Towards a molecular understanding of the elasticity of titin

被引:235
作者
Linke, WA [1 ]
Ivemeyer, M [1 ]
Olivieri, N [1 ]
Kolmerer, B [1 ]
Ruegg, JC [1 ]
Labeit, S [1 ]
机构
[1] EUROPEAN MOL BIOL LAB,D-69012 HEIDELBERG,GERMANY
关键词
titin or connectin; muscle elasticity; PEVK domain; passive tension; myofibril mechanics;
D O I
10.1006/jmbi.1996.0441
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
Vertebrate striated muscle behaves elastically when stretched and this property is thought to reside primarily within the giant filamentous protein, titin (connectin). The elastic portion of titin comprises two distinct structural motifs, immunoglobulin (Ig) domains and the PEVK titin, which is a novel motif family rich in proline, glutamate, valine and lysine residues. The respective contributions of the titin Ig and the PEVK sequences to the elastic properties of the molecule have been unknown so far. We have measured both the passive tension in single, isolated myofibrils from cardiac and skeletal muscle and the stretch-induced translational movement of I-band titin antibody epitopes following immunofluorescent labelling of sites adjacent to the PEVK and Ig domain regions. We found that with myofibril stretch, I-band titin does not extend homogeneously. The Ig domain region lengthened predominantly during small stretch, but such lengthening did not result in measurable passive tension and might be explained by straightening, rather than by unfolding, of the Ig repeats. At moderate to extreme stretch, the main extensible region was found to be the PEVK segment whose unravelling was correlated with a steady passive tension increase. In turn, PEVK domain transition from a linearly extended to a folded state appears to be principally responsible for the elasticity of muscle fibers. Thus, the length of the PEVK sequence may determine the tissue-specificity of muscle stiffness, whereas the expression of different Ig domain motif lengths may set the characteristic slack sarcomere length of a muscle type. (C) 1996 Academic Press Limited
引用
收藏
页码:62 / 71
页数:10
相关论文
共 47 条
[1]  
AARLI JA, 1990, CLIN EXP IMMUNOL, V82, P284
[2]   THE CELLULAR BASIS OF THE LENGTH TENSION RELATION IN CARDIAC-MUSCLE [J].
ALLEN, DG ;
KENTISH, JC .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1985, 17 (09) :821-840
[3]   ACTIVE TENSION GENERATION IN ISOLATED SKELETAL MYOFIBRILS [J].
BARTOO, ML ;
POPOV, VI ;
FEARN, LA ;
POLLACK, GH .
JOURNAL OF MUSCLE RESEARCH AND CELL MOTILITY, 1993, 14 (05) :498-510
[5]   AN OPTICAL-FIBER TRANSDUCER FOR SINGLE MYOFIBRIL FORCE MEASUREMENT [J].
FEARN, LA ;
BARTOO, ML ;
MYERS, JA ;
POLLACK, GH .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1993, 40 (11) :1127-1132
[6]   ELASTIC FILAMENTS INSITU IN CARDIAC-MUSCLE - DEEP-ETCH REPLICA ANALYSIS IN COMBINATION WITH SELECTIVE REMOVAL OF ACTIN AND MYOSIN-FILAMENTS [J].
FUNATSU, T ;
KONO, E ;
HIGUCHI, H ;
KIMURA, S ;
ISHIWATA, S ;
YOSHIOKA, T ;
MARUYAMA, K ;
TSUKITA, S .
JOURNAL OF CELL BIOLOGY, 1993, 120 (03) :711-724
[7]   THE ORGANIZATION OF TITIN FILAMENTS IN THE HALF-SARCOMERE REVEALED BY MONOCLONAL-ANTIBODIES IN IMMUNOELECTRON MICROSCOPY - A MAP OF 10 NONREPETITIVE EPITOPES STARTING AT THE Z-LINE EXTENDS CLOSE TO THE M-LINE [J].
FURST, DO ;
OSBORN, M ;
NAVE, R ;
WEBER, K .
JOURNAL OF CELL BIOLOGY, 1988, 106 (05) :1563-1572
[8]   TITIN ANTIBODIES IN MYASTHENIA-GRAVIS - IDENTIFICATION OF A MAJOR IMMUNOGENIC REGION OF TITIN [J].
GAUTEL, M ;
LAKEY, A ;
BARLOW, DP ;
HOLMES, Z ;
SCALES, S ;
LEONARD, K ;
LABEIT, S ;
MYGLAND, A ;
GILHUS, NE ;
AARLI, JA .
NEUROLOGY, 1993, 43 (08) :1581-1585
[9]   Nonuniform elasticity of titin in cardiac myocytes: A study using immunoelectron microscopy and cellular mechanics [J].
Granzier, H ;
Helmes, M ;
Trombitas, K .
BIOPHYSICAL JOURNAL, 1996, 70 (01) :430-442
[10]   PASSIVE TENSION IN CARDIAC-MUSCLE - CONTRIBUTION OF COLLAGEN, TITIN, MICROTUBULES, AND INTERMEDIATE FILAMENTS [J].
GRANZIER, HL ;
IRVING, TC .
BIOPHYSICAL JOURNAL, 1995, 68 (03) :1027-1044