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Search

Probes for SLC17A7

ACD can configure probes for the various manual and automated assays for SLC17A7 for RNAscope Assay, or for Basescope Assay compatible for your species of interest.

Your search for "Slc17a7" returned results. Search for our Top genes LGR5, vglut2, gad67, brca1

    Refine Probe List

    Content for comparison

    RNAscope™ HiPlex CS Probe - Hs-DISC1-E2-T12

    Gene

    • Slc17a7 (52) Apply Slc17a7 filter
    • Gad1 (19) Apply Gad1 filter
    • Slc17a6 (17) Apply Slc17a6 filter
    • Gad2 (15) Apply Gad2 filter
    • PVALB (13) Apply PVALB filter
    • Sst (11) Apply Sst filter
    • Vip (9) Apply Vip filter
    • SLC32A1 (8) Apply SLC32A1 filter
    • FOS (5) Apply FOS filter
    • CALCA (4) Apply CALCA filter
    • CCK (3) Apply CCK filter
    • Pcp4 (3) Apply Pcp4 filter
    • TH (3) Apply TH filter
    • Drd3 (3) Apply Drd3 filter
    • GPR65 (3) Apply GPR65 filter
    • Slc17a8 (3) Apply Slc17a8 filter
    • tdTomato (3) Apply tdTomato filter
    • Piezo2 (2) Apply Piezo2 filter
    • CCKAR (2) Apply CCKAR filter
    • egfp (2) Apply egfp filter
    • FOXP2 (2) Apply FOXP2 filter
    • CNR1 (2) Apply CNR1 filter
    • CTGF (2) Apply CTGF filter
    • DRD2 (2) Apply DRD2 filter
    • GLP1R (2) Apply GLP1R filter
    • Drd1a (2) Apply Drd1a filter
    • Cdh13 (2) Apply Cdh13 filter
    • GFRA1 (2) Apply GFRA1 filter
    • (-) Remove Npy filter Npy (2)
    • Reln (2) Apply Reln filter
    • OPRK1 (2) Apply OPRK1 filter
    • TRPA1 (2) Apply TRPA1 filter
    • Crh (2) Apply Crh filter
    • Chat (2) Apply Chat filter
    • Gabra1 (2) Apply Gabra1 filter
    • Trpv1 (2) Apply Trpv1 filter
    • CARTPT (2) Apply CARTPT filter
    • Cre (2) Apply Cre filter
    • Gnb4 (2) Apply Gnb4 filter
    • Uts2b (2) Apply Uts2b filter
    • Nxph4 (2) Apply Nxph4 filter
    • Car8 (2) Apply Car8 filter
    • MEIS2 (1) Apply MEIS2 filter
    • SOX2 (1) Apply SOX2 filter
    • ADRA2A (1) Apply ADRA2A filter
    • Dbh (1) Apply Dbh filter
    • Ostn (1) Apply Ostn filter
    • Scnn1a (1) Apply Scnn1a filter
    • MET (1) Apply MET filter
    • CDH9 (1) Apply CDH9 filter

    Product

    • RNAscope Fluorescent Multiplex Assay (2) Apply RNAscope Fluorescent Multiplex Assay filter
    • RNAscope Multiplex Fluorescent Assay (1) Apply RNAscope Multiplex Fluorescent Assay filter

    Research area

    • Neuroscience (3) Apply Neuroscience filter
    • Alcohol Use (1) Apply Alcohol Use filter
    • Stress (1) Apply Stress filter

    Category

    • Publications (3) Apply Publications filter
    Learning-Related Plasticity in Dendrite-Targeting Layer 1 Interneurons

    Neuron

    2018 Sep 27

    Abs E, Poorthuis RB, Apelblat D, Muhammad K, Pardi MB, Enke L, Kushinsky D, Pu DL, Eizinger MF, Conzelmann KK, Spiegel I, Letzkus JJ.
    PMID: - | DOI: 10.1016/j.neuron.2018.09.001

    A wealth of data has elucidated the mechanisms by which sensory inputs are encoded in the neocortex, but how these processes are regulated by the behavioral relevance of sensory information is less understood. Here, we focus on neocortical layer 1 (L1), a key location for processing of such top-down information. Using Neuron-Derived Neurotrophic Factor(NDNF) as a selective marker of L1 interneurons (INs) and in vivo 2-photon calcium imaging, electrophysiology, viral tracing, optogenetics, and associative memory, we find that L1 NDNF-INs mediate a prolonged form of inhibition in distal pyramidal neuron dendrites that correlates with the strength of the memory trace. Conversely, inhibition from Martinotti cells remains unchanged after conditioning but in turn tightly controls sensory responses in NDNF-INs. These results define a genetically addressable form of dendritic inhibition that is highly experience dependent and indicate that in addition to disinhibition, salient stimuli are encoded at elevated levels of distal dendritic inhibition.

    Identification of visual cortex cell types and species differences using single-cell RNA sequencing

    Nature communications

    2022 Nov 12

    Wei, JR;Hao, ZZ;Xu, C;Huang, M;Tang, L;Xu, N;Liu, R;Shen, Y;Teichmann, SA;Miao, Z;Liu, S;
    PMID: 36371428 | DOI: 10.1038/s41467-022-34590-1

    The primate neocortex exerts high cognitive ability and strong information processing capacity. Here, we establish a single-cell RNA sequencing dataset of 133,454 macaque visual cortical cells. It covers major cortical cell classes including 25 excitatory neuron types, 37 inhibitory neuron types and all glial cell types. We identified layer-specific markers including HPCAL1 and NXPH4, and also identified two cell types, an NPY-expressing excitatory neuron type that expresses the dopamine receptor D3 gene; and a primate specific activity-dependent OSTN + sensory neuron type. Comparisons of our dataset with humans and mice show that the gene expression profiles differ between species in relation to genes that are implicated in the synaptic plasticity and neuromodulation of excitatory neurons. The comparisons also revealed that glutamatergic neurons may be more diverse across species than GABAergic neurons and non-neuronal cells. These findings pave the way for understanding how the primary cortex fulfills the high-cognitive functions.
    Glucocorticoid receptors regulate central amygdala GABAergic synapses in Marchigian-Sardinian alcohol-preferring rats

    Neurobiology of Stress

    2023 Jul 01

    Khom, S;Borgonetti, V;Vozella, V;Kirson, D;Rodriguez, L;Gandhi, P;Bianchi, P;Snyder, A;Vlkolinsky, R;Bajo, M;Oleata, C;Ciccocioppo, R;Roberto, M;
    | DOI: 10.1016/j.ynstr.2023.100547

    Impairments in the function of the hypothalamic-pituitary-adrenal (HPA) axis and enhanced glucocorticoid receptor (GR) activity in the central amygdala (CeA) are critical mechanisms in the pathogenesis of alcohol use disorder (AUD). The GR antagonist mifepristone attenuates craving in AUD patients, alcohol consumption in AUD models, and decreases CeA γ-aminobutyric acid (GABA) transmission in alcohol-dependent rats. Previous studies suggest elevated GR activity in the CeA of male alcohol-preferring Marchigian-Sardinian (msP) rats, but its contribution to heightened CeA GABA transmission driving their characteristic post-dependent phenotype is largely unknown. We determined Nr3c1 (the gene encoding GR) gene transcription in the CeA in male and female msP and Wistar rats using in situ hybridization and studied acute effects of mifepristone (10 μM) and its interaction with ethanol (44 mM) on pharmacologically isolated spontaneous inhibitory postsynaptic currents (sIPSCs) and electrically evoked inhibitory postsynaptic potentials (eIPSPs) in the CeA using ex vivo slice electrophysiology. Female rats of both genotypes expressed more CeA GRs than males, suggesting a sexually dimorphic GR regulation of CeA activity. Mifepristone reduced sIPSC frequencies (GABA release) and eIPSP amplitudes in msP rats of both sexes, but not in their Wistar counterparts; however, it did not prevent acute ethanol-induced increase in CeA GABA transmission in male rats. In msP rats, GR regulates CeA GABAergic signaling under basal conditions, indicative of intrinsically active GR. Thus, enhanced GR function in the CeA represents a key mechanism contributing to maladaptive behaviors associated with AUD.
    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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