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Volumn 185, Issue 1, 2010, Pages 90-102

Actin and myosin regulate cytoplasm stiffness in plant cells: A study using optical tweezers

Author keywords

Actin; Cytoplasmic organization; Cytoplasmic strand; Cytoskeleton; Myosin; Optical tweezers; Plant

Indexed keywords

ACTIN; BENZO(B)NAPHTHO(2,3 D)THIOPHENE; BENZO(B)NAPHTHO(2,3-D)THIOPHENE; MYOSIN; THIOPHENE DERIVATIVE;

EID: 71249105377     PISSN: 0028646X     EISSN: 14698137     Source Type: Journal    
DOI: 10.1111/j.1469-8137.2009.03017.x     Document Type: Article
Times cited : (28)

References (47)
  • 1
    • 4243504131 scopus 로고
    • Acceleration and trapping of particles using radiation pressure
    • Ashkin A. 1970. Acceleration and trapping of particles using radiation pressure. Physical Review Letters 24 : 156 159.
    • (1970) Physical Review Letters , vol.24 , pp. 156-159
    • Ashkin, A.1
  • 2
    • 0023306185 scopus 로고
    • Optical trapping and manipulation of viruses and bacteria
    • Ashkin A, Dziedzic JM. 1987. Optical trapping and manipulation of viruses and bacteria. Science 235 : 1517 1520.
    • (1987) Science , vol.235 , pp. 1517-1520
    • Ashkin, A.1    Dziedzic, J.M.2
  • 4
    • 0023663919 scopus 로고
    • Optical trapping and manipulation of single cells using infrared laser beams
    • Ashkin A, Dziedzic JM, Yamane T. 1987. Optical trapping and manipulation of single cells using infrared laser beams. Nature 330 : 769 771.
    • (1987) Nature , vol.330 , pp. 769-771
    • Ashkin, A.1    Dziedzic, J.M.2    Yamane, T.3
  • 5
    • 0027111156 scopus 로고
    • Making light work with optical tweezers
    • Block SM. 1992. Making light work with optical tweezers. Nature 360 : 493 495.
    • (1992) Nature , vol.360 , pp. 493-495
    • Block, S.M.1
  • 6
    • 0032526412 scopus 로고    scopus 로고
    • Interaction between mitochondria and the actin cytoskeleton in budding yeast requires two integral mitochondrial outer membrane proteins, Mmm1p and Mdm10p
    • Boldogh I, Vojtov N, Karmon S, Pon LA. 1998. Interaction between mitochondria and the actin cytoskeleton in budding yeast requires two integral mitochondrial outer membrane proteins, Mmm1p and Mdm10p. The Journal of Cell Biology 141 : 1371 1381.
    • (1998) The Journal of Cell Biology , vol.141 , pp. 1371-1381
    • Boldogh, I.1    Vojtov, N.2    Karmon, S.3    Pon, L.A.4
  • 7
    • 0023142377 scopus 로고
    • Inhibition of actin polymerization by latrunculin A
    • Coue M, Brenner SL, Spector I, Korn ED. 1987. Inhibition of actin polymerization by latrunculin A. FEBS Letters 213 : 316 318.
    • (1987) FEBS Letters , vol.213 , pp. 316-318
    • Coue, M.1    Brenner, S.L.2    Spector, I.3    Korn, E.D.4
  • 9
    • 33744489334 scopus 로고    scopus 로고
    • ARP2 and ARP3 are localized to sites of actin filament nucleation in tobacco BY-2 cells
    • Fiserova J, Schwarzerova K, Petrasek J, Opatrny Z 2006. ARP2 and ARP3 are localized to sites of actin filament nucleation in tobacco BY-2 cells. Protoplasma 227 : 119 128.
    • (2006) Protoplasma , vol.227 , pp. 119-128
    • Fiserova, J.1    Schwarzerova, K.2    Petrasek, J.3    Opatrny, Z.4
  • 10
    • 26844466952 scopus 로고    scopus 로고
    • Aluminium causes variable responses in actin filament cytoskeleton of the root tip cells of Triticum turgidum
    • Frantzios G, Galatis B, Apostolakos P. 2005. Aluminium causes variable responses in actin filament cytoskeleton of the root tip cells of Triticum turgidum. Protoplasma 225 : 129 140.
    • (2005) Protoplasma , vol.225 , pp. 129-140
    • Frantzios, G.1    Galatis, B.2    Apostolakos, P.3
  • 11
    • 7944230842 scopus 로고    scopus 로고
    • The motility of Chara corallina myosin was inhibited reversibly by 2,3-butanedione monoxime (BDM)
    • Funaki K, Nagata A, Akimoto Y, Shimada K, Ito K, Yamamoto K. 2004. The motility of Chara corallina myosin was inhibited reversibly by 2,3-butanedione monoxime (BDM). Plant & Cell Physiology 45 : 1342 1345.
    • (2004) Plant & Cell Physiology , vol.45 , pp. 1342-1345
    • Funaki, K.1    Nagata, A.2    Akimoto, Y.3    Shimada, K.4    Ito, K.5    Yamamoto, K.6
  • 12
    • 0028037730 scopus 로고
    • Lipids trigger changes in the elasticity of the cytoskeleton in plant cells: A cell optical displacement assay for live cell measurements
    • Grabski S, Xie XG, Holland JF, Schindler M. 1994. Lipids trigger changes in the elasticity of the cytoskeleton in plant cells: a cell optical displacement assay for live cell measurements. The Journal of Cell Biology 126 : 713 726.
    • (1994) The Journal of Cell Biology , vol.126 , pp. 713-726
    • Grabski, S.1    Xie, X.G.2    Holland, J.F.3    Schindler, M.4
  • 13
    • 0031758605 scopus 로고    scopus 로고
    • Regulation of actin tension in plant cells by kinases and phosphatases
    • Grabski S, Arnoys E, Busch B, Schindler M. 1998. Regulation of actin tension in plant cells by kinases and phosphatases. Plant Physiology 116 : 279 290.
    • (1998) Plant Physiology , vol.116 , pp. 279-290
    • Grabski, S.1    Arnoys, E.2    Busch, B.3    Schindler, M.4
  • 14
    • 0041967046 scopus 로고    scopus 로고
    • A revolution in optical manipulation
    • Grier DG. 2003. A revolution in optical manipulation. Nature 424 : 810 816.
    • (2003) Nature , vol.424 , pp. 810-816
    • Grier, D.G.1
  • 15
    • 33747856378 scopus 로고    scopus 로고
    • Actin microfilaments regulate vacuolar structures and dynamics: Dual observation of actin microfilaments and vacuolar membrane in living tobacco BY-2 cells
    • Higaki T, Kutsuna N, Okubo E, Sano T, Hasezawa S. 2006. Actin microfilaments regulate vacuolar structures and dynamics: dual observation of actin microfilaments and vacuolar membrane in living tobacco BY-2 cells. Plant & Cell Physiology 47 : 839 852.
    • (2006) Plant & Cell Physiology , vol.47 , pp. 839-852
    • Higaki, T.1    Kutsuna, N.2    Okubo, E.3    Sano, T.4    Hasezawa, S.5
  • 16
    • 0024602815 scopus 로고
    • Butanedione monoxime suppresses contraction and ATPase activity of rabbit skeletal muscle
    • Higuchi H, Takemori S. 1989. Butanedione monoxime suppresses contraction and ATPase activity of rabbit skeletal muscle. Journal of Biochemistry (Tokyo) 105 : 638 643.
    • (1989) Journal of Biochemistry (Tokyo) , vol.105 , pp. 638-643
    • Higuchi, H.1    Takemori, S.2
  • 17
    • 12444257811 scopus 로고    scopus 로고
    • Dynamic rearrangements of transvacuolar strands in BY-2 cells imply a role of myosin in remodeling the plant actin cytoskeleton
    • Hoffmann A, Nebenfuhr A. 2004. Dynamic rearrangements of transvacuolar strands in BY-2 cells imply a role of myosin in remodeling the plant actin cytoskeleton. Protoplasma 224 : 201 210.
    • (2004) Protoplasma , vol.224 , pp. 201-210
    • Hoffmann, A.1    Nebenfuhr, A.2
  • 18
    • 0031806365 scopus 로고    scopus 로고
    • Microinjection of pollen-specific actin-depolymerizing factor, ZmADF1, reorientates F-actin strands in Tradescantia stamen hair cells
    • Hussey PJ, Yuan M, Calder G, Khan S, Lloyd CW. 1998. Microinjection of pollen-specific actin-depolymerizing factor, ZmADF1, reorientates F-actin strands in Tradescantia stamen hair cells. Plant Journal 14 : 353 357.
    • (1998) Plant Journal , vol.14 , pp. 353-357
    • Hussey, P.J.1    Yuan, M.2    Calder, G.3    Khan, S.4    Lloyd, C.W.5
  • 19
    • 71249137119 scopus 로고    scopus 로고
    • The actin cytoskeleton in root hairs: A cell elongation device
    • Emons, A.M.C. Ketelaar, T. eds. Heidelberg, Germany. Springer
    • Ketelaar T, Emons AMC 2009. The actin cytoskeleton in root hairs: a cell elongation device. In : Emons AMC, Ketelaar T, eds. Plant cell monographs: root hairs. Heidelberg, Germany : Springer, 211 232.
    • (2009) Plant Cell Monographs: Root Hairs. , pp. 211-232
    • Ketelaar, T.1    Emons, A.M.C.2
  • 21
    • 1142277951 scopus 로고    scopus 로고
    • The actin-interacting protein AIP1 is essential for actin organization and plant development
    • Ketelaar T, Allwood EG, Anthony R, Voigt B, Menzel D, Hussey PJ. 2004. The actin-interacting protein AIP1 is essential for actin organization and plant development. Current Biology 14 : 145 149.
    • (2004) Current Biology , vol.14 , pp. 145-149
    • Ketelaar, T.1    Allwood, E.G.2    Anthony, R.3    Voigt, B.4    Menzel, D.5    Hussey, P.J.6
  • 22
    • 0036748226 scopus 로고    scopus 로고
    • Dynamic organization of vacuolar and microtubule structures during cell cycle progression in synchronized tobacco BY-2 cells
    • Kutsuna N, Hasezawa S. 2002. Dynamic organization of vacuolar and microtubule structures during cell cycle progression in synchronized tobacco BY-2 cells. Plant & Cell Physiology 43 : 965 973.
    • (2002) Plant & Cell Physiology , vol.43 , pp. 965-973
    • Kutsuna, N.1    Hasezawa, S.2
  • 24
    • 0033402137 scopus 로고    scopus 로고
    • Is 2,3-butanedione monoxime an effective inhibitor of myosin-based activities in plant cells?
    • McCurdy DW. 1999. Is 2,3-butanedione monoxime an effective inhibitor of myosin-based activities in plant cells? Protoplasma 209 : 120 125.
    • (1999) Protoplasma , vol.209 , pp. 120-125
    • McCurdy, D.W.1
  • 25
    • 0030859556 scopus 로고    scopus 로고
    • From signal to form: Aspects of the cytoskeleton-plasma membrane-cell wall continuum in root hair tips
    • Miller DD, De Ruijter NCA, Bisseling T, Emons AMC. 1997. From signal to form: aspects of the cytoskeleton-plasma membrane-cell wall continuum in root hair tips. Journal of Experimental Botany 48 : 1881 1896.
    • (1997) Journal of Experimental Botany , vol.48 , pp. 1881-1896
    • Miller, D.D.1    De Ruijter, N.C.A.2    Bisseling, T.3    Emons, A.M.C.4
  • 26
    • 0036935187 scopus 로고    scopus 로고
    • Actomyosin promotes cell plate alignment and late lateral expansion in Tradescantia stamen hair cells
    • Molchan TM, Valster AH, Hepler PK. 2002. Actomyosin promotes cell plate alignment and late lateral expansion in Tradescantia stamen hair cells. Planta 214 : 683 693.
    • (2002) Planta , vol.214 , pp. 683-693
    • Molchan, T.M.1    Valster, A.H.2    Hepler, P.K.3
  • 27
    • 0032810148 scopus 로고    scopus 로고
    • Plant cell biology through the window of the highly synchronized tobacco BY-2 cell line
    • Nagata T, Kumagai F. 1999. Plant cell biology through the window of the highly synchronized tobacco BY-2 cell line. Methods in Cell Science 21 : 123 127.
    • (1999) Methods in Cell Science , vol.21 , pp. 123-127
    • Nagata, T.1    Kumagai, F.2
  • 28
    • 0026568783 scopus 로고
    • Tobacco BY-2 cell line as the 'HeLa' cell in the cell biology of higher plants
    • Nagata T, Nemoto Y, Hasezawa S. 1992. Tobacco BY-2 cell line as the 'HeLa' cell in the cell biology of higher plants. International Review of Cytology 132 : 1 30.
    • (1992) International Review of Cytology , vol.132 , pp. 1-30
    • Nagata, T.1    Nemoto, Y.2    Hasezawa, S.3
  • 29
    • 0344011093 scopus 로고    scopus 로고
    • Involvement of myosin in intracellular motility and cytomorphogenesis in Micrasterias
    • Oertel A, Holzinger A, Lutz-Meindl U. 2003. Involvement of myosin in intracellular motility and cytomorphogenesis in Micrasterias. Cell Biology International 27 : 977 986.
    • (2003) Cell Biology International , vol.27 , pp. 977-986
    • Oertel, A.1    Holzinger, A.2    Lutz-Meindl, U.3
  • 30
    • 34247596379 scopus 로고    scopus 로고
    • Myosin inhibitors block accumulation movement of chloroplasts in Arabidopsis thaliana leaf cells
    • Paves H, Truve E. 2007. Myosin inhibitors block accumulation movement of chloroplasts in Arabidopsis thaliana leaf cells. Protoplasma 230 : 165 169.
    • (2007) Protoplasma , vol.230 , pp. 165-169
    • Paves, H.1    Truve, E.2
  • 31
    • 0032102674 scopus 로고    scopus 로고
    • Localization of a myosin-like protein to plasmodesmata
    • Radford JE, White RG. 1998. Localization of a myosin-like protein to plasmodesmata. Plant Journal 14 : 743 750.
    • (1998) Plant Journal , vol.14 , pp. 743-750
    • Radford, J.E.1    White, R.G.2
  • 32
    • 0035127215 scopus 로고    scopus 로고
    • Molecular motors and their functions in plants
    • Reddy AS. 2001. Molecular motors and their functions in plants. International Review of Cytology 204 : 97 178.
    • (2001) International Review of Cytology , vol.204 , pp. 97-178
    • Reddy, A.S.1
  • 33
    • 0034041555 scopus 로고    scopus 로고
    • Effects of myosin ATPase inhibitor 2,3-butanedione 2-monoxime on distributions of myosins, F-actin, microtubules, and cortical endoplasmic reticulum in maize root apices
    • Samaj J, Peters M, Volkmann D, Baluska F. 2000. Effects of myosin ATPase inhibitor 2,3-butanedione 2-monoxime on distributions of myosins, F-actin, microtubules, and cortical endoplasmic reticulum in maize root apices. Plant & Cell Physiology 41 : 571 582.
    • (2000) Plant & Cell Physiology , vol.41 , pp. 571-582
    • Samaj, J.1    Peters, M.2    Volkmann, D.3    Baluska, F.4
  • 34
    • 34247595882 scopus 로고    scopus 로고
    • Actin-filament-dependent remodeling of the vacuole in cultured mesophyll protoplasts
    • Sheahan MB, Rose RJ, McCurdy DW. 2007. Actin-filament-dependent remodeling of the vacuole in cultured mesophyll protoplasts. Protoplasma 230 : 141 152.
    • (2007) Protoplasma , vol.230 , pp. 141-152
    • Sheahan, M.B.1    Rose, R.J.2    McCurdy, D.W.3
  • 35
    • 33847313777 scopus 로고    scopus 로고
    • The sliding theory of cytoplasmic streaming: Fifty years of progress
    • Shimmen T. 2007. The sliding theory of cytoplasmic streaming: fifty years of progress. Journal of Plant Research 120 : 31 43.
    • (2007) Journal of Plant Research , vol.120 , pp. 31-43
    • Shimmen, T.1
  • 37
    • 0029141561 scopus 로고
    • Roles of actin filaments in cytoplasmic streaming and organization of transvacuolar strands in root hair cells of Hydrocharis
    • Shimmen T, Hamatani M, Saito S, Yokota E, Mimura T, Fusetani N, Karaki H. 1995. Roles of actin filaments in cytoplasmic streaming and organization of transvacuolar strands in root hair cells of Hydrocharis. Protoplasma 185 : 188 193.
    • (1995) Protoplasma , vol.185 , pp. 188-193
    • Shimmen, T.1    Hamatani, M.2    Saito, S.3    Yokota, E.4    Mimura, T.5    Fusetani, N.6    Karaki, H.7
  • 38
    • 0020698663 scopus 로고
    • Latrunculins: Novel marine toxins that disrupt microfilament organization in cultured cells
    • Spector I, Shochet NR, Kashman Y, Groweiss A. 1983. Latrunculins: novel marine toxins that disrupt microfilament organization in cultured cells. Science 219 : 493 495.
    • (1983) Science , vol.219 , pp. 493-495
    • Spector, I.1    Shochet, N.R.2    Kashman, Y.3    Groweiss, A.4
  • 39
    • 0028385716 scopus 로고
    • Microinjected profilin affects cytoplasmic streaming in plant cells by rapidly depolymerizing actin microfilaments
    • Staiger CJ, Yuan M, Valenta R, Shaw PJ, Warn RM, Lloyd CW. 1994. Microinjected profilin affects cytoplasmic streaming in plant cells by rapidly depolymerizing actin microfilaments. Current Biology 4 : 215 219.
    • (1994) Current Biology , vol.4 , pp. 215-219
    • Staiger, C.J.1    Yuan, M.2    Valenta, R.3    Shaw, P.J.4    Warn, R.M.5    Lloyd, C.W.6
  • 41
    • 0033844181 scopus 로고    scopus 로고
    • Mechanism of inhibition of cytoplasmic streaming by a myosin inhibitor, 2,3-buanedione monoxime
    • Tominaga M, Yokota E, Sonobe S, Shimmen T. 2000a. Mechanism of inhibition of cytoplasmic streaming by a myosin inhibitor, 2,3-buanedione monoxime. Protoplasma 213 : 46 54.
    • (2000) Protoplasma , vol.213 , pp. 46-54
    • Tominaga, M.1    Yokota, E.2    Sonobe, S.3    Shimmen, T.4
  • 42
    • 0034020244 scopus 로고    scopus 로고
    • The role of plant villin in the organization of the actin cytoskeleton, cytoplasmic streaming and the architecture of the transvacuolar strand in root hair cells of Hydrocharis
    • Tominaga M, Yokota E, Vidali L, Sonobe S, Hepler PK, Shimmen T. 2000b. The role of plant villin in the organization of the actin cytoskeleton, cytoplasmic streaming and the architecture of the transvacuolar strand in root hair cells of Hydrocharis. Planta 210 : 836 843.
    • (2000) Planta , vol.210 , pp. 836-843
    • Tominaga, M.1    Yokota, E.2    Vidali, L.3    Sonobe, S.4    Hepler, P.K.5    Shimmen, T.6
  • 43
    • 0037343761 scopus 로고    scopus 로고
    • Development and disintegration of phragmoplasts in living cultured cells of a GFP::TUA6 transgenic Arabidopsis thaliana plant
    • Ueda K, Sakaguchi S, Kumagai F, Hasezawa S, Quader H, Kristen U. 2003. Development and disintegration of phragmoplasts in living cultured cells of a GFP::TUA6 transgenic Arabidopsis thaliana plant. Protoplasma 220 : 111 118.
    • (2003) Protoplasma , vol.220 , pp. 111-118
    • Ueda, K.1    Sakaguchi, S.2    Kumagai, F.3    Hasezawa, S.4    Quader, H.5    Kristen, U.6
  • 44
    • 0031432209 scopus 로고    scopus 로고
    • Probing the plant actin cytoskeleton during cytokinesis and interphase by profilin microinjection
    • Valster AH, Pierson ES, Valenta R, Hepler PK, Emons AMC. 1997. Probing the plant actin cytoskeleton during cytokinesis and interphase by profilin microinjection. The Plant Cell 9 : 1815 1824.
    • (1997) The Plant Cell , vol.9 , pp. 1815-1824
    • Valster, A.H.1    Pierson, E.S.2    Valenta, R.3    Hepler, P.K.4    Emons, A.M.C.5
  • 45
    • 0036009370 scopus 로고    scopus 로고
    • Plant mitochondria move on F-actin, but their positioning in the cortical cytoplasm depends on both F-actin and microtubules
    • Van Gestel K, Kohler RH, Verbelen JP. 2002. Plant mitochondria move on F-actin, but their positioning in the cortical cytoplasm depends on both F-actin and microtubules. Journal of Experimental Botany 53 : 659 667.
    • (2002) Journal of Experimental Botany , vol.53 , pp. 659-667
    • Van Gestel, K.1    Kohler, R.H.2    Verbelen, J.P.3
  • 46
    • 1842479831 scopus 로고    scopus 로고
    • Microtubules become more dynamic but not shorter during preprophase band formation: A possible 'search-and-capture' mechanism for microtubule translocation
    • Vos JW, Dogterom M, Emons AMC. 2004. Microtubules become more dynamic but not shorter during preprophase band formation: a possible 'search-and-capture' mechanism for microtubule translocation. Cell Motility and the Cytoskeleton 57 : 246 258.
    • (2004) Cell Motility and the Cytoskeleton , vol.57 , pp. 246-258
    • Vos, J.W.1    Dogterom, M.2    Emons, A.M.C.3


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