Institute for Integrative Neuroanatomy, Charité-Universitätsmedizin Berlin, Philippstrasse 12, Berlin, Germany.
Amino Acids. 2012 Sep;43(3):1399-403. doi: 10.1007/s00726-011-1195-5. Epub 2011 Dec 13.
Light microscopic evidence suggested a synaptic role for agmatinase, an enzyme capable of inactivating the putative neurotransmitter and endogenous anti-depressant agmatine. Using electron microscopy and an alternative pre-embedding approach referred to as virtual pre-embedding, agmatinase was localised pre- and postsynaptically, to dendritic spines, spine and non-spine terminals, and dendritic profiles. In dendritic spines, labelling displayed a tendency towards the postsynaptic density. These results further strengthen a synaptic role for agmatine and strongly suggest a regulatory role for synaptically expressed agmatinase.
光镜下的证据表明,胍氨酸酶可能具有突触作用,这种酶能够使假定的神经递质和内源性抗抑郁药胍丁胺失活。使用电子显微镜和一种称为虚拟包埋前的替代包埋前方法,胍氨酸酶被定位于树突棘、棘突和非棘突末端以及树突轮廓的突触前和突触后位置。在树突棘中,标记显示出向突触后密度的趋势。这些结果进一步加强了胍丁胺的突触作用,并强烈表明突触表达的胍氨酸酶具有调节作用。