Drebrin particles: components in the ensemble of proteins regulating actin dynamics of lamellipodia and filopodia.

Standard

Drebrin particles: components in the ensemble of proteins regulating actin dynamics of lamellipodia and filopodia. / Peitsch, W K; Hofmann, I; Prätzel, S; Grund, C; Kuhn, C; Moll, Ingrid; Langbein, L; Franke, W W.

in: EUR J CELL BIOL, Jahrgang 80, Nr. 9, 9, 2001, S. 567-579.

Publikationen: SCORING: Beitrag in Fachzeitschrift/ZeitungSCORING: ZeitschriftenaufsatzForschungBegutachtung

Harvard

Peitsch, WK, Hofmann, I, Prätzel, S, Grund, C, Kuhn, C, Moll, I, Langbein, L & Franke, WW 2001, 'Drebrin particles: components in the ensemble of proteins regulating actin dynamics of lamellipodia and filopodia.', EUR J CELL BIOL, Jg. 80, Nr. 9, 9, S. 567-579. <http://www.ncbi.nlm.nih.gov/pubmed/11675932?dopt=Citation>

APA

Peitsch, W. K., Hofmann, I., Prätzel, S., Grund, C., Kuhn, C., Moll, I., Langbein, L., & Franke, W. W. (2001). Drebrin particles: components in the ensemble of proteins regulating actin dynamics of lamellipodia and filopodia. EUR J CELL BIOL, 80(9), 567-579. [9]. http://www.ncbi.nlm.nih.gov/pubmed/11675932?dopt=Citation

Vancouver

Peitsch WK, Hofmann I, Prätzel S, Grund C, Kuhn C, Moll I et al. Drebrin particles: components in the ensemble of proteins regulating actin dynamics of lamellipodia and filopodia. EUR J CELL BIOL. 2001;80(9):567-579. 9.

Bibtex

@article{4b2115b1f44044b5991667b199b5dfb8,
title = "Drebrin particles: components in the ensemble of proteins regulating actin dynamics of lamellipodia and filopodia.",
abstract = "Drebrin, an actin-binding 70-kDa protein with an unusually slow SDS-PAGE mobility corresponding to approximately 120 kDa, containing a proline-rich, profilin-binding motif, had originally been reported from neuronal cells, but recently has also been found in diverse other kinds of tissues and cell lines. In biochemical analyses of various cells and tissues, employing gel filtration, sucrose gradient centrifugation, immunoprecipitation and -blotting, we have identified distinct states of soluble drebrin: a approximately 4S monomer, an 8S, ca. 217-kDa putative trimer, a 13S and a > 20S oligomer. In the 8S particles only [35S]methionine-labelled drebrin but no other actin-binding protein has been detected in stoichiometric amounts. By immunofluorescence and immunoelectron microscopy, drebrin-positive material often appeared as {"}granules{"} up to 400 nm in diameter, in some cell types clustered near the Golgi apparatus or in lamellipodia, particularly at leading edges, or in dense-packed submembranous masses at tips (acropodia) or ruffles of leading edges, in filopodia and at plaques of adhering junctions. We conclude that these drebrin complexes and drebrin-rich structures allow the build-up and maintenance of high local drebrin concentrations in strategic positions for the regulation of actin filament assembly, thereby contributing to cell motility and morphology, in particular local changes of plasticity and the formation of protrusions.",
author = "Peitsch, {W K} and I Hofmann and S Pr{\"a}tzel and C Grund and C Kuhn and Ingrid Moll and L Langbein and Franke, {W W}",
year = "2001",
language = "Deutsch",
volume = "80",
pages = "567--579",
journal = "EUR J CELL BIOL",
issn = "0171-9335",
publisher = "Urban und Fischer Verlag GmbH und Co. KG",
number = "9",

}

RIS

TY - JOUR

T1 - Drebrin particles: components in the ensemble of proteins regulating actin dynamics of lamellipodia and filopodia.

AU - Peitsch, W K

AU - Hofmann, I

AU - Prätzel, S

AU - Grund, C

AU - Kuhn, C

AU - Moll, Ingrid

AU - Langbein, L

AU - Franke, W W

PY - 2001

Y1 - 2001

N2 - Drebrin, an actin-binding 70-kDa protein with an unusually slow SDS-PAGE mobility corresponding to approximately 120 kDa, containing a proline-rich, profilin-binding motif, had originally been reported from neuronal cells, but recently has also been found in diverse other kinds of tissues and cell lines. In biochemical analyses of various cells and tissues, employing gel filtration, sucrose gradient centrifugation, immunoprecipitation and -blotting, we have identified distinct states of soluble drebrin: a approximately 4S monomer, an 8S, ca. 217-kDa putative trimer, a 13S and a > 20S oligomer. In the 8S particles only [35S]methionine-labelled drebrin but no other actin-binding protein has been detected in stoichiometric amounts. By immunofluorescence and immunoelectron microscopy, drebrin-positive material often appeared as "granules" up to 400 nm in diameter, in some cell types clustered near the Golgi apparatus or in lamellipodia, particularly at leading edges, or in dense-packed submembranous masses at tips (acropodia) or ruffles of leading edges, in filopodia and at plaques of adhering junctions. We conclude that these drebrin complexes and drebrin-rich structures allow the build-up and maintenance of high local drebrin concentrations in strategic positions for the regulation of actin filament assembly, thereby contributing to cell motility and morphology, in particular local changes of plasticity and the formation of protrusions.

AB - Drebrin, an actin-binding 70-kDa protein with an unusually slow SDS-PAGE mobility corresponding to approximately 120 kDa, containing a proline-rich, profilin-binding motif, had originally been reported from neuronal cells, but recently has also been found in diverse other kinds of tissues and cell lines. In biochemical analyses of various cells and tissues, employing gel filtration, sucrose gradient centrifugation, immunoprecipitation and -blotting, we have identified distinct states of soluble drebrin: a approximately 4S monomer, an 8S, ca. 217-kDa putative trimer, a 13S and a > 20S oligomer. In the 8S particles only [35S]methionine-labelled drebrin but no other actin-binding protein has been detected in stoichiometric amounts. By immunofluorescence and immunoelectron microscopy, drebrin-positive material often appeared as "granules" up to 400 nm in diameter, in some cell types clustered near the Golgi apparatus or in lamellipodia, particularly at leading edges, or in dense-packed submembranous masses at tips (acropodia) or ruffles of leading edges, in filopodia and at plaques of adhering junctions. We conclude that these drebrin complexes and drebrin-rich structures allow the build-up and maintenance of high local drebrin concentrations in strategic positions for the regulation of actin filament assembly, thereby contributing to cell motility and morphology, in particular local changes of plasticity and the formation of protrusions.

M3 - SCORING: Zeitschriftenaufsatz

VL - 80

SP - 567

EP - 579

JO - EUR J CELL BIOL

JF - EUR J CELL BIOL

SN - 0171-9335

IS - 9

M1 - 9

ER -