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Probes for OPRM1

ACD can configure probes for the various manual and automated assays for OPRM1 for RNAscope Assay, or for Basescope Assay compatible for your species of interest.

  • Probes for OPRM1 (0)
  • Kits & Accessories (0)
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Refine Probe List

Content for comparison

Gene

  • OPRM1 (24) Apply OPRM1 filter
  • Gad2 (4) Apply Gad2 filter
  • vGlut2 (3) Apply vGlut2 filter
  • CHRNA7 (2) Apply CHRNA7 filter
  • DRD1 (2) Apply DRD1 filter
  • DRD2 (2) Apply DRD2 filter
  • OPRK1 (2) Apply OPRK1 filter
  • GFP (2) Apply GFP filter
  • Pdyn (2) Apply Pdyn filter
  • VGluT1 (2) Apply VGluT1 filter
  • VGAT (2) Apply VGAT filter
  • vGluT3 (2) Apply vGluT3 filter
  • TBD (2) Apply TBD filter
  • Gad1 (1) Apply Gad1 filter
  • egfp (1) Apply egfp filter
  • Rbfox3 (1) Apply Rbfox3 filter
  • CALCA (1) Apply CALCA filter
  • MET (1) Apply MET filter
  • FOS (1) Apply FOS filter
  • OPN4 (1) Apply OPN4 filter
  • GFAP (1) Apply GFAP filter
  • GLP1R (1) Apply GLP1R filter
  • (-) Remove GPR139 filter GPR139 (1)
  • Scn10a (1) Apply Scn10a filter
  • PVALB (1) Apply PVALB filter
  • AGRP (1) Apply AGRP filter
  • TAC1 (1) Apply TAC1 filter
  • Kcna4 (1) Apply Kcna4 filter
  • Tph2 (1) Apply Tph2 filter
  • Aldh1l1 (1) Apply Aldh1l1 filter
  • Adcyap1 (1) Apply Adcyap1 filter
  • NMUR2 (1) Apply NMUR2 filter
  • Dlk1 (1) Apply Dlk1 filter
  • TACR1 (1) Apply TACR1 filter
  • CHRM2 (1) Apply CHRM2 filter
  • Npy1r (1) Apply Npy1r filter
  • Gpr155 (1) Apply Gpr155 filter
  • Adora2a (1) Apply Adora2a filter
  • Pomc (1) Apply Pomc filter
  • Id4 (1) Apply Id4 filter
  • CARTPT (1) Apply CARTPT filter
  • Crhr2 (1) Apply Crhr2 filter
  • Nts (1) Apply Nts filter
  • mCherry (1) Apply mCherry filter
  • COL11A1 (1) Apply COL11A1 filter
  • tdTomato (1) Apply tdTomato filter
  • Chrnb2 (1) Apply Chrnb2 filter
  • (-) Remove Kcnd2 filter Kcnd2 (1)
  • EYFP (1) Apply EYFP filter
  • CRYM (1) Apply CRYM filter

Product

  • RNAscope Fluorescent Multiplex Assay (1) Apply RNAscope Fluorescent Multiplex Assay filter

Research area

  • Neuroscience (2) Apply Neuroscience filter

Category

  • Publications (2) Apply Publications filter
A Spatiomolecular Map of the Striatum

Cell Rep

2019 Dec 24

Antje M�rtin, Daniela Calvigioni, Ourania Tzortzi, Janos Fuzik, Emi lW�rnberg, Konstantinos Meletis
| DOI: 10.1016/j.celrep.2019.11.096

The striatum is organized into two major outputs formed by striatal projection neuron (SPN) subtypes with distinct molecular identities. In addition, histochemical division into patch and matrix compartments represents an additional spatial organization, proposed to mirror a motor-motivation regionalization. To map the molecular diversity of patch versus matrix SPNs, we genetically labeled mu opioid receptor (Oprm1) expressing neurons and performed single-nucleus RNA sequencing. This allowed us to establish molecular definitions of patch, matrix, and exopatch SPNs, as well as identification of Col11a1+ striatonigral SPNs. At the tissue level, mapping the expression of candidate markers reveals organization of spatial domains, which are conserved in the non-human primate brain. The spatial markers are cell-type independent and instead represent a spatial code found across all SPNs within a spatial domain. The spatiomolecular map establishes a formal system for targeting and studying striatal subregions and SPNs subtypes, beyond the classical striatonigral and striatopallidal division
Specific Connectivity and Unique Molecular Identity of MET Receptor Tyrosine Kinase Expressing Serotonergic Neurons in the Caudal Dorsal Raphe Nuclei

ACS Chem Neurosci.

2017 May 01

Kast RJ, Wu HH, Williams P, Gaspar P, Levitt P.
PMID: 28375615 | DOI: 10.1021/acschemneuro.7b00020

Molecular characterization of neurons across brain regions has revealed new taxonomies for understanding functional diversity even among classically defined neuronal populations. Neuronal diversity has become evident within the brain serotonin (5-HT) system, which is far more complex than previously appreciated. However, until now it has been difficult to define subpopulations of 5-HT neurons based on molecular phenotypes. We demonstrate that the MET receptor tyrosine kinase (MET) is specifically expressed in a subset of 5-HT neurons within the caudal part of the dorsal raphe nuclei (DRC) that is encompassed by the classic B6 serotonin cell group. Mapping from embryonic day 16 through adulthood reveals that MET is expressed almost exclusively in the DRC as a condensed, paired nucleus, with an additional sparse set of MET+ neurons scattered within the median raphe. Retrograde tracing experiments reveal that MET-expressing 5-HT neurons provide substantial serotonergic input to the ventricular/subventricular region that contains forebrain stem cells, but do not innervate the dorsal hippocampus or entorhinal cortex. Conditional anterograde tracing experiments show that 5-HT neurons in the DRC/B6 target additional forebrain structures such as the medial and lateral septum and the ventral hippocampus. Molecular neuroanatomical analysis identifies 14 genes that are enriched in DRC neurons, including 4 neurotransmitter/neuropeptide receptors and 2 potassium channels. These analyses will lead to future studies determining the specific roles that 5-HTMET+ neurons contribute to the broader set of functions regulated by the serotonergic system.

X
Description
sense
Example: Hs-LAG3-sense
Standard probes for RNA detection are in antisense. Sense probe is reverse complent to the corresponding antisense probe.
Intron#
Example: Mm-Htt-intron2
Probe targets the indicated intron in the target gene, commonly used for pre-mRNA detection
Pool/Pan
Example: Hs-CD3-pool (Hs-CD3D, Hs-CD3E, Hs-CD3G)
A mixture of multiple probe sets targeting multiple genes or transcripts
No-XSp
Example: Hs-PDGFB-No-XMm
Does not cross detect with the species (Sp)
XSp
Example: Rn-Pde9a-XMm
designed to cross detect with the species (Sp)
O#
Example: Mm-Islr-O1
Alternative design targeting different regions of the same transcript or isoforms
CDS
Example: Hs-SLC31A-CDS
Probe targets the protein-coding sequence only
EnEmProbe targets exons n and m
En-EmProbe targets region from exon n to exon m
Retired Nomenclature
tvn
Example: Hs-LEPR-tv1
Designed to target transcript variant n
ORF
Example: Hs-ACVRL1-ORF
Probe targets open reading frame
UTR
Example: Hs-HTT-UTR-C3
Probe targets the untranslated region (non-protein-coding region) only
5UTR
Example: Hs-GNRHR-5UTR
Probe targets the 5' untranslated region only
3UTR
Example: Rn-Npy1r-3UTR
Probe targets the 3' untranslated region only
Pan
Example: Pool
A mixture of multiple probe sets targeting multiple genes or transcripts

Enabling research, drug development (CDx) and diagnostics

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