biological Chemistry.
[37] M. Schleicher,et al. High-resolution dissection of phagosome maturation reveals distinct membrane trafficking phases. , 2002, Molecular biology of the cell.
[38] Sergio Grinstein,et al. Phagosome maturation: aging gracefully. , 2002, The Biochemical journal.
[39] S. Grinstein,et al. Syntaxins 13 and 7 Function at Distinct Steps During Phagocytosis1 , 2002, The Journal of Immunology.
[40] G. Gerisch,et al. Dynamics of the vacuolar H(+)-ATPase in the contractile vacuole complex and the endosomal pathway of Dictyostelium cells. , 2002, Journal of cell science.
[41] V. L. Rath,et al. Structure and Function of the Eukaryotic Ribosome The Next Frontier , 2002, Cell.
[42] A. Lupas,et al. Calreticulin and calnexin in the endoplasmic reticulum are important for phagocytosis , 2001, The EMBO journal.
[43] J. Yates,et al. An automated multidimensional protein identification technology for shotgun proteomics. , 2001, Analytical chemistry.
[44] D. Turk,et al. Lysosomal cysteine proteases: facts and opportunities , 2001, The EMBO journal.
[45] N. D. Chilcoat,et al. An antisense approach to phenotype-based gene cloning in Tetrahymena , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[46] Adrian Danek,et al. A conserved sorting-associated protein is mutant in chorea-acanthocytosis , 2001, Nature Genetics.
[47] Y. Maruki,et al. The gene encoding a newly discovered protein, chorein, is mutated in chorea-acanthocytosis , 2001, Nature Genetics.
[48] Harald Stenmark,et al. The Rab GTPase family , 2001, Genome Biology.
[49] J. Sambrook,et al. Molecular Cloning: A Laboratory Manual , 2001 .
[50] Etienne Gagnon,et al. The Phagosome Proteome: Insight into Phagosome Functions , 2001 .
[51] Ray H. Gavin,et al. MYO1, a Novel, Unconventional Myosin Gene Affects Endocytosis and Macronuclear Elongation in Tetrahymena thermophila , 2000, The Journal of eukaryotic microbiology.
[52] M. Florin-Christensen,et al. Screening for and characterization of phospholipase A1 hypersecretory mutants of Tetrahymena thermophila , 2000, Applied Microbiology and Biotechnology.
[53] O. Numata,et al. Calmodulin and Ca2+/calmodulin-binding proteins are involved in Tetrahymena thermophila phagocytosis. , 2000, Cell structure and function.
[54] L. Traub,et al. Sorting in the endosomal system in yeast and animal cells. , 2000, Current opinion in cell biology.
[55] M. Katoh,et al. Ca(2+)/calmodulin and p85 cooperatively regulate an initiation of cytokinesis in Tetrahymena. , 1999, Journal of cell science.
[56] T. Clark,et al. Surface display of a parasite antigen in the ciliate Tetrahymena thermophila , 1999, Nature Biotechnology.
[57] W. Dentler,et al. Gene knockouts reveal separate functions for two cytoplasmic dyneins in Tetrahymena thermophila. , 1999, Molecular biology of the cell.
[58] T. Mayer,et al. Maturation of phagosomes is accompanied by specific patterns of small GTPases , 1998, Electrophoresis.
[59] Thomas L. Madden,et al. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. , 1997, Nucleic acids research.
[60] J. Cardelli,et al. Phagosomal Proteins of Dictyostelium discoideum , 1997, The Journal of eukaryotic microbiology.
[61] Hanry Yu,et al. Molecular Requirements for Bi-directional Movement of Phagosomes Along Microtubules , 1997, The Journal of cell biology.
[62] A. Shevchenko,et al. Mass spectrometric sequencing of proteins silver-stained polyacrylamide gels. , 1996, Analytical chemistry.
[63] A. Wandinger-Ness,et al. Rab 7: an important regulator of late endocytic membrane traffic , 1995, The Journal of cell biology.
[64] M. Desjardins,et al. Biogenesis of phagolysosomes: the 'kiss and run' hypothesis. , 1995, Trends in cell biology.
[65] T. Thatcher,et al. Electroporation-mediated replacement of a positively and negatively selectable beta-tubulin gene in Tetrahymena thermophila. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[66] L. Huber,et al. Biogenesis of phagolysosomes proceeds through a sequential series of interactions with the endocytic apparatus , 1994, The Journal of cell biology.
[67] A. Tiedtke,et al. Magnetic Separation of Phagosomes of Defined Age from Tetrahymena thermophila , 1993 .
[68] M. Wilkinson,et al. DNA fragment purification: removal of agarose 10 minutes after electrophoresis. , 1991, BioTechniques.
[69] M. Zerial,et al. rab5 controls early endosome fusion in vitro , 1991, Cell.
[70] R. Hallberg,et al. Identification of a cDNA coding for the SerH3 surface protein of Tetrahymena thermophila. , 1989, The Journal of protozoology.
[71] J. R. Nilsson. Structural Aspects of Digestion of Escherichia coli in Tetrahymena1 , 1987 .
[72] J. C. Wiggins,et al. Modulation of linker histones during development in Tetrahymena: selective elimination of linker histone during the differentiation of new macronuclei. , 1985, Developmental biology.
[73] R. D. Allen,et al. Membrane recycling at the cytoproct of Tetrahymena. , 1979, Journal of cell science.
[74] Y. Kitajima,et al. Differentiation of food vacuolar membranes during endocytosis in Tetrahymena , 1977, The Journal of cell biology.
[75] J. R. Nilsson. On Food Vacuoles in Tetrahymena pyriformis GL , 1977 .
[76] F. Wunderlich,et al. Structural transformation of the phagosomal membrane in Tetrahymena cells endocytosing latex beads , 1976, Archives of Microbiology.
[77] E. Orias,et al. Tetrahymena: growth without phagocytosis , 1975, Science.
[78] G. A. Thompson,et al. Studies of membrane formation in Tetrahymena pyriformis. VIII. On the origin of membranes surrounding food vacuoles. , 1974, The Journal of protozoology.
[79] G. A. Thompson,et al. STUDIES OF MEMBRANE FORMATION IN TETRAHYMENA PYRIFORMIS , 1971, The Journal of cell biology.
[80] J. Ravetch,et al. Fcgamma receptors: old friends and new family members. , 2006, Immunity.
[81] E. Orias,et al. Functional genomics: the coming of age for Tetrahymena thermophila. , 2002, Trends in genetics : TIG.
[82] P. Bruns,et al. Biolistic transformation of macro- and micronuclei. , 2000, Methods in cell biology.
[83] G. Kapler,et al. Transient and stable DNA transformation of Tetrahymena thermophila by electroporation. , 2000, Methods in cell biology.
[84] J. Frankel. Cell biology of Tetrahymena thermophila. , 2000, Methods in cell biology.
[85] A. Aderem,et al. Mechanisms of phagocytosis in macrophages. , 1999, Annual review of immunology.
[86] A. Tiedtke,et al. Biochemical analysis of membrane proteins from an early maturation stage of phagosomes , 1999, Electrophoresis.
[87] C. Rasmussen,et al. Cloning of a Schizosaccharomyces pombe homologue of elongation factor 1 alpha by two-hybrid selection of calmodulin-binding proteins. , 1999, Biochemistry and cell biology = Biochimie et biologie cellulaire.
[88] E. Cole,et al. Mutational analysis of regulated exocytosis in Tetrahymena. , 1998, Journal of cell science.