Abstract
Molecular mechanisms of activity-dependent synapse reduction were studied in an in vitro mammalian neuromuscular preparation. Synapse reduction in this model is activity-dependent and is substantially reduced by the broad-spectrum protease inhibitor, leupeptin, suggesting the role of activity-dependent proteolytic action in the process. Our present experiments show that a potent and specific thrombin inhibitor, hirudin, at nanomolar concentration completely blocked the activity-dependent synapse reduction. Furthermore, a naturally occurring serine protease inhibitor, protease nexin I (PNI), which closely colocalizes with acetylcholine receptors at the neuromuscular junction, inhibited the synapse reduction at the same low concentration. In contrast, neither cystatin, a cysteine protease inhibitor, nor aprotinin, a serine protease inhibitor that does not inhibit thrombin, blocked the synapse reduction. Similarly, neither of the inhibitors of the calcium-activated proteases calpain I and II prevented the reduction of synapses. These results strongly suggest that serine proteolytic action by thrombin or thrombin-like molecules is required for synapse reduction in our in vitro model of the mammalian neuromuscular junction.
MeSH Terms
Amyloid beta-Protein Precursor
Animals
Animals, Newborn
Aprotinin/pharmacology
Calpain/antagonists & inhibitors
Carrier Proteins/pharmacology
Cell Communication
Cells, Cultured
Cerebral Cortex/physiology
Cystatins/pharmacology
Electric Stimulation
Hirudins/pharmacology
Humans
Mice
Muscles/physiology
Nerve Growth Factors/pharmacology
Neurites/physiology
Neuromuscular Junction/drug effects,physiology
Neurons/drug effects,physiology
Protease Nexins
Receptors, Cell Surface
Receptors, Cholinergic/physiology
Recombinant Proteins/pharmacology
Superior Cervical Ganglion/physiology
Synapses/drug effects,physiology
Thrombin/antagonists & inhibitors,metabolism
Chemicals
Amyloid beta-Protein Precursor
Carrier Proteins
Cystatins
Hirudins
Nerve Growth Factors
Protease Nexins
Receptors, Cell Surface
Receptors, Cholinergic
Recombinant Proteins
Aprotinin
Thrombin
Calpain
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Liu Y
Laboratory of Developmental Neurobiology, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892.
Fields R D
Festoff B W
Nelson P G
References (25)
25 references, click to expand
-
Inhibition of protease activity can lead to neurite extension in neuroblastoma cells.
Prog Brain Res. 1983;58:359-64
PMID: 6356224
-
Local control of neurite development by nerve growth factor.
Proc Natl Acad Sci U S A. 1977 Oct;74(10):4516-9
PMID: 270699
-
Thrombin receptor peptides induce shape change in neonatal murine astrocytes in culture.
J Neurosci Res. 1994 Jan;37(1):108-15
PMID: 8145298
-
Cell-derived proteases and protease inhibitors as regulators of neurite outgrowth.
Trends Neurosci. 1988 Dec;11(12):541-4
PMID: 2471310
-
In vivo observations of pre- and postsynaptic changes during the transition from multiple to single innervation at developing neuromuscular junctions.
J Neurosci. 1993 Feb;13(2):834-55
PMID: 8426240
-
Effect of low calcium and protease inhibitors on synapse elimination during postnatal development in the rat soleus muscle.
Brain Res. 1986 Jul;393(1):99-107
PMID: 3015360
-
The Effect of Inhibiting the Calcium Activated Neutral Protease, on Motor Unit Size after Partial Denervation of the Rat Soleus Muscle.
Eur J Neurosci. 1989 Jan;1(6):616-625
PMID: 12106119
-
The role of Ca2+ in the elimination of polyneuronal innervation of rat soleus muscle fibres.
Eur J Neurosci. 1992;4(5):433-7
PMID: 12106352
-
Synthesis and properties of Cbz-Phe-Arg-CHN2 (benzyloxycarbonylphenylalanylarginyldiazomethane) as a proteinase inhibitor.
Biochem J. 1988 Mar 1;250(2):621-3
PMID: 3355540
-
Glia-derived nexin potentiates neurite extension in hippocampal pyramidal cells in vitro.
Dev Neurosci. 1990;12(2):73-80
PMID: 2335138
-
Prothrombin mRNA is expressed by cells of the nervous system.
Neuron. 1991 Apr;6(4):575-81
PMID: 2015093
-
Synapse elimination from the mouse neuromuscular junction in vitro: a non-Hebbian activity-dependent process.
J Neurobiol. 1993 Nov;24(11):1517-30
PMID: 8283186
-
Released protease-nexin regulates cellular binding, internalization, and degradation of serine proteases.
Proc Natl Acad Sci U S A. 1981 Apr;78(4):2340-4
PMID: 7017731
-
Plasminogen activators and inhibitors in the neuromuscular system: III. The serpin protease nexin I is synthesized by muscle and localized at neuromuscular synapses.
J Cell Physiol. 1991 Apr;147(1):76-86
PMID: 2037625
-
Proteolytic regulation of neurite outgrowth from neuroblastoma cells by thrombin and protease nexin-1.
J Cell Biochem. 1989 Jan;39(1):55-64
PMID: 2654147
-
Biology of recombinant hirudin (CGP 39393): a new prospect in the treatment of thrombosis.
Semin Thromb Hemost. 1989 Jul;15(3):293-301
PMID: 2688102
-
Proteolytic activity, synapse elimination, and the Hebb synapse.
J Neurobiol. 1994 Mar;25(3):325-35
PMID: 8195793
-
Protease-nexin: a cellular component that links thrombin and plasminogen activator and mediates their binding to cells.
Cell. 1980 Aug;21(1):37-45
PMID: 6157479
-
Synaptic dynamics at the neuromuscular junction: mechanisms and models.
J Neurobiol. 1990 Jan;21(1):223-49
PMID: 2181065
-
Activity-dependent development of the vertebrate nervous system.
Int Rev Neurobiol. 1992;34:133-214
PMID: 1587715
-
Reciprocal modulation of astrocyte stellation by thrombin and protease nexin-1.
J Neurochem. 1990 May;54(5):1735-43
PMID: 1691280
-
Thrombin causes neurite retraction in neuronal cells through activation of cell surface receptors.
Neuron. 1992 Feb;8(2):363-75
PMID: 1310864
-
Molecular cloning of a functional thrombin receptor reveals a novel proteolytic mechanism of receptor activation.
Cell. 1991 Mar 22;64(6):1057-68
PMID: 1672265
-
Protease nexin I, thrombin- and urokinase-inhibiting serpin, concentrated in normal human cerebrospinal fluid.
Neurology. 1992 Jul;42(7):1361-6
PMID: 1620346
-
A metalloproteinase inhibitor domain in Alzheimer amyloid protein precursor.
Nature. 1993 Apr 29;362(6423):839-41
PMID: 8479521