-
1
-
-
84859911402
-
The incredible ULKs
-
Alers S, Loffler AS, Wesselborg S, Stork B. The incredible ULKs. Cell Commun Signal. 2012;10(1):7.
-
(2012)
Cell Commun Signal
, vol.10
, Issue.1
, pp. 7
-
-
Alers, S.1
Loffler, A.S.2
Wesselborg, S.3
Stork, B.4
-
2
-
-
84863499345
-
Regulation and function of uncoordinated-51 like kinase proteins
-
Chan EY. Regulation and function of uncoordinated-51 like kinase proteins. Antioxid Redox Signal. 2012;17(5):775-85.
-
(2012)
Antioxid Redox Signal
, vol.17
, Issue.5
, pp. 775-785
-
-
Chan, E.Y.1
-
4
-
-
0027424777
-
Isolation and characterization of autophagy-defective mutants of Saccharomyces cerevisiae
-
Tsukada M, Ohsumi Y. Isolation and characterization of autophagy-defective mutants of Saccharomyces cerevisiae. FEBS Lett. 1993;333(1-2):169-74.
-
(1993)
FEBS Lett
, vol.333
, Issue.1-2
, pp. 169-174
-
-
Tsukada, M.1
Ohsumi, Y.2
-
5
-
-
0030983504
-
Apg1p, a novel protein kinase required for the autophagic process in Saccharomyces cerevisiae
-
Matsuura A, Tsukada M, Wada Y, Ohsumi Y. Apg1p, a novel protein kinase required for the autophagic process in Saccharomyces cerevisiae. Gene. 1997;192(2):245-50.
-
(1997)
Gene
, vol.192
, Issue.2
, pp. 245-250
-
-
Matsuura, A.1
Tsukada, M.2
Wada, Y.3
Ohsumi, Y.4
-
6
-
-
33845874899
-
Direct induction of autophagy by Atg1 inhibits cell growth and induces apoptotic cell death
-
Scott RC, Juhasz G, Neufeld TP. Direct induction of autophagy by Atg1 inhibits cell growth and induces apoptotic cell death. Curr Biol. 2007;17(1):1-11.
-
(2007)
Curr Biol
, vol.17
, Issue.1
, pp. 1-11
-
-
Scott, R.C.1
Juhasz, G.2
Neufeld, T.P.3
-
7
-
-
4344563878
-
Role and regulation of starvation-induced autophagy in the Drosophila fat body
-
Scott RC, Schuldiner O, Neufeld TP. Role and regulation of starvation-induced autophagy in the Drosophila fat body. Dev Cell. 2004;7(2):167-78.
-
(2004)
Dev Cell
, vol.7
, Issue.2
, pp. 167-178
-
-
Scott, R.C.1
Schuldiner, O.2
Neufeld, T.P.3
-
8
-
-
33947383050
-
ATG genes involved in non-selective autophagy are conserved from yeast to man, but the selective Cvt and pexophagy pathways also require organism-specific genes
-
Meijer WH, van der Klei IJ, Veenhuis M, Kiel JA. ATG genes involved in non-selective autophagy are conserved from yeast to man, but the selective Cvt and pexophagy pathways also require organism-specific genes. Autophagy. 2007;3(2):106-16.
-
(2007)
Autophagy
, vol.3
, Issue.2
, pp. 106-116
-
-
Meijer, W.H.1
Klei, I.J.2
Veenhuis, M.3
Kiel, J.A.4
-
9
-
-
79960020908
-
The requirement of uncoordinated 51-like kinase 1 (ULK1) and ULK2 in the regulation of autophagy
-
Lee EJ, Tournier C. The requirement of uncoordinated 51-like kinase 1 (ULK1) and ULK2 in the regulation of autophagy. Autophagy. 2011;7(7):689-95.
-
(2011)
Autophagy
, vol.7
, Issue.7
, pp. 689-695
-
-
Lee, E.J.1
Tournier, C.2
-
10
-
-
65249155441
-
An Atg1/Atg13 complex with multiple roles in TOR-mediated autophagy regulation
-
Chang YY, Neufeld TP. An Atg1/Atg13 complex with multiple roles in TOR-mediated autophagy regulation. Mol Biol Cell. 2009;20(7):2004-14.
-
(2009)
Mol Biol Cell
, vol.20
, Issue.7
, pp. 2004-2014
-
-
Chang, Y.Y.1
Neufeld, T.P.2
-
11
-
-
66449083078
-
ULK1.ATG13.FIP200 complex mediates mTOR signaling and is essential for autophagy
-
Ganley IG, Lam du H, Wang J, Ding X, Chen S, Jiang X. ULK1.ATG13.FIP200 complex mediates mTOR signaling and is essential for autophagy. J Biol Chem. 2009;284(18):12297-305.
-
(2009)
J Biol Chem
, vol.284
, Issue.18
, pp. 12297-12305
-
-
Ganley, I.G.1
Lam du, H.2
Wang, J.3
Ding, X.4
Chen, S.5
Jiang, X.6
-
12
-
-
65249176304
-
ULK-Atg13-FIP200 complexes mediate mTOR signaling to the autophagy machinery
-
Jung CH, Jun CB, Ro SH, Kim YM, Otto NM, Cao J, Kundu M, Kim DH. ULK-Atg13-FIP200 complexes mediate mTOR signaling to the autophagy machinery. Mol Biol Cell. 2009;20(7):1992-2003.
-
(2009)
Mol Biol Cell
, vol.20
, Issue.7
, pp. 1992-2003
-
-
Jung, C.H.1
Jun, C.B.2
Ro, S.H.3
Kim, Y.M.4
Otto, N.M.5
Cao, J.6
Kundu, M.7
Kim, D.H.8
-
13
-
-
70349644856
-
Atg101, a novel mammalian autophagy protein interacting with Atg13
-
Hosokawa N, Sasaki T, Iemura S, Natsume T, Hara T, Mizushima N. Atg101, a novel mammalian autophagy protein interacting with Atg13. Autophagy. 2009;5(7):973-9.
-
(2009)
Autophagy
, vol.5
, Issue.7
, pp. 973-979
-
-
Hosokawa, N.1
Sasaki, T.2
Iemura, S.3
Natsume, T.4
Hara, T.5
Mizushima, N.6
-
14
-
-
43149090064
-
FIP200, a ULK-interacting protein, is required for autophagosome formation in mammalian cells
-
Hara T, Takamura A, Kishi C, Iemura S, Natsume T, Guan JL, Mizushima N. FIP200, a ULK-interacting protein, is required for autophagosome formation in mammalian cells. J Cell Biol. 2008;181(3):497-510.
-
(2008)
J Cell Biol
, vol.181
, Issue.3
, pp. 497-510
-
-
Hara, T.1
Takamura, A.2
Kishi, C.3
Iemura, S.4
Natsume, T.5
Guan, J.L.6
Mizushima, N.7
-
15
-
-
67549110195
-
A novel, human Atg13 binding protein, Atg101, interacts with ULK1 and is essential for macroautophagy
-
Mercer CA, Kaliappan A, Dennis PB. A novel, human Atg13 binding protein, Atg101, interacts with ULK1 and is essential for macroautophagy. Autophagy. 2009;5(5):649-62.
-
(2009)
Autophagy
, vol.5
, Issue.5
, pp. 649-662
-
-
Mercer, C.A.1
Kaliappan, A.2
Dennis, P.B.3
-
16
-
-
84903792417
-
Atg1 kinase organizes autophagosome formation by phosphorylating Atg9
-
Papinski D, Kraft C. Atg1 kinase organizes autophagosome formation by phosphorylating Atg9. Autophagy. 2014;10(7):1338-40.
-
(2014)
Autophagy
, vol.10
, Issue.7
, pp. 1338-1340
-
-
Papinski, D.1
Kraft, C.2
-
17
-
-
84893742616
-
Early steps in autophagy depend on direct phosphorylation of Atg9 by the Atg1 kinase
-
Papinski D, Schuschnig M, Reiter W, Wilhelm L, Barnes CA, Maiolica A, Hansmann I, Pfaffenwimmer T, Kijanska M, Stoffel I, et al. Early steps in autophagy depend on direct phosphorylation of Atg9 by the Atg1 kinase. Mol Cell. 2014;53(3):471-83.
-
(2014)
Mol Cell
, vol.53
, Issue.3
, pp. 471-483
-
-
Papinski, D.1
Schuschnig, M.2
Reiter, W.3
Wilhelm, L.4
Barnes, C.A.5
Maiolica, A.6
Hansmann, I.7
Pfaffenwimmer, T.8
Kijanska, M.9
Stoffel, I.10
-
18
-
-
79951805767
-
Atg1-mediated myosin II activation regulates autophagosome formation during starvation-induced autophagy
-
Tang HW, Wang YB, Wang SL, Wu MH, Lin SY, Chen GC. Atg1-mediated myosin II activation regulates autophagosome formation during starvation-induced autophagy. EMBO J. 2011;30(4):636-51.
-
(2011)
EMBO J
, vol.30
, Issue.4
, pp. 636-651
-
-
Tang, H.W.1
Wang, Y.B.2
Wang, S.L.3
Wu, M.H.4
Lin, S.Y.5
Chen, G.C.6
-
19
-
-
0034707036
-
A ubiquitin-like system mediates protein lipidation
-
Ichimura Y, Kirisako T, Takao T, Satomi Y, Shimonishi Y, Ishihara N, Mizushima N, Tanida I, Kominami E, Ohsumi M, et al. A ubiquitin-like system mediates protein lipidation. Nature. 2000;408(6811):488-92.
-
(2000)
Nature
, vol.408
, Issue.6811
, pp. 488-492
-
-
Ichimura, Y.1
Kirisako, T.2
Takao, T.3
Satomi, Y.4
Shimonishi, Y.5
Ishihara, N.6
Mizushima, N.7
Tanida, I.8
Kominami, E.9
Ohsumi, M.10
-
20
-
-
51049118332
-
The Atg8 and Atg12 ubiquitin-like conjugation systems in macroautophagy. 'Protein modifications: beyond the usual suspects' review series
-
Geng J, Klionsky DJ. The Atg8 and Atg12 ubiquitin-like conjugation systems in macroautophagy. 'Protein modifications: beyond the usual suspects' review series. EMBO Rep. 2008;9(9):859-64.
-
(2008)
EMBO Rep
, vol.9
, Issue.9
, pp. 859-864
-
-
Geng, J.1
Klionsky, D.J.2
-
21
-
-
47549092694
-
Atg8 controls phagophore expansion during autophagosome formation
-
Xie Z, Nair U, Klionsky DJ. Atg8 controls phagophore expansion during autophagosome formation. Mol Biol Cell. 2008;19(8):3290-8.
-
(2008)
Mol Biol Cell
, vol.19
, Issue.8
, pp. 3290-3298
-
-
Xie, Z.1
Nair, U.2
Klionsky, D.J.3
-
22
-
-
0028132203
-
Caenorhabditis elegans unc-51 gene required for axonal elongation encodes a novel serine/threonine kinase
-
Ogura K, Wicky C, Magnenat L, Tobler H, Mori I, Muller F, Ohshima Y. Caenorhabditis elegans unc-51 gene required for axonal elongation encodes a novel serine/threonine kinase. Genes Dev. 1994;8(20):2389-400.
-
(1994)
Genes Dev
, vol.8
, Issue.20
, pp. 2389-2400
-
-
Ogura, K.1
Wicky, C.2
Magnenat, L.3
Tobler, H.4
Mori, I.5
Muller, F.6
Ohshima, Y.7
-
23
-
-
0032495976
-
Identification of mouse ULK1, a novel protein kinase structurally related to C. elegans UNC-51
-
Yan J, Kuroyanagi H, Kuroiwa A, Matsuda Y, Tokumitsu H, Tomoda T, Shirasawa T, Muramatsu M. Identification of mouse ULK1, a novel protein kinase structurally related to C. elegans UNC-51. Biochem Biophys Res Commun. 1998;246(1):222-7.
-
(1998)
Biochem Biophys Res Commun
, vol.246
, Issue.1
, pp. 222-227
-
-
Yan, J.1
Kuroyanagi, H.2
Kuroiwa, A.3
Matsuda, Y.4
Tokumitsu, H.5
Tomoda, T.6
Shirasawa, T.7
Muramatsu, M.8
-
24
-
-
0032127805
-
Human ULK1, a novel serine/threonine kinase related to UNC-51 kinase of Caenorhabditis elegans: cDNA cloning, expression, and chromosomal assignment
-
Kuroyanagi H, Yan J, Seki N, Yamanouchi Y, Suzuki Y, Takano T, Muramatsu M, Shirasawa T. Human ULK1, a novel serine/threonine kinase related to UNC-51 kinase of Caenorhabditis elegans: cDNA cloning, expression, and chromosomal assignment. Genomics. 1998;51(1):76-85.
-
(1998)
Genomics
, vol.51
, Issue.1
, pp. 76-85
-
-
Kuroyanagi, H.1
Yan, J.2
Seki, N.3
Yamanouchi, Y.4
Suzuki, Y.5
Takano, T.6
Muramatsu, M.7
Shirasawa, T.8
-
25
-
-
35048835279
-
Autophagy genes unc-51 and bec-1 are required for normal cell size in Caenorhabditis elegans
-
Aladzsity I, Toth ML, Sigmond T, Szabo E, Bicsak B, Barna J, Regos A, Orosz L, Kovacs AL, Vellai T. Autophagy genes unc-51 and bec-1 are required for normal cell size in Caenorhabditis elegans. Genetics. 2007;177(1):655-60.
-
(2007)
Genetics
, vol.177
, Issue.1
, pp. 655-660
-
-
Aladzsity, I.1
Toth, M.L.2
Sigmond, T.3
Szabo, E.4
Bicsak, B.5
Barna, J.6
Regos, A.7
Orosz, L.8
Kovacs, A.L.9
Vellai, T.10
-
26
-
-
1642417689
-
Role of Unc51.1 and its binding partners in CNS axon outgrowth
-
Tomoda T, Kim JH, Zhan C, Hatten ME. Role of Unc51.1 and its binding partners in CNS axon outgrowth. Genes Dev. 2004;18(5):541-58.
-
(2004)
Genes Dev
, vol.18
, Issue.5
, pp. 541-558
-
-
Tomoda, T.1
Kim, J.H.2
Zhan, C.3
Hatten, M.E.4
-
27
-
-
57749095080
-
UNC-51/ATG1 kinase regulates axonal transport by mediating motor-cargo assembly
-
Toda H, Mochizuki H, Flores 3rd R, Josowitz R, Krasieva TB, Lamorte VJ, Suzuki E, Gindhart JG, Furukubo-Tokunaga K, Tomoda T. UNC-51/ATG1 kinase regulates axonal transport by mediating motor-cargo assembly. Genes Dev. 2008;22(23):3292-307.
-
(2008)
Genes Dev
, vol.22
, Issue.23
, pp. 3292-3307
-
-
Toda, H.1
Mochizuki, H.2
Flores, R.3
Josowitz, R.4
Krasieva, T.B.5
Lamorte, V.J.6
Suzuki, E.7
Gindhart, J.G.8
Furukubo-Tokunaga, K.9
Tomoda, T.10
-
28
-
-
77952220270
-
Protein phosphatase 2A cooperates with the autophagy-related kinase UNC-51 to regulate axon guidance in Caenorhabditis elegans
-
Ogura K, Okada T, Mitani S, Gengyo-Ando K, Baillie DL, Kohara Y, Goshima Y. Protein phosphatase 2A cooperates with the autophagy-related kinase UNC-51 to regulate axon guidance in Caenorhabditis elegans. Development. 2010;137(10):1657-67.
-
(2010)
Development
, vol.137
, Issue.10
, pp. 1657-1667
-
-
Ogura, K.1
Okada, T.2
Mitani, S.3
Gengyo-Ando, K.4
Baillie, D.L.5
Kohara, Y.6
Goshima, Y.7
-
29
-
-
67651096073
-
Molecular characterization of Pegarn: a Drosophila homolog of UNC-51 kinase
-
Ahantarig A, Chadwell LV, Terrazas IB, Garcia CT, Nazarian JJ, Lee HK, Lundell MJ, Cassill JA. Molecular characterization of Pegarn: a Drosophila homolog of UNC-51 kinase. Mol Biol Rep. 2009;36(6):1311-21.
-
(2009)
Mol Biol Rep
, vol.36
, Issue.6
, pp. 1311-1321
-
-
Ahantarig, A.1
Chadwell, L.V.2
Terrazas, I.B.3
Garcia, C.T.4
Nazarian, J.J.5
Lee, H.K.6
Lundell, M.J.7
Cassill, J.A.8
-
30
-
-
79955941230
-
Unc-51/ATG1 controls axonal and dendritic development via kinesin-mediated vesicle transport in the Drosophila brain
-
Mochizuki H, Toda H, Ando M, Kurusu M, Tomoda T, Furukubo-Tokunaga K. Unc-51/ATG1 controls axonal and dendritic development via kinesin-mediated vesicle transport in the Drosophila brain. PLoS One. 2011;6(5):e19632.
-
(2011)
PLoS One
, vol.6
, Issue.5
-
-
Mochizuki, H.1
Toda, H.2
Ando, M.3
Kurusu, M.4
Tomoda, T.5
Furukubo-Tokunaga, K.6
-
31
-
-
58849141189
-
Unc-51 controls active zone density and protein composition by downregulating ERK signaling
-
Wairkar YP, Toda H, Mochizuki H, Furukubo-Tokunaga K, Tomoda T, Diantonio A. Unc-51 controls active zone density and protein composition by downregulating ERK signaling. J Neurosci. 2009;29(2):517-28.
-
(2009)
J Neurosci
, vol.29
, Issue.2
, pp. 517-528
-
-
Wairkar, Y.P.1
Toda, H.2
Mochizuki, H.3
Furukubo-Tokunaga, K.4
Tomoda, T.5
Diantonio, A.6
-
32
-
-
79960058904
-
Asymmetric inhibition of Ulk2 causes left-right differences in habenular neuropil formation
-
Taylor RW, Qi JY, Talaga AK, Ma TP, Pan L, Bartholomew CR, Klionsky DJ, Moens CB, Gamse JT. Asymmetric inhibition of Ulk2 causes left-right differences in habenular neuropil formation. J Neurosci. 2011;31(27):9869-78.
-
(2011)
J Neurosci
, vol.31
, Issue.27
, pp. 9869-9878
-
-
Taylor, R.W.1
Qi, J.Y.2
Talaga, A.K.3
Ma, T.P.4
Pan, L.5
Bartholomew, C.R.6
Klionsky, D.J.7
Moens, C.B.8
Gamse, J.T.9
-
33
-
-
34347236186
-
Unc-51-like kinase 1/2-mediated endocytic processes regulate filopodia extension and branching of sensory axons
-
Zhou X, Babu JR, da Silva S, Shu Q, Graef IA, Oliver T, Tomoda T, Tani T, Wooten MW, Wang F. Unc-51-like kinase 1/2-mediated endocytic processes regulate filopodia extension and branching of sensory axons. Proc Natl Acad Sci U S A. 2007;104(14):5842-7.
-
(2007)
Proc Natl Acad Sci U S A
, vol.104
, Issue.14
, pp. 5842-5847
-
-
Zhou, X.1
Babu, J.R.2
Silva, S.3
Shu, Q.4
Graef, I.A.5
Oliver, T.6
Tomoda, T.7
Tani, T.8
Wooten, M.W.9
Wang, F.10
-
34
-
-
67650249774
-
epg-1 functions in autophagy-regulated processes and may encode a highly divergent Atg13 homolog in C. elegans
-
Tian E, Wang F, Han J, Zhang H. epg-1 functions in autophagy-regulated processes and may encode a highly divergent Atg13 homolog in C. elegans. Autophagy. 2009;5(5):608-15.
-
(2009)
Autophagy
, vol.5
, Issue.5
, pp. 608-615
-
-
Tian, E.1
Wang, F.2
Han, J.3
Zhang, H.4
-
35
-
-
33749562122
-
Role of FIP200 in cardiac and liver development and its regulation of TNFalpha and TSC-mTOR signaling pathways
-
Gan B, Peng X, Nagy T, Alcaraz A, Gu H, Guan JL. Role of FIP200 in cardiac and liver development and its regulation of TNFalpha and TSC-mTOR signaling pathways. J Cell Biol. 2006;175(1):121-33.
-
(2006)
J Cell Biol
, vol.175
, Issue.1
, pp. 121-133
-
-
Gan, B.1
Peng, X.2
Nagy, T.3
Alcaraz, A.4
Gu, H.5
Guan, J.L.6
-
36
-
-
12344309528
-
The conserved kinase UNC-51 acts with VAB-8 and UNC-14 to regulate axon outgrowth in C. elegans
-
Lai T, Garriga G. The conserved kinase UNC-51 acts with VAB-8 and UNC-14 to regulate axon outgrowth in C. elegans. Development. 2004;131(23):5991-6000.
-
(2004)
Development
, vol.131
, Issue.23
, pp. 5991-6000
-
-
Lai, T.1
Garriga, G.2
-
37
-
-
0030739354
-
The UNC-14 protein required for axonal elongation and guidance in Caenorhabditis elegans interacts with the serine/threonine kinase UNC-51
-
Ogura K, Shirakawa M, Barnes TM, Hekimi S, Ohshima Y. The UNC-14 protein required for axonal elongation and guidance in Caenorhabditis elegans interacts with the serine/threonine kinase UNC-51. Genes Dev. 1997;11(14):1801-11.
-
(1997)
Genes Dev
, vol.11
, Issue.14
, pp. 1801-1811
-
-
Ogura, K.1
Shirakawa, M.2
Barnes, T.M.3
Hekimi, S.4
Ohshima, Y.5
-
38
-
-
0030064181
-
The C. elegans gene vab-8 guides posteriorly directed axon outgrowth and cell migration
-
Wightman B, Clark SG, Taskar AM, Forrester WC, Maricq AV, Bargmann CI, Garriga G. The C. elegans gene vab-8 guides posteriorly directed axon outgrowth and cell migration. Development. 1996;122(2):671-82.
-
(1996)
Development
, vol.122
, Issue.2
, pp. 671-682
-
-
Wightman, B.1
Clark, S.G.2
Taskar, A.M.3
Forrester, W.C.4
Maricq, A.V.5
Bargmann, C.I.6
Garriga, G.7
-
39
-
-
33749373208
-
The autophagy-related kinase UNC-51 and its binding partner UNC-14 regulate the subcellular localization of the Netrin receptor UNC-5 in Caenorhabditis elegans
-
Ogura K, Goshima Y. The autophagy-related kinase UNC-51 and its binding partner UNC-14 regulate the subcellular localization of the Netrin receptor UNC-5 in Caenorhabditis elegans. Development. 2006;133(17):3441-50.
-
(2006)
Development
, vol.133
, Issue.17
, pp. 3441-3450
-
-
Ogura, K.1
Goshima, Y.2
-
40
-
-
0033377776
-
A mouse serine/threonine kinase homologous to C. elegans UNC51 functions in parallel fiber formation of cerebellar granule neurons
-
Tomoda T, Bhatt RS, Kuroyanagi H, Shirasawa T, Hatten ME. A mouse serine/threonine kinase homologous to C. elegans UNC51 functions in parallel fiber formation of cerebellar granule neurons. Neuron. 1999;24(4):833-46.
-
(1999)
Neuron
, vol.24
, Issue.4
, pp. 833-846
-
-
Tomoda, T.1
Bhatt, R.S.2
Kuroyanagi, H.3
Shirasawa, T.4
Hatten, M.E.5
-
41
-
-
80655144736
-
Binding to syntenin-1 protein defines a new mode of ubiquitin-based interactions regulated by phosphorylation
-
Rajesh S, Bago R, Odintsova E, Muratov G, Baldwin G, Sridhar P, Overduin M, Berditchevski F. Binding to syntenin-1 protein defines a new mode of ubiquitin-based interactions regulated by phosphorylation. J Biol Chem. 2011;286(45):39606-14.
-
(2011)
J Biol Chem
, vol.286
, Issue.45
, pp. 39606-39614
-
-
Rajesh, S.1
Bago, R.2
Odintsova, E.3
Muratov, G.4
Baldwin, G.5
Sridhar, P.6
Overduin, M.7
Berditchevski, F.8
-
42
-
-
84871007606
-
Compensatory proliferation and apoptosis-induced proliferation: a need for clarification
-
Mollereau B, Perez-Garijo A, Bergmann A, Miura M, Gerlitz O, Ryoo HD, Steller H, Morata G. Compensatory proliferation and apoptosis-induced proliferation: a need for clarification. Cell Death Differ. 2013;20(1):181.
-
(2013)
Cell Death Differ
, vol.20
, Issue.1
, pp. 181
-
-
Mollereau, B.1
Perez-Garijo, A.2
Bergmann, A.3
Miura, M.4
Gerlitz, O.5
Ryoo, H.D.6
Steller, H.7
Morata, G.8
-
43
-
-
84865641560
-
The role of apoptosis-induced proliferation for regeneration and cancer
-
Ryoo HD, Bergmann A. The role of apoptosis-induced proliferation for regeneration and cancer. Cold Spring Harb Perspect Biol. 2012;4(8):a008797.
-
(2012)
Cold Spring Harb Perspect Biol
, vol.4
, Issue.8
, pp. a008797
-
-
Ryoo, H.D.1
Bergmann, A.2
-
44
-
-
52949102178
-
Apoptosis-induced compensatory proliferation. The cell is dead. Long live the cell!
-
Fan Y, Bergmann A. Apoptosis-induced compensatory proliferation. The cell is dead. Long live the cell! Trends Cell Biol. 2008;18(10):467-73.
-
(2008)
Trends Cell Biol
, vol.18
, Issue.10
, pp. 467-473
-
-
Fan, Y.1
Bergmann, A.2
-
45
-
-
78049502859
-
Apoptosis, stem cells, and tissue regeneration
-
Bergmann A, Steller H. Apoptosis, stem cells, and tissue regeneration. Sci Signal. 2010;3(145):re8.
-
(2010)
Sci Signal
, vol.3
, Issue.145
, pp. re8
-
-
Bergmann, A.1
Steller, H.2
-
46
-
-
0017670117
-
The effects of X-rays on the proliferation dynamics of cells in the imaginal disc of Drosophila melanogaster
-
Haynie JL, Bryant PJ. The effects of X-rays on the proliferation dynamics of cells in the imaginal disc of Drosophila melanogaster. Rouxs Arch Dev Biol. 1977;183:85-100.
-
(1977)
Rouxs Arch Dev Biol.
, vol.183
, pp. 85-100
-
-
Haynie, J.L.1
Bryant, P.J.2
-
47
-
-
68349122622
-
Apoptotic cells provide an unexpected source of Wnt3 signaling to drive hydra head regeneration
-
Chera S, Ghila L, Dobretz K, Wenger Y, Bauer C, Buzgariu W, Martinou JC, Galliot B. Apoptotic cells provide an unexpected source of Wnt3 signaling to drive hydra head regeneration. Dev Cell. 2009;17(2):279-89.
-
(2009)
Dev Cell
, vol.17
, Issue.2
, pp. 279-289
-
-
Chera, S.1
Ghila, L.2
Dobretz, K.3
Wenger, Y.4
Bauer, C.5
Buzgariu, W.6
Martinou, J.C.7
Galliot, B.8
-
48
-
-
2942557111
-
Detection of apoptosis during planarian regeneration by the expression of apoptosis-related genes and TUNEL assay
-
Hwang JS, Kobayashi C, Agata K, Ikeo K, Gojobori T. Detection of apoptosis during planarian regeneration by the expression of apoptosis-related genes and TUNEL assay. Gene. 2004;333:15-25.
-
(2004)
Gene.
, vol.333
, pp. 15-25
-
-
Hwang, J.S.1
Kobayashi, C.2
Agata, K.3
Ikeo, K.4
Gojobori, T.5
-
49
-
-
33845602214
-
Apoptosis is required during early stages of tail regeneration in Xenopus laevis
-
Tseng AS, Adams DS, Qiu D, Koustubhan P, Levin M. Apoptosis is required during early stages of tail regeneration in Xenopus laevis. Dev Biol. 2007;301(1):62-9.
-
(2007)
Dev Biol
, vol.301
, Issue.1
, pp. 62-69
-
-
Tseng, A.S.1
Adams, D.S.2
Qiu, D.3
Koustubhan, P.4
Levin, M.5
-
50
-
-
5744221183
-
Growth and apoptosis during larval forelimb development and adult forelimb regeneration in the newt (Notophthalmus viridescens)
-
Vlaskalin T, Wong CJ, Tsilfidis C. Growth and apoptosis during larval forelimb development and adult forelimb regeneration in the newt (Notophthalmus viridescens). Dev Genes Evol. 2004;214(9):423-31.
-
(2004)
Dev Genes Evol
, vol.214
, Issue.9
, pp. 423-431
-
-
Vlaskalin, T.1
Wong, C.J.2
Tsilfidis, C.3
-
51
-
-
42049095950
-
Distinct mechanisms of apoptosis-induced compensatory proliferation in proliferating and differentiating tissues in the Drosophila eye
-
Fan Y, Bergmann A. Distinct mechanisms of apoptosis-induced compensatory proliferation in proliferating and differentiating tissues in the Drosophila eye. Dev Cell. 2008;14(3):399-410.
-
(2008)
Dev Cell
, vol.14
, Issue.3
, pp. 399-410
-
-
Fan, Y.1
Bergmann, A.2
-
52
-
-
84896696484
-
Genetic models of apoptosis-induced proliferation decipher activation of JNK and identify a requirement of EGFR signaling for tissue regenerative responses in Drosophila
-
Fan Y, Wang S, Hernandez J, Yenigun VB, Hertlein G, Fogarty CE, Lindblad JL, Bergmann A. Genetic models of apoptosis-induced proliferation decipher activation of JNK and identify a requirement of EGFR signaling for tissue regenerative responses in Drosophila. PLoS Genet. 2014;10(1):e1004131.
-
(2014)
PLoS Genet
, vol.10
, Issue.1
-
-
Fan, Y.1
Wang, S.2
Hernandez, J.3
Yenigun, V.B.4
Hertlein, G.5
Fogarty, C.E.6
Lindblad, J.L.7
Bergmann, A.8
-
53
-
-
3342881896
-
Compensatory proliferation induced by cell death in the Drosophila wing disc requires activity of the apical cell death caspase Dronc in a nonapoptotic role
-
Huh JR, Guo M, Hay BA. Compensatory proliferation induced by cell death in the Drosophila wing disc requires activity of the apical cell death caspase Dronc in a nonapoptotic role. Curr Biol. 2004;14(14):1262-6.
-
(2004)
Curr Biol
, vol.14
, Issue.14
, pp. 1262-1266
-
-
Huh, J.R.1
Guo, M.2
Hay, B.A.3
-
54
-
-
10344258000
-
Caspase inhibition during apoptosis causes abnormal signalling and developmental aberrations in Drosophila
-
Perez-Garijo A, Martin FA, Morata G. Caspase inhibition during apoptosis causes abnormal signalling and developmental aberrations in Drosophila. Development. 2004;131(22):5591-8.
-
(2004)
Development
, vol.131
, Issue.22
, pp. 5591-5598
-
-
Perez-Garijo, A.1
Martin, F.A.2
Morata, G.3
-
55
-
-
67449113922
-
The role of Dpp and Wg in compensatory proliferation and in the formation of hyperplastic overgrowths caused by apoptotic cells in the Drosophila wing disc
-
Perez-Garijo A, Shlevkov E, Morata G. The role of Dpp and Wg in compensatory proliferation and in the formation of hyperplastic overgrowths caused by apoptotic cells in the Drosophila wing disc. Development. 2009;136(7):1169-77.
-
(2009)
Development
, vol.136
, Issue.7
, pp. 1169-1177
-
-
Perez-Garijo, A.1
Shlevkov, E.2
Morata, G.3
-
56
-
-
5044248528
-
Apoptotic cells can induce compensatory cell proliferation through the JNK and the Wingless signaling pathways
-
Ryoo HD, Gorenc T, Steller H. Apoptotic cells can induce compensatory cell proliferation through the JNK and the Wingless signaling pathways. Dev Cell. 2004;7(4):491-501.
-
(2004)
Dev Cell
, vol.7
, Issue.4
, pp. 491-501
-
-
Ryoo, H.D.1
Gorenc, T.2
Steller, H.3
-
57
-
-
84857053615
-
A dp53/JNK-dependant feedback amplification loop is essential for the apoptotic response to stress in Drosophila
-
Shlevkov E, Morata G. A dp53/JNK-dependant feedback amplification loop is essential for the apoptotic response to stress in Drosophila. Cell Death Differ. 2012;19(3):451-60.
-
(2012)
Cell Death Differ
, vol.19
, Issue.3
, pp. 451-460
-
-
Shlevkov, E.1
Morata, G.2
-
58
-
-
33747176844
-
Compensatory proliferation in Drosophila imaginal discs requires Dronc-dependent p53 activity
-
Wells BS, Yoshida E, Johnston LA. Compensatory proliferation in Drosophila imaginal discs requires Dronc-dependent p53 activity. Curr Biol. 2006;16(16):1606-15.
-
(2006)
Curr Biol
, vol.16
, Issue.16
, pp. 1606-1615
-
-
Wells, B.S.1
Yoshida, E.2
Johnston, L.A.3
-
59
-
-
33749173274
-
DRONC coordinates cell death and compensatory proliferation
-
Kondo S, Senoo-Matsuda N, Hiromi Y, Miura M. DRONC coordinates cell death and compensatory proliferation. Mol Cell Biol. 2006;26(19):7258-68.
-
(2006)
Mol Cell Biol
, vol.26
, Issue.19
, pp. 7258-7268
-
-
Kondo, S.1
Senoo-Matsuda, N.2
Hiromi, Y.3
Miura, M.4
-
60
-
-
77950492682
-
Cell death-induced regeneration in wing imaginal discs requires JNK signalling
-
Bergantinos C, Corominas M, Serras F. Cell death-induced regeneration in wing imaginal discs requires JNK signalling. Development. 2010;137(7):1169-79.
-
(2010)
Development
, vol.137
, Issue.7
, pp. 1169-1179
-
-
Bergantinos, C.1
Corominas, M.2
Serras, F.3
-
61
-
-
84876858445
-
Tissue homeostasis in the wing disc of Drosophila melanogaster: immediate response to massive damage during development
-
Herrera SC, Martin R, Morata G. Tissue homeostasis in the wing disc of Drosophila melanogaster: immediate response to massive damage during development. PLoS Genet. 2013;9(4):e1003446.
-
(2013)
PLoS Genet
, vol.9
, Issue.4
-
-
Herrera, S.C.1
Martin, R.2
Morata, G.3
-
62
-
-
84873411033
-
Caspase signalling in the absence of apoptosis drives Jnk-dependent invasion
-
Rudrapatna VA, Bangi E, Cagan RL. Caspase signalling in the absence of apoptosis drives Jnk-dependent invasion. EMBO Rep. 2013;14(2):172-7.
-
(2013)
EMBO Rep
, vol.14
, Issue.2
, pp. 172-177
-
-
Rudrapatna, V.A.1
Bangi, E.2
Cagan, R.L.3
-
63
-
-
66949167781
-
Regenerative growth in Drosophila imaginal discs is regulated by Wingless and Myc
-
Smith-Bolton RK, Worley MI, Kanda H, Hariharan IK. Regenerative growth in Drosophila imaginal discs is regulated by Wingless and Myc. Dev Cell. 2009;16(6):797-809.
-
(2009)
Dev Cell
, vol.16
, Issue.6
, pp. 797-809
-
-
Smith-Bolton, R.K.1
Worley, M.I.2
Kanda, H.3
Hariharan, I.K.4
-
64
-
-
78651261751
-
Regulation of Hippo signaling by Jun kinase signaling during compensatory cell proliferation and regeneration, and in neoplastic tumors
-
Sun G, Irvine KD. Regulation of Hippo signaling by Jun kinase signaling during compensatory cell proliferation and regeneration, and in neoplastic tumors. Dev Biol. 2011;350(1):139-51.
-
(2011)
Dev Biol
, vol.350
, Issue.1
, pp. 139-151
-
-
Sun, G.1
Irvine, K.D.2
-
65
-
-
0345168202
-
Spatiotemporal rescue of memory dysfunction in Drosophila
-
McGuire SE, Le PT, Osborn AJ, Matsumoto K, Davis RL. Spatiotemporal rescue of memory dysfunction in Drosophila. Science. 2003;302(5651):1765-8.
-
(2003)
Science
, vol.302
, Issue.5651
, pp. 1765-1768
-
-
McGuire, S.E.1
Le, P.T.2
Osborn, A.J.3
Matsumoto, K.4
Davis, R.L.5
-
66
-
-
74749089052
-
Characterization of a dorsal-eye Gal4 Line in Drosophila
-
Morrison CM, Halder G. Characterization of a dorsal-eye Gal4 Line in Drosophila. Genesis. 2010;48(1):3-7.
-
(2010)
Genesis
, vol.48
, Issue.1
, pp. 3-7
-
-
Morrison, C.M.1
Halder, G.2
-
67
-
-
0035782891
-
Cell proliferation, survival, and death in the Drosophila eye
-
Baker NE. Cell proliferation, survival, and death in the Drosophila eye. Semin Cell Dev Biol. 2001;12(6):499-507.
-
(2001)
Semin Cell Dev Biol
, vol.12
, Issue.6
, pp. 499-507
-
-
Baker, N.E.1
-
68
-
-
76749157160
-
The cleaved-Caspase-3 antibody is a marker of Caspase-9-like DRONC activity in Drosophila
-
Fan Y, Bergmann A. The cleaved-Caspase-3 antibody is a marker of Caspase-9-like DRONC activity in Drosophila. Cell Death Differ. 2010;17(3):534-9.
-
(2010)
Cell Death Differ
, vol.17
, Issue.3
, pp. 534-539
-
-
Fan, Y.1
Bergmann, A.2
-
69
-
-
33751111927
-
JNK- and Fos-regulated Mmp1 expression cooperates with Ras to induce invasive tumors in Drosophila
-
Uhlirova M, Bohmann D. JNK- and Fos-regulated Mmp1 expression cooperates with Ras to induce invasive tumors in Drosophila. EMBO J. 2006;25(22):5294-304.
-
(2006)
EMBO J
, vol.25
, Issue.22
, pp. 5294-5304
-
-
Uhlirova, M.1
Bohmann, D.2
-
70
-
-
0033582934
-
The transmembrane molecule kekkon 1 acts in a feedback loop to negatively regulate the activity of the Drosophila EGF receptor during oogenesis
-
Ghiglione C, Carraway 3rd KL, Amundadottir LT, Boswell RE, Perrimon N, Duffy JB. The transmembrane molecule kekkon 1 acts in a feedback loop to negatively regulate the activity of the Drosophila EGF receptor during oogenesis. Cell. 1999;96(6):847-56.
-
(1999)
Cell
, vol.96
, Issue.6
, pp. 847-856
-
-
Ghiglione, C.1
Carraway, K.L.2
Amundadottir, L.T.3
Boswell, R.E.4
Perrimon, N.5
Duffy, J.B.6
-
71
-
-
84883027938
-
Drosophila Fip200 is an essential regulator of autophagy that attenuates both growth and aging
-
Kim M, Park HL, Park HW, Ro SH, Nam SG, Reed JM, Guan JL, Lee JH. Drosophila Fip200 is an essential regulator of autophagy that attenuates both growth and aging. Autophagy. 2013;9(8):1201-13.
-
(2013)
Autophagy
, vol.9
, Issue.8
, pp. 1201-1213
-
-
Kim, M.1
Park, H.L.2
Park, H.W.3
Ro, S.H.4
Nam, S.G.5
Reed, J.M.6
Guan, J.L.7
Lee, J.H.8
-
72
-
-
68349110789
-
JNK protects Drosophila from oxidative stress by trancriptionally activating autophagy
-
Wu H, Wang MC, Bohmann D. JNK protects Drosophila from oxidative stress by trancriptionally activating autophagy. Mech Dev. 2009;126(8-9):624-37.
-
(2009)
Mech Dev
, vol.126
, Issue.8-9
, pp. 624-637
-
-
Wu, H.1
Wang, M.C.2
Bohmann, D.3
-
73
-
-
0029834756
-
The Drosophila Jun-N-terminal kinase is required for cell morphogenesis but not for DJun-dependent cell fate specification in the eye
-
Riesgo-Escovar JR, Jenni M, Fritz A, Hafen E. The Drosophila Jun-N-terminal kinase is required for cell morphogenesis but not for DJun-dependent cell fate specification in the eye. Genes Dev. 1996;10(21):2759-68.
-
(1996)
Genes Dev
, vol.10
, Issue.21
, pp. 2759-2768
-
-
Riesgo-Escovar, J.R.1
Jenni, M.2
Fritz, A.3
Hafen, E.4
-
74
-
-
0029824847
-
A JNK signal transduction pathway that mediates morphogenesis and an immune response in Drosophila
-
Sluss HK, Han Z, Barrett T, Goberdhan DC, Wilson C, Davis RJ, Ip YT. A JNK signal transduction pathway that mediates morphogenesis and an immune response in Drosophila. Genes Dev. 1996;10(21):2745-58.
-
(1996)
Genes Dev
, vol.10
, Issue.21
, pp. 2745-2758
-
-
Sluss, H.K.1
Han, Z.2
Barrett, T.3
Goberdhan, D.C.4
Wilson, C.5
Davis, R.J.6
Ip, Y.T.7
-
75
-
-
84862295360
-
Guidelines for the use and interpretation of assays for monitoring autophagy
-
Klionsky DJ, Abdalla FC, Abeliovich H, Abraham RT, Acevedo-Arozena A, Adeli K, Agholme L, Agnello M, Agostinis P, Aguirre-Ghiso JA, et al. Guidelines for the use and interpretation of assays for monitoring autophagy. Autophagy. 2012;8(4):445-544.
-
(2012)
Autophagy
, vol.8
, Issue.4
, pp. 445-544
-
-
Klionsky, D.J.1
Abdalla, F.C.2
Abeliovich, H.3
Abraham, R.T.4
Acevedo-Arozena, A.5
Adeli, K.6
Agholme, L.7
Agnello, M.8
Agostinis, P.9
Aguirre-Ghiso, J.A.10
-
76
-
-
84964240595
-
The initiator caspase Dronc is subject of enhanced autophagy upon proteasome impairment in Drosophila
-
Ahead of print.
-
Lee TV, Kamber Kaya HE, Simin R, Baehrecke EH, Bergmann A. The initiator caspase Dronc is subject of enhanced autophagy upon proteasome impairment in Drosophila. Cell Death Differ. 2016. Ahead of print.
-
(2016)
Cell Death Differ
-
-
Lee, T.V.1
Kamber Kaya, H.E.2
Simin, R.3
Baehrecke, E.H.4
Bergmann, A.5
-
77
-
-
84933035918
-
Autophagy regulates tissue overgrowth in a context-dependent manner
-
Perez E, Das G, Bergmann A, Baehrecke EH. Autophagy regulates tissue overgrowth in a context-dependent manner. Oncogene. 2015;34(26):3369-76.
-
(2015)
Oncogene
, vol.34
, Issue.26
, pp. 3369-3376
-
-
Perez, E.1
Das, G.2
Bergmann, A.3
Baehrecke, E.H.4
-
78
-
-
31444452060
-
Epigenetic silencers and Notch collaborate to promote malignant tumours by Rb silencing
-
Ferres-Marco D, Gutierrez-Garcia I, Vallejo DM, Bolivar J, Gutierrez-Avino FJ, Dominguez M. Epigenetic silencers and Notch collaborate to promote malignant tumours by Rb silencing. Nature. 2006;439(7075):430-6.
-
(2006)
Nature
, vol.439
, Issue.7075
, pp. 430-436
-
-
Ferres-Marco, D.1
Gutierrez-Garcia, I.2
Vallejo, D.M.3
Bolivar, J.4
Gutierrez-Avino, F.J.5
Dominguez, M.6
-
79
-
-
0036742659
-
Inhibition of cellular growth and proliferation by dTOR overexpression in Drosophila
-
Hennig KM, Neufeld TP. Inhibition of cellular growth and proliferation by dTOR overexpression in Drosophila. Genesis. 2002;34(1-2):107-10.
-
(2002)
Genesis
, vol.34
, Issue.1-2
, pp. 107-110
-
-
Hennig, K.M.1
Neufeld, T.P.2
-
80
-
-
0037178786
-
mTOR interacts with raptor to form a nutrient-sensitive complex that signals to the cell growth machinery
-
Kim DH, Sarbassov DD, Ali SM, King JE, Latek RR, Erdjument-Bromage H, Tempst P, Sabatini DM. mTOR interacts with raptor to form a nutrient-sensitive complex that signals to the cell growth machinery. Cell. 2002;110(2):163-75.
-
(2002)
Cell
, vol.110
, Issue.2
, pp. 163-175
-
-
Kim, D.H.1
Sarbassov, D.D.2
Ali, S.M.3
King, J.E.4
Latek, R.R.5
Erdjument-Bromage, H.6
Tempst, P.7
Sabatini, D.M.8
-
81
-
-
84961267065
-
Localized epigenetic silencing of a damage-activated WNT enhancer limits regeneration in mature imaginal discs
-
Harris RE, Setiawan L, Saul J, Hariharan IK. Localized epigenetic silencing of a damage-activated WNT enhancer limits regeneration in mature imaginal discs. Elife. 2016;5.
-
(2016)
Elife
, pp. 5
-
-
Harris, R.E.1
Setiawan, L.2
Saul, J.3
Hariharan, I.K.4
-
82
-
-
19444366944
-
The CARD-carrying caspase Dronc is essential for most, but not all, developmental cell death in Drosophila
-
Xu D, Li Y, Arcaro M, Lackey M, Bergmann A. The CARD-carrying caspase Dronc is essential for most, but not all, developmental cell death in Drosophila. Development. 2005;132(9):2125-34.
-
(2005)
Development
, vol.132
, Issue.9
, pp. 2125-2134
-
-
Xu, D.1
Li, Y.2
Arcaro, M.3
Lackey, M.4
Bergmann, A.5
-
83
-
-
36849021043
-
Atg7-dependent autophagy promotes neuronal health, stress tolerance, and longevity but is dispensable for metamorphosis in Drosophila
-
Juhasz G, Erdi B, Sass M, Neufeld TP. Atg7-dependent autophagy promotes neuronal health, stress tolerance, and longevity but is dispensable for metamorphosis in Drosophila. Genes Dev. 2007;21(23):3061-6.
-
(2007)
Genes Dev
, vol.21
, Issue.23
, pp. 3061-3066
-
-
Juhasz, G.1
Erdi, B.2
Sass, M.3
Neufeld, T.P.4
-
84
-
-
0035341376
-
Mosaic analysis with a repressible cell marker (MARCM) for Drosophila neural development
-
Lee T, Luo L. Mosaic analysis with a repressible cell marker (MARCM) for Drosophila neural development. Trends Neurosci. 2001;24(5):251-4.
-
(2001)
Trends Neurosci
, vol.24
, Issue.5
, pp. 251-254
-
-
Lee, T.1
Luo, L.2
-
85
-
-
61949220840
-
Genetic manipulation and monitoring of autophagy in Drosophila
-
Neufeld TP. Genetic manipulation and monitoring of autophagy in Drosophila. Methods Enzymol. 2008;451:653-67.
-
(2008)
Methods Enzymol.
, vol.451
, pp. 653-667
-
-
Neufeld, T.P.1
-
86
-
-
67650649726
-
A genetic screen in Drosophila reveals novel cytoprotective functions of the autophagy-lysosome pathway
-
Arsham AM, Neufeld TP. A genetic screen in Drosophila reveals novel cytoprotective functions of the autophagy-lysosome pathway. PLoS One. 2009;4(6):e6068.
-
(2009)
PLoS One
, vol.4
, Issue.6
-
-
Arsham, A.M.1
Neufeld, T.P.2
-
87
-
-
84958755102
-
Detecting caspase activity in Drosophila larval imaginal discs
-
Fogarty CE, Bergmann A. Detecting caspase activity in Drosophila larval imaginal discs. Methods Mol Biol. 2014;1133:109-17.
-
(2014)
Methods Mol Biol.
, vol.1133
, pp. 109-117
-
-
Fogarty, C.E.1
Bergmann, A.2
-
88
-
-
84904335314
-
Multiple mechanisms modulate distinct cellular susceptibilities toward apoptosis in the developing Drosophila eye
-
Fan Y, Bergmann A. Multiple mechanisms modulate distinct cellular susceptibilities toward apoptosis in the developing Drosophila eye. Dev Cell. 2014;30(1):48-60.
-
(2014)
Dev Cell
, vol.30
, Issue.1
, pp. 48-60
-
-
Fan, Y.1
Bergmann, A.2
-
89
-
-
84883768415
-
FlyPrimerBank: an online database for Drosophila melanogaster gene expression analysis and knockdown evaluation of RNAi reagents
-
Hu Y, Sopko R, Foos M, Kelley C, Flockhart I, Ammeux N, Wang X, Perkins L, Perrimon N, Mohr SE. FlyPrimerBank: an online database for Drosophila melanogaster gene expression analysis and knockdown evaluation of RNAi reagents. G3 (Bethesda). 2013;3(9):1607-16.
-
(2013)
G3 (Bethesda)
, vol.3
, Issue.9
, pp. 1607-1616
-
-
Hu, Y.1
Sopko, R.2
Foos, M.3
Kelley, C.4
Flockhart, I.5
Ammeux, N.6
Wang, X.7
Perkins, L.8
Perrimon, N.9
Mohr, S.E.10
|