Biomedical Engineering Reference
In-Depth Information
cell stress proteins in microbial infections.
Springer, New York, pp 51-66
7. Nickel W, Rabouille C (2009) Mechanisms of
regulated unconventional protein secretion.
Nat Rev Mol Cell Biol 10:148-155
8. Duran JM, Anjard C, Stefan C et al (2010)
Unconventional secretion of Acb1 is mediated
by autophagosomes. J Cell Biol 188:527-536
9. Manjithaya R, Anjard C, Loomis WF et al
(2010) Unconventional secretion of
Pichiapastoris Acb1 is dependent on GRASP
protein, peroxisomal functions, and autopha-
gosome formation. J Cell Biol 188:537-546
10. Zhang M, Schekman R (2013) Unconventional
secretion, unconventional solutions. Science
340:559-561
11. Miura N, Kirino A, Endo S et al (2012)
Tracing putative traffi cking of the glycolytic
enzyme enolase via SNARE-driven unconven-
tional secretion. Eukaryot Cell 11:1075-1082
12. Schekman R (2010) Charting the secretory
pathway in a simple eukaryote. Mol Biol Cell
21:3781-3784
13. Oliveira DL, Nakayasu ES, Joffe LS et al
(2010) Characterization of yeast extracellular
vesicles: evidence for the participation of dif-
ferent pathways of cellular traffi c in vesicle bio-
genesis. PLoS ONE 5:e11113
14. Giardina BJ, Stanley BA, Chiang HL (2014)
Glucose induces rapid changes in the secre-
tome of Saccharomyces cerevisiae . Proteome
Sci 12:9
15. Shinya R, Morisaka H, Kikuchi T et al (2013)
Secretome analysis of the pine wood nematode
Bursaphelenchus xylophilus reveals the tangled
roots of parasitism and its potential for molec-
ular mimicry. PLoS ONE 21:e67377
16. de Wit M, Kant H, Piersma SR et al (2014)
Colorectal cancer candidate biomarkers identi-
fi ed by tissue secretome proteome profi ling.
J Proteomics 99C:26-39
17. Wasinger VC, Zeng M, Yau Y (2013) Current
status and advances in quantitative proteomic
mass spectrometry. Int J Proteomics 2013:
180605
18. Miura N, Shinohara M, Tatsukami Y et al
(2013) Spatial reorganization of Saccharomyces
cerevisiae enolase to alter carbon metabolism
under hypoxia. Eukaryot Cell 12:1106-1119
19. Muthusamy BP, Natarajan P, Zhou X, Graham
TR (2009) Linking phospholipid fl ippases to
vesicle-mediated protein transport. Biochim
Biophys Acta 1791:612-619
20. Bröcker C, Engelbrecht-Vandré S, Ungermann
C (2010) Multisubunit tethering complexes
and their role in membrane fusion. Curr Biol
20:R943-R952
21. Novick P, Schekman R (1979) Secretion and
cell-surface growth are blocked in a temperature-
sensitive mutant of Saccharomyces cerevisiae .
Proc Natl Acad Sci U S A 76:1858-1862
22. Novick P, Field C, Schekman R (1980)
Identifi cation of 23 complementation groups
required for post-translational events in the
yeast secretory pathway. Cell 21:205-215
23. Bryant NJ, Stevens TH (1998) Vacuole bio-
genesis in Saccharomyces cerevisiae : protein
transport pathways to the yeast vacuole.
Microbiol Mol Biol Rev 62:230-247
24. Hua Z, Fatheddin P, Graham TR (2002) An
essential subfamily of Drs2p-related P-type
ATPases is required for protein traffi cking
between Golgi complex and endosomal/vacu-
olar system. Mol Biol Cell 13:3162-3177
25. Gall WE, Geething NC, Hua Z, Ingram MF,
Liu K, Chen SI, Graham TR (2002) Drs2p-
dependent formation of exocytic clathrin-
coated vesicles in vivo . Curr Biol 12:
1623-1627
26. Nakatogawa H, Suzuki K, Kamada Y, Ohsumi
Y (2009) Dynamics and diversity in autophagy
mechanisms: lessons from yeast. Nat Rev Mol
Cell Biol 10:458-467
27. Mizushima N, Yoshimori T, Ohsumi Y (2011)
The role of Atg proteins in autophagosome for-
mation. Annu Rev Cell Dev Biol 27:107-132
28. Entian KD, Schuster T, Hegemann JH et al
(1999) Functional analysis of 150 deletion
mutants in Saccharomyces cerevisiae by a sys-
tematic approach. Mol Gen Genet 262:
683-702
29. Matsui K, Kuroda K, Ueda M (2009) Creation
of a novel peptide endowing yeasts with acid
tolerance using yeast cell-surface engineering.
Appl Microbiol Biotechnol 82:105-113
30. Ito H, Fukuda Y, Murata K et al (1983)
Transformation of intact yeast cells treated
with alkali cations. J Bacteriol 153:163-168
Search WWH ::




Custom Search