Role of nuclear lamina-cytoskeleton interactions in the maintenance of cellular strength

被引:96
作者
Houben, F.
Ramaekers, F. C. S.
Snoeckx, L. H. E. H.
Broers, J. L. V.
机构
[1] Univ Maastricht, Dept Mol Cell Biol, Cardiovasc Res Inst Maastricht, CARIM, NL-6200 MD Maastricht, Netherlands
[2] Univ Maastricht, Res Inst Growth & Dev, GROW, NL-6200 MD Maastricht, Netherlands
[3] Univ Maastricht, Dept Physiol, Cardiovasc Res Inst Maastricht, CARIM, NL-6200 MD Maastricht, Netherlands
[4] Eindhoven Univ Technol, Fac Biomed Engn, Dept Biomech & Tissue Engn, NL-5600 MB Eindhoven, Netherlands
来源
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH | 2007年 / 1773卷 / 05期
关键词
tensegrity; cellular mechanics; lamins; laminopathies; cytoskeleton;
D O I
10.1016/j.bbamcr.2006.09.018
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The response of individual cells to cellular stress is vital for cellular functioning. A large network of physically interconnected cellular components, starting from the structural components of the cells' nucleus, via cytoskeleton filaments to adhesion molecules and the extracellular matrix, constitutes an integrated matrix that functions as a scaffold allowing the cell to cope with mechanical stress. Next to a role in mechanical properties, this network also has a mechanotransductional function in the response to mechanical stress. This signaling route does not only regulate a rapid reorganization of structural components such as actin filaments, but also stimulates for example gene activation via NF kappa B and other transcription factors. The importance of an intact mechano-signaling network is illustrated by the physiological consequences of several genetic defects of cellular network components e.g. actin, dystrophin, desmin and lamins. These give rise to an impaired response of the affected cells to mechanical stress and often result in dystrophy of the affected tissue. Recently, the importance of the cell nucleus in cellular strength has been established. Several new interconnecting proteins, such as the nesprins that link the nuclear lamina to the cytoskeleton, have been identified. Furthermore, the function of nuclear lamins in determining cellular strength and nuclear stability was illustrated in lamin-knock-out cells. Absence of the A-type lamins or mutations in these structural components of the nuclear lamina lead to an impaired cellular response to mechanical stress and disturbances in cytoskeletal organization, In addition, laminopathies show clinical phenotypes comparable to those seen for diseases resulting from genetic defects in cytoskeletal components, further indicating that lamins play a central role in maintaining the mechanical properties of the cell. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:675 / 686
页数:12
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