-
1
-
-
33846018602
-
Cell death by necrosis: towards a molecular definition
-
Golstein P, Kroemer G, (2007) Cell death by necrosis: towards a molecular definition. Trends Biochem Sci 32: 37–43. 17141506
-
(2007)
Trends Biochem Sci
, vol.32
, pp. 37-43
-
-
Golstein, P.1
Kroemer, G.2
-
2
-
-
57649149333
-
Classification of cell death: recommendations of the Nomenclature Committee on Cell Death 2009
-
Kroemer G, Galluzzi L, Vandenabeele P, Abrams J, Alnemri ES, Baehrecke EH, et al. (2009) Classification of cell death: recommendations of the Nomenclature Committee on Cell Death 2009. Cell Death Differ 16: 3–11. doi: 10.1038/cdd.2008.150 18846107
-
(2009)
Cell Death Differ
, vol.16
, pp. 3-11
-
-
Kroemer, G.1
Galluzzi, L.2
Vandenabeele, P.3
Abrams, J.4
Alnemri, E.S.5
Baehrecke, E.H.6
-
3
-
-
3242742565
-
-
Jacobson MD, Bergeron L, Jacobson MD, McCarthy N, (2002) Cell death in the nervous system. In: Apoptosis, the molecular biology of programmed cell death: Oxford University Press. pp. 278–301.
-
(2002)
Apoptosis, the molecular biology of programmed cell death
, pp. 278-301
-
-
Jacobson, M.D.1
Bergeron, L.2
Jacobson, M.D.3
McCarthy, N.4
-
4
-
-
3342900223
-
Ca2+-dependent proteases in ischemic neuronal death: a conserved 'calpain-cathepsin cascade' from nematodes to primates
-
Yamashima T, (2004) Ca2+-dependent proteases in ischemic neuronal death: a conserved 'calpain-cathepsin cascade' from nematodes to primates. Cell Calcium 36: 285–293. 15261484
-
(2004)
Cell Calcium
, vol.36
, pp. 285-293
-
-
Yamashima, T.1
-
5
-
-
77956715781
-
Going up in flames: necrotic cell injury and inflammatory diseases
-
Challa S, Chan FK, (2010) Going up in flames: necrotic cell injury and inflammatory diseases. Cell Mol Life Sci 67: 3241–3253. doi: 10.1007/s00018-010-0413-8 20532807
-
(2010)
Cell Mol Life Sci
, vol.67
, pp. 3241-3253
-
-
Challa, S.1
Chan, F.K.2
-
6
-
-
77951901715
-
Cell death in the pathogenesis of heart disease: mechanisms and significance
-
Whelan RS, Kaplinskiy V, Kitsis RN, (2010) Cell death in the pathogenesis of heart disease: mechanisms and significance. Annu Rev Physiol 72: 19–44. doi: 10.1146/annurev.physiol.010908.163111 20148665
-
(2010)
Annu Rev Physiol
, vol.72
, pp. 19-44
-
-
Whelan, R.S.1
Kaplinskiy, V.2
Kitsis, R.N.3
-
7
-
-
73549104022
-
Molecular mechanisms of necrosis in glioblastoma: the role of glutamate excitotoxicity
-
Noch E, Khalili K, (2009) Molecular mechanisms of necrosis in glioblastoma: the role of glutamate excitotoxicity. Cancer Biol Ther 8: 1791–1797. 19770591
-
(2009)
Cancer Biol Ther
, vol.8
, pp. 1791-1797
-
-
Noch, E.1
Khalili, K.2
-
8
-
-
77951611926
-
Non-apoptotic cell death in Caenorhabditis elegans
-
Vlachos M, Tavernarakis N, (2010) Non-apoptotic cell death in Caenorhabditis elegans. Dev Dyn 239: 1337–1351. doi: 10.1002/dvdy.22230 20108319
-
(2010)
Dev Dyn
, vol.239
, pp. 1337-1351
-
-
Vlachos, M.1
Tavernarakis, N.2
-
9
-
-
78649634982
-
Genetic control of necrosis—another type of programmed cell death
-
McCall K, (2010) Genetic control of necrosis—another type of programmed cell death. Curr Opin Cell Biol 22: 882–888. doi: 10.1016/j.ceb.2010.09.002 20889324
-
(2010)
Curr Opin Cell Biol
, vol.22
, pp. 882-888
-
-
McCall, K.1
-
11
-
-
77955271788
-
The molecular regulation of programmed necrotic cell injury
-
Moquin D, Chan FK, (2010) The molecular regulation of programmed necrotic cell injury. Trends Biochem Sci 35: 434–441. doi: 10.1016/j.tibs.2010.03.001 20346680
-
(2010)
Trends Biochem Sci
, vol.35
, pp. 434-441
-
-
Moquin, D.1
Chan, F.K.2
-
12
-
-
0029157640
-
NMDA receptor-dependent excitotoxicity: the role of intracellular Ca2+ release
-
Mody I, MacDonald JF, (1995) NMDA receptor-dependent excitotoxicity: the role of intracellular Ca2+ release. Trends Pharmacol Sci 16: 356–359. 7491714
-
(1995)
Trends Pharmacol Sci
, vol.16
, pp. 356-359
-
-
Mody, I.1
MacDonald, J.F.2
-
13
-
-
0037373633
-
Dying for a cause: invertebrate genetics takes on human neurodegeneration
-
Driscoll M, Gerstbrein B, (2003) Dying for a cause: invertebrate genetics takes on human neurodegeneration. Nat Rev Genet 4: 181–194. 12610523
-
(2003)
Nat Rev Genet
, vol.4
, pp. 181-194
-
-
Driscoll, M.1
Gerstbrein, B.2
-
14
-
-
84908703421
-
Molecular mechanisms of regulated necrosis
-
Galluzzi L, Kepp O, Krautwald S, Kroemer G, Linkermann A, (2014) Molecular mechanisms of regulated necrosis. Semin Cell Dev Biol 35: 24–32. doi: 10.1016/j.semcdb.2014.02.006 24582829
-
(2014)
Semin Cell Dev Biol
, vol.35
, pp. 24-32
-
-
Galluzzi, L.1
Kepp, O.2
Krautwald, S.3
Kroemer, G.4
Linkermann, A.5
-
15
-
-
33748522053
-
Clearance of apoptotic and necrotic cells and its immunological consequences
-
Krysko DV, D'Herde K, Vandenabeele P, (2006) Clearance of apoptotic and necrotic cells and its immunological consequences. Apoptosis 11: 1709–1726. 16951923
-
(2006)
Apoptosis
, vol.11
, pp. 1709-1726
-
-
Krysko, D.V.1
D'Herde, K.2
Vandenabeele, P.3
-
16
-
-
0031027442
-
Neuropathology of degenerative cell death in Caenorhabditis elegans
-
Hall DH, Gu G, Garcia-Anoveros J, Gong L, Chalfie M, Driscoll M, (1997) Neuropathology of degenerative cell death in Caenorhabditis elegans. J Neurosci 17: 1033–1045. 8994058
-
(1997)
J Neurosci
, vol.17
, pp. 1033-1045
-
-
Hall, D.H.1
Gu, G.2
Garcia-Anoveros, J.3
Gong, L.4
Chalfie, M.5
Driscoll, M.6
-
17
-
-
76749086068
-
Molecular mechanisms of late apoptotic/necrotic cell clearance
-
Poon IK, Hulett MD, Parish CR, (2010) Molecular mechanisms of late apoptotic/necrotic cell clearance. Cell Death Differ 17: 381–397. doi: 10.1038/cdd.2009.195 20019744
-
(2010)
Cell Death Differ
, vol.17
, pp. 381-397
-
-
Poon, I.K.1
Hulett, M.D.2
Parish, C.R.3
-
18
-
-
0031731989
-
Genetics of programmed cell death in C. elegans: past, present and future
-
Metzstein MM, Stanfield GM, Horvitz HR, (1998) Genetics of programmed cell death in C. elegans: past, present and future. Trends Genet 14: 410–416. 9820030
-
(1998)
Trends Genet
, vol.14
, pp. 410-416
-
-
Metzstein, M.M.1
Stanfield, G.M.2
Horvitz, H.R.3
-
19
-
-
0026089774
-
The mec-4 gene is a member of a family of Caenorhabditis elegans genes that can mutate to induce neuronal degeneration
-
Driscoll M, Chalfie M, (1991) The mec-4 gene is a member of a family of Caenorhabditis elegans genes that can mutate to induce neuronal degeneration. Nature 349: 588–593. 1672038
-
(1991)
Nature
, vol.349
, pp. 588-593
-
-
Driscoll, M.1
Chalfie, M.2
-
20
-
-
0028944389
-
A mutated acetylcholine receptor subunit causes neuronal degeneration in C. elegans
-
Treinin M, Chalfie M, (1995) A mutated acetylcholine receptor subunit causes neuronal degeneration in C. elegans. Neuron 14: 871–877. 7718248
-
(1995)
Neuron
, vol.14
, pp. 871-877
-
-
Treinin, M.1
Chalfie, M.2
-
21
-
-
0019546209
-
Developmental genetics of the mechanosensory neurons of Caenorhabditis elegans
-
Chalfie M, Sulston J, (1981) Developmental genetics of the mechanosensory neurons of Caenorhabditis elegans. Dev Biol 82: 358–370. 7227647
-
(1981)
Dev Biol
, vol.82
, pp. 358-370
-
-
Chalfie, M.1
Sulston, J.2
-
22
-
-
13744255990
-
The neurotoxic MEC-4(d) DEG/ENaC sodium channel conducts calcium: implications for necrosis initiation
-
Bianchi L, Gerstbrein B, Frokjaer-Jensen C, Royal DC, Mukherjee G, Royal MA, et al. (2004) The neurotoxic MEC-4(d) DEG/ENaC sodium channel conducts calcium: implications for necrosis initiation. Nat Neurosci 7: 1337–1344. 15543143
-
(2004)
Nat Neurosci
, vol.7
, pp. 1337-1344
-
-
Bianchi, L.1
Gerstbrein, B.2
Frokjaer-Jensen, C.3
Royal, D.C.4
Mukherjee, G.5
Royal, M.A.6
-
23
-
-
0022497852
-
Genetic control of programmed cell death in the nematode C. elegans
-
Ellis HM, Horvitz HR, (1986) Genetic control of programmed cell death in the nematode C. elegans. Cell 44: 817–829. 3955651
-
(1986)
Cell
, vol.44
, pp. 817-829
-
-
Ellis, H.M.1
Horvitz, H.R.2
-
24
-
-
0035960074
-
Necrotic cell death in C. elegans requires the function of calreticulin and regulators of Ca(2+) release from the endoplasmic reticulum
-
Xu K, Tavernarakis N, Driscoll M, (2001) Necrotic cell death in C. elegans requires the function of calreticulin and regulators of Ca(2+) release from the endoplasmic reticulum. Neuron 31: 957–971. 11580896
-
(2001)
Neuron
, vol.31
, pp. 957-971
-
-
Xu, K.1
Tavernarakis, N.2
Driscoll, M.3
-
25
-
-
0033671313
-
A common set of engulfment genes mediates removal of both apoptotic and necrotic cell corpses in C. elegans
-
Chung S, Gumienny TL, Hengartner MO, Driscoll M, (2000) A common set of engulfment genes mediates removal of both apoptotic and necrotic cell corpses in C. elegans. Nat Cell Biol 2: 931–937. 11146658
-
(2000)
Nat Cell Biol
, vol.2
, pp. 931-937
-
-
Chung, S.1
Gumienny, T.L.2
Hengartner, M.O.3
Driscoll, M.4
-
26
-
-
33748552622
-
Macrophages use different internalization mechanisms to clear apoptotic and necrotic cells
-
Krysko DV, Denecker G, Festjens N, Gabriels S, Parthoens E, D'Herde K, et al. (2006) Macrophages use different internalization mechanisms to clear apoptotic and necrotic cells. Cell Death Differ 13: 2011–2022. 16628234
-
(2006)
Cell Death Differ
, vol.13
, pp. 2011-2022
-
-
Krysko, D.V.1
Denecker, G.2
Festjens, N.3
Gabriels, S.4
Parthoens, E.5
D'Herde, K.6
-
27
-
-
77956255766
-
Find-me and eat-me signals in apoptotic cell clearance: progress and conundrums
-
Ravichandran KS, (2010) Find-me and eat-me signals in apoptotic cell clearance: progress and conundrums. J Exp Med 207: 1807–1817. doi: 10.1084/jem.20101157 20805564
-
(2010)
J Exp Med
, vol.207
, pp. 1807-1817
-
-
Ravichandran, K.S.1
-
28
-
-
0035846903
-
CED-1 is a transmembrane receptor that mediates cell corpse engulfment in C. elegans
-
Zhou Z, Hartwieg E, Horvitz HR, (2001b) CED-1 is a transmembrane receptor that mediates cell corpse engulfment in C. elegans. Cell 104: 43–56.
-
(2001)
Cell
, vol.104
, pp. 43-56
-
-
Zhou, Z.1
Hartwieg, E.2
Horvitz, H.R.3
-
29
-
-
84877273148
-
Phosphatidylserine recognition and induction of apoptotic cell clearance by Drosophila engulfment receptor Draper
-
Tung TT, Nagaosa K, Fujita Y, Kita A, Mori H, Okada R, et al. (2013) Phosphatidylserine recognition and induction of apoptotic cell clearance by Drosophila engulfment receptor Draper. J Biochem 153: 483–491. doi: 10.1093/jb/mvt014 23420848
-
(2013)
J Biochem
, vol.153
, pp. 483-491
-
-
Tung, T.T.1
Nagaosa, K.2
Fujita, Y.3
Kita, A.4
Mori, H.5
Okada, R.6
-
30
-
-
36248944555
-
Identification of Tim4 as a phosphatidylserine receptor
-
Miyanishi M, Tada K, Koike M, Uchiyama Y, Kitamura T, Nagata S, (2007) Identification of Tim4 as a phosphatidylserine receptor. Nature 450:435–439. 17960135
-
(2007)
Nature
, vol.450
, pp. 435-439
-
-
Miyanishi, M.1
Tada, K.2
Koike, M.3
Uchiyama, Y.4
Kitamura, T.5
Nagata, S.6
-
31
-
-
36248987290
-
BAI1 is an engulfment receptor for apoptotic cells upstream of the ELMO/Dock180/Rac module
-
Park D, Tosello-Trampont AC, Elliott MR, Lu M, Haney LB, Ma Z, et al. (2007) BAI1 is an engulfment receptor for apoptotic cells upstream of the ELMO/Dock180/Rac module. Nature 450:430–434. 17960134
-
(2007)
Nature
, vol.450
, pp. 430-434
-
-
Park, D.1
Tosello-Trampont, A.C.2
Elliott, M.R.3
Lu, M.4
Haney, L.B.5
Ma, Z.6
-
32
-
-
0037938686
-
Aminophospholipid asymmetry: A matter of life and death
-
Balasubramanian K, Schroit AJ, (2003) Aminophospholipid asymmetry: A matter of life and death. Annu Rev Physiol 65: 701–734. 12471163
-
(2003)
Annu Rev Physiol
, vol.65
, pp. 701-734
-
-
Balasubramanian, K.1
Schroit, A.J.2
-
33
-
-
22144463880
-
Metabolism and functions of phosphatidylserine
-
Vance JE, Steenbergen R, (2005) Metabolism and functions of phosphatidylserine. Prog Lipid Res 44: 207–234. 15979148
-
(2005)
Prog Lipid Res
, vol.44
, pp. 207-234
-
-
Vance, J.E.1
Steenbergen, R.2
-
34
-
-
84901849205
-
Caspase-mediated cleavage of phospholipid flippase for apoptotic phosphatidylserine exposure
-
Segawa K, Kurata S, Yanagihashi Y, Brummelkamp TR, Matsuda F, Nagata S, (2014) Caspase-mediated cleavage of phospholipid flippase for apoptotic phosphatidylserine exposure. Science 344: 1164–1168. doi: 10.1126/science.1252809 24904167
-
(2014)
Science
, vol.344
, pp. 1164-1168
-
-
Segawa, K.1
Kurata, S.2
Yanagihashi, Y.3
Brummelkamp, T.R.4
Matsuda, F.5
Nagata, S.6
-
35
-
-
0034911765
-
Unraveling the mysteries of phospholipid scrambling
-
Sims PJ, Wiedmer T, (2001) Unraveling the mysteries of phospholipid scrambling. Thromb Haemost 86: 266–275. 11487015
-
(2001)
Thromb Haemost
, vol.86
, pp. 266-275
-
-
Sims, P.J.1
Wiedmer, T.2
-
36
-
-
78650172970
-
Calcium-dependent phospholipid scrambling by TMEM16F
-
Suzuki J, Umeda M, Sims PJ, Nagata S, (2010) Calcium-dependent phospholipid scrambling by TMEM16F. Nature 468: 834–838. doi: 10.1038/nature09583 21107324
-
(2010)
Nature
, vol.468
, pp. 834-838
-
-
Suzuki, J.1
Umeda, M.2
Sims, P.J.3
Nagata, S.4
-
37
-
-
84877709762
-
Calcium-dependent phospholipid scramblase activity of TMEM16 protein family members
-
Suzuki J, Fujii T, Imao T, Ishihara K, Kuba H, Nagata S, (2013) Calcium-dependent phospholipid scramblase activity of TMEM16 protein family members. J Biol Chem 288: 13305–13316. doi: 10.1074/jbc.M113.457937 23532839
-
(2013)
J Biol Chem
, vol.288
, pp. 13305-13316
-
-
Suzuki, J.1
Fujii, T.2
Imao, T.3
Ishihara, K.4
Kuba, H.5
Nagata, S.6
-
38
-
-
84880758440
-
Xk-related protein 8 and CED-8 promote phosphatidylserine exposure in apoptotic cells
-
Suzuki J, Denning DP, Imanishi E, Horvitz HR, Nagata S, (2013) Xk-related protein 8 and CED-8 promote phosphatidylserine exposure in apoptotic cells. Science 341: 403–406. doi: 10.1126/science.1236758 23845944
-
(2013)
Science
, vol.341
, pp. 403-406
-
-
Suzuki, J.1
Denning, D.P.2
Imanishi, E.3
Horvitz, H.R.4
Nagata, S.5
-
39
-
-
84889237506
-
Caspase-mediated activation of Caenorhabditis elegans CED-8 promotes apoptosis and phosphatidylserine externalization
-
Chen YZ, Mapes J, Lee ES, Skeen-Gaar RR, Xue D, (2013) Caspase-mediated activation of Caenorhabditis elegans CED-8 promotes apoptosis and phosphatidylserine externalization. Nat Commun 4: 2726. doi: 10.1038/ncomms3726 24225442
-
(2013)
Nat Commun
, vol.4
, pp. 2726
-
-
Chen, Y.Z.1
Mapes, J.2
Lee, E.S.3
Skeen-Gaar, R.R.4
Xue, D.5
-
40
-
-
0033776534
-
ABC1 promotes engulfment of apoptotic cells and transbilayer redistribution of phosphatidylserine
-
Hamon Y, Broccardo C, Chambenoit O, Luciani MF, Toti F, Chaslin S, et al. (2000) ABC1 promotes engulfment of apoptotic cells and transbilayer redistribution of phosphatidylserine. Nat Cell Biol 2: 399–406. 10878804
-
(2000)
Nat Cell Biol
, vol.2
, pp. 399-406
-
-
Hamon, Y.1
Broccardo, C.2
Chambenoit, O.3
Luciani, M.F.4
Toti, F.5
Chaslin, S.6
-
41
-
-
22544437011
-
Headgroup-specific exposure of phospholipids in ABCA1-expressing cells
-
Alder-Baerens N, Muller P, Pohl A, Korte T, Hamon Y, Chimini G, et al. (2005) Headgroup-specific exposure of phospholipids in ABCA1-expressing cells. J Biol Chem 280: 26321–26329. 15905177
-
(2005)
J Biol Chem
, vol.280
, pp. 26321-26329
-
-
Alder-Baerens, N.1
Muller, P.2
Pohl, A.3
Korte, T.4
Hamon, Y.5
Chimini, G.6
-
42
-
-
40349106310
-
Transbilayer phospholipid movements in ABCA1-deficient cells
-
Williamson P, Halleck MS, Malowitz J, Ng S, Fan X, Krahling S, et al. (2007) Transbilayer phospholipid movements in ABCA1-deficient cells. PLoS One 2: e729. 17710129
-
(2007)
PLoS One
, vol.2
, pp. 729
-
-
Williamson, P.1
Halleck, M.S.2
Malowitz, J.3
Ng, S.4
Fan, X.5
Krahling, S.6
-
43
-
-
34547743049
-
Two alternative mechanisms that regulate the presentation of apoptotic cell engulfment signal in Caenorhabditis elegans
-
Venegas V, Zhou Z, (2007) Two alternative mechanisms that regulate the presentation of apoptotic cell engulfment signal in Caenorhabditis elegans. Mol Biol Cell 18: 3180–3192. 17567952
-
(2007)
Mol Biol Cell
, vol.18
, pp. 3180-3192
-
-
Venegas, V.1
Zhou, Z.2
-
44
-
-
29944438881
-
Necrotic death as a cell fate
-
Zong WX, Thompson CB, (2006) Necrotic death as a cell fate. Genes Dev 20: 1–15. 16391229
-
(2006)
Genes Dev
, vol.20
, pp. 1-15
-
-
Zong, W.X.1
Thompson, C.B.2
-
45
-
-
0020557883
-
Mutations affecting programmed cell deaths in the nematode Caenorhabditis elegans
-
Hedgecock EM, Sulston JE, Thomson JN, (1983) Mutations affecting programmed cell deaths in the nematode Caenorhabditis elegans. Science 220: 1277–1279. 6857247
-
(1983)
Science
, vol.220
, pp. 1277-1279
-
-
Hedgecock, E.M.1
Sulston, J.E.2
Thomson, J.N.3
-
46
-
-
0017618537
-
Post-embryonic cell lineages of the nematode, Caenorhabditis elegans
-
Sulston JE, Horvitz HR, (1977) Post-embryonic cell lineages of the nematode, Caenorhabditis elegans. Dev Biol 56: 110–156. 838129
-
(1977)
Dev Biol
, vol.56
, pp. 110-156
-
-
Sulston, J.E.1
Horvitz, H.R.2
-
47
-
-
0020858899
-
The embryonic cell lineage of the nematode Caenorhabditis elegans
-
Sulston JE, Schierenberg E, White JG, Thomson JN, (1983) The embryonic cell lineage of the nematode Caenorhabditis elegans. Dev Biol 100: 64–119. 6684600
-
(1983)
Dev Biol
, vol.100
, pp. 64-119
-
-
Sulston, J.E.1
Schierenberg, E.2
White, J.G.3
Thomson, J.N.4
-
48
-
-
84926006014
-
Monitoring the clearance of apoptotic and necrotic cells in the nematode Caenorhabditis elegans
-
Li Z, Lu N, He X, Zhou Z, (2013) Monitoring the clearance of apoptotic and necrotic cells in the nematode Caenorhabditis elegans. Methods Mol Biol 1004: 183–202. doi: 10.1007/978-1-62703-383-1_14 23733578
-
(2013)
Methods Mol Biol
, vol.1004
, pp. 183-202
-
-
Li, Z.1
Lu, N.2
He, X.3
Zhou, Z.4
-
49
-
-
0026766321
-
The mec-7 beta-tubulin gene of Caenorhabditis elegans is expressed primarily in the touch receptor neurons
-
Hamelin M, Scott IM, Way JC, Culotti JG, (1992) The mec-7 beta-tubulin gene of Caenorhabditis elegans is expressed primarily in the touch receptor neurons. EMBO J 11: 2885–2893. 1639062
-
(1992)
EMBO J
, vol.11
, pp. 2885-2893
-
-
Hamelin, M.1
Scott, I.M.2
Way, J.C.3
Culotti, J.G.4
-
50
-
-
0031042083
-
Structure, function, and expression of SEL-1, a negative regulator of LIN-12 and GLP-1 in C. elegans
-
Grant B, Greenwald I, (1997) Structure, function, and expression of SEL-1, a negative regulator of LIN-12 and GLP-1 in C. elegans. Development 124: 637–644. 9043078
-
(1997)
Development
, vol.124
, pp. 637-644
-
-
Grant, B.1
Greenwald, I.2
-
51
-
-
0027451263
-
Sequence requirements for myosin gene expression and regulation in Caenorhabditis elegans
-
Okkema PG, Harrison SW, Plunger V, Aryana A, Fire A, (1993) Sequence requirements for myosin gene expression and regulation in Caenorhabditis elegans. Genetics 135: 385–404. 8244003
-
(1993)
Genetics
, vol.135
, pp. 385-404
-
-
Okkema, P.G.1
Harrison, S.W.2
Plunger, V.3
Aryana, A.4
Fire, A.5
-
52
-
-
0028157551
-
A transmembrane domain of the putative channel subunit MEC-4 influences mechanotransduction and neurodegeneration in C. elegans
-
Hong K, Driscoll M, (1994) A transmembrane domain of the putative channel subunit MEC-4 influences mechanotransduction and neurodegeneration in C. elegans. Nature 367: 470–473. 8107806
-
(1994)
Nature
, vol.367
, pp. 470-473
-
-
Hong, K.1
Driscoll, M.2
-
53
-
-
0032416725
-
Two functionally dependent acetylcholine subunits are encoded in a single Caenorhabditis elegans operon
-
Treinin M, Gillo B, Liebman L, Chalfie M, (1998) Two functionally dependent acetylcholine subunits are encoded in a single Caenorhabditis elegans operon. Proc Natl Acad Sci U S A 95: 15492–15495. 9860996
-
(1998)
Proc Natl Acad Sci U S A
, vol.95
, pp. 15492-15495
-
-
Treinin, M.1
Gillo, B.2
Liebman, L.3
Chalfie, M.4
-
54
-
-
0032511145
-
The C. elegans cell corpse engulfment gene ced-7 encodes a protein similar to ABC transporters
-
Wu Y, Horvitz HR, (1998a) The C. elegans cell corpse engulfment gene ced-7 encodes a protein similar to ABC transporters. Cell 93: 951–960. 9635425
-
(1998)
Cell
, vol.93
, pp. 951-960
-
-
Wu, Y.1
Horvitz, H.R.2
-
55
-
-
84880263822
-
Phagocytic receptor signaling regulates clathrin and epsin-mediated cytoskeletal remodeling during apoptotic cell engulfment in C. elegans
-
Shen Q, He B, Lu N, Conradt B, Grant BD, Zhou Z, (2013) Phagocytic receptor signaling regulates clathrin and epsin-mediated cytoskeletal remodeling during apoptotic cell engulfment in C. elegans. Development 140: 3230–3243. doi: 10.1242/dev.093732 23861060
-
(2013)
Development
, vol.140
, pp. 3230-3243
-
-
Shen, Q.1
He, B.2
Lu, N.3
Conradt, B.4
Grant, B.D.5
Zhou, Z.6
-
56
-
-
33748202591
-
N-ethylmaleimide sensitive factor is required for fusion of the C. elegans uterine anchor cell
-
Choi J, Richards KL, Cinar HN, Newman AP, (2006) N-ethylmaleimide sensitive factor is required for fusion of the C. elegans uterine anchor cell. Dev Biol 297: 87–102. 16769048
-
(2006)
Dev Biol
, vol.297
, pp. 87-102
-
-
Choi, J.1
Richards, K.L.2
Cinar, H.N.3
Newman, A.P.4
-
57
-
-
84889574704
-
Phylogenetic, expression, and functional analyses of anoctamin homologs in Caenorhabditis elegans
-
Wang Y, Alam T, Hill-Harfe K, Lopez AJ, Leung CK, Iribarne D, et al. (2013) Phylogenetic, expression, and functional analyses of anoctamin homologs in Caenorhabditis elegans. Am J Physiol Regul Integr Comp Physiol 305: R1376–1389. doi: 10.1152/ajpregu.00303.2012 24049119
-
(2013)
Am J Physiol Regul Integr Comp Physiol
, vol.305
, pp. 1376-1389
-
-
Wang, Y.1
Alam, T.2
Hill-Harfe, K.3
Lopez, A.J.4
Leung, C.K.5
Iribarne, D.6
-
58
-
-
0033680282
-
The ced-8 gene controls the timing of programmed cell deaths in C. elegans
-
Stanfield GM, Horvitz HR, (2000) The ced-8 gene controls the timing of programmed cell deaths in C. elegans. Mol Cell 5: 423–433. 10882128
-
(2000)
Mol Cell
, vol.5
, pp. 423-433
-
-
Stanfield, G.M.1
Horvitz, H.R.2
-
59
-
-
0034910509
-
Death receptor-induced apoptotic and necrotic cell death: differential role of caspases and mitochondria
-
Denecker G, Vercammen D, Steemans M, Vanden Berghe T, Brouckaert G, Van Loo G, et al. (2001) Death receptor-induced apoptotic and necrotic cell death: differential role of caspases and mitochondria. Cell Death Differ 8: 829–840. 11526436
-
(2001)
Cell Death Differ
, vol.8
, pp. 829-840
-
-
Denecker, G.1
Vercammen, D.2
Steemans, M.3
Vanden Berghe, T.4
Brouckaert, G.5
Van Loo, G.6
-
60
-
-
0345015494
-
Mechanisms of internalization of apoptotic and necrotic L929 cells by a macrophage cell line studied by electron microscopy
-
Krysko DV, Brouckaert G, Kalai M, Vandenabeele P, D'Herde K, (2003) Mechanisms of internalization of apoptotic and necrotic L929 cells by a macrophage cell line studied by electron microscopy. J Morphol 258: 336–345. 14584035
-
(2003)
J Morphol
, vol.258
, pp. 336-345
-
-
Krysko, D.V.1
Brouckaert, G.2
Kalai, M.3
Vandenabeele, P.4
D'Herde, K.5
-
61
-
-
77954396042
-
Clearance of apoptotic cells: implications in health and disease
-
Elliott MR, Ravichandran KS, (2010) Clearance of apoptotic cells: implications in health and disease. J Cell Biol 189: 1059–1070. doi: 10.1083/jcb.201004096 20584912
-
(2010)
J Cell Biol
, vol.189
, pp. 1059-1070
-
-
Elliott, M.R.1
Ravichandran, K.S.2
-
62
-
-
0022457718
-
Reversible and irreversible neuronal damage caused by excitatory amino acid analogues in rat cerebellar slices
-
Hajos F, Garthwaite G, Garthwaite J, (1986) Reversible and irreversible neuronal damage caused by excitatory amino acid analogues in rat cerebellar slices. Neuroscience 18: 417–436. 3526173
-
(1986)
Neuroscience
, vol.18
, pp. 417-436
-
-
Hajos, F.1
Garthwaite, G.2
Garthwaite, J.3
-
63
-
-
0002227543
-
Cell surface exposure of phosphatidylserine during apoptosis is phylogenetically conserved
-
van den Eijnde SM, Boshart L, Baehrecke EH, De Zeeuw CI, Reutelingsperger CPM, Vermeij-Keers C, (1998) Cell surface exposure of phosphatidylserine during apoptosis is phylogenetically conserved. Apoptosis 3: 9–16. 14646513
-
(1998)
Apoptosis
, vol.3
, pp. 9-16
-
-
van den Eijnde, S.M.1
Boshart, L.2
Baehrecke, E.H.3
De Zeeuw, C.I.4
Reutelingsperger, C.P.M.5
Vermeij-Keers, C.6
-
64
-
-
34247862351
-
C. elegans mitochondrial factor WAH-1 promotes phosphatidylserine externalization in apoptotic cells through phospholipid scramblase SCRM-1
-
Wang X, Wang J, Gengyo-Ando K, Gu L, Sun CL, Yang C, et al. (2007) C. elegans mitochondrial factor WAH-1 promotes phosphatidylserine externalization in apoptotic cells through phospholipid scramblase SCRM-1. Nat Cell Biol 9: 541–549. 17401362
-
(2007)
Nat Cell Biol
, vol.9
, pp. 541-549
-
-
Wang, X.1
Wang, J.2
Gengyo-Ando, K.3
Gu, L.4
Sun, C.L.5
Yang, C.6
-
65
-
-
34249718401
-
Aminophospholipid translocase TAT-1 promotes phosphatidylserine exposure during C. elegans apoptosis
-
Zullig S, Neukomm LJ, Jovanovic M, Charette SJ, Lyssenko NN, Halleck MS, et al. (2007) Aminophospholipid translocase TAT-1 promotes phosphatidylserine exposure during C. elegans apoptosis. Curr Biol 17: 994–999. 17540571
-
(2007)
Curr Biol
, vol.17
, pp. 994-999
-
-
Zullig, S.1
Neukomm, L.J.2
Jovanovic, M.3
Charette, S.J.4
Lyssenko, N.N.5
Halleck, M.S.6
-
66
-
-
0037046580
-
Identification of a factor that links apoptotic cells to phagocytes
-
Hanayama R, Tanaka M, Miwa K, Shinohara A, Iwamatsu A, Nagata S, (2002) Identification of a factor that links apoptotic cells to phagocytes. Nature 417: 182–187. 12000961
-
(2002)
Nature
, vol.417
, pp. 182-187
-
-
Hanayama, R.1
Tanaka, M.2
Miwa, K.3
Shinohara, A.4
Iwamatsu, A.5
Nagata, S.6
-
67
-
-
77954242242
-
Caenorhabditis elegans transthyretin-like protein TTR-52 mediates recognition of apoptotic cells by the CED-1 phagocyte receptor
-
Wang X, Li W, Zhao D, Liu B, Shi Y, Chen B, et al. (2010) Caenorhabditis elegans transthyretin-like protein TTR-52 mediates recognition of apoptotic cells by the CED-1 phagocyte receptor. Nat Cell Biol 12: 655–664. doi: 10.1038/ncb2068 20526330
-
(2010)
Nat Cell Biol
, vol.12
, pp. 655-664
-
-
Wang, X.1
Li, W.2
Zhao, D.3
Liu, B.4
Shi, Y.5
Chen, B.6
-
68
-
-
35748952194
-
P.S. to PS (phosphatidylserine)—pertinent proteins in apoptotic cell clearance
-
Schlegel RA, Williamson P, (2007) P.S. to PS (phosphatidylserine)—pertinent proteins in apoptotic cell clearance. Sci STKE 2007: pe57. 17940275
-
(2007)
Sci STKE
, vol.2007
, pp. 57
-
-
Schlegel, R.A.1
Williamson, P.2
-
69
-
-
34547435750
-
UNC-1 regulates gap junctions important to locomotion in C. elegans
-
Chen B, Liu Q, Ge Q, Xie J, Wang ZW, (2007) UNC-1 regulates gap junctions important to locomotion in C. elegans. Curr Biol 17: 1334–1339. 17658257
-
(2007)
Curr Biol
, vol.17
, pp. 1334-1339
-
-
Chen, B.1
Liu, Q.2
Ge, Q.3
Xie, J.4
Wang, Z.W.5
-
70
-
-
77957061888
-
Interaction of JMJD6 with single-stranded RNA
-
Hong X, Zang J, White J, Wang C, Pan CH, Zhao R, et al. (2010) Interaction of JMJD6 with single-stranded RNA. Proc Natl Acad Sci U S A 107: 14568–14572. doi: 10.1073/pnas.1008832107 20679243
-
(2010)
Proc Natl Acad Sci U S A
, vol.107
, pp. 14568-14572
-
-
Hong, X.1
Zang, J.2
White, J.3
Wang, C.4
Pan, C.H.5
Zhao, R.6
-
71
-
-
67650072604
-
Jmjd6 catalyses lysyl-hydroxylation of U2AF65, a protein associated with RNA splicing
-
Webby CJ, Wolf A, Gromak N, Dreger M, Kramer H, Kessler B, et al. (2009) Jmjd6 catalyses lysyl-hydroxylation of U2AF65, a protein associated with RNA splicing. Science 325: 90–93. doi: 10.1126/science.1175865 19574390
-
(2009)
Science
, vol.325
, pp. 90-93
-
-
Webby, C.J.1
Wolf, A.2
Gromak, N.3
Dreger, M.4
Kramer, H.5
Kessler, B.6
-
72
-
-
84934931901
-
A lysine-rich motif in the phosphatidylserine receptor PSR-1 mediates recognition and removal of apoptotic cells
-
Yang H, Chen YZ, Zhang Y, Wang X, Zhao X, Godfroy JI, 3rdet al. (2015) A lysine-rich motif in the phosphatidylserine receptor PSR-1 mediates recognition and removal of apoptotic cells. Nat Commun 6: 5717. doi: 10.1038/ncomms6717 25564762
-
(2015)
Nat Commun
, vol.6
, pp. 5717
-
-
Yang, H.1
Chen, Y.Z.2
Zhang, Y.3
Wang, X.4
Zhao, X.5
Godfroy, J.I.6
-
73
-
-
0345374587
-
Cell corpse engulfment mediated by C. elegans phosphatidylserine receptor through CED-5 and CED-12
-
Wang X, Wu YC, Fadok VA, Lee MC, Gengyo-Ando K, Cheng LC, et al. (2003) Cell corpse engulfment mediated by C. elegans phosphatidylserine receptor through CED-5 and CED-12. Science 302: 1563–1566. 14645848
-
(2003)
Science
, vol.302
, pp. 1563-1566
-
-
Wang, X.1
Wu, Y.C.2
Fadok, V.A.3
Lee, M.C.4
Gengyo-Ando, K.5
Cheng, L.C.6
-
74
-
-
0036906543
-
Distinct sites on ABCA1 control distinct steps required for cellular release of phospholipids
-
Rigot V, Hamon Y, Chambenoit O, Alibert M, Duverger N, Chimini G, (2002) Distinct sites on ABCA1 control distinct steps required for cellular release of phospholipids. J Lipid Res 43: 2077–2086. 12454269
-
(2002)
J Lipid Res
, vol.43
, pp. 2077-2086
-
-
Rigot, V.1
Hamon, Y.2
Chambenoit, O.3
Alibert, M.4
Duverger, N.5
Chimini, G.6
-
75
-
-
84864286906
-
CED-1, CED-7, and TTR-52 regulate surface phosphatidylserine expression on apoptotic and phagocytic cells
-
Mapes J, Chen YZ, Kim A, Mitani S, Kang BH, Xue D, (2012) CED-1, CED-7, and TTR-52 regulate surface phosphatidylserine expression on apoptotic and phagocytic cells. Curr Biol 22: 1267–1275. doi: 10.1016/j.cub.2012.05.052 22727702
-
(2012)
Curr Biol
, vol.22
, pp. 1267-1275
-
-
Mapes, J.1
Chen, Y.Z.2
Kim, A.3
Mitani, S.4
Kang, B.H.5
Xue, D.6
-
76
-
-
84900406113
-
Structure and function of TMEM16 proteins (anoctamins)
-
Pedemonte N, Galietta LJ, (2014) Structure and function of TMEM16 proteins (anoctamins). Physiol Rev 94: 419–459. doi: 10.1152/physrev.00039.2011 24692353
-
(2014)
Physiol Rev
, vol.94
, pp. 419-459
-
-
Pedemonte, N.1
Galietta, L.J.2
-
77
-
-
84871860558
-
TMEM16F forms a Ca2+-activated cation channel required for lipid scrambling in platelets during blood coagulation
-
Yang H, Kim A, David T, Palmer D, Jin T, Tien J, et al. (2012) TMEM16F forms a Ca2+-activated cation channel required for lipid scrambling in platelets during blood coagulation. Cell 151: 111–122. doi: 10.1016/j.cell.2012.07.036 23021219
-
(2012)
Cell
, vol.151
, pp. 111-122
-
-
Yang, H.1
Kim, A.2
David, T.3
Palmer, D.4
Jin, T.5
Tien, J.6
-
78
-
-
56149105398
-
Calcium ions in neuronal degeneration
-
Wojda U, Salinska E, Kuznicki J, (2008) Calcium ions in neuronal degeneration. IUBMB Life 60: 575–590. doi: 10.1002/iub.91 18478527
-
(2008)
IUBMB Life
, vol.60
, pp. 575-590
-
-
Wojda, U.1
Salinska, E.2
Kuznicki, J.3
-
79
-
-
0035693680
-
Molecular mechanisms of glutamate receptor-mediated excitotoxic neuronal cell death
-
Sattler R, Tymianski M, (2001) Molecular mechanisms of glutamate receptor-mediated excitotoxic neuronal cell death. Mol Neurobiol 24: 107–129. 11831548
-
(2001)
Mol Neurobiol
, vol.24
, pp. 107-129
-
-
Sattler, R.1
Tymianski, M.2
-
80
-
-
0034194089
-
Calcium signaling in the ER: its role in neuronal plasticity and neurodegenerative disorders
-
Mattson MP, LaFerla FM, Chan SL, Leissring MA, Shepel PN, Geiger JD, (2000) Calcium signaling in the ER: its role in neuronal plasticity and neurodegenerative disorders. Trends Neurosci 23: 222–229. 10782128
-
(2000)
Trends Neurosci
, vol.23
, pp. 222-229
-
-
Mattson, M.P.1
LaFerla, F.M.2
Chan, S.L.3
Leissring, M.A.4
Shepel, P.N.5
Geiger, J.D.6
-
81
-
-
61349164916
-
Caenorhabditis elegans glutamate transporter deletion induces AMPA-receptor/adenylyl cyclase 9-dependent excitotoxicity
-
Mano I, Driscoll M, (2009) Caenorhabditis elegans glutamate transporter deletion induces AMPA-receptor/adenylyl cyclase 9-dependent excitotoxicity. J Neurochem 108: 1373–1384. doi: 10.1111/j.1471-4159.2008.05804.x 19054279
-
(2009)
J Neurochem
, vol.108
, pp. 1373-1384
-
-
Mano, I.1
Driscoll, M.2
-
82
-
-
34249092704
-
Calcium and neurodegeneration
-
Mattson MP, (2007) Calcium and neurodegeneration. Aging Cell 6: 337–350. 17328689
-
(2007)
Aging Cell
, vol.6
, pp. 337-350
-
-
Mattson, M.P.1
-
83
-
-
0016063911
-
The genetics of Caenorhabditis elegans
-
Brenner S, (1974) The genetics of Caenorhabditis elegans. Genetics 77: 71–94. 4366476
-
(1974)
Genetics
, vol.77
, pp. 71-94
-
-
Brenner, S.1
-
84
-
-
0004282618
-
-
Riddle DL, Blumenthal T, Meyer BJ, Priess JR, , editors (1997) C. elegans II. Plainview, NY: Cold Spring harbor Laboratory Press.
-
(1997)
C. elegans II
-
-
Riddle, D.L.1
Blumenthal, T.2
Meyer, B.J.3
Priess, J.R.4
-
85
-
-
55049117864
-
Single-copy insertion of transgenes in Caenorhabditis elegans
-
Frokjaer-Jensen C, Davis MW, Hopkins CE, Newman BJ, Thummel JM, Olesen SP, et al. (2008) Single-copy insertion of transgenes in Caenorhabditis elegans. Nat Genet 40: 1375–1383. doi: 10.1038/ng.248 18953339
-
(2008)
Nat Genet
, vol.40
, pp. 1375-1383
-
-
Frokjaer-Jensen, C.1
Davis, M.W.2
Hopkins, C.E.3
Newman, B.J.4
Thummel, J.M.5
Olesen, S.P.6
-
87
-
-
0030965832
-
The Caenorhabditis elegans gene unc-76 and its human homologs define a new gene family involved in axonal outgrowth and fasciculation
-
Bloom L, Horvitz HR, (1997) The Caenorhabditis elegans gene unc-76 and its human homologs define a new gene family involved in axonal outgrowth and fasciculation. Proc Natl Acad Sci U S A 94: 3414–3419. 9096408
-
(1997)
Proc Natl Acad Sci U S A
, vol.94
, pp. 3414-3419
-
-
Bloom, L.1
Horvitz, H.R.2
-
88
-
-
0037062424
-
A monomeric red fluorescent protein
-
Campbell RE, Tour O, Palmer AE, Steinbach PA, Baird GS, Zacharias DA, et al. (2002) A monomeric red fluorescent protein. Proc Natl Acad Sci U S A 99: 7877–7882. 12060735
-
(2002)
Proc Natl Acad Sci U S A
, vol.99
, pp. 7877-7882
-
-
Campbell, R.E.1
Tour, O.2
Palmer, A.E.3
Steinbach, P.A.4
Baird, G.S.5
Zacharias, D.A.6
-
89
-
-
11144267737
-
Improved monomeric red, orange and yellow fluorescent proteins derived from Discosoma sp. red fluorescent protein
-
Shaner NC, Campbell RE, Steinbach PA, Giepmans BN, Palmer AE, Tsien RY, (2004) Improved monomeric red, orange and yellow fluorescent proteins derived from Discosoma sp. red fluorescent protein. Nat Biotechnol 22: 1567–1572. 15558047
-
(2004)
Nat Biotechnol
, vol.22
, pp. 1567-1572
-
-
Shaner, N.C.1
Campbell, R.E.2
Steinbach, P.A.3
Giepmans, B.N.4
Palmer, A.E.5
Tsien, R.Y.6
-
90
-
-
0034811429
-
Genetic analysis of endocytosis in Caenorhabditis elegans: coelomocyte uptake defective mutants
-
Fares H, Greenwald I, (2001) Genetic analysis of endocytosis in Caenorhabditis elegans: coelomocyte uptake defective mutants. Genetics 159: 133–145. 11560892
-
(2001)
Genetics
, vol.159
, pp. 133-145
-
-
Fares, H.1
Greenwald, I.2
-
91
-
-
33646867879
-
C. elegans Dynamin mediates the signaling of phagocytic receptor CED-1 for the engulfment and degradation of apoptotic cells
-
Yu X, Odera S, Chuang CH, Lu N, Zhou Z, (2006) C. elegans Dynamin mediates the signaling of phagocytic receptor CED-1 for the engulfment and degradation of apoptotic cells. Dev Cell 10: 743–757. 16740477
-
(2006)
Dev Cell
, vol.10
, pp. 743-757
-
-
Yu, X.1
Odera, S.2
Chuang, C.H.3
Lu, N.4
Zhou, Z.5
-
92
-
-
72449212215
-
Pretaporter, a Drosophila protein serving as a ligand for Draper in the phagocytosis of apoptotic cells
-
Kuraishi T, Nakagawa Y, Nagaosa K, Hashimoto Y, Ishimoto T, Moki T, et al. (2009) Pretaporter, a Drosophila protein serving as a ligand for Draper in the phagocytosis of apoptotic cells. EMBO J 28: 3868–3878. doi: 10.1038/emboj.2009.343 19927123
-
(2009)
EMBO J
, vol.28
, pp. 3868-3878
-
-
Kuraishi, T.1
Nakagawa, Y.2
Nagaosa, K.3
Hashimoto, Y.4
Ishimoto, T.5
Moki, T.6
-
93
-
-
0037178865
-
Phosphatidylserine binding of class B scavenger receptor type I, a phagocytosis receptor of testicular sertoli cells
-
Kawasaki Y, Nakagawa A, Nagaosa K, Shiratsuchi A, Nakanishi Y, (2002) Phosphatidylserine binding of class B scavenger receptor type I, a phagocytosis receptor of testicular sertoli cells. J Biol Chem 277: 27559–27566. 12016218
-
(2002)
J Biol Chem
, vol.277
, pp. 27559-27566
-
-
Kawasaki, Y.1
Nakagawa, A.2
Nagaosa, K.3
Shiratsuchi, A.4
Nakanishi, Y.5
-
94
-
-
0031029384
-
Recognition of phosphatidylserine on the surface of apoptotic spermatogenic cells and subsequent phagocytosis by Sertoli cells of the rat
-
Shiratsuchi A, Umeda M, Ohba Y, Nakanishi Y, (1997) Recognition of phosphatidylserine on the surface of apoptotic spermatogenic cells and subsequent phagocytosis by Sertoli cells of the rat. J Biol Chem 272: 2354–2358. 8999945
-
(1997)
J Biol Chem
, vol.272
, pp. 2354-2358
-
-
Shiratsuchi, A.1
Umeda, M.2
Ohba, Y.3
Nakanishi, Y.4
-
95
-
-
0027787058
-
The relationship between [Ca2+]i and cell death using an in vivo model: a study using the ced-1 mutant strain of C. elegans
-
Jain PT, Chang SH, Gutry PP, Berezesky IK, Trump BF, (1993) The relationship between [Ca2+]i and cell death using an in vivo model: a study using the ced-1 mutant strain of C. elegans. Toxicol Pathol 21: 572–583. 8052804
-
(1993)
Toxicol Pathol
, vol.21
, pp. 572-583
-
-
Jain, P.T.1
Chang, S.H.2
Gutry, P.P.3
Berezesky, I.K.4
Trump, B.F.5
|