Crystal Structure of Neuropsin, a Hippocampal Protease Involved in Kindling Epileptogenesis
Neuropsin is a novel serine protease, the expression of which is highly localized in the limbic areas of the mouse brain and which is suggested to be involved in kindling epileptogenesis and hippocampal plasticity. The 2.1-Ã resolution crystal structure of neuropsin provides the first three-dimensi...
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Veröffentlicht in: | The Journal of biological chemistry 1999-02, Vol.274 (7), p.4220-4224 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Neuropsin is a novel serine protease, the expression of which is highly localized in the limbic areas of the mouse brain and
which is suggested to be involved in kindling epileptogenesis and hippocampal plasticity. The 2.1-Ã
resolution crystal structure
of neuropsin provides the first three-dimensional view of one of the serine proteases highly expressed in the nervous system,
and reveals a serine protease fold that exhibits chimeric features between trypsin and nerve growth factor-γ (NGFγ), a member
of the kallikrein family. Neuropsin possesses an N -glycosylated âkallikrein loopâ but forms six disulfide bonds corresponding to those of trypsin. The ordered kallikrein loop
projects proline toward the active site to restrict smaller residues or proline at the P2 position of substrates. Loop F,
which participates in forming the S3/S4 sites, is similar to trypsin rather than NGFγ. The unique conformations of loops G
and H form an S1 pocket specific for both arginine and lysine. These characteristic loop structures forming the substrate-binding
site suggest the novel substrate specificity of neuropsin and give a clue to the design of its specific inhibitors. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.274.7.4220 |