-
1
-
-
7644241534
-
Amino acid signaling in yeast: Casein kinase I and the Ssy5 endoprotease are key determinants of endoproteolytic activation of the membrane-bound Stp1 transcription factor
-
Abdel-Sater, F., M. El Bakkoury, A. Urrestarazu, S. Vissers, and B. André. 2004. Amino acid signaling in yeast: casein kinase I and the Ssy5 endoprotease are key determinants of endoproteolytic activation of the membrane-bound Stp1 transcription factor. Mol. Cell. Biol. 24:9771-9785.
-
(2004)
Mol. Cell. Biol.
, vol.24
, pp. 9771-9785
-
-
Abdel-Sater, F.1
El Bakkoury, M.2
Urrestarazu, A.3
Vissers, S.4
André, B.5
-
3
-
-
33745165630
-
Regulation of transcription factor latency by receptor-activated proteolysis
-
DOI 10.1101/gad.374206
-
Andréasson, C., S. Heessen, and P. O. Ljungdahl. 2006. Regulation of transcription factor latency by receptor-activated proteolysis. Genes Dev. 20:1563-1568. (Pubitemid 43901095)
-
(2006)
Genes and Development
, vol.20
, Issue.12
, pp. 1563-1568
-
-
Andreasson, C.1
Heessen, S.2
Ljungdahl, P.O.3
-
4
-
-
0037115602
-
Receptor-mediated endoproteolytic activation of two transcription factors in yeast
-
DOI 10.1101/gad.239202
-
Andréasson, C., and P. O. Ljungdahl. 2002. Receptor-mediated endoproteolytic activation of two transcription factors in yeast. Genes Dev. 16:3158-3172. (Pubitemid 36025970)
-
(2002)
Genes and Development
, vol.16
, Issue.24
, pp. 3158-3172
-
-
Andreasson, C.1
Ljungdahl, P.O.2
-
5
-
-
4344618064
-
The N-terminal regulatory domain of Stp1p is modular and, fused to an artificial transcription factor, confers full Ssy1p-Ptr3p-Ssy5p sensor control
-
Andréasson, C., and P. O. Ljungdahl. 2004. The N-terminal regulatory domain of Stp1p is modular and, fused to an artificial transcription factor, confers full Ssy1p-Ptr3p-Ssy5p sensor control. Mol. Cell. Biol. 24:7503-7513.
-
(2004)
Mol. Cell. Biol.
, vol.24
, pp. 7503-7513
-
-
Andréasson, C.1
Ljungdahl, P.O.2
-
6
-
-
0027097849
-
The yeast Ca(2+)-ATPase homologue, PMR1, is required for normal Golgi function and localizes in a novel Golgi-like distribution
-
Antebi, A., and G. R. Fink. 1992. The yeast Ca(2+)-ATPase homologue, PMR1, is required for normal Golgi function and localizes in a novel Golgi-like distribution. Mol. Biol. Cell 3:633-654.
-
(1992)
Mol. Biol. Cell
, vol.3
, pp. 633-654
-
-
Antebi, A.1
Fink, G.R.2
-
7
-
-
0026704807
-
Protease pro region required for folding is a potent inhibitor of the mature enzyme
-
Baker, D., J. L. Silen, and D. A. Agard. 1992. Protease pro region required for folding is a potent inhibitor of the mature enzyme. Proteins 12:339-344.
-
(1992)
Proteins
, vol.12
, pp. 339-344
-
-
Baker, D.1
Silen, J.L.2
Agard, D.A.3
-
8
-
-
0035843964
-
Ubiquitin and the SCF(Grr1) ubiquitin ligase complex are involved in the signalling pathway activated by external amino acids in Saccharomyces cerevisiae
-
Bernard, F., and B. André. 2001. Ubiquitin and the SCF(Grr1) ubiquitin ligase complex are involved in the signalling pathway activated by external amino acids in Saccharomyces cerevisiae. FEBS Lett. 496:81-85.
-
(2001)
FEBS Lett.
, vol.496
, pp. 81-85
-
-
Bernard, F.1
André, B.2
-
9
-
-
0036469065
-
Signal transduction and the control of gene expression
-
Brivanlou, A. H., and J. E. Darnell, Jr. 2002. Signal transduction and the control of gene expression. Science 295:813-818.
-
(2002)
Science
, vol.295
, pp. 813-818
-
-
Brivanlou, A.H.1
Darnell Jr., J.E.2
-
10
-
-
0034681260
-
Regulated intramembrane proteolysis: A control mechanism conserved from bacteria to humans
-
Brown, M. S., J. Ye, R. B. Rawson, and J. L. Goldstein. 2000. Regulated intramembrane proteolysis: a control mechanism conserved from bacteria to humans. Cell 100:391-398.
-
(2000)
Cell
, vol.100
, pp. 391-398
-
-
Brown, M.S.1
Ye, J.2
Rawson, R.B.3
Goldstein, J.L.4
-
11
-
-
0034648757
-
Thrombin signalling and protease-activated receptors
-
Coughlin, S. R. 2000. Thrombin signalling and protease-activated receptors. Nature 407:258-264.
-
(2000)
Nature
, vol.407
, pp. 258-264
-
-
Coughlin, S.R.1
-
12
-
-
1642575370
-
Disabling the folding catalyst is the last critical step in alpha-lytic protease folding
-
Cunningham, E. L., and D. A. Agard. 2004. Disabling the folding catalyst is the last critical step in alpha-lytic protease folding. Protein Sci. 13:325-331.
-
(2004)
Protein Sci.
, vol.13
, pp. 325-331
-
-
Cunningham, E.L.1
Agard, D.A.2
-
13
-
-
0242485188
-
Interdependent folding of the Nand C-terminal domains defines the cooperative folding of alpha-lytic protease
-
Cunningham, E. L., and D. A. Agard. 2003. Interdependent folding of the Nand C-terminal domains defines the cooperative folding of alpha-lytic protease. Biochemistry 42:13212-13219.
-
(2003)
Biochemistry
, vol.42
, pp. 13212-13219
-
-
Cunningham, E.L.1
Agard, D.A.2
-
14
-
-
0037118670
-
The pro region N-terminal domain provides specific interactions required for catalysis of alpha-lytic protease folding
-
Cunningham, E. L., T. Mau, S. M. Truhlar, and D. A. Agard. 2002. The pro region N-terminal domain provides specific interactions required for catalysis of alpha-lytic protease folding. Biochemistry 41:8860-8867.
-
(2002)
Biochemistry
, vol.41
, pp. 8860-8867
-
-
Cunningham, E.L.1
Mau, T.2
Truhlar, S.M.3
Agard, D.A.4
-
15
-
-
28844506010
-
Heat-inducible degron and the making of conditional mutants
-
Dohmen, R. J., and A. Varshavsky. 2005. Heat-inducible degron and the making of conditional mutants. Methods Enzymol. 399:799-822.
-
(2005)
Methods Enzymol.
, vol.399
, pp. 799-822
-
-
Dohmen, R.J.1
Varshavsky, A.2
-
16
-
-
0028213449
-
Heat-inducible degron: A method for constructing temperature-sensitive mutants
-
Dohmen, R. J., P. Wu, and A. Varshavsky. 1994. Heat-inducible degron: a method for constructing temperature-sensitive mutants. Science 263:1273-1276.
-
(1994)
Science
, vol.263
, pp. 1273-1276
-
-
Dohmen, R.J.1
Wu, P.2
Varshavsky, A.3
-
17
-
-
15444364763
-
Grr1p is required for transcriptional induction of amino acid permease genes and proper transcriptional regulation of genes in carbon metabolism of Saccharomyces cerevisiae
-
Eckert-Boulet, N., B. Regenberg, and J. Nielsen. 2005. Grr1p is required for transcriptional induction of amino acid permease genes and proper transcriptional regulation of genes in carbon metabolism of Saccharomyces cerevisiae. Curr. Genet. 47:139-149.
-
(2005)
Curr. Genet.
, vol.47
, pp. 139-149
-
-
Eckert-Boulet, N.1
Regenberg, B.2
Nielsen, J.3
-
18
-
-
0029019483
-
Pro-sequence-assisted protein folding
-
Eder, J., and A. R. Fersht. 1995. Pro-sequence-assisted protein folding. Mol. Microbiol. 16:609-614.
-
(1995)
Mol. Microbiol.
, vol.16
, pp. 609-614
-
-
Eder, J.1
Fersht, A.R.2
-
19
-
-
0035139183
-
Genetic and biochemical analysis of the yeast plasma membrane Ssy1p-Ptr3p-Ssy5p sensor of extracellular amino acids
-
Forsberg, H., and P. O. Ljungdahl. 2001. Genetic and biochemical analysis of the yeast plasma membrane Ssy1p-Ptr3p-Ssy5p sensor of extracellular amino acids. Mol. Cell. Biol. 21:814-826.
-
(2001)
Mol. Cell. Biol.
, vol.21
, pp. 814-826
-
-
Forsberg, H.1
Ljungdahl, P.O.2
-
20
-
-
2142715907
-
The 0.83 a resolution crystal structure of alpha-lytic protease reveals the detailed structure of the active site and identifies a source of conformational strain
-
Fuhrmann, C. N., B. A. Kelch, N. Ota, and D. A. Agard. 2004. The 0.83 A resolution crystal structure of alpha-lytic protease reveals the detailed structure of the active site and identifies a source of conformational strain. J. Mol. Biol. 338:999-1013.
-
(2004)
J. Mol. Biol.
, vol.338
, pp. 999-1013
-
-
Fuhrmann, C.N.1
Kelch, B.A.2
Ota, N.3
Agard, D.A.4
-
21
-
-
0027444947
-
S. cerevisiae 26S protease mutants arrest cell division in G2/metaphase
-
DOI 10.1038/366358a0
-
Ghislain, M., A. Udvardy, and C. Mann. 1993. S. cerevisiae 26S protease mutants arrest cell division in G2/metaphase. Nature 366:358-362. (Pubitemid 23349365)
-
(1993)
Nature
, vol.366
, Issue.6453
, pp. 358-362
-
-
Ghislain, M.1
Udvardy, A.2
Mann, C.3
-
22
-
-
44249114107
-
An overview of serine proteases
-
Chapter 21:Unit 21.10
-
Hedstrom, L. 2002. An overview of serine proteases. Curr. Protoc. Protein Sci. Chapter 21:Unit 21.10.
-
(2002)
Curr. Protoc. Protein Sci.
-
-
Hedstrom, L.1
-
23
-
-
0034268493
-
Activation of a membrane-bound transcription factor by regulated ubiquitin/proteasome-dependent processing
-
Hoppe, T., K. Matuschewski, M. Rape, S. Schlenker, H. D. Ulrich, and S. Jentsch. 2000. Activation of a membrane-bound transcription factor by regulated ubiquitin/proteasome-dependent processing. Cell 102:577-586.
-
(2000)
Cell
, vol.102
, pp. 577-586
-
-
Hoppe, T.1
Matuschewski, K.2
Rape, M.3
Schlenker, S.4
Ulrich, H.D.5
Jentsch, S.6
-
24
-
-
0035371394
-
Membrane-bound transcription factors: Regulated release by RIP or RUP
-
Hoppe, T., M. Rape, and S. Jentsch. 2001. Membrane-bound transcription factors: regulated release by RIP or RUP. Curr. Opin. Cell Biol. 13:344-348.
-
(2001)
Curr. Opin. Cell Biol.
, vol.13
, pp. 344-348
-
-
Hoppe, T.1
Rape, M.2
Jentsch, S.3
-
25
-
-
0032579337
-
Mutations in five loci affecting GAP1-independent uptake of neutral amino acids in yeast
-
Jørgensen, M. U., M. B. Bruun, T. Didion, and M. C. Kielland-Brandt. 1998. Mutations in five loci affecting GAP1-independent uptake of neutral amino acids in yeast. Yeast 14:103-114.
-
(1998)
Yeast
, vol.14
, pp. 103-114
-
-
Jørgensen, M.U.1
Bruun, M.B.2
Didion, T.3
Kielland-Brandt, M.C.4
-
26
-
-
0038680253
-
Functional proteomic identification of DNA replication proteins by induced proteolysis in vivo
-
DOI 10.1038/nature01692
-
Kanemaki, M., A. Sanchez-Diaz, A. Gambus, and K. Labib. 2003. Functional proteomic identification of DNA replication proteins by induced proteolysis in vivo. Nature 423:720-724. (Pubitemid 36735689)
-
(2003)
Nature
, vol.423
, Issue.6941
, pp. 720-724
-
-
Kanemaki, M.1
Sanchez-Diaz, A.2
Gambus, A.3
Labib, K.4
-
27
-
-
0032778041
-
Ssy1p and Ptr3p are plasma membrane components of a yeast system that senses extracellular amino acids
-
Klasson, H., G. R. Fink, and P. O. Ljungdahl. 1999. Ssy1p and Ptr3p are plasma membrane components of a yeast system that senses extracellular amino acids. Mol. Cell. Biol. 19:5405-5416.
-
(1999)
Mol. Cell. Biol.
, vol.19
, pp. 5405-5416
-
-
Klasson, H.1
Fink, G.R.2
Ljungdahl, P.O.3
-
28
-
-
37849030140
-
Activation of the SPS amino acid-sensing pathway in Saccharomyces cerevisiae correlates with the phosphorylation state of a sensor component, Ptr3
-
Liu, Z., J. Thornton, M. Spirek, and R. A. Butow. 2008. Activation of the SPS amino acid-sensing pathway in Saccharomyces cerevisiae correlates with the phosphorylation state of a sensor component, Ptr3. Mol. Cell. Biol. 28:551-563.
-
(2008)
Mol. Cell. Biol.
, vol.28
, pp. 551-563
-
-
Liu, Z.1
Thornton, J.2
Spirek, M.3
Butow, R.A.4
-
29
-
-
59749083485
-
Amino-acid-induced signalling via the SPS-sensing pathway in yeast
-
Ljungdahl, P. O. 2009. Amino-acid-induced signalling via the SPS-sensing pathway in yeast. Biochem. Soc. Trans. 37:242-247.
-
(2009)
Biochem. Soc. Trans.
, vol.37
, pp. 242-247
-
-
Ljungdahl, P.O.1
-
30
-
-
1242274644
-
Glucose sensing and signaling in Saccharomyces cerevisiae through the Rgt2 glucose sensor and casein kinase I
-
Moriya, H., and M. Johnston. 2004. Glucose sensing and signaling in Saccharomyces cerevisiae through the Rgt2 glucose sensor and casein kinase I. Proc. Natl. Acad. Sci. U. S. A. 101:1572-1577.
-
(2004)
Proc. Natl. Acad. Sci. U. S. A.
, vol.101
, pp. 1572-1577
-
-
Moriya, H.1
Johnston, M.2
-
31
-
-
37049178293
-
Evolution of proteolytic enzymes
-
Neurath, H. 1984. Evolution of proteolytic enzymes. Science 224:350-357.
-
(1984)
Science
, vol.224
, pp. 350-357
-
-
Neurath, H.1
-
32
-
-
11744288074
-
Structure and activation of trypsinogen and chymotrypsinogen
-
Neurath, H., and G. H. Dixon. 1957. Structure and activation of trypsinogen and chymotrypsinogen. Fed. Proc. 16:791-801.
-
(1957)
Fed. Proc.
, vol.16
, pp. 791-801
-
-
Neurath, H.1
Dixon, G.H.2
-
34
-
-
33645063703
-
Mapping of an internal protease cleavage site in the Ssy5p component of the amino acid sensor of Saccharomyces cerevisiae and functional characterization of the resulting pro- and protease domains by gain-of-function genetics
-
Poulsen, P., L. Lo Leggio, and M. C. Kielland-Brandt. 2006. Mapping of an internal protease cleavage site in the Ssy5p component of the amino acid sensor of Saccharomyces cerevisiae and functional characterization of the resulting pro- and protease domains by gain-of-function genetics. Eukaryot. Cell 5:601-608.
-
(2006)
Eukaryot. Cell
, vol.5
, pp. 601-608
-
-
Poulsen, P.1
Lo Leggio, L.2
Kielland-Brandt, M.C.3
-
35
-
-
14644409768
-
Amino acid sensing by Ssy1
-
Poulsen, P., B. Wu, R. F. Gaber, K. Ottow, H. A. Andersen, and M. C. Kielland-Brandt. 2005. Amino acid sensing by Ssy1. Biochem. Soc. Trans. 33:261-264.
-
(2005)
Biochem. Soc. Trans.
, vol.33
, pp. 261-264
-
-
Poulsen, P.1
Wu, B.2
Gaber, R.F.3
Ottow, K.4
Andersen, H.A.5
Kielland-Brandt, M.C.6
-
36
-
-
12144288039
-
Rapid depletion of budding yeast proteins by fusion to a heat-inducible degron
-
Sanchez-Diaz, A., M. Kanemaki, V. Marchesi, and K. Labib. 2004. Rapid depletion of budding yeast proteins by fusion to a heat-inducible degron. Sci. STKE 2004:PL8.
-
(2004)
Sci. STKE
, vol.2004
-
-
Sanchez-Diaz, A.1
Kanemaki, M.2
Marchesi, V.3
Labib, K.4
-
37
-
-
0028815630
-
Catabolite inactivation of fructose-1,6-bisphosphatase of Saccharomyces cerevisiae. Degradation occurs via the ubiquitin pathway
-
Schork, S. M., M. Thumm, and D. H. Wolf. 1995. Catabolite inactivation of fructose-1,6-bisphosphatase of Saccharomyces cerevisiae. Degradation occurs via the ubiquitin pathway. J. Biol. Chem. 270:26446-26450.
-
(1995)
J. Biol. Chem.
, vol.270
, pp. 26446-26450
-
-
Schork, S.M.1
Thumm, M.2
Wolf, D.H.3
-
38
-
-
0343570543
-
Ubc8p functions in catabolite degradation of fructose-1,6-bisphosphatase in yeast
-
Schüle, T., M. Rose, K. D. Entian, M. Thumm, and D. H. Wolf. 2000. Ubc8p functions in catabolite degradation of fructose-1,6-bisphosphatase in yeast. EMBO J. 19:2161-2167. (Pubitemid 30258997)
-
(2000)
EMBO Journal
, vol.19
, Issue.10
, pp. 2161-2167
-
-
Schule, T.1
Rose, M.2
Entian, K.-D.3
Thumm, M.4
Wolf, D.H.5
-
39
-
-
0026078006
-
Membrane insertion of uracil permease, a polytopic yeast plasma membrane protein
-
Silve, S., C. Volland, C. Garnier, R. Jund, M. R. Chevallier, and R. Haguenauer-Tsapis. 1991. Membrane insertion of uracil permease, a polytopic yeast plasma membrane protein. Mol. Cell. Biol. 11:1114-1124.
-
(1991)
Mol. Cell. Biol.
, vol.11
, pp. 1114-1124
-
-
Silve, S.1
Volland, C.2
Garnier, C.3
Jund, R.4
Chevallier, M.R.5
Haguenauer-Tsapis, R.6
-
40
-
-
4744373127
-
Regulation and recognition of SCFGrr1 targets in the glucose and amino acid signaling pathways
-
Spielewoy, N., K. Flick, T. I. Kalashnikova, J. R. Walker, and C. Wittenberg. 2004. Regulation and recognition of SCFGrr1 targets in the glucose and amino acid signaling pathways. Mol. Cell. Biol. 24:8994-9005.
-
(2004)
Mol. Cell. Biol.
, vol.24
, pp. 8994-9005
-
-
Spielewoy, N.1
Flick, K.2
Kalashnikova, T.I.3
Walker, J.R.4
Wittenberg, C.5
-
42
-
-
1642562862
-
A new approach for alteration of protease functions: Pro-sequence engineering
-
Takagi, H., and M. Takahashi. 2003. A new approach for alteration of protease functions: pro-sequence engineering. Appl. Microbiol. Biotechnol. 63:1-9.
-
(2003)
Appl. Microbiol. Biotechnol.
, vol.63
, pp. 1-9
-
-
Takagi, H.1
Takahashi, M.2
-
43
-
-
0024977417
-
Elevated recombination rates in transcriptionally active DNA
-
Thomas, B. J., and R. Rothstein. 1989. Elevated recombination rates in transcriptionally active DNA. Cell 56:619-630.
-
(1989)
Cell
, vol.56
, pp. 619-630
-
-
Thomas, B.J.1
Rothstein, R.2
-
44
-
-
57149114713
-
The N-end rule at atomic resolution
-
Varshavsky, A. 2008. The N-end rule at atomic resolution. Nat. Struct. Mol. Biol. 15:1238-1240.
-
(2008)
Nat. Struct. Mol. Biol.
, vol.15
, pp. 1238-1240
-
-
Varshavsky, A.1
-
45
-
-
33847736584
-
Human pancreatic digestive enzymes
-
Whitcomb, D. C., and M. E. Lowe. 2007. Human pancreatic digestive enzymes. Dig. Dis. Sci. 52:1-17.
-
(2007)
Dig. Dis. Sci.
, vol.52
, pp. 1-17
-
-
Whitcomb, D.C.1
Lowe, M.E.2
-
46
-
-
74049123550
-
Amino acid signaling in yeast: Post-genome duplication divergence of the Stp1 and Stp2 transcription factors
-
Wielemans, K., C. Jean, S. Vissers, and B. André. 2010. Amino acid signaling in yeast: post-genome duplication divergence of the Stp1 and Stp2 transcription factors. J. Biol. Chem. 285:855-865.
-
(2010)
J. Biol. Chem.
, vol.285
, pp. 855-865
-
-
Wielemans, K.1
Jean, C.2
Vissers, S.3
André, B.4
-
48
-
-
33646397570
-
Competitive intra- and extracellular nutrient sensing by the transporter homologue Ssy1p
-
Wu, B., K. Ottow, P. Poulsen, R. F. Gaber, E. Albers, and M. C. Kielland-Brandt. 2006. Competitive intra- and extracellular nutrient sensing by the transporter homologue Ssy1p. J. Cell Biol. 173:327-331.
-
(2006)
J. Cell Biol.
, vol.173
, pp. 327-331
-
-
Wu, B.1
Ottow, K.2
Poulsen, P.3
Gaber, R.F.4
Albers, E.5
Kielland-Brandt, M.C.6
-
49
-
-
53049096418
-
Substrate-binding sites of UBR1, the ubiquitin ligase of the N-end rule pathway
-
Xia, Z., A. Webster, F. Du, K. Piatkov, M. Ghislain, and A. Varshavsky. 2008. Substrate-binding sites of UBR1, the ubiquitin ligase of the N-end rule pathway. J. Biol. Chem. 283:24011-24028.
-
(2008)
J. Biol. Chem.
, vol.283
, pp. 24011-24028
-
-
Xia, Z.1
Webster, A.2
Du, F.3
Piatkov, K.4
Ghislain, M.5
Varshavsky, A.6
|