Targeting of the GRIP domain to the trans-Golgi network is conserved from protists to animals

European Journal of Cell Biology - Tập 81 - Trang 485-495 - 2002
Malcolm J. McConville1, Steven C. Ilgoutz1, Rohan D. Teasdale2, Bernardo J. Foth3, Antony Matthews4, Kylie A. Mullin1, Paul A. Gleeson1
1Russell Grimwade School of Biochemistry and Molecular Biology, University of Melbourne, Melbourne, Victoria/Australia
2Institute for Molecular Bioscience and ARC Special Research Centre for Functional and Applied Genomics, University of Queensland, St. Lucia, Queensland/Australia
3Plant Cell Biology Research Centre, School of Botany, University of Melbourne, Melbourne, Victoria/Australia
4Department of Pathology and Immunology, Monash University Medical School, Melbourne, Victoria/Australia

Tài liệu tham khảo

Barr, 1999, A novel Rab6-interacting domain defines a family of Golgi-targeted coiled-coil proteins, Curr. Biol., 9, 381, 10.1016/S0960-9822(99)80167-5 Bonifacino, 1999, Molecular basis for the recognition of tryosine-based sorting signals, J. Cell Biol., 145, 923, 10.1083/jcb.145.5.923 Brown, 2001, The GRIP domain is a specific targeting sequence for a population of trans-Golgi network derived tubulo-vesicular carriers, Traffic, 2, 336, 10.1034/j.1600-0854.2001.002005336.x Cappai, 1993, Cloning and characterization of a Golgi-associated GTP-binding protein homologue from Leishmania major, Mol. Biochem. Parasitol., 62, 73, 10.1016/0166-6851(93)90179-2 Costaguta, 2001, Yeast Gga coat proteins function with clathrin in Golgi to endosome transport, Mol. Biol. Cell, 12, 1885, 10.1091/mbc.12.6.1885 Cullen, 2001, Modular phosphoinositide-binding domains – their role in signalling and membrane trafficking, Curr. Biol., 11, R882, 10.1016/S0960-9822(01)00523-1 Duszenko, 1988, Intracellular transport of a variant surface glycoprotein in Trypanosoma brucei, J. Cell Biol., 106, 77, 10.1083/jcb.106.1.77 Dwyer, 1984, Surface membrane localization of 3′-and 5′-nucleotidase activities in Leishmania donovani promastigotes, Mol. Biochem. Parasitol., 10, 139, 10.1016/0166-6851(84)90002-1 Field, 1999, TbRab2p, a marker for the endoplasmic reticulum of Trypanosoma brucei, localises to the ERGIC in mammalian cells, J. Cell Sci., 112, 147, 10.1242/jcs.112.2.147 Field, 2000, Cell-cycle and developmental regulation of TbRAB31 localisation, a GTP-locked Rab protein from Trypanosoma brucei, Mol. Biochem. Parasitol., 106, 21, 10.1016/S0166-6851(99)00192-9 Gaullier, 1998, FYVE fingers bind PtdIns(3)P, Nature, 394, 432, 10.1038/28767 Ghedin, 2001, Secretory and endocytic pathways converge in a dynamic endosomal system in a primitive protozoan, Traffic, 2, 175, 10.1034/j.1600-0854.2001.020304.x Gillooly, 2000, Localization of phosphatidylinositol 3-phosphate in yeast and mammalian cells EMBO J, 19, 4577 Gleeson, 1996, p230 is associated with vesicles budding from the trans-Golgi network, J. Cell Sci., 109, 2811, 10.1242/jcs.109.12.2811 Ha, 1996, Use of the green fluorescent protein as a marker in transfected Leishmania, Mol. Biochem. Parasitol., 77, 57, 10.1016/0166-6851(96)02580-7 Ilgoutz, 1999, Glycosylphosphatidylinositol biosynthetic enzymes are localized to a stable tubular subcompartment of the endoplasmic reticulum in Leishmania mexicana, EMBO J., 18, 3643, 10.1093/emboj/18.13.3643 Kapler, 1990, Stable transfection of the human parasite Leishmania major delineates a 30-kilobase region sufficient for extrachromosomal replication and expression, Mol. Cell. Biol., 19, 1084, 10.1128/MCB.10.3.1084 Keller, 1997, Post-Golgi biosynthetic trafficking, J. Cell Sci., 110, 3001, 10.1242/jcs.110.24.3001 Kjer-Nielsen, 1999, A novel Golgi-localisation domain shared by a class of coiled-coil peripheral membrane proteins., Curr. Biol., 9, 385, 10.1016/S0960-9822(99)80168-7 Kjer-Nielsen, 1999, The Golgi-targeting sequence of the peripheral membrane protein p230, J. Cell Sci., 112, 1645, 10.1242/jcs.112.11.1645 Landfear, 2001, The flagellum and flagellar pocket of trypanosomatids, Mol. Biochem. Parasitol., 115, 1, 10.1016/S0166-6851(01)00262-6 LeBowitz, 1990, Development of a stable Leishmania expression vector and application to the study of parasite surface antigen genes, Proc. Natl. Acad. Sci. USA, 87, 9736, 10.1073/pnas.87.24.9736 Levine, 2001, Dual targeting of Osh1p, a yeast homologue of oxysterol-binding protein, to both the Golgi and the nucleus-vacuole junction, Mol. Biol. Cell, 12, 1633, 10.1091/mbc.12.6.1633 Levine, 1998, The pleckstrin homology domain of oxysterol-binding protein recognises a determinant specific to Golgi membranes, Curr. Biol., 8, 729, 10.1016/S0960-9822(98)70296-9 Lewis, 2000, Specific retrieval of the exocytic SNARE Snc1p from early yeast endosomes, Mol. Biol. Cell, 11, 23, 10.1091/mbc.11.1.23 Li, 1996, Mutation of the rab6 homologue of Saccharomyces cerevisiae, Ypt6, inhibits both early Golgi function and ribosome biogenesis, J. Biol. Chem., 271, 16813, 10.1074/jbc.271.28.16813 Lupas, 1996, Prediction and analysis of coiled-coil structures, Methods Enzymol., 266, 513, 10.1016/S0076-6879(96)66032-7 Lupas, 1991, Predicting coiled coils from protein sequences, Science, 252, 1162, 10.1126/science.252.5009.1162 McConville, 2002, Secretory pathway of trypanosomatid parasites, Microbiol. Mol. Biol. Rev., 66, 122, 10.1128/MMBR.66.1.122-154.2002 Mullin, 2001, Regulated degradation of ER membrane proteins in a novel tubular lysosome in Leishmania mexicana, Mol. Biol. Cell, 12, 2364, 10.1091/mbc.12.8.2364 Munro, 1999, The GRIP domain – a novel Golgi-targeting domain found in several coiled-coil proteins, Curr. Biol., 9, 377, 10.1016/S0960-9822(99)80166-3 Overath, 1997, Endocytosis and secretion in trypanosomatid parasites – tumultuous traffic in a pocket, Trends Cell Biol., 7, 27, 10.1016/S0962-8924(97)10046-0 Pimenta, 1991, The comparative fine structure and surface glycoconjugate expression of three life stages of Leishmania major, Exp. Parasitol., 72, 191, 10.1016/0014-4894(91)90137-L Raiborg, 2001, FYVE and coiled-coil domains determine the specific localisation of Hrs to early endosomes J, Cell Sci., 114, 2255, 10.1242/jcs.114.12.2255 Robinson, 2001, Adaptor-related proteins, Curr. Opin. Cell Biol., 13, 444, 10.1016/S0955-0674(00)00235-0 Sato, 2001, Location, location, location: membrane targeting directed by PX domains, Science, 294, 1881, 10.1126/science.1065763 Simonsen, 2001, The role of phosphoinositides in membrane transport Curr, Opin. Cell Biol., 13, 485, 10.1016/S0955-0674(00)00240-4 Thompson, 1997, CLUSTAL X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools, Nucleic Acids Res., 25, 4876, 10.1093/nar/25.24.4876 Thorner, 2001, Greasing the wheels of secretory transport, Nature Cell Biol., 3, E196, 10.1038/35087142 Traub, 1997, The trans-Golgi network: a late secretory sorting station, Curr. Opin. Cell Biol., 9, 527, 10.1016/S0955-0674(97)80029-4 Tsukada, 1999, Structural and functional analysis of a novel coiled coil protein involved in Ypt6 GTPase-regulated protein transport in yeast, Mol. Biol. Cell, 10, 63, 10.1091/mbc.10.1.63 Webster, 1989, Endocytosis by African trypanosomes. I. Three-dimensional structure of the endocytic organelles in Trypanosoma brucei and T. congolense., Eur. J. Cell Biol., 49, 295 Weise, 2000, Distribution of GPI-anchored proteins in the protozoan parasite Leishmania, based on an improved ultrastructural description using high-pressure frozen cells, J. Cell Sci., 113, 4587, 10.1242/jcs.113.24.4587 Wishart, 2001, Phoxy lipids: revealing PX domains as phosphoinositide-binding modules, Cell, 105, 817, 10.1016/S0092-8674(01)00414-7