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Article Addendum

The TOR Complex 1 is required for the interaction of multiple cargo proteins selected for the vacuole import and degradation pathway

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Pages 594-596 | Received 03 Aug 2010, Accepted 03 Aug 2010, Published online: 01 Nov 2010

References

  • Mizushima N, Levine B, Cuervo AM, Klionsky DJ. Autophagy fights disease through cellular selfdigestion. Nature 2008; 451:1069 - 1075
  • Seglen PO, Gordon PB, Holen I. Non-selective autophagy. Semin Cell Biol 1990; 1:441 - 448
  • Cuervo AM. Autophagy: in sickness and in health. Trends Cell Biol 2004; 14:70 - 77
  • Mizushima N, Klionsky DJ. Protein turnover via autophagy: implications for metabolism. Annu Rev Nutr 2007; 7:19 - 40
  • Kaushik S, Cuervo AM. Chaperone-mediated autophagy. Methods Mol Biol 2008; 445:227 - 244
  • Bryant NJ, Stevens TH. Vacuole biogenesis in Saccharomyces cerevisiae: protein transport pathways to the yeast vacuole. Microbiol Mol Biol Rev 1998; 62:230 - 247
  • Robinson JS, Klionsky DJ, Banta LM, Emr SD. Protein sorting in Saccharomyces cerevisiae: isolation of mutants defective in the delivery and processing of multiple vacuolar hydrolases. Mol Cell Biol 1988; 8:4936 - 4948
  • Rothman J, Stevens TH. Protein sorting in yeast: mutants defective in vacuolar biogenesis mislocalize vacuolar proteins into the late secretory pathway. Cell 1986; 47:1041 - 1051
  • Wang CW, Klionsky DJ. The molecular mechanism of autophagy. Mol Med 2003; 9:65 - 76
  • Klionsky DJ. The molecular machinery of autophagy: unanswered questions. J Cell Sci 2005; 118:7 - 18
  • Dunn WA Jr. Studies on the mechanisms of autophagy: formation of the autophagic vacuole. J Cell Biol 1990; 110:1923 - 1933
  • Chiang HL, Schekman R. Regulated import and degradation of a cytosolic protein in the yeast vacuole. Nature 1991; 350:313 - 318
  • Gancedo C. Inactivation of fructose-1,6-bisphosphatase by glucose in yeast. J Bacteriol 1971; 107:401 - 405
  • Chiang HL, Dice JF. Peptide sequences that target proteins for enhanced degradation during serum withdrawal. J Biol Chem 1988; 263:6797 - 6805
  • Hoffman M, Chiang HL. Isolation of degradation-deficient mutants defective in the targeting of fructose-1,6-bisphosphatase into the vacuole for degradation in Saccharomyces cerevisiae. Genetics 1996; 143:1555 - 1566
  • Hung GC, Brown CR, Wolfe AB, Liu J, Chiang HL. Degradation of the gluconeogenic enzymes fructose-1,6-bisphosphatase and malate dehydrogenase is mediated by distinct proteolytic pathways and signaling events. J Biol Chem 2004; 279:49138 - 49150
  • Horak J, Wolf DH. Two distinct proteolytic systems responsible for glucose induced degradation of fructose- 1,6-bisphosphatase and the Gal2p transporter in the yeast Saccharomyces cerevisiae share the same protein components of the glucose signaling pathway. J Biol Chem 2002; 77:8248 - 8254
  • Regelmann J, Schule T, Josupeit FS, Horak J, Rose M, Entian KD, et al. Catabolite degradation of fructose-1,6-bisphosphatase in the yeast Saccharomyces cerevisiae: a genome-wide screen identifies eight novel GID genes and indicates the existence of two degradation pathways. Mol Biol Cell 2003; 14:1652 - 1663
  • Huang PH, Chiang HL. Identification of novel vesicles in the cytosol to vacuole protein degradation pathway. J Cell Biol 1997; 136:803 - 810
  • Brown CR, McCann JA, Chiang HL. The heat shock protein Ssa2p is required for import of fructose-1,6-bisphosphatase into Vid vesicles. J Cell Biol 2000; 150:65 - 76
  • Brown CR, Cui DY, Hung GG, Chiang HL. Cyclophilin A mediates Vid22p function in the import of fructose-1,6-bisphosphatase into Vid vesicles. J Biol Chem 2001; 276:48017 - 48026
  • Brown CR, McCann JA, Hung G, Elco C, Chiang HL. sVid22p, a novel plasma membrane is required for the fructose-1,6-bisphosphatase degradation pathway. J Cell Sci 2001; 115:655 - 666
  • Shieh HL, Chen Y, Brown CR, Chiang HL. Biochemical analysis of fructose-1,6-bisphosphatase import into vacuole import and degradation vesicles reveals a role for UBC1 in vesicle biogenesis. J Biol Chem 2001; 276:10398 - 10406
  • Chiang MC, Chiang HL. Vid24p, a novel protein localized to the fructose-1,6-bisphosphatase containing vesicles, regulates targeting of fructose-1,6-bisphosphatase from the vesicles to the vacuole for degradation. J Cell Biol 1998; 140:1347 - 1356
  • Brown CR, Wolfe AB, Cui D, Chiang HL. The vacuolar import and degradation pathway merges with the endocytic pathway to deliver fructose-1,6-bisphosphatase to the vacuole for degradation. J Biol Chem 2008; 283:26116 - 26127
  • Brown CR, Hung GC, Dunton DD, Chiang HL. The TOR Complex 1 is distributed in endosomes and in retrograde vesicles that form from the vacuole membrane and plays an important role in the vacuole import and degradation pathway. J Biol Chem 2010; 285:23359 - 23370