Distribution and targeting of a mu-opioid receptor (MOR1) in brain and spinal cord
Распределение и направленное перемещение μ-опиоидного рецептора (MOR1) в головном и спинном мозге
1995-05-01
SCID: 54.1/72dtx6fb
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enkephalin-containing axonsimmunohistochemistrymu-opioid receptor (MOR1)opioid receptor targetingsomatodendritic domain
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Abstract (AI)
Opioid receptors regulate neuronal activity by both pre- and postsynaptic mechanisms. We recently reported that the cloned delta-opioid receptor (DOR1) is primarily targeted to axons, suggesting a presynaptic role. In the present study we have studied the distribution and targeting of another opioid receptor, the mu-opioid receptor (MOR1), by raising anti-peptide antisera to the C-terminal peptide of MOR1. The specificity of the antisera was determined by analysis of transfected cells, Western blots, and immunoisolation studies. Immunohistochemistry showed that MOR1 immunoreactivity was enriched in many brain areas including cerebral cortex, striatum, hippocampus, locus coeruleus, and the superficial laminae of the dorsal horn. Moreover, MOR1-expressing neurons seem to target this receptor preferentially to their somatodendritic domain as determined by double-labeling experiments with MAP2. However, discrete populations of neurons target MOR1 to their axons, including some primary afferent neurons that express DOR1. In many regions enkephalin-containing axons were complementary to MOR1, suggesting by their proximity that enkephalins may be physiologically relevant ligands for this receptor. Thus, these results provide a morphological basis for understanding pre- and postsynaptic functions mediated by MOR1.
Key Findings
1
Distinct neuronal populations target MOR1 to axons, including some primary afferent neurons that also express DOR1.
2
Enkephalin-containing axons are complementary and closely positioned to MOR1 in many regions, suggesting enkephalins may be physiologically relevant MOR1 ligands.
3
MOR1 immunoreactivity is enriched in the cerebral cortex, striatum, hippocampus, locus coeruleus, and superficial dorsal horn.
4
Most MOR1-expressing neurons preferentially target the receptor to their somatodendritic domain, supporting predominantly postsynaptic functions.
5
The observed MOR1 distribution and targeting provide a morphological basis for both presynaptic and postsynaptic opioid receptor functions.
6
Validated anti-MOR1 antisera enabled specific localization of MOR1 in transfected cells, Western blots, immunoisolation studies, and brain tissue.
Research Object
MOR1 (mu-opioid receptor)-expressing neurons and their receptor distribution in the brain and spinal cord
Research Subject
MOR1 subcellular targeting to somatodendritic versus axonal domains and its relationship to pre- and postsynaptic opioid signaling
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1995-05-01
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