Stretching desmin filaments with receding meniscus reveals large axial tensile strength

被引:2
作者
Kiss, Balazs [1 ]
Kellermayer, Miklos S. Z. [1 ]
机构
[1] Semmelweis Univ, Dept Biophys & Radiat Biol, MTA SE Mol Biophys Res Grp, H-1094 Budapest, Hungary
关键词
Desmin; Elasticity; Unit length filament; Receding meniscus; Atomic force microscopy; VIMENTIN INTERMEDIATE-FILAMENTS; COILED-COIL MOLECULES; KERATIN FILAMENTS; NANOMECHANICAL PROPERTIES; FORCE MICROSCOPY; SMOOTH-MUSCLE; IN-VITRO; PROTEINS; DNA; CHAINS;
D O I
10.1016/j.jsb.2014.04.004
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
Desmin forms the intermediate filament system of muscle cells where it plays important role in maintaining mechanical integrity and elasticity. Although the importance of intermediate-filament elasticity in cellular mechanics is being increasingly recognized, the molecular basis of desmin's elasticity is not fully understood. We explored desmin elasticity by molecular combing with forces calculated to be as large as 4 nN. Average filament contour length increased 1.55-fold axial on average. Molecular combing together with EGTA-treatment caused the fragmentation of the filament into short, 60 to 120-nm-long and 4-nm-wide structures. The fragments display a surface periodicity of 38 nm, suggesting that they are composed of laterally attached desmin dimers. The axis of the fragments may deviate significaritly from that of the overstretched filament, indicating that they have a large orientational freedom in spite of being axially interconnected. The emergence of protofibril fragments thus suggests that the interconnecting head or tail domains of coiled-coil desmin dimers are load-bearing elements during axial stretch. (C) 2014 Elsevier Inc. All rights reserved.
引用
收藏
页码:472 / 480
页数:9
相关论文
共 48 条
[1]   THE FIBRILLAR SUBSTRUCTURE OF KERATIN FILAMENTS UNRAVELED [J].
AEBI, U ;
FOWLER, WE ;
REW, P ;
SUN, TT .
JOURNAL OF CELL BIOLOGY, 1983, 97 (04) :1131-1143
[2]  
ALTMANNSBERGER M, 1986, SEMIN DIAGN PATHOL, V3, P306
[3]   The biology of desmin filaments:: how do mutations affect their structure, assembly, and organisation? [J].
Bär, H ;
Strelkov, SV ;
Sjöberg, G ;
Aebi, U ;
Herrmann, H .
JOURNAL OF STRUCTURAL BIOLOGY, 2004, 148 (02) :137-152
[4]   Severe muscle disease-causing desmin mutations interfere with in vitro filament assembly at distinct stages [J].
Bär, H ;
Mücke, N ;
Kostareva, A ;
Sjöberg, G ;
Aebi, U ;
Herrmann, H .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (42) :15099-15104
[5]   An immunodominant epitope of myelin basic protein is an amphipathic α-helix [J].
Bates, IR ;
Feix, JB ;
Boggs, JM ;
Harauz, G .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (07) :5757-5764
[6]   ALIGNMENT AND SENSITIVE DETECTION OF DNA BY A MOVING INTERFACE [J].
BENSIMON, A ;
SIMON, A ;
CHIFFAUDEL, A ;
CROQUETTE, V ;
HESLOT, F ;
BENSIMON, D .
SCIENCE, 1994, 265 (5181) :2096-2098
[7]   STRETCHING DNA WITH A RECEDING MENISCUS - EXPERIMENTS AND MODELS [J].
BENSIMON, D ;
SIMON, AJ ;
CROQUETTE, V ;
BENSIMON, A .
PHYSICAL REVIEW LETTERS, 1995, 74 (23) :4754-4757
[8]   Quantitative Analysis of the Self-Assembly Strategies of Intermediate Filaments from Tetrameric Vimentin [J].
Czeizler, Eugen ;
Mizera, Andrzej ;
Czeizler, Elena ;
Back, Ralph-Johan ;
Eriksson, John E. ;
Petre, Ion .
IEEE-ACM TRANSACTIONS ON COMPUTATIONAL BIOLOGY AND BIOINFORMATICS, 2012, 9 (03) :885-898
[9]   STRUCTURAL HOMOLOGY BETWEEN HARD ALPHA-KERATIN AND THE INTERMEDIATE FILAMENT PROTEINS DESMIN AND VIMENTIN [J].
DOWLING, LM ;
PARRY, DAD ;
SPARROW, LG .
BIOSCIENCE REPORTS, 1983, 3 (01) :73-78
[10]   POLYMORPHISM OF RECONSTITUTED HUMAN EPIDERMAL KERATIN FILAMENTS - DETERMINATION OF THEIR MASS-PER-LENGTH AND WIDTH BY SCANNING-TRANSMISSION ELECTRON-MICROSCOPY (STEM) [J].
ENGEL, A ;
EICHNER, R ;
AEBI, U .
JOURNAL OF ULTRASTRUCTURE RESEARCH, 1985, 90 (03) :323-335