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Determining Membrane Protein Topology Using Fluorescence Protease Protection (FPP)
Published on: April 20, 2015
Enzymatic properties and localization of motopsin (PRSS12), a protease whose absence causes mental retardation
Shinichi Mitsui1, Nozomi Yamaguchi, Yoji Osako
1Department of Neurobiology and Anatomy, Kochi Medical School, Oko-cho, Nankoku 783-8505, Japan. smitsui@kochi-u.ac.jp
Abstract:
Motopsin (PRSS12) is a mosaic protease expressed in the central nervous system. Truncation of the human motopsin gene causes nonsyndromic mental retardation. Understanding the enzymatic properties and localization of motopsin protein in the central nervous system will help identify the molecular mechanism by which the loss of motopsin function causes mental retardation. Recombinant motopsin showed amidolytic activity against the synthetic substrate benzyloxycarbonyl-l-phenylalanyl-l-arginine 4-methyl-coumaryl-7-amide. Motopsin activated the single-chain tissue plasminogen activator precursor and exhibited gelatinolytic activity. This enzymatic activity was inhibited by typical serine protease inhibitors such as aprotinin, leupeptin, and (4-amidinophenyl) methanesulfonyl fluoride. Immunocytochemistry using anti-motopsin IgG revealed that both human and mouse motopsin proteins were distributed in discrete puncta along the dendrites and soma as well as axons in cultured hippocampal neurons. In the limbic system, including the cingulate and hippocampal pyramidal neurons and piriform cortex, high level of motopsin protein was expressed at postnatal day 10, but a very low level at 10-week-old mice. Motopsin and tissue plasminogen activator were co-expressed in the cingulate pyramidal neurons at postnatal day 10 and were distributed along dendrites of cultured pyramidal neurons. In cranial nuclei, a moderate level of motopsin protein was detected independently on the developmental stage. Our results suggest that motopsin has multiple functions, such as axon outgrowth, arranging perineuronal environment, and maintaining neuronal plasticity, partly in coordination with other proteases including tissue plasminogen activator.
Insights
Motopsin (PRSS12), a central nervous system protease, exhibits enzymatic activity and is crucial for neuronal development. Its dysfunction is linked to mental retardation, highlighting its role in neuronal plasticity and axon growth.
Area of Science:
- Neuroscience
- Biochemistry
- Molecular Biology
Background:
- Motopsin (PRSS12) is a mosaic protease found in the central nervous system.
- Truncation of the motopsin gene is associated with nonsyndromic mental retardation.
- Understanding motopsin's function is key to elucidating the molecular basis of mental retardation.
Purpose of the Study:
- To investigate the enzymatic properties of motopsin.
- To determine the localization of motopsin protein within the central nervous system.
- To explore motopsin's role in neuronal development and plasticity.
Main Methods:
- Recombinant motopsin was used to assess amidolytic and gelatinolytic activity.
- Serine protease inhibitors were employed to characterize enzymatic inhibition.
- Immunocytochemistry with anti-motopsin IgG was performed on cultured neurons and brain tissue.
- Expression levels were analyzed during different developmental stages in mice.
Main Results:
- Recombinant motopsin demonstrated amidolytic activity and activated single-chain tissue plasminogen activator.
- Motopsin activity was inhibited by standard serine protease inhibitors.
- Motopsin protein localized to puncta along dendrites, soma, and axons of cultured hippocampal neurons.
- High motopsin expression was observed in the limbic system during early development, decreasing significantly in adults.
Conclusions:
- Motopsin possesses enzymatic activities suggesting roles in axon outgrowth and perineuronal environment arrangement.
- Motopsin's localization and developmental expression pattern indicate a role in maintaining neuronal plasticity.
- Coordination with proteases like tissue plasminogen activator may be involved in motopsin's functions.

