Twelve monoclonal antibodies have been raised against proteins in preparations of Z-disks isolated from Drosophila melanogaster flight muscle. The monoclonal antibodies that recognized Z-band components were identified by immunofluorescence microscopy of flight muscle myofibrils. These antibodies have identified three Z-disk antigens on immunoblots of myofibrillar proteins. Monoclonal antibodies alpha:1-4 recognize a 90-100-kD protein which we identify as alpha-actinin on the basis of cross-reactivity with antibodies raised against honeybee and vertebrate alpha-actinins. Monoclonal antibodies P:1-4 bind to the high molecular mass protein, projectin, a component of connecting filaments that link the ends of thick filaments to the Z-band in insect asynchronous flight muscles. The anti-projectin antibodies also stain synchronous muscle, but, surprisingly, the epitopes here are within the A-bands, not between the A- and Z-bands, as in flight muscle. Monoclonal antibodies Z(210):1-4 recognize a 210-kD protein that has not been previously shown to be a Z-band structural component. A fourth antigen, resolved as a doublet (approximately 400/600 kD) on immunoblots of Drosophila fibrillar proteins, is detected by a cross reacting antibody, Z(400):2, raised against a protein in isolated honeybee Z-disks. On Lowicryl sections of asynchronous flight muscle, indirect immunogold staining has localized alpha-actinin and the 210-kD protein throughout the matrix of the Z-band, projectin between the Z- and A-bands, and the 400/600-kD components at the I-band/Z-band junction. Drosophila alpha-actinin, projectin, and the 400/600-kD components share some antigenic determinants with corresponding honeybee proteins, but no honeybee protein interacts with any of the Z(210) antibodies.
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1 November 1989
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November 01 1989
Characterization of components of Z-bands in the fibrillar flight muscle of Drosophila melanogaster.
J D Saide,
J D Saide
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
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S Chin-Bow,
S Chin-Bow
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
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J Hogan-Sheldon,
J Hogan-Sheldon
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
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L Busquets-Turner,
L Busquets-Turner
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
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J O Vigoreaux,
J O Vigoreaux
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
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K Valgeirsdottir,
K Valgeirsdottir
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
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M L Pardue
M L Pardue
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
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J D Saide
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
S Chin-Bow
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
J Hogan-Sheldon
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
L Busquets-Turner
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
J O Vigoreaux
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
K Valgeirsdottir
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
M L Pardue
Department of Physiology, Boston University School of Medicine, Massachusetts 02118.
Online ISSN: 1540-8140
Print ISSN: 0021-9525
J Cell Biol (1989) 109 (5): 2157–2167.
Citation
J D Saide, S Chin-Bow, J Hogan-Sheldon, L Busquets-Turner, J O Vigoreaux, K Valgeirsdottir, M L Pardue; Characterization of components of Z-bands in the fibrillar flight muscle of Drosophila melanogaster.. J Cell Biol 1 November 1989; 109 (5): 2157–2167. doi: https://doi.org/10.1083/jcb.109.5.2157
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