Periodic features in the amino acid sequence of nematode myosin rod.
暂无分享,去创建一个
[1] J. Karn,et al. Periodic charge distributions in the myosin rod amino acid sequence match cross-bridge spacings in muscle , 1982, Nature.
[2] M. O. Dayhoff,et al. Atlas of protein sequence and structure , 1965 .
[3] M. Stewart,et al. The myosin filament. IX. Determination of subfilament positions by computer processing of electron micrographs. , 1981, Journal of molecular biology.
[4] H. Noda,et al. Assembly of myosin molecules into the structure of thick filaments of muscle. , 1973, Advances in biophysics.
[5] A. Mclachlan. Tests for comparing related amino-acid sequences. Cytochrome c and cytochrome c 551 . , 1971, Journal of molecular biology.
[6] A. Mclachlan,et al. Repeated helical pattern in apolipoprotein-A-I , 1977, Nature.
[7] A. Mclachlan,et al. Periodic charge distribution in the intermediate filament proteins desmin and vimentin. , 1982, Journal of molecular biology.
[8] M. Stewart. Chain register in myosin rod , 1982, FEBS letters.
[9] H E Huxley,et al. The low-angle x-ray diagram of vertebrate striated muscle and its behaviour during contraction and rigor. , 1967, Journal of molecular biology.
[10] A. Weeds,et al. Studies on the chymotryptic digestion of myosin. Effects of divalent cations on proteolytic susceptibility. , 1977, Journal of molecular biology.
[11] J. Hanson,et al. Structure of the myosin-containing filament assembly (A-segment) separated from frog skeletal muscle. , 1971, Journal of molecular biology.
[12] A. Rowe,et al. Fraying of A-filaments into three subfilaments , 1980, Nature.
[13] D. Parry. Structure of rabbit skeletal myosin. Analysis of the amino acid sequences of two fragments from the rod region. , 1981, Journal of molecular biology.
[14] D A Parry,et al. Analysis of the primary structure of collagen for the origins of molecular packing. , 1973, Journal of molecular biology.
[15] S. Lehrer,et al. Effects of an interchain disulfide bond on tropomyosin structure: intrinsic fluorescence and circular dichroism studies. , 1978, Journal of molecular biology.
[16] D. Parry. Fibrinogen: A preliminary analysis of the amino acid sequences of the portions of the α, β and γ-chains postulated to form the interdomainal link between globular regions of the molecule , 1978 .
[17] A. Mclachlan,et al. Coiled coil formation and sequence regularities in the helical regions of α-keratin , 1978 .
[18] A. Mclachlan,et al. The 14-fold periodicity in α-tropomyosin and the interaction with actin , 1976 .
[19] J. Lowy,et al. A model for the coarse structure of paramyosin filaments. , 1970, Journal of molecular biology.
[20] J. Squire. General model of myosin filament structure. 3. Molecular packing arrangements in myosin filaments. , 1973, Journal of molecular biology.
[21] F. Crick,et al. The packing of α‐helices: simple coiled‐coils , 1953 .
[22] A. Miller,et al. Structure of insect fibrillar flight muscle in the presence and absence of ATP. , 1972, Journal of molecular biology.
[23] K. Holmes,et al. X-ray diffraction evidence for α-helical coiled-coils in native muscle , 1963 .
[24] L. Smillie,et al. The amino acid sequence of rabbit skeletal alpha-tropomyosin. The NH2-terminal half and complete sequence. , 1978, The Journal of biological chemistry.
[25] G. Phillips,et al. Motions of tropomyosin. Crystal as metaphor. , 1980, Biophysical journal.
[26] H E Huxley,et al. The Mechanism of Muscular Contraction , 1965, Scientific American.
[27] F. Pepe. The myosin filament. I. Structural organization from antibody staining observed in electron microscopy. , 1967, Journal of molecular biology.
[28] S. Brenner,et al. Identification of the structural gene for a myosin heavy-chain in Caenorhabditis elegans. , 1977, Journal of molecular biology.
[29] R. Doolittle,et al. Designation of sequences involved in the "coiled-coil" interdomainal connections in fibrinogen: constructions of an atomic scale model. , 1978, Journal of molecular biology.
[30] H. Huxley,et al. ELECTRON MICROSCOPE STUDIES ON THE STRUCTURE OF NATURAL AND SYNTHETIC PROTEIN FILAMENTS FROM STRIATED MUSCLE. , 1963, Journal of molecular biology.
[31] A. Mclachlan,et al. Repeating sequences and gene duplication in proteins. , 1972, Journal of molecular biology.
[32] A. Mclachlan,et al. Tropomyosin coiled-coil interactions: evidence for an unstaggered structure. , 1975, Journal of molecular biology.
[33] A. Mclachlan,et al. Analysis of periodic patterns in amino acid sequences: Collagen , 1977, Biopolymers.
[34] S. Harrison,et al. Tomato bushy stunt virus at 2.9 Å resolution , 1978, Nature.
[35] D. Parry,et al. Fibrous proteins, scientific, industrial, and medical aspects , 1979 .
[36] W. Longley. The packing of double helices. , 1975, Journal of molecular biology.
[37] A. Mclachlan,et al. Structure of magnesium paracrystals of α-tropomyosin , 1976 .
[38] I. Wilson,et al. Structure of the haemagglutinin membrane glycoprotein of influenza virus at 3 Å resolution , 1981, Nature.
[39] J. Haselgrove. X-ray evidence for conformational changes in the myosin filaments of vertebrate striated muscle. , 1975, Journal of molecular biology.
[40] P. Dowben,et al. The myosin filament. V. Intermediate voltage electron microscopy and optical diffraction studies of the substructure. , 1977, Journal of molecular biology.
[41] R. Stephenson,et al. Effects of heat stress on the lactation performance of ewes accustomed to tropical conditions and the total fluid intake of their lambs. , 1980, Australian journal of biological sciences.
[42] K. Weber,et al. Proteinchemical characterization of three structurally distinct domains along the protofilament unit of desmin 10 nm filaments , 1982, Cell.
[43] J. Squire,et al. Three-dimensional structure of the vertebrate muscle A-band. III. M-region structure and myosin filament symmetry. , 1981, Journal of molecular biology.
[44] J. Walker,et al. Serum albumin domain secondary structure prediction. , 1978, Biochimica et biophysica acta.
[45] J. Wray. Structure of the backbone in myosin filaments of muscle , 1979, Nature.
[46] R. Fraser,et al. Structure of the α-keratin microfibril , 1976 .
[47] F. Pepe. The myosin filament: II. Interaction between myosin and actin filaments observed using antibody staining in fluorescent and electron microscopy , 1967 .
[48] S. Lowey,et al. Substructure of the myosin molecule. I. Subfragments of myosin by enzymic degradation. , 1969, Journal of molecular biology.
[49] D A Parry,et al. Structure of alpha-keratin: structural implication of the amino acid sequences of the type I and type II chain segments. , 1977, Journal of molecular biology.
[50] M. Perutz,et al. Three-dimensional Fourier Synthesis of Horse Oxyhaemoglobin at 2.8 Å Resolution: The Atomic Model , 1968, Nature.
[51] P. Dowben,et al. The myosin filament. VII Changes in internal structure along the length of the filament. , 1981, Journal of molecular biology.
[52] Sydney Brenner,et al. Molecular analysis of the unc-54 myosin heavy-chain gene of Caenorhabditis elegans , 1981, Nature.
[53] C. Cohen,et al. Studies on the structure of myosin. , 1962, Journal of molecular biology.
[54] S. Brenner,et al. A mutant affecting the heavy chain of myosin in Caenorhabditis elegans. , 1974, Journal of molecular biology.