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Search

Probes for LONG

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

ACD’s data images for Long gene.

  • RNA expression of long gene in Human Colorectal cancer sample using RNAscope™ 2.5 HD Assay Brown

  • RNA expression of long gene in Human Gastric cancer sample using RNAscope™ 2.5 HD Assay Brown

  • RNA expression of long gene in Human Glioma sample using RNAscope™ 2.5 HD Assay Brown

  • RNA expression of long gene in Human Lung cancer sample using RNAscope™ 2.5 HD Assay Brown

  • RNA expression of long gene in Human ovarian cancer sample using RNAscope™ 2.5 HD Assay Brown

  • Expression of long in Human Prostate cancer sample using RNAscope™ 2.5 HD Assay Brown

  • Probes for Long (0)
  • Kits & Accessories (0)
  • Support & Documents (0)
  • Publications (2)
  • Image gallery (0)
Refine Probe List

Content for comparison

Gene

  • TBD (57) Apply TBD filter
  • MALAT1 (13) Apply MALAT1 filter
  • H19 (7) Apply H19 filter
  • SARS-CoV-2 (7) Apply SARS-CoV-2 filter
  • HOTAIR (6) Apply HOTAIR filter
  • Neat1 (4) Apply Neat1 filter
  • Slc17a6 (4) Apply Slc17a6 filter
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  • SChLAP1 (4) Apply SChLAP1 filter
  • MEG3 (3) Apply MEG3 filter
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  • MMP13 (3) Apply MMP13 filter
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  • PVT1 (3) Apply PVT1 filter
  • Col2a1 (3) Apply Col2a1 filter
  • col10a1 (3) Apply col10a1 filter
  • UCA1 (3) Apply UCA1 filter
  • LINC00473 (3) Apply LINC00473 filter
  • EBER1 (3) Apply EBER1 filter
  • ACTA2 (2) Apply ACTA2 filter
  • GAPDH (2) Apply GAPDH filter
  • Alpl (2) Apply Alpl filter
  • Wnt5a (2) Apply Wnt5a filter
  • ICAM1 (2) Apply ICAM1 filter
  • FOS (2) Apply FOS filter
  • GREM1 (2) Apply GREM1 filter
  • PVALB (2) Apply PVALB filter
  • Sst (2) Apply Sst filter
  • Cdh13 (2) Apply Cdh13 filter
  • PDGFRA (2) Apply PDGFRA filter
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  • CXCL12 (2) Apply CXCL12 filter
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  • Runx2 (2) Apply Runx2 filter
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  • vGlut2 (2) Apply vGlut2 filter
  • Pnky (2) Apply Pnky filter
  • PD-L1 (2) Apply PD-L1 filter
  • (-) Remove RAD51-AS1 filter RAD51-AS1 (2)
  • LINC01133 (2) Apply LINC01133 filter
  • LINK-A (2) Apply LINK-A filter
  • LpR2 (2) Apply LpR2 filter
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Product

  • RNAscope 2.0 Assay (2) Apply RNAscope 2.0 Assay filter

Research area

  • lncRNA (2) Apply lncRNA filter
  • Cancer (1) Apply Cancer filter

Category

  • (-) Remove Publications filter Publications (2)
E2F1-regulated long non-coding RNA RAD51-AS1 promotes cell cycle progression, inhibits apoptosis and predicts poor prognosis in epithelial ovarian cancer

Sci Rep.

2017 Jun 30

Zhang X, Liu G, Qiu J, Zhang N, Ding J, Hua K.
PMID: 28667302 | DOI: 10.1038/s41598-017-04736-z

Long non-coding RNA RAD51 antisense RNA 1 (RAD51-AS1, also known as TODRA) has been shown to be down-regulated by E2F1, a key cell cycle and apoptosis regulator, in breast cancer. Little is known regarding the role of RAD51-AS1 in disease. Here, we investigate the role of RAD51-AS1 in epithelial ovarian cancer (EOC). Using luciferase reporter and chromatin immunoprecipitation experiments, we verified RAD51-AS1 as a target of E2F1 under negative regulation in EOC. We then examined RAD51-AS1 expression in EOC samples using in situ hybridization (ISH). RAD51-AS1 was localized to the nucleus and found to be a critical marker for clinical features that significantly correlated with poor survival in EOC patients. RAD51-AS1 was also an independent prognostic factor for EOC. Overexpression of RAD51-AS1promoted EOC cell proliferation, while silencing of RAD51-AS1 inhibited EOC cell proliferation, delayed cell cycle progression and promoted apoptosis in vitro and in vivo. RAD51-AS1 may participate in carcinogenesis via regulation of p53 and p53-related genes. Our study highlights the role of RAD51-AS1 as a prognostic marker of EOC. Based on its regulation of the tumor suppressor p53, RAD51-AS1-based therapy may represent a viable therapeutic option for EOC in the near future.

Corylin increases the sensitivity of hepatocellular carcinoma cells to chemotherapy through long noncoding RNA RAD51-AS1-mediated inhibition of DNA repair

Cell Death and Disease

2018 May 10

Chen CC, Chen CY, Ueng SH, Hsueh C, Yeh CT, Ho JY, Chou LF, Wang TH.
PMID: 29749376 | DOI: 10.1038/s41419-018-0575-0

Corylin, a biologically active agent extracted from Psoralea corylifolia L. (Fabaceae), promotes bone differentiation and inhibits inflammation. Currently, few reports have addressed the biological functions that are regulated by corylin, and to date, no studies have investigated its antitumor activity. In this study, we used cell functional assays to analyze the antitumor activity of corylin in hepatocellular carcinoma (HCC). Furthermore, whole-transcriptome assays were performed to identify the downstream genes that were regulated by corylin, and gain-of-function and loss-of-function experiments were conducted to examine the regulatory roles of the above genes. We found that corylinsignificantly inhibited the proliferation, migration, and invasion of HCC cells and increased the toxic effects of chemotherapeutic agents against HCC cells. These properties were due to the induction of a long noncoding RNA, RAD51-AS1, which bound to RAD51 mRNA, thereby inhibiting RAD51 protein expression, thus inhibiting the DNA damage repair ability of HCC cells. Animal experiments also showed that a combination treatment with corylin significantly increased the inhibitory effects of the chemotherapeutic agent etoposide (VP16) on tumor growth. These findings indicate that corylin has strong potential as an adjuvant drug in HCC treatment and that corylin can strengthen the therapeutic efficacy of chemotherapy and radiotherapy.

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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