Fawell et al., “Tat-Mediated Delivery of Heterologous Proteins Into Cells,” Proc. Natl. Acad. Sci. USA, 91:664:668 (1994). |
Alfano et al., “The Type III (Hrp) Secrection Pathway of Plant Pathogenic Bacteria: Trafficking Harpins, Avr Proteins, and Death,” J. Bacteriol., 179(18):5655-5662 (1997). |
Rossier et al., “The Xanthomonas Hrp Type III System Secretes Proteins From Plant and Mammalian Bacterial Pathogens,” Proc. Natl. Acad. Sci. USA 96:9368-9373 (1999). |
Galán et al., “Type III Secretion Machines: Bacterial Devices for Protein Delivery into Host Cells,” Science 284:1322-1328 (1999). |
Phelan et al., “Intercellular Delivery of Functional p53 by the Herpesvirus Protein VP22,” Nature Biotechnology 16:440-443 (1998). |
Chen et al., “Selective Killing of Transformed Cells by Cyclin/Cyclin-Dependent Kinase 2 Antagonists,” Proc. Natl. Acad. Sci. USA 96:4325-4329 (1999). |
Alfano et al., “The Pseudomonas syringae Hrp Pathogenicity Island Has a Tripartite Mosaic Structure Composed of a Cluster of Type III Secretion Genes Bounded by Exchangeable Effector and Conserved Effector Loci That Contribute to Parasitic Fitness and Pathogenicity in Plants,” PNAS 97:4856-4861 (2000). |
Collmer et al., “Pseudomonas syringae Hrp Type III Secretion System and Effector Proteins, ” PNAS 97:8770-8777 (2000). |
Schwarze et al., “Protein Transduction: Unrestricted Delivery into all Cells?” Trends In Cell Biology 10:290-295 (2000). |
Schwarze et al., “In Vivo Protein Transduction: Delivery of a Biologically Active Protein into the Mouse,” Science 285:1569-1572 (1999). |
Anderson et al., “Reciprocal Secretion of Proteins by the Bacterial Type III Machines of Plant and Animal Pathogens Suggests Universal Recognition of mRNA Targeting Signals,” PNAS 96:12839-12843 (1999). |