Live imaging reveals that the Drosophila actin-binding ERM protein, moesin, co-localizes with the mitotic spindle

被引:16
作者
Vilmos, Peter [1 ]
Jankovics, Ferenc [1 ]
Szathmari, Margit [1 ]
Lukacsovich, Tamas [2 ]
Henn, Laszlo [1 ]
Erdelyi, Miklos [1 ]
机构
[1] Hungarian Acad Sci, Biol Res Ctr, H-6726 Szeged, Hungary
[2] Univ Calif Irvine, Dept Dev & Cell Biol, Irvine, CA 92697 USA
基金
美国国家科学基金会;
关键词
Mitosis; Mitotic spindle; Actin; Moesin; ERM; Drosophila; NUCLEAR-ENVELOPE; CELL-SHAPE; MORPHOGENESIS; CYTOSKELETON; EMBRYOS; MITOSIS; ORGANIZATION; MEMBRANE; DYNAMICS; KINASE;
D O I
10.1016/j.ejcb.2009.05.006
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Members of the vertebrate ezrin-radixin-moesin (ERM) protein family crosslink the actin cytoskeleton and the cell membrane and are, therefore, considered cytoplasmic regulators of cell adhesion, cell movement and membrane trafficking. Here we demonstrate that besides its cytoplasmic functions Drosophila moesin, the only ERM protein in Drosophila melanogaster, exhibits a dynamic cell cycle-dependent nuclear localization. In a small fraction of cells and at a low level, moesin can be detected in interphase nuclei in regions complementary to the chromatin; its level rapidly increases during prophase and it co-localizes with the actin network surrounding the mitotic spindles throughout mitosis. We also found that the predicted single nuclear localization signal in moesin is not necessary for the nuclear accumulation of the protein. FRAP experiments confirmed this finding and further revealed that the mitotic localization of moesin is highly dynamic. Immuno-histochemical staining for moesin demonstrated the existence of spindle association in wild-type embryos. The biological relevance of this phenomenon is indicated by the mitotic phenotypes detected in S2 cells treated with moesin RNA(i), and awaits future exploration. (C) 2009 Elsevier GmbH. All rights reserved.
引用
收藏
页码:609 / 619
页数:11
相关论文
共 38 条
[1]   Nuclear ERM (ezrin, radixin, moesin) proteins: regulation by cell density and nuclear import [J].
Batchelor, CL ;
Woodward, AM ;
Crouch, DH .
EXPERIMENTAL CELL RESEARCH, 2004, 296 (02) :208-222
[2]   Identification of nuclei associated proteins by 2D-gel electrophoresis and mass spectrometry [J].
Bergquist, J ;
Gobom, J ;
Blomberg, A ;
Roepstorff, P ;
Ekman, R .
JOURNAL OF NEUROSCIENCE METHODS, 2001, 109 (01) :3-11
[3]   Remodelling the walls of the nucleus [J].
Burke, B ;
Ellenberg, J .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2002, 3 (07) :487-497
[4]   Moesin and its activating kinase Slik are required for cortical stability and microtubule organization in mitotic cells [J].
Carreno, Sebastien ;
Kouranti, Ilektra ;
Glusman, Edith Szafer ;
Fuller, Margaret T. ;
Echard, Arnaud ;
Payre, Francois .
JOURNAL OF CELL BIOLOGY, 2008, 180 (04) :739-746
[5]   From cell structure to transcription: Hippo forges a new path [J].
Edgar, BA .
CELL, 2006, 124 (02) :267-273
[6]   GFP-moesin illuminates actin cytoskeleton dynamics in living tissue and demonstrates cell shape changes during morphogenesis in Drosophila [J].
Edwards, KA ;
Demsky, M ;
Montague, RA ;
Weymouth, N ;
Kiehart, DP .
DEVELOPMENTAL BIOLOGY, 1997, 191 (01) :103-117
[7]  
FOE VE, 1989, DEVELOPMENT, V107, P1
[8]   Actin and myosin inhibitors block elongation of kinetochore fibre stubs in metaphase crane-fly spermatocytes [J].
Forer, A. ;
Spurck, T. ;
Pickett-Heaps, J. D. .
PROTOPLASMA, 2007, 232 (1-2) :79-85
[9]  
FORER A, 1979, J CELL SCI, V37, P349
[10]   What generates flux of tubulin in kinetochore microtubules? [J].
Forer, Arthur ;
Pickett-Heaps, Jeremy D. ;
Spurck, Tim .
PROTOPLASMA, 2008, 232 (3-4) :137-141