Rigor crossbridge structure in tilted single filament layers and flared-X formations from insect flight muscle.
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[1] K C Holmes,et al. Binding of myosin subfragment 1 to glycerinated insect flight muscle in the rigor state. , 1985, Biophysical journal.
[2] R. Craig,et al. Electron microscopy and image analysis of myosin filaments from scallop striated muscle. , 1983, Journal of molecular biology.
[3] G. Offer,et al. Can a myosin molecule bind to two actin filaments? , 1978, Nature.
[4] R. Tregear,et al. Tension maintenance and crossbridge detachment , 1982, FEBS letters.
[5] J. Lafountain,et al. Fixation and staining of F-actin and microfilaments using tannic acid. , 1977, Journal of ultrastructure research.
[6] E. Coen,et al. DNA variation and evolution (reply) , 1984, Nature.
[7] L. Rebhun,et al. The visualization of actin filament polarity in thin sections. Evidence for the uniform polarity of membrane-associated filaments , 1978, The Journal of cell biology.
[8] The structure of S1-decorated actin filaments calculated from x-ray diffraction data with phases derived from electron micrographs. , 1982, Ultramicroscopy.
[9] Kenneth A. Taylor,et al. Three-dimensional reconstruction of rigor insect flight muscle from tilted thin sections , 1984, Nature.
[10] R. Goody,et al. Cross-bridges and the mechanism of muscle contraction. , 1983, Biochimica et biophysica acta.
[11] D. Mornet,et al. Structure of the actin–myosin interface , 1981, Nature.
[12] E. O'Brien,et al. The position of tropomyosin in muscle thin filaments , 1980, Nature.
[13] K. Holmes,et al. Induced Changes in Orientation of the Cross-Bridges of Glycerinated Insect Flight Muscle , 1965, Nature.
[14] M. Reedy. Ultrastructure of insect flight muscle. I. Screw sense and structural grouping in the rigor cross-bridge lattice. , 1968, Journal of molecular biology.
[15] A. Miller,et al. Effect of activation by calcium on the x-ray diffraction pattern from insect flight muscle. , 1975, Journal of molecular biology.
[16] R. Goody,et al. Cross-bridge conformation as revealed by x-ray diffraction studies on insect flight muscles with ATP analogues. , 1975, Biophysical journal.
[17] E. Katayama,et al. Three-dimensional image analysis of the complex of thin filaments and myosin molecules from skeletal muscle. III. The multi-domain structure of actin-heavy meromyosin complex. , 1981, Journal of biochemistry.
[18] P. Bennett. Decrease in section thickness on exposure to the electron beam; the use of tilted sections in estimating the amount of shrinkage. , 1974, Journal of cell science.
[19] D. White. Rigor contraction and the effect of various phosphate compounds on glycerinated insect flight and vertebrate muscle , 1970, The Journal of physiology.
[20] R. Kensler,et al. An electron microscopic and optical diffraction analysis of the structure of Limulus telson muscle thick filaments , 1982, The Journal of cell biology.
[21] R. Goody,et al. Structural evidence that myosin heads may interact with two sites on F-actin , 1982, Nature.
[22] R. Craig,et al. Three-dimensional reconstruction of thin filaments decorated with a Ca2+-regulated myosin. , 1982, Journal of molecular biology.
[23] Y. Maéda. X-ray diffraction patterns from molecular arrangements with 38-nm periodicities around muscle thin filaments , 1979, Nature.
[24] M. Stewart,et al. Frog skeletal muscle thick filaments are three-stranded , 1983, The Journal of cell biology.
[25] Peter J. Knight,et al. Fraction of myosin heads bound to thin filaments in rigor fibrils from insect flight and vertebrate muscles , 1981, Nature.
[26] N. Yagi,et al. Intensification of the 5.9-nm actin layer line in contracting muscle , 1984, Nature.
[27] Takeyuki Wakabayashi,et al. Three-dimensional image analysis of the complex of thin filaments and myosin molecules from skeletal muscle. II. The multi-domain structure of actin-myosin S1 complex.:II. The Multi-Domain Structure of Actin-Myosin S 1 Complex , 1981 .
[28] J. Squire. General model of myosin filament structure. II. Myosin filaments and cross-bridge interactions in vertebrate striated and insect flight muscles. , 1972, Journal of molecular biology.
[29] M. Reedy. Cross-Bridges and Periods in Insect Flight Muscle , 1967 .
[30] G. Offer,et al. Arrangement of cross-bridges in insect flight muscle in rigor. , 1981, Journal of molecular biology.
[31] R. Mendelson,et al. Structure of myosin subfragment 1 from low-angle X-ray scattering. , 1980, Biochemistry.
[32] H. Erickson,et al. Image reconstruction in electron microscopy: enhancement of periodic structure by optical filtering. , 1978, Methods in enzymology.
[33] H E Huxley,et al. The Mechanism of Muscular Contraction , 1965, Scientific American.
[34] L. Amos,et al. A new model for the geometry of the binding of myosin crossbridges to muscle thin filaments. , 1981, Journal of molecular biology.
[35] J. Haselgrove,et al. Modeling rigor cross-bridge patterns in muscle I. Initial studies of the rigor lattice of insect flight muscle. , 1978, Biophysical journal.
[36] G. Phillips,et al. Troponin and its interactions with tropomyosin. An electron microscope study. , 1982, Journal of molecular biology.
[37] S. Edelstein,et al. Trigonal catalase crystals: a new molecular packing assignment obtained from sections preserved with tannic acid. , 1984, Ultramicroscopy.
[38] T. Sato,et al. A modified method for lead staining of thin sections. , 1968, Journal of electron microscopy.
[39] R. Cooke,et al. Actin-myosin interactions visualized by the quick-freeze, deep-etch replica technique. , 1983, Journal of molecular biology.
[40] D. DeRosier,et al. Three-dimensional reconstruction of F-actin, thin filaments and decorated thin filaments. , 1970, Journal of molecular biology.
[41] C. Cohen,et al. Actin filaments in muscle: pattern of myosin and tropomyosin/troponin attachments. , 1978, Journal of molecular biology.
[42] H. Huxley. Structural difference between resting and rigor muscle; evidence from intensity changes in the lowangle equatorial x-ray diagram. , 1968, Journal of molecular biology.
[43] D. DeRosier,et al. F-actin is a helix with a random variable twist , 1982, Nature.
[44] J. Heuser. Structure of the myosin crossbridge lattice in insect flight muscle. , 1983, Journal of molecular biology.