-
4
-
-
79956193249
-
Regulating the transition from centriole to basal body
-
Kobayashi T, Dynlacht BD. 2011. Regulating the transition from centriole to basal body. J. Cell Biol. 193:435-444.
-
(2011)
J. Cell Biol
, vol.193
, pp. 435-444
-
-
Kobayashi, T.1
Dynlacht, B.D.2
-
5
-
-
34447514268
-
Structure and duplication ofthe centro- some
-
Azimzadeh J, Bornens M. 2007. Structure and duplication ofthe centro- some. J. Cell Sci. 120:2139-2142.
-
(2007)
J. Cell Sci
, vol.120
, pp. 2139-2142
-
-
Azimzadeh, J.1
Bornens, M.2
-
6
-
-
54549086722
-
Organelle positioning and cell polarity
-
Bornens M. 2008. Organelle positioning and cell polarity. Nat. Rev. Mol. Cell Biol. 9:874-886.
-
(2008)
Nat. Rev. Mol. Cell Biol
, vol.9
, pp. 874-886
-
-
Bornens, M.1
-
7
-
-
0031297340
-
Organisation and functional regulation of the centrosome in animal cells
-
Paoletti A, Bornens M. 1997. Organisation and functional regulation of the centrosome in animal cells. Prog. Cell Cycle Res. 3:285-299.
-
(1997)
Prog. Cell Cycle Res
, vol.3
, pp. 285-299
-
-
Paoletti, A.1
Bornens, M.2
-
8
-
-
0033665412
-
Centrioles and kinetosomes: Form, function, and evolution
-
Chapman MJ, Dolan MF, Margulis L. 2000. Centrioles and kinetosomes: form, function, and evolution. Q. Rev. Biol. 75:409-429.
-
(2000)
Q. Rev. Biol
, vol.75
, pp. 409-429
-
-
Chapman, M.J.1
Dolan, M.F.2
Margulis, L.3
-
9
-
-
0016765048
-
A functional flagella with a6 + 0 pattern
-
Schrevel J, Besse C. 1975.A functional flagella with a6 + 0 pattern. J. Cell Biol. 66:492-507.
-
(1975)
J. Cell Biol
, vol.66
, pp. 492-507
-
-
Schrevel, J.1
Besse, C.2
-
12
-
-
0035814898
-
Kinetics and regulation of de novo centriole assembly. Implications for the mechanism of centriole duplication
-
Marshall WF, Vucica Y, Rosenbaum JL. 2001. Kinetics and regulation of de novo centriole assembly. Implications for the mechanism of centriole duplication. Curr. Biol. 11:308-317.
-
(2001)
Curr. Biol
, vol.11
, pp. 308-317
-
-
Marshall, W.F.1
Vucica, Y.2
Rosenbaum, J.L.3
-
13
-
-
33745255998
-
Flies without centrioles
-
Basto R, Lau J, Vinogradova T, Gardiol A, Woods CG, Khodjakov A, Raff JW. 2006. Flies without centrioles. Cell 125:1375-1386.
-
(2006)
Cell
, vol.125
, pp. 1375-1386
-
-
Basto, R.1
Lau, J.2
Vinogradova, T.3
Gardiol, A.4
Woods, C.G.5
Khodjakov, A.6
Raff, J.W.7
-
14
-
-
0035936898
-
1 into S phase
-
Hinchcliffe EH, Miller FJ, Cham M, Khodjakov A, Sluder G. 2001. Requirement of a centrosomal activity for cell cycle progression through G1 into S phase. Science 291:1547-1550.
-
(2001)
Science
, vol.291
, pp. 1547-1550
-
-
Hinchcliffe, E.H.1
Miller, F.J.2
Cham, M.3
Khodjakov, A.4
Sluder, G.5
-
15
-
-
0035936920
-
Centrosome- dependent exit of cytokinesis in animal cells
-
Piel M, Nordberg J, Euteneuer U, Bornens M. 2001. Centrosome- dependent exit of cytokinesis in animal cells. Science 291:1550-1553.
-
(2001)
Science
, vol.291
, pp. 1550-1553
-
-
Piel, M.1
Nordberg, J.2
Euteneuer, U.3
Bornens, M.4
-
16
-
-
0029972238
-
The centrosomal big bang: From a unique central organelle towards aconstellation of MTOCs
-
Mignot J-P. 1996. The centrosomal big bang: from a unique central organelle towards aconstellation of MTOCs. Biol. Cell 86:81-91.
-
(1996)
Biol. Cell
, vol.86
, pp. 81-91
-
-
Mignot, J.-P.1
-
17
-
-
84879378294
-
-
Parasitic diseases, fifth edition. Apple Trees Productions, LLC, New York, NY
-
Despommier D, RG, Hotez, Knirsch C. 2005. Parasitic diseases, fifth edition. Apple Trees Productions, LLC, New York, NY
-
(2005)
-
-
Despommier, D.1
Hotez, R.G.2
Knirsch, C.3
-
18
-
-
0032523906
-
Molecular architecture of the trypanosome cyto- skeleton
-
Kohl L, Gull K. 1998. Molecular architecture of the trypanosome cyto- skeleton. Mol. Biochem. Parasitol. 93:1-9.
-
(1998)
Mol. Biochem. Parasitol
, vol.93
, pp. 1-9
-
-
Kohl, L.1
Gull, K.2
-
19
-
-
4143126756
-
More than one way to build a flagellum: Comparative genomics of parasitic protozoa
-
Briggs LJ, Davidge JA, Wickstead B, Ginger ML, Gull K. 2004. More than one way to build a flagellum: comparative genomics of parasitic protozoa. Curr. Biol. 14:R611-R612.
-
(2004)
Curr. Biol
, vol.14
-
-
Briggs, L.J.1
Davidge, J.A.2
Wickstead, B.3
Ginger, M.L.4
Gull, K.5
-
20
-
-
84869487613
-
-
In Nigg EA, Centro- somes in development and disease. Wiley-VCH, Weinheim, Germany
-
Gull K, Briggs L, Vaughan S. 2004. Basal bodies and microtubule organization in pathogenic protozoa, p 401-423. In Nigg EA (ed), Centro- somes in development and disease. Wiley-VCH, Weinheim, Germany.
-
(2004)
Basal Bodies and Microtubule Organization In Pathogenic Protozoa
, pp. 401-423
-
-
Gull, K.1
Briggs, L.2
Vaughan, S.3
-
21
-
-
0032724638
-
The cytoskeleton of trypanosomatid parasites
-
Gull K. 1999. The cytoskeleton of trypanosomatid parasites. Annu. Rev. Microbiol. 53:629-655.
-
(1999)
Annu. Rev. Microbiol
, vol.53
, pp. 629-655
-
-
Gull, K.1
-
23
-
-
0031049074
-
Gamma-tubulin in trypanosomes: Molecular characterisation and localisation to multiple and diverse microtubule organising centres
-
Scott V, Sherwin T, Gull K. 1997. Gamma-tubulin in trypanosomes: molecular characterisation and localisation to multiple and diverse microtubule organising centres. J. Cell Sci. 110(Pt2):157-168.
-
(1997)
J. Cell Sci
, vol.110
, Issue.Pt. 2
, pp. 157-168
-
-
Scott, V.1
Sherwin, T.2
Gull, K.3
-
26
-
-
0343162619
-
Time-lapse video microscopy of gliding motility in Toxoplasma gondii reveals a novel, bi- phasic mechanism of cell locomotion
-
Hâkansson S, Morisaki H, Heuser J, Sibley LD. 1999. Time-lapse video microscopy of gliding motility in Toxoplasma gondii reveals a novel, bi- phasic mechanism of cell locomotion. Mol. Biol. Cell 10:3539-3547.
-
(1999)
Mol. Biol. Cell
, vol.10
, pp. 3539-3547
-
-
Hâkansson, S.1
Morisaki, H.2
Heuser, J.3
Sibley, L.D.4
-
27
-
-
0036500723
-
Disruption of microtubules uncouples budding and nuclear division in Toxoplasma gondii
-
Morrissette NS, Sibley LD. 2002. Disruption of microtubules uncouples budding and nuclear division in Toxoplasma gondii. J. Cell Sci. 115:1017-1025.
-
(2002)
J. Cell Sci
, vol.115
, pp. 1017-1025
-
-
Morrissette, N.S.1
Sibley, L.D.2
-
28
-
-
0023264484
-
Cytoskeleton of Toxoplasma gondii
-
Nichols BA, Chiappino ML. 1987. Cytoskeleton of Toxoplasma gondii. J. Protozool. 34:217-226.
-
(1987)
J. Protozool
, vol.34
, pp. 217-226
-
-
Nichols, B.A.1
Chiappino, M.L.2
-
29
-
-
0034012487
-
Microtubules, but not actin filaments, drive daughter cell budding and cell division in Toxoplasma gondii
-
Shaw MK, Compton HL, Roos DS, Tilney LG. 2000. Microtubules, but not actin filaments, drive daughter cell budding and cell division in Toxoplasma gondii. J. Cell Sci. 113:1241-1254.
-
(2000)
J. Cell Sci
, vol.113
, pp. 1241-1254
-
-
Shaw, M.K.1
Compton, H.L.2
Roos, D.S.3
Tilney, L.G.4
-
30
-
-
0021296723
-
The polar ring of coccidian sporozoites: A unique microtubule-organizing centre
-
Russell DG, Burns RG. 1984. The polar ring of coccidian sporozoites: a unique microtubule-organizing centre. J. Cell Sci. 65:193-207.
-
(1984)
J. Cell Sci
, vol.65
, pp. 193-207
-
-
Russell, D.G.1
Burns, R.G.2
-
31
-
-
78149337539
-
RNG1 is a late marker of the apical polar ring in Toxoplasma gondii
-
Tran JQ, de Leon JC, Li C, Huynh MH, Beatty W, Morrissette NS. 2010. RNG1 is a late marker of the apical polar ring in Toxoplasma gondii. Cy- toskeleton (Hoboken) 67:586-598.
-
(2010)
Cy- Toskeleton (Hoboken)
, vol.67
, pp. 586-598
-
-
Tran, J.Q.1
de Leon, J.C.2
Li, C.3
Huynh, M.H.4
Beatty, W.5
Morrissette, N.S.6
-
32
-
-
0019760555
-
Fine structure of nuclear division and mi- crogametogony of Eimeria nieschulzi Dieben
-
1924
-
Sibert GJ, Speer CA. 1981. Fine structure of nuclear division and mi- crogametogony of Eimeria nieschulzi Dieben, 1924. Z. Parasitenkd. 66: 179-189.
-
(1981)
Z. Parasitenkd
, vol.66
, pp. 179-189
-
-
Sibert, G.J.1
Speer, C.A.2
-
33
-
-
0018501852
-
Ultrastructural study of schizogony of Eimeria bovis in cell cultures
-
Dubremetz JF, Elsner YY. 1979. Ultrastructural study of schizogony of Eimeria bovis in cell cultures. J. Protozool. 26:367-376.
-
(1979)
J. Protozool
, vol.26
, pp. 367-376
-
-
Dubremetz, J.F.1
Elsner, Y.Y.2
-
34
-
-
33745480357
-
A MORN-repeat protein is a dynamic component of the Toxoplasma gondii cell division apparatus
-
Gubbels MJ, Vaishnava S, Boot N, Dubremetz JF, Striepen B. 2006. A MORN-repeat protein is a dynamic component of the Toxoplasma gondii cell division apparatus. J. Cell Sci. 119:2236-2245.
-
(2006)
J. Cell Sci
, vol.119
, pp. 2236-2245
-
-
Gubbels, M.J.1
Vaishnava, S.2
Boot, N.3
Dubremetz, J.F.4
Striepen, B.5
-
35
-
-
79952759696
-
Toxoplasma gondii sequesters centromeres to a specific nuclear region throughout the cell cycle
-
Brooks CF, Francia ME, Gissot M, Croken MM, Kim K, Striepen B. 2011. Toxoplasma gondii sequesters centromeres to a specific nuclear region throughout the cell cycle. Proc. Natl. Acad. Sci. USA. 108:3767-3772.
-
(2011)
Proc. Natl. Acad. Sci. USA
, vol.108
, pp. 3767-3772
-
-
Brooks, C.F.1
Francia, M.E.2
Gissot, M.3
Croken, M.M.4
Kim, K.5
Striepen, B.6
-
37
-
-
0030095229
-
Ca(2+)-dependence of conoid extrusion in Toxoplasma gondii tachyzoites
-
Mondragon R, Frixione E. 1996. Ca(2+)-dependence of conoid extrusion in Toxoplasma gondii tachyzoites. J. Eukaryot. Microbiol. 43:120-127.
-
(1996)
J. Eukaryot. Microbiol
, vol.43
, pp. 120-127
-
-
Mondragon, R.1
Frixione, E.2
-
38
-
-
0035782887
-
Morphological changes during conoid extrusion in Toxoplasma gondii tachyzoites treated with calcium ionophore
-
Monteiro VG, de Melo EJ, Attias M, de Souza W. 2001. Morphological changes during conoid extrusion in Toxoplasma gondii tachyzoites treated with calcium ionophore. J. Struct. Biol. 136:181-189.
-
(2001)
J. Struct. Biol
, vol.136
, pp. 181-189
-
-
Monteiro, V.G.1
de Melo, E.J.2
Attias, M.3
de Souza, W.4
-
39
-
-
0031018273
-
Subpellicular microtubules associate with an intramembranous particle lattice in the protozoan parasite Toxoplasmagondii
-
Morrissette NS, Murray JM, Roos DS. 1997. Subpellicular microtubules associate with an intramembranous particle lattice in the protozoan parasite Toxoplasmagondii. J. Cell Sci. 110(Pt 1):35-42.
-
(1997)
J. Cell Sci
, vol.110
, Issue.Pt. 1
, pp. 35-42
-
-
Morrissette, N.S.1
Murray, J.M.2
Roos, D.S.3
-
40
-
-
0013918607
-
Electronmicroscope studyofthe proliferative form of Besnoitia jellisoni
-
Sheffield HG. 1966. Electronmicroscope studyofthe proliferative form of Besnoitia jellisoni. J. Parasitol. 52:583-594.
-
(1966)
J. Parasitol
, vol.52
, pp. 583-594
-
-
Sheffield, H.G.1
-
41
-
-
65249185618
-
The two SAS-6 homologs in Tetrahymena thermophila have distinct functions in basal body assembly
-
Culver BP, Meehl JB, Giddings TH, Jr, Winey M. 2009. The two SAS-6 homologs in Tetrahymena thermophila have distinct functions in basal body assembly. Mol. Biol. Cell 20:1865-1877.
-
(2009)
Mol. Biol. Cell
, vol.20
, pp. 1865-1877
-
-
Culver, B.P.1
Meehl, J.B.2
Giddings, T.H.3
Winey, M.4
-
42
-
-
13944278891
-
SAS-6 defines a protein family required for centrosome duplication in C. elegans and in human cells
-
Leidel S, Delattre M, Cerutti L, Baumer K, Gonczy P. 2005. SAS-6 defines a protein family required for centrosome duplication in C. elegans and in human cells. Nat. Cell Biol. 7:115-125.
-
(2005)
Nat. Cell Biol
, vol.7
, pp. 115-125
-
-
Leidel, S.1
Delattre, M.2
Cerutti, L.3
Baumer, K.4
Gonczy, P.5
-
43
-
-
33845250249
-
Centriole assemblyin Caenorhabditis elegans
-
Pelletier L, O'Toole E, Schwager A, Hyman AA, Muller-Reichert T. 2006. Centriole assemblyin Caenorhabditis elegans. Nature 444:619-623.
-
(2006)
Nature
, vol.444
, pp. 619-623
-
-
Pelletier, L.1
O'Toole, E.2
Schwager, A.3
Hyman, A.A.4
Muller-Reichert, T.5
-
44
-
-
10644253531
-
Centriole assembly requires both centriolar and pericentriolar material proteins
-
Dammermann A, Muller-Reichert T, Pelletier L, Habermann B, Desai A, Oegema K. 2004. Centriole assembly requires both centriolar and pericentriolar material proteins. Dev. Cell 7:815-829.
-
(2004)
Dev. Cell
, vol.7
, pp. 815-829
-
-
Dammermann, A.1
Muller-Reichert, T.2
Pelletier, L.3
Habermann, B.4
Desai, A.5
Oegema, K.6
-
45
-
-
48449085139
-
SAS-6 is a cartwheel protein that establishes the 9-fold symmetry of the centriole
-
Nakazawa Y, Hiraki M, Kamiya R, Hirono M. 2007. SAS-6 is a cartwheel protein that establishes the 9-fold symmetry of the centriole. Curr. Biol. 17:2169-2174.
-
(2007)
Curr. Biol
, vol.17
, pp. 2169-2174
-
-
Nakazawa, Y.1
Hiraki, M.2
Kamiya, R.3
Hirono, M.4
-
46
-
-
78649954376
-
DSas-6 and Ana2 coassemble into tubules to promote centriole duplication and engagement
-
Stevens NR, Roque H, Raff JW. 2010. DSas-6 and Ana2 coassemble into tubules to promote centriole duplication and engagement. Dev. Cell 19: 913-919.
-
(2010)
Dev. Cell
, vol.19
, pp. 913-919
-
-
Stevens, N.R.1
Roque, H.2
Raff, J.W.3
-
47
-
-
67849116838
-
A proximal centriole-like structure is present in Drosophila spermatids and can serve as a model to study centriole duplication
-
Blachon S, Cai X, Roberts KA, Yang K, Polyanovsky A, Church A, Avidor-Reiss T. 2009. A proximal centriole-like structure is present in Drosophila spermatids and can serve as a model to study centriole duplication. Genetics 182:133-144.
-
(2009)
Genetics
, vol.182
, pp. 133-144
-
-
Blachon, S.1
Cai, X.2
Roberts, K.A.3
Yang, K.4
Polyanovsky, A.5
Church, A.6
Avidor-Reiss, T.7
-
48
-
-
38349159830
-
From centriole biogenesis to cellular function: Cen- trioles are essential for cell division at critical developmental stages
-
Rodrigues-Martins A, Riparbelli M, Callaini G, Glover DM, Bettencourt-Dias M. 2008. From centriole biogenesis to cellular function: cen- trioles are essential for cell division at critical developmental stages. Cell Cycle 7:11-16.
-
(2008)
Cell Cycle
, vol.7
, pp. 11-16
-
-
Rodrigues-Martins, A.1
Riparbelli, M.2
Callaini, G.3
Glover, D.M.4
Bettencourt-Dias, M.5
-
49
-
-
34548262205
-
DSAS-6 organizes a tube-like centriole precursor, and its absence suggests modularity in centriole assembly
-
Rodrigues-Martins A, Bettencourt-Dias M, Riparbelli M, Ferreira C, Ferreira I, Callaini G, Glover DM. 2007. DSAS-6 organizes a tube-like centriole precursor, and its absence suggests modularity in centriole assembly. Curr. Biol. 17:1465-1472.
-
(2007)
Curr. Biol
, vol.17
, pp. 1465-1472
-
-
Rodrigues-Martins, A.1
Bettencourt-Dias, M.2
Riparbelli, M.3
Ferreira, C.4
Ferreira, I.5
Callaini, G.6
Glover, D.M.7
-
50
-
-
79651473154
-
Structural basis of the 9-fold symmetry of centrioles
-
Kitagawa D, Vakonakis I, Olieric N, Hilbert M, Keller D, Olieric V, Bortfeld M, Erat MC, Fluckiger I, Gonczy P, Steinmetz MO. 2011. Structural basis of the 9-fold symmetry of centrioles. Cell 144:364-375.
-
(2011)
Cell
, vol.144
, pp. 364-375
-
-
Kitagawa, D.1
Vakonakis, I.2
Olieric, N.3
Hilbert, M.4
Keller, D.5
Olieric, V.6
Bortfeld, M.7
Erat, M.C.8
Fluckiger, I.9
Gonczy, P.10
Steinmetz, M.O.11
-
51
-
-
79952280152
-
Structures of SAS-6 suggest its organization in centrioles
-
van Breugel M, Hirono M, Andreeva A, Yanagisawa HA, Yamaguchi S, Nakazawa Y, Morgner N, Petrovich M, Ebong IO, Robinson CV, Johnson CM, Veprintsev D, Zuber B. 2011. Structures of SAS-6 suggest its organization in centrioles. Science 331:1196-1199.
-
(2011)
Science
, vol.331
, pp. 1196-1199
-
-
van Breugel, M.1
Hirono, M.2
Andreeva, A.3
Yanagisawa, H.A.4
Yamaguchi, S.5
Nakazawa, Y.6
Morgner, N.7
Petrovich, M.8
Ebong, I.O.9
Robinson, C.V.10
Johnson, C.M.11
Veprintsev, D.12
Zuber, B.13
-
52
-
-
64749102772
-
Tagging of endogenous genes in a Toxoplasma gondii strain lacking Ku80
-
Huynh MH, Carruthers VB. 2009. Tagging of endogenous genes in a Toxoplasma gondii strain lacking Ku80. Eukaryot. Cell 8:530-539.
-
(2009)
Eukaryot. Cell
, vol.8
, pp. 530-539
-
-
Huynh, M.H.1
Carruthers, V.B.2
-
53
-
-
0028709114
-
Molecular tools for genetic dissection of the protozoan parasite Toxoplasma gondii
-
Roos DS, Donald RG, Morrissette NS, Moulton AL. 1994. Molecular tools for genetic dissection of the protozoan parasite Toxoplasma gondii. Methods Cell Biol. 45:27-63.
-
(1994)
Methods Cell Biol
, vol.45
, pp. 27-63
-
-
Roos, D.S.1
Donald, R.G.2
Morrissette, N.S.3
Moulton, A.L.4
-
54
-
-
0018601361
-
Cultivation and in vitro cloning or procy- clic culture forms ofTrypanosoma brucei in a semi-defined medium
-
Brun R, Schonenberger. 1979. Cultivation and in vitro cloning or procy- clic culture forms ofTrypanosoma brucei in a semi-defined medium. Short communication. Acta Trop. 36:289-292.
-
(1979)
Short communication. Acta Trop
, vol.36
, pp. 289-292
-
-
Brun, R.1
Schonenberger2
-
55
-
-
0033525524
-
A tightly regulated inducible expression system for conditional gene knock-outs and dominantnegative genetics in Trypanosoma brucei
-
Wirtz E, Leal S, Ochatt C, Cross GA. 1999. A tightly regulated inducible expression system for conditional gene knock-outs and dominantnegative genetics in Trypanosoma brucei. Mol. Biochem. Parasitol. 99:89-101.
-
(1999)
Mol. Biochem. Parasitol
, vol.99
, pp. 89-101
-
-
Wirtz, E.1
Leal, S.2
Ochatt, C.3
Cross, G.A.4
-
56
-
-
34249992854
-
Functional genomics in Trypanosoma brucei: A collection of vectors for the expression of tagged proteins from endogenous and ectopic gene loci
-
Kelly S, Reed J, Kramer S, Ellis L, Webb H, Sunter J, Salje J, Marinsek N, Gull K, Wickstead B, Carrington M. 2007. Functional genomics in Trypanosoma brucei: a collection of vectors for the expression of tagged proteins from endogenous and ectopic gene loci. Mol. Biochem. Parasitol. 154:103-109.
-
(2007)
Mol. Biochem. Parasitol
, vol.154
, pp. 103-109
-
-
Kelly, S.1
Reed, J.2
Kramer, S.3
Ellis, L.4
Webb, H.5
Sunter, J.6
Salje, J.7
Marinsek, N.8
Gull, K.9
Wickstead, B.10
Carrington, M.11
-
57
-
-
28044433684
-
Golgi and centrosome cycles in Toxoplasma gondii
-
Hartmann J, Hu K, He CY, Pelletier L, Roos DS, Warren G. 2006. Golgi and centrosome cycles in Toxoplasma gondii. Mol. Biochem. Parasitol. 145:125-127.
-
(2006)
Mol. Biochem. Parasitol
, vol.145
, pp. 125-127
-
-
Hartmann, J.1
Hu, K.2
He, C.Y.3
Pelletier, L.4
Roos, D.S.5
Warren, G.6
-
58
-
-
33846461190
-
Toxoplasma gondii targets a protein phosphatase 2C to the nuclei of infected host cells
-
Gilbert LA, Ravindran S, Turetzky JM, Boothroyd JC, Bradley PJ. 2007. Toxoplasma gondii targets a protein phosphatase 2C to the nuclei of infected host cells. Eukaryot. Cell 6:73-83.
-
(2007)
Eukaryot. Cell
, vol.6
, pp. 73-83
-
-
Gilbert, L.A.1
Ravindran, S.2
Turetzky, J.M.3
Boothroyd, J.C.4
Bradley, P.J.5
-
59
-
-
58149337610
-
Secondary mutations correct fitness defects in Toxoplasma gondii with dinitroa- niline resistance mutations
-
Ma C, Tran J, Li C, Ganesan L, Wood D, Morrissette N. 2008. Secondary mutations correct fitness defects in Toxoplasma gondii with dinitroa- niline resistance mutations. Genetics 180:845-856.
-
(2008)
Genetics
, vol.180
, pp. 845-856
-
-
Ma, C.1
Tran, J.2
Li, C.3
Ganesan, L.4
Wood, D.5
Morrissette, N.6
-
60
-
-
77951743346
-
Reconstructing the evolutionary history of the centriole from protein components
-
Hodges ME, Scheumann N, Wickstead B, Langdale JA, Gull K. 2010. Reconstructing the evolutionary history of the centriole from protein components. J. Cell Sci. 123:1407-1413.
-
(2010)
J. Cell Sci
, vol.123
, pp. 1407-1413
-
-
Hodges, M.E.1
Scheumann, N.2
Wickstead, B.3
Langdale, J.A.4
Gull, K.5
-
61
-
-
13744252890
-
MAFFT version 5: Improvement in accuracy of multiple sequence alignment
-
Katoh K, Kuma K, Toh H, Miyata T. 2005. MAFFT version 5: improvement in accuracy of multiple sequence alignment. Nucleic Acids Res. 33: 511-518.
-
(2005)
Nucleic Acids Res
, vol.33
, pp. 511-518
-
-
Katoh, K.1
Kuma, K.2
Toh, H.3
Miyata, T.4
-
62
-
-
0041386108
-
MrBayes 3: Bayesian phylogenetic inference under mixed models
-
Ronquist F, Huelsenbeck JP. 2003. MrBayes 3: Bayesian phylogenetic inference under mixed models. Bioinformatics 19:1572-1574.
-
(2003)
Bioinformatics
, vol.19
, pp. 1572-1574
-
-
Ronquist, F.1
Huelsenbeck, J.P.2
-
63
-
-
0242578620
-
A simple, fast, and accurate algorithm to estimate large phylogenies by maximum likelihood
-
Guindon S, Gascuel O. 2003. A simple, fast, and accurate algorithm to estimate large phylogenies by maximum likelihood. Syst. Biol. 52:696-704.
-
(2003)
Syst. Biol
, vol.52
, pp. 696-704
-
-
Guindon, S.1
Gascuel, O.2
-
64
-
-
70350726441
-
TgICMAP1 is a novel microtubule binding protein in Toxoplasma gondii
-
doi:10.1371/journal.pone.0007406
-
Heaslip AT, Ems-McClung SC, Hu K. 2009. TgICMAP1 is a novel microtubule binding protein in Toxoplasma gondii. PLoS One 4:e7406.doi:10.1371/journal.pone.0007406
-
(2009)
PLoS One
, vol.4
-
-
Heaslip, A.T.1
Ems-McClung, S.C.2
Hu, K.3
-
65
-
-
0037025197
-
Rooting the eukaryote tree by using a derived gene fusion
-
Stechmann A, Cavalier-Smith T. 2002. Rooting the eukaryote tree by using a derived gene fusion. Science 297:89-91.
-
(2002)
Science
, vol.297
, pp. 89-91
-
-
Stechmann, A.1
Cavalier-Smith, T.2
-
66
-
-
77955426068
-
The flagellum in malarial parasites
-
Sinden R, Talman A, Marques S, Wass M, Sternberg M. 2010. The flagellum in malarial parasites. Curr. Opin. Microbiol. 13:491-500.
-
(2010)
Curr. Opin. Microbiol
, vol.13
, pp. 491-500
-
-
Sinden, R.1
Talman, A.2
Marques, S.3
Wass, M.4
Sternberg, M.5
-
67
-
-
0019600605
-
Ultrastructure of developing gamonts ofEimeria contorta Haberkorn, 1971 (Protozoa, Sporozoa) with emphasis on the host-parasite interface
-
Mueller BE, Desser SS, Haberkorn A. 1981. Ultrastructure of developing gamonts ofEimeria contorta Haberkorn, 1971 (Protozoa, Sporozoa) with emphasis on the host-parasite interface. J. Parasitol. 67:487-495.
-
(1981)
J. Parasitol
, vol.67
, pp. 487-495
-
-
Mueller, B.E.1
Desser, S.S.2
Haberkorn, A.3
-
69
-
-
0015265988
-
Electron microscope studies of microgametogenesis in coccidia and related groups
-
Scholtyseck E, Mehlhorn H, Hammond DM. 1972. Electron microscope studies of microgametogenesis in coccidia and related groups. Z Para- sitenkd. 38:95-131.
-
(1972)
Z Para- Sitenkd
, vol.38
, pp. 95-131
-
-
Scholtyseck, E.1
Mehlhorn, H.2
Hammond, D.M.3
-
70
-
-
22844451398
-
The Plasmodium falciparum sexual development transcriptome: A microarray analysis using ontology- based pattern identification
-
Young JA, Fivelman QL, Blair PL, de la Vega P, Le Roch KG, Zhou Y, Carucci DJ, Baker DA, Winzeler EA. 2005. The Plasmodium falciparum sexual development transcriptome: a microarray analysis using ontology- based pattern identification. Mol. Biochem. Parasitol. 143:67-79.
-
(2005)
Mol. Biochem. Parasitol
, vol.143
, pp. 67-79
-
-
Young, J.A.1
Fivelman, Q.L.2
Blair, P.L.3
de la Vega, P.4
Le Roch, K.G.5
Zhou, Y.6
Carucci, D.J.7
Baker, D.A.8
Winzeler, E.A.9
-
71
-
-
4644345259
-
The glideosome: A molecular machine powering motility and host-cell invasion by Apicomplexa
-
Keeley A, Soldati D. 2004. The glideosome: a molecular machine powering motility and host-cell invasion by Apicomplexa. Trends Cell Biol. 14:528-532.
-
(2004)
Trends Cell Biol
, vol.14
, pp. 528-532
-
-
Keeley, A.1
Soldati, D.2
-
72
-
-
1842482437
-
Intracellular parasite invasion strategies
-
Sibley LD. 2004. Intracellular parasite invasion strategies. Science 304: 248-253.
-
(2004)
Science
, vol.304
, pp. 248-253
-
-
Sibley, L.D.1
-
73
-
-
33645306878
-
A conserved molecular motor drives cell invasion and gliding motility across malaria life cycle stages and other apicomplexan parasites
-
Baum J, Richard D, Healer J, Rug M, Krnajski Z, Gilberger TW, Green JL, Holder AA, Cowman AF. 2006. A conserved molecular motor drives cell invasion and gliding motility across malaria life cycle stages and other apicomplexan parasites. J. Biol. Chem. 281:5197-5208.
-
(2006)
J. Biol. Chem
, vol.281
, pp. 5197-5208
-
-
Baum, J.1
Richard, D.2
Healer, J.3
Rug, M.4
Krnajski, Z.5
Gilberger, T.W.6
Green, J.L.7
Holder, A.A.8
Cowman, A.F.9
-
75
-
-
0037128925
-
A novel polymer of tubulin forms the conoid of Toxoplasma gondii
-
Hu K, Roos DS, Murray JM. 2002. A novel polymer of tubulin forms the conoid of Toxoplasma gondii. J. Cell Biol. 156:1039-1050.
-
(2002)
J. Cell Biol
, vol.156
, pp. 1039-1050
-
-
Hu, K.1
Roos, D.S.2
Murray, J.M.3
-
76
-
-
4143116847
-
Protalveolate phylogeny and system- atics and the origins of Sporozoa and dinoflagellates
-
phylum Myzozoa nom. nov
-
Cavalier-Smith T, Chao EE. 2004. Protalveolate phylogeny and system- atics and the origins of Sporozoa and dinoflagellates (phylum Myzozoa nom. nov.). Eur. J. Protistol. 40:185-212.
-
(2004)
Eur. J. Protistol
, vol.40
, pp. 185-212
-
-
Cavalier-Smith, T.1
Chao, E.E.2
-
78
-
-
0141453062
-
Molecular phylogeny and surface morphology of Colpodella edax (Alveolata): Insights into the phagotrophic ancestry of apicomplexans
-
Leander BS, Kuvardina ON, Aleshin VV, Mylnikov AP, Keeling PJ. 2003. Molecular phylogeny and surface morphology of Colpodella edax (Alveolata): insights into the phagotrophic ancestry of apicomplexans. J. Eukaryot. Microbiol. 50:334-340.
-
(2003)
J. Eukaryot. Microbiol
, vol.50
, pp. 334-340
-
-
Leander, B.S.1
Kuvardina, O.N.2
Aleshin, V.V.3
Mylnikov, A.P.4
Keeling, P.J.5
-
79
-
-
0036187251
-
Cryptophagus subtilis: A new parasite of cryptophytes affiliated with the Perkinsozoa lineage
-
Brugerolle G. 2002. Cryptophagus subtilis: a new parasite of cryptophytes affiliated with the Perkinsozoa lineage. Eur. J. Protistol. 37:379-390.
-
(2002)
Eur. J. Protistol
, vol.37
, pp. 379-390
-
-
Brugerolle, G.1
-
80
-
-
0036679299
-
Colpodella vorax: Ultrastructure, predation, life-cycle, mitosis, and phylogenetic relationships
-
Brugerolle G. 2002. Colpodella vorax: ultrastructure, predation, life-cycle, mitosis, and phylogenetic relationships. Eur. J. Protistol. 38:113-125.
-
(2002)
Eur. J. Protistol
, vol.38
, pp. 113-125
-
-
Brugerolle, G.1
-
81
-
-
0000048925
-
Ultrastructure and identification of the predatory flagellate Colpodella pugnax Cienkowski (Apicomplexa) with a description of Colpodella turpis n. sp. and a review of the genus
-
Simpson A, Patterson D. 1996. Ultrastructure and identification of the predatory flagellate Colpodella pugnax Cienkowski (Apicomplexa) with a description of Colpodella turpis n. sp. and a review of the genus. Syst. Parasitol. 33:187-198.
-
(1996)
Syst. Parasitol
, vol.33
, pp. 187-198
-
-
Simpson, A.1
Patterson, D.2
-
82
-
-
0028928790
-
Centrin, centrosomes, and mitotic spindle poles
-
Salisbury JL. 1995. Centrin, centrosomes, and mitotic spindle poles. Curr. Opin. Cell Biol. 7:39-45.
-
(1995)
Curr. Opin. Cell Biol
, vol.7
, pp. 39-45
-
-
Salisbury, J.L.1
-
83
-
-
0032498897
-
A novel 95-kD protein is located in a linker between cytoplasmic microtubules and basal bodies in a green flagellate and forms striated filaments in vitro
-
Geimer S, Clees J, Melkonian M, Lechtreck KF. 1998. A novel 95-kD protein is located in a linker between cytoplasmic microtubules and basal bodies in a green flagellate and forms striated filaments in vitro. J. Cell Biol. 140:1149-1158.
-
(1998)
J. Cell Biol
, vol.140
, pp. 1149-1158
-
-
Geimer, S.1
Clees, J.2
Melkonian, M.3
Lechtreck, K.F.4
-
84
-
-
0029863530
-
The cruciated microtubule-associated fibers of the green alga Du- naliella bioculata consist of a 31 kDa SF-assemblin
-
Lechtreck KF, Frins S, Bilski J, Teltenkotter A, Weber K, Melkonian M. 1996. The cruciated microtubule-associated fibers of the green alga Du- naliella bioculata consist of a 31 kDa SF-assemblin. J. Cell Sci. 109(Pt 4):827-835.
-
(1996)
J. Cell Sci
, vol.109
, Issue.Pt. 4
, pp. 827-835
-
-
Lechtreck, K.F.1
Frins, S.2
Bilski, J.3
Teltenkotter, A.4
Weber, K.5
Melkonian, M.6
-
85
-
-
0025997938
-
Striated microtubule-associated fibers: Identification of assemblin, a novel 34-kD protein that forms paracrystals of 2-nm filaments in vitro
-
Lechtreck KF, Melkonian M. 1991. Striated microtubule-associated fibers: identification of assemblin, a novel 34-kD protein that forms paracrystals of 2-nm filaments in vitro. J. Cell Biol. 115:705-716.
-
(1991)
J. Cell Biol
, vol.115
, pp. 705-716
-
-
Lechtreck, K.F.1
Melkonian, M.2
-
86
-
-
70349330590
-
Proteins related to green algal striated fiber assemblin are present in stramenopiles and alveolates
-
Harper JD, Thuet J, Lechtreck KF, Hardham AR. 2009. Proteins related to green algal striated fiber assemblin are present in stramenopiles and alveolates. Protoplasma 236:97-101.
-
(2009)
Protoplasma
, vol.236
, pp. 97-101
-
-
Harper, J.D.1
Thuet, J.2
Lechtreck, K.F.3
Hardham, A.R.4
-
87
-
-
0037466437
-
Striated fiber assemblin in apicomplexan parasites
-
Lechtreck KF. 2003. Striated fiber assemblin in apicomplexan parasites. Mol. Biochem. Parasitol. 128:95-99.
-
(2003)
Mol. Biochem. Parasitol
, vol.128
, pp. 95-99
-
-
Lechtreck, K.F.1
-
88
-
-
84871680105
-
Cell division in apicomplexan parasites is organized by a homolog of the striated rootlet fiber of algal flagella
-
doi:10.1371/journal.pbio.1001444
-
Francia ME, Jordan CN, Patel JD, Sheiner L, Demerly JL, Fellows JD, de Leon JC, Morrissette NS, Dubremetz JF, Striepen B. 2012. Cell division in apicomplexan parasites is organized by a homolog of the striated rootlet fiber of algal flagella. PLoS Biol. 10:e1001444.doi:10.1371/journal.pbio.1001444
-
(2012)
PLoS Biol
, vol.10
-
-
Francia, M.E.1
Jordan, C.N.2
Patel, J.D.3
Sheiner, L.4
Demerly, J.L.5
Fellows, J.D.6
de Leon, J.C.7
Morrissette, N.S.8
Dubremetz, J.F.9
Striepen, B.10
-
89
-
-
75549090603
-
The Pfam protein families database
-
Finn RD, Mistry J, Tate J, Coggill P, Heger A, Pollington JE, Gavin OL, Gunasekaran P, Ceric G, Forslund K, Holm L, Sonnhammer EL, Eddy SR, Bateman A. 2010. The Pfam protein families database. Nucleic Acids Res. 38:D211-D222.
-
(2010)
Nucleic Acids Res
, vol.38
-
-
Finn, R.D.1
Mistry, J.2
Tate, J.3
Coggill, P.4
Heger, A.5
Pollington, J.E.6
Gavin, O.L.7
Gunasekaran, P.8
Ceric, G.9
Forslund, K.10
Holm, L.11
Sonnhammer, E.L.12
Eddy, S.R.13
Bateman, A.14
-
90
-
-
0026356891
-
Predicting coiled coils from protein sequences
-
Lupas A, Van Dyke M, Stock J. 1991. Predicting coiled coils from protein sequences. Science 252:1162-1164.
-
(1991)
Science
, vol.252
, pp. 1162-1164
-
-
Lupas, A.1
van Dyke, M.2
Stock, J.3
|