Presynaptic Active Zone Density during Development and Synaptic Plasticity
暂无分享,去创建一个
[1] D. Schmitz,et al. Structural and functional plasticity of the cytoplasmic active zone , 2011, Current Opinion in Neurobiology.
[2] G. Spirou,et al. Specialized Synapse-Associated Structures within the Calyx of Held , 2000, The Journal of Neuroscience.
[3] M. Zenker,et al. Prenatal findings in four consecutive pregnancies with fetal Pierson syndrome, a newly defined congenital nephrosis syndrome , 2006, Prenatal diagnosis.
[4] E. Lambert,et al. Electromyography and electric stimulation of nerves in diseases of motor unit; observations on myasthenic syndrome associated with malignant tumors. , 1957, Journal of the American Medical Association.
[5] J. Sanes,et al. Roles of Neurotransmitter in Synapse Formation Development of Neuromuscular Junctions Lacking Choline Acetyltransferase , 2002, Neuron.
[6] J. Sanes,et al. Properly formed but improperly localized synaptic specializations in the absence of laminin α4 , 2001, Nature Neuroscience.
[7] A. C. Meyer,et al. Functional Inactivation of a Fraction of Excitatory Synapses in Mice Deficient for the Active Zone Protein Bassoon , 2003, Neuron.
[8] L. Mendell,et al. Quantitative ultrastructure of Ia boutons in the ventral horn: scaling and positional relationships , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[9] A. Hannan,et al. Enriched environments, experience-dependent plasticity and disorders of the nervous system , 2006, Nature Reviews Neuroscience.
[10] Cast: a novel protein of the cytomatrix at the active zone of synapses that forms a ternary complex with RIM1 and munc13-1. , 2002, The Journal of cell biology.
[11] D. Ress,et al. Macromolecular connections of active zone material to docked synaptic vesicles and presynaptic membrane at neuromuscular junctions of mouse , 2009, The Journal of comparative neurology.
[12] Terrance T. Kummer,et al. Agrin promotes synaptic differentiation by counteracting an inhibitory effect of neurotransmitter. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[13] T. Südhof,et al. Piccolo and bassoon maintain synaptic vesicle clustering without directly participating in vesicle exocytosis , 2010, Proceedings of the National Academy of Sciences.
[14] T. Kuner,et al. Targeted three‐dimensional immunohistochemistry reveals localization of presynaptic proteins Bassoon and Piccolo in the rat calyx of Held before and after the onset of hearing , 2010, The Journal of comparative neurology.
[15] G. Feng,et al. Genetic evidence that relative synaptic efficacy biases the outcome of synaptic competition , 2003, Nature.
[16] D. Levine,et al. Physiological types and histochemical profiles in motor units of the cat gastrocnemius , 1973, The Journal of physiology.
[17] A. Engel,et al. Lambert‐eaton myasthenic syndrome IgG depletes presynaptic membrane active zone particles by antigenic modulation , 1988, Annals of neurology.
[18] G. Schiavo,et al. Direct Interaction of the Rab3 Effector RIM with Ca2+Channels, SNAP-25, and Synaptotagmin* , 2001, The Journal of Biological Chemistry.
[19] S. Mead,et al. Prion disease genetics , 2006, European Journal of Human Genetics.
[20] J. Sanes,et al. Aberrant differentiation of neuromuscular junctions in mice lacking s-laminin/laminin β2 , 1995, Nature.
[21] C. Mulle,et al. Impaired development of hippocampal mossy fibre synapses in mouse mutants for the presynaptic scaffold protein Bassoon , 2010, The Journal of physiology.
[22] H. Nishimune. Transsynaptic channelosomes , 2011, Channels.
[23] M. Fiszman,et al. Developmental Regulation of Amyloid Precursor Protein at the Neuromuscular Junction in Mouse Skeletal Muscle , 2000, Molecular and Cellular Neuroscience.
[24] M. Fahim,et al. Ultrastructural studies of young and old mouse neuromuscular junctions , 1982, Journal of neurocytology.
[25] R Llinás,et al. Microdomains of high calcium concentration in a presynaptic terminal. , 1992, Science.
[26] Konrad Lehmann,et al. Vision and visual cortical maps in mice with a photoreceptor synaptopathy: Reduced but robust visual capabilities in the absence of synaptic ribbons , 2010, NeuroImage.
[27] J. Ammermüller,et al. Structural and functional remodeling in the retina of a mouse with a photoreceptor synaptopathy: plasticity in the rod and degeneration in the cone system , 2007, The European journal of neuroscience.
[28] E. Isacoff,et al. Optical quantal analysis of synaptic transmission in wild-type and rab3-mutant Drosophila motor axons , 2011, Nature Neuroscience.
[29] E. Lambert,et al. QUANTAL COMPONENTS OF END‐PLATE POTENTIALS IN THE MYASTHENIC SYNDROME * , 1971, Annals of the New York Academy of Sciences.
[30] Y. Akimoto,et al. ELKS, a protein structurally related to the active zone-associated protein CAST, is expressed in pancreatic beta cells and functions in insulin exocytosis: interaction of ELKS with exocytotic machinery analyzed by total internal reflection fluorescence microscopy. , 2005, Molecular biology of the cell.
[31] Karl G. Johnson,et al. LAR, liprin alpha and the regulation of active zone morphogenesis. , 2007, Journal of cell science.
[32] C. Garner,et al. Molecular mechanisms of presynaptic differentiation. , 2008, Annual review of cell and developmental biology.
[33] Sunil Q. Mehta,et al. Synaptojanin Is Recruited by Endophilin to Promote Synaptic Vesicle Uncoating , 2003, Neuron.
[34] E. Gundelfinger,et al. Molecular dissection of the photoreceptor ribbon synapse , 2005, The Journal of cell biology.
[35] Y. Koh,et al. A Drosophila model of GSS syndrome suggests defects in active zones are responsible for pathogenesis of GSS syndrome. , 2010, Human molecular genetics.
[36] D. McCormick,et al. Essential Role of Phosphoinositide Metabolism in Synaptic Vesicle Recycling , 1999, Cell.
[37] P F Gardiner,et al. Physiological properties of motoneurons innervating different muscle unit types in rat gastrocnemius. , 1993, Journal of neurophysiology.
[38] Aaron M. Beedle,et al. Rab3-interacting Molecule γ Isoforms Lacking the Rab3-binding Domain Induce Long Lasting Currents but Block Neurotransmitter Vesicle Anchoring in Voltage-dependent P/Q-type Ca2+ Channels* , 2010, The Journal of Biological Chemistry.
[39] R. Robledo,et al. Targeted deletion of βIII spectrin impairs synaptogenesis and generates ataxic and seizure phenotypes , 2010, Proceedings of the National Academy of Sciences.
[40] T. Südhof,et al. RIM Determines Ca2+ Channel Density and Vesicle Docking at the Presynaptic Active Zone , 2011, Neuron.
[41] T. Mizushige,et al. Active zone density is conserved during synaptic growth but impaired in aged mice , 2012, The Journal of comparative neurology.
[42] T. Südhof,et al. A family of RIM-binding proteins regulated by alternative splicing: Implications for the genesis of synaptic active zones , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[43] B. Walmsley,et al. Ultrastructural basis of synaptic transmission between endbulbs of Held and bushy cells in the rat cochlear nucleus , 2002, The Journal of physiology.
[44] C. Ko. Formation of the active zone at developing neuromuscular junctions in larval and adult bullfrogs , 1985, Journal of neurocytology.
[45] E. Gutmann,et al. Age changes in cross striated muscle of the rat , 1971, The Journal of physiology.
[46] H. Scheich,et al. Presynaptic cytomatrix protein Bassoon is localized at both excitatory and inhibitory synapses of rat brain , 1999, The Journal of comparative neurology.
[47] M. Narusawa,et al. Slow myosin in developing rat skeletal muscle , 1987, The Journal of cell biology.
[48] JW Propst,et al. Correlations between active zone ultrastructure and synaptic function studied with freeze-fracture of physiologically identified neuromuscular junctions , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[49] Karl G. Johnson,et al. LAR, liprin α and the regulation of active zone morphogenesis , 2007, Journal of Cell Science.
[50] Arne Stoschek,et al. The architecture of active zone material at the frog's neuromuscular junction , 2001, Nature.
[51] N. Murray,et al. The Lambert-Eaton myasthenic syndrome. A review of 50 cases. , 1988, Brain : a journal of neurology.
[52] C. McBain,et al. Differential regulation at functionally divergent release sites along a common axon , 2007, Current Opinion in Neurobiology.
[53] C. Heckman,et al. Bistability in spinal motoneurons in vivo: systematic variations in persistent inward currents. , 1998, Journal of neurophysiology.
[54] A. Engel,et al. Passive transfer of Lambert-Eaton myasthenic syndrome with IgG from man to mouse depletes the presynaptic membrane active zones. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[55] F. Angenstein,et al. Morphological and metabolic changes in the cortex of mice lacking the functional presynaptic active zone protein bassoon: a combined 1H-NMR spectroscopy and histochemical study. , 2008, Cerebral cortex.
[56] C. Henderson,et al. Motor neuron diversity in development and disease. , 2010, Annual review of neuroscience.
[57] T. Shibasaki,et al. Interaction of ATP Sensor, cAMP Sensor, Ca2+ Sensor, and Voltage-dependent Ca2+ Channel in Insulin Granule Exocytosis* , 2004, Journal of Biological Chemistry.
[58] J. Eilers,et al. Bassoon Speeds Vesicle Reloading at a Central Excitatory Synapse , 2010, Neuron.
[59] Aaron M. Beedle,et al. RIM1 confers sustained activity and neurotransmitter vesicle anchoring to presynaptic Ca2+ channels , 2007, Nature Neuroscience.
[60] H. Bellen,et al. The architecture of the active zone in the presynaptic nerve terminal. , 2004, Physiology.
[61] R. Fetter,et al. A postsynaptic Spectrin scaffold defines active zone size, spacing, and efficacy at the Drosophila neuromuscular junction , 2006, The Journal of cell biology.
[62] T. Aigner,et al. Human laminin beta2 deficiency causes congenital nephrosis with mesangial sclerosis and distinct eye abnormalities. , 2004, Human molecular genetics.
[63] C. Garner,et al. The presynaptic cytomatrix of brain synapses , 2001, Cellular and Molecular Life Sciences CMLS.
[64] C. Heckman,et al. Bistability in spinal motoneurons in vivo: systematic variations in rhythmic firing patterns. , 1998, Journal of neurophysiology.
[65] J. Walrond,et al. Structure of axon terminals and active zones at synapses on lizard twitch and tonic muscle fibers , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[66] P. Caroni,et al. β-Adducin Is Required for Stable Assembly of New Synapses and Improved Memory upon Environmental Enrichment , 2011, Neuron.
[67] G. Sieck,et al. Morphology of diaphragm neuromuscular junctions on different fibre types , 1996, Journal of neurocytology.
[68] R. Fetter,et al. Caenorhabditis elegans Innexins Regulate Active Zone Differentiation , 2009, The Journal of Neuroscience.
[69] D. Zenisek,et al. Recent progress towards understanding the synaptic ribbon , 2005, Current Opinion in Neurobiology.
[70] Robert W. Burgess,et al. Rab3 Dynamically Controls Protein Composition at Active Zones , 2009, Neuron.
[71] H. Bokor,et al. Contrasting the Functional Properties of GABAergic Axon Terminals with Single and Multiple Synapses in the Thalamus , 2008, The Journal of Neuroscience.
[72] J. Sanes,et al. A synaptic laminin–calcium channel interaction organizes active zones in motor nerve terminals , 2004, Nature.
[73] C. Mantilla,et al. Synaptic vesicle distribution and release at rat diaphragm neuromuscular junctions. , 2007, Journal of neurophysiology.
[74] Stephan J. Sigrist,et al. Bruchpilot, a Protein with Homology to ELKS/CAST, Is Required for Structural Integrity and Function of Synaptic Active Zones in Drosophila , 2006, Neuron.
[75] A. Engel,et al. Paucity and disorganization of presynaptic membrane active zones in the lambert‐eaton myasthenic syndrome , 1982 .
[76] Jeff W. Lichtman,et al. Multiple innervation of tonic endplates revealed by activity-dependent uptake of fluorescent probes , 1985, Nature.
[77] T. Südhof,et al. A Complete Genetic Analysis of Neuronal Rab3 Function , 2004, The Journal of Neuroscience.
[78] J. Stiles,et al. Single-Pixel Optical Fluctuation Analysis of Calcium Channel Function in Active Zones of Motor Nerve Terminals , 2011, The Journal of Neuroscience.
[79] Walter Schubert,et al. Localization of Alzheimer βA4 amyloid precursor protein at central and peripheral synaptic sites , 1991, Brain Research.
[80] H. Nishimune,et al. Calcium Channels Link the Muscle-Derived Synapse Organizer Laminin β2 to Bassoon and CAST/Erc2 to Organize Presynaptic Active Zones , 2011, The Journal of Neuroscience.
[81] Stephan J. Sigrist,et al. Bruchpilot Promotes Active Zone Assembly, Ca2+ Channel Clustering, and Vesicle Release , 2006, Science.
[82] Hyuno Kang,et al. Attenuation of age-related changes in mouse neuromuscular synapses by caloric restriction and exercise , 2010, Proceedings of the National Academy of Sciences.
[83] D. Owald,et al. Maturation of active zone assembly by Drosophila Bruchpilot , 2009, The Journal of cell biology.
[84] I. Meinertzhagen,et al. Regulated spacing of synapses and presynaptic active zones at larval neuromuscular junctions in different genotypes of the flies Drosophila and Sarcophaga , 1998, The Journal of comparative neurology.
[85] T. Schikorski,et al. Quantitative Ultrastructural Analysis of Hippocampal Excitatory Synapses Materials and Methods Terminology Fixation and Embedding , 2022 .
[86] N. Wray,et al. Genomewide Association for Major Depressive Disorder: A possible role for the presynaptic protein Piccolo , 2008, Molecular Psychiatry.
[87] T. Branco,et al. The probability of neurotransmitter release: variability and feedback control at single synapses , 2009, Nature Reviews Neuroscience.
[88] Molecular Mechanism of Active Zone Organization at Vertebrate Neuromuscular Junctions , 2012, Molecular Neurobiology.
[89] M A Xu-Friedman,et al. Three-Dimensional Comparison of Ultrastructural Characteristics at Depressing and Facilitating Synapses onto Cerebellar Purkinje Cells , 2001, The Journal of Neuroscience.
[90] Songyang Zhou,et al. Presynaptic and Postsynaptic Interaction of the Amyloid Precursor Protein Promotes Peripheral and Central Synaptogenesis , 2009, The Journal of Neuroscience.
[91] J. Dötsch,et al. Congenital nephrosis, mesangial sclerosis, and distinct eye abnormalities with microcoria: An autosomal recessive syndrome , 2004, American journal of medical genetics. Part A.
[92] E. Peterson,et al. Active zone organization and vesicle content scale with bouton size at a vertebrate central synapse , 1991, The Journal of comparative neurology.
[93] R. Balice-Gordon. Age‐related changes in neuromuscular innervation , 1997, Muscle & nerve. Supplement.
[94] E. Neher,et al. IgG from patients with Lambert-Eaton syndrome blocks voltage-dependent calcium channels. , 1988, Science.
[95] W. Gan,et al. Defective Neuromuscular Synapses in Mice Lacking Amyloid Precursor Protein (APP) and APP-Like Protein 2 , 2005, The Journal of Neuroscience.
[96] T. Tomoda,et al. Unc-51 Controls Active Zone Density and Protein Composition by Downregulating ERK Signaling , 2009, The Journal of Neuroscience.
[97] P. De Camilli,et al. Piccolo, a novel 420 kDa protein associated with the presynaptic cytomatrix. , 1996, European journal of cell biology.
[98] P. Taylor,et al. Postnatal developmental delay and supersensitivity to organophosphate in gene-targeted mice lacking acetylcholinesterase. , 2000, The Journal of pharmacology and experimental therapeutics.
[99] Ralf Schneggenburger,et al. A Munc13/RIM/Rab3 tripartite complex: from priming to plasticity? , 2005, The EMBO journal.
[100] Mark Ellisman,et al. STUDIES OF EXCITABLE MEMBRANES , 1974, The Journal of cell biology.
[101] Thomas C. Südhof,et al. RIM Proteins Tether Ca2+ Channels to Presynaptic Active Zones via a Direct PDZ-Domain Interaction , 2011, Cell.
[102] A. Grinnell,et al. Low calcium‐induced disruption of active zone structure and function at the frog neuromuscular junction , 1996, Synapse.
[103] Y. Takai,et al. CAST2: identification and characterization of a protein structurally related to the presynaptic cytomatrix protein CAST , 2004, Genes to cells : devoted to molecular & cellular mechanisms.
[104] F. Gage,et al. Neurotransmitter Acetylcholine Negatively Regulates Neuromuscular Synapse Formation by a Cdk5-Dependent Mechanism , 2005, Neuron.
[105] Nils Brose,et al. Munc13-1 Is a Presynaptic Phorbol Ester Receptor that Enhances Neurotransmitter Release , 1998, Neuron.
[106] Yingming Zhao,et al. The Presynaptic Particle Web Ultrastructure, Composition, Dissolution, and Reconstitution , 2001, Neuron.
[107] E. Gundelfinger,et al. Molecular organization and assembly of the presynaptic active zone of neurotransmitter release. , 2006, Results and problems in cell differentiation.
[108] Y. Takai,et al. Physical and functional interaction of the active zone proteins, CAST, RIM1, and Bassoon, in neurotransmitter release , 2004, The Journal of cell biology.
[109] H. Blau,et al. Development of muscle fiber types in the prenatal rat hindlimb. , 1990, Developmental biology.
[110] M. Labouesse. [Caenorhabditis elegans]. , 2003, Medecine sciences : M/S.
[111] E. Lambert,et al. Detailed analysis of neuromuscular transmission in a patient with the myasthenic syndrome sometimes associated with bronchogenic carcinoma. , 1968, Mayo Clinic proceedings.
[112] J. Anderson,et al. Mutations in LAMB2 causing a severe form of synaptic congenital myasthenic syndrome , 2008, Journal of Medical Genetics.
[113] S. Sigrist,et al. Synaptogenesis , 2014, Current Biology.
[114] Greta Hultqvist,et al. A Protein Interaction Node at the Neurotransmitter Release Site: Domains of Aczonin/Piccolo, Bassoon, CAST, and Rim Converge on the N-Terminal Domain of Munc13-1 , 2009, The Journal of Neuroscience.
[115] Josef Ammermüller,et al. The Presynaptic Active Zone Protein Bassoon Is Essential for Photoreceptor Ribbon Synapse Formation in the Retina , 2003, Neuron.
[116] L. Acsády,et al. Structural Correlates of Efficient GABAergic Transmission in the Basal Ganglia–Thalamus Pathway , 2008, The Journal of Neuroscience.
[117] D. Reiff,et al. Differential Regulation of Active Zone Density during Long-Term Strengthening of Drosophila Neuromuscular Junctions , 2002, The Journal of Neuroscience.
[118] T. Reese,et al. Functional changes in frog neuromuscular junctions studied with freeze-fracture , 1974, Journal of neurocytology.
[119] P. De Camilli,et al. Delayed reentry of recycling vesicles into the fusion-competent synaptic vesicle pool in synaptojanin 1 knockout mice , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[120] K. Broadie,et al. Establishing and sculpting the synapse in Drosophila and C. elegans , 2002, Current Opinion in Neurobiology.
[121] Bert Sakmann,et al. Three-Dimensional Reconstruction of a Calyx of Held and Its Postsynaptic Principal Neuron in the Medial Nucleus of the Trapezoid Body , 2002, The Journal of Neuroscience.
[122] H. Wässle,et al. Differential expression of the presynaptic cytomatrix protein bassoon among ribbon synapses in the mammalian retina , 1999, The European journal of neuroscience.
[123] B. Patton. Laminins of the neuromuscular system , 2000, Microscopy research and technique.
[124] S S Kelly,et al. The effect of age on neuromuscular transmission. , 1978, The Journal of physiology.
[125] M. Pécot-Dechavassine,et al. [Synaptic vesicles and pouches at the level of "active zones" of the neuromuscular junction]. , 1970, Comptes rendus hebdomadaires des seances de l'Academie des sciences. Serie D: Sciences naturelles.
[126] G. Giaccone,et al. Gerstmann‐Sträussler‐Scheinker Disease and the Indiana Kindred , 1995, Brain pathology.
[127] T. Südhof,et al. Mammalian Homologues of Caenorhabditis elegans unc-13 Gene Define Novel Family of C2-domain Proteins (*) , 1995, The Journal of Biological Chemistry.
[128] D. Owald,et al. Assembling the presynaptic active zone , 2009, Current Opinion in Neurobiology.
[129] J. Massoulie,et al. The molecular forms of cholinesterase and acetylcholinesterase in vertebrates. , 1982, Annual review of neuroscience.
[130] S. Sigrist,et al. The Active Zone T-Bar—A Plasticity Module? , 2010, Journal of neurogenetics.
[131] C. Garner,et al. Bassoon, a Novel Zinc-finger CAG/Glutamine-repeat Protein Selectively Localized at the Active Zone of Presynaptic Nerve Terminals , 1998, The Journal of cell biology.
[132] E. Neher. Vesicle Pools and Ca2+ Microdomains: New Tools for Understanding Their Roles in Neurotransmitter Release , 1998, Neuron.
[133] A. Engel,et al. Lambert‐Eaton myasthenic syndrome: I. Early morphological effects of IgG on the presynaptic membrane active zones , 1987, Annals of neurology.
[134] M. Dennis,et al. Synaptic vesicle exocytosis captured by quick freezing and correlated with quantal transmitter release , 1979, The Journal of cell biology.
[135] Zhiyuan Lu,et al. Altered Synaptic Development and Active Zone Spacing in Endocytosis Mutants , 2006, Current Biology.
[136] E. Gundelfinger,et al. Onset Coding Is Degraded in Auditory Nerve Fibers from Mutant Mice Lacking Synaptic Ribbons , 2010, The Journal of Neuroscience.
[137] E. Gundelfinger,et al. A comparison of synaptic protein localization in hippocampal mossy fiber terminals and neurosecretory endings of the neurohypophysis using the cryo-immunogold technique , 2000, Journal of neurocytology.
[138] H. Nishimune,et al. ELKS1 and Ca2+ channel subunit &bgr;4 interact and colocalize at cerebellar synapses , 2012, Neuroreport.
[139] G. Feng,et al. Genetic Analysis of Collagen Q: Roles in Acetylcholinesterase and Butyrylcholinesterase Assembly and in Synaptic Structure and Function , 1999, The Journal of cell biology.
[140] B. Spiegelman,et al. Retrograde influence of muscle fibers on their innervation revealed by a novel marker for slow motoneurons , 2010, Development.
[141] B. Banker,et al. Neuromuscular transmission and correlative morphology in young and old mice , 1983, The Journal of physiology.
[142] Stephan J Sigrist,et al. The Postsynaptic Glutamate Receptor Subunit DGluR-IIA Mediates Long-Term Plasticity in Drosophila , 2002, The Journal of Neuroscience.
[143] Mark Ellisman,et al. Studies of excitable membranes. II. A comparison of specializations at neuromuscular junctions and nonjunctional sarcolemmas of mammalian fast and slow twitch muscle fibers , 1976, The Journal of cell biology.
[144] Michael Frotscher,et al. Structural Determinants of Transmission at Large Hippocampal Mossy Fiber Synapses , 2007, The Journal of Neuroscience.
[145] Christian Rosenmund,et al. Molecular mechanisms of active zone function , 2003, Current Opinion in Neurobiology.
[146] Thomas C. Südhof,et al. Rim is a putative Rab3 effector in regulating synaptic-vesicle fusion , 1997, Nature.
[147] Aaron DiAntonio,et al. Synaptic Development: Insights from Drosophila This Review Comes from a Themed Issue on Development Edited Synapse Development Live Imaging of Glutamate Receptor Clustering Synaptic Terminal Development Synaptic Terminal Stability , 2022 .
[148] M. R. Bennett,et al. The probability of quantal secretion at release sites in different calcium concentrations in toad (Bufo marinus) muscle. , 1989, The Journal of physiology.
[149] M. Fahim,et al. Endurance exercise modulates neuromuscular junction of C57BL/6NNia aging mice. , 1997, Journal of applied physiology.
[150] N. Hirokawa,et al. Internal and external differentiations of the postsynaptic membrane at the neuromuscular junction , 1982, Journal of neurocytology.