stat3 expression plasmid (Sino Biological)
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Stat3 Expression Plasmid, supplied by Sino Biological, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/transcript+variant+1/Human+STAT3+transcript+variant+1+Gene+ORF+cDNA+clone+expression+plasmid%2C+N-Myc+tag/pmc08233173-71-7-12
Average 93 stars, based on 1 article reviews
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1) Product Images from "Exosomal lncRNA NEAT1 from cancer-associated fibroblasts facilitates endometrial cancer progression via miR-26a/b-5p-mediated STAT3/YKL-40 signaling pathway"
Article Title: Exosomal lncRNA NEAT1 from cancer-associated fibroblasts facilitates endometrial cancer progression via miR-26a/b-5p-mediated STAT3/YKL-40 signaling pathway
Journal: Neoplasia (New York, N.Y.)
doi: 10.1016/j.neo.2021.05.004
Figure Legend Snippet: Oligonucleotide primer sets for RT-qPCR.
Techniques Used: Sequencing
Figure Legend Snippet: Exosomal transfer of NEAT1 to EC cells leads to increased expression of STAT3 and YKL-40. (A) RT-qPCR analysis of NEAT1 expression level in NFs, CAFs, normal endometrial epithelial cells, and EC cells. (B) HEC-1A and RL95-2 cells were cultured in control CM, CAFs-CM, or exosome-depleted CAFs-CM for 48 h, then NEAT1 level was assessed by RT-qPCR. HEC-1A and RL95-2 cells were maintained in control CM, CAFs-CM, or 20 μM GW4869-treated CAFs-CM for 48 h. (C) NEAT1 expression was determined by RT-qPCR. (D) The NEAT1 level was assessed by RT-qPCR. (E) STAT3, p-STAT3 and YKL-40 levels were assessed by Western blot. HEC-1A and RL95-2 cells were co-cultured with CAFs or GW4869-treated CAFs for 48 h. (F) Western blot analysis of STAT3, p-STAT3, and YKL-40 levels. (G) Western blot analysis of Rab27a protein level in CAFs infected with lentivirus expressing si-NC or si-Rab27a. (H) HEC-1A and RL95-2 cells were cultured in control CM, CAFs-CM, or Rab27a-silenced CAFs-CM for 48 h, then NEAT1 level was detected by RT-qPCR. (I) HEC-1A cells and RL95-2 were co-cultured with CAFs or Rab27a-silenced CAFs for 48 h, and NEAT1 level was detected by RT-qPCR. (J)&(K) Protein levels of STAT3, p-STAT3, and YKL-40 were assessed by Western blot. (L) RT-qPCR analysis of NEAT1 level in exosomes isolated from CAFs infected with lentivirus expressing sh-NEAT1 or NEAT1 gene. (M) HEC-1A and RL95-2 cells were incubated with exosomes derived from CAFs, NEAT1-overexpressed CAFs, or NEAT1-silenced CAFs for 48 h. RT-qPCR was performed to assess NEAT1 level. (N)&(O) STAT3 and YKL-40 expression was detected by RT-qPCR and Western blot assays. (P) The proliferation of HEC-1A and RL95-2 cells was detected by MTT assay. (Q) The growth of HEC-1A and RL95-2 cells was evaluated by colony formation assay. All data from three independent experiments were shown as mean ± SD (n = 6). *, P < 0.05; **, P < 0.01; ***, P < 0.001.
Techniques Used: Expressing, Quantitative RT-PCR, Cell Culture, Western Blot, Infection, Isolation, Incubation, Derivative Assay, MTT Assay, Colony Assay
Figure Legend Snippet: Exosomal NEAT1 sponges miR-26a/b-5p to facilitate STAT3 and YKL-40 expression in EC cells. (A) RT-qPCR for miR-26a/b-5p level in exosomes derived from CAFs, NEAT1-overexpressed CAFs, or NEAT1-silenced CAFs. (B) HEC-1A and RL95-2 cells were co-cultured with NEAT1-overexpressed or silenced CAFs, and miR-26a/b-5p level was detected by RT-qPCR. (C) Expression of miR-26a/b-5p in HEC-1A and RL95-2 cells infected with lentivirus containing miR-26a/b-5p mimics or inhibitor was detected by RT-qPCR. (D) Expression of YKL-40 in HEC-1A and RL95-2 cells after overexpression or silencing of miR-26a/b-5p was assessed by Western blot. (E) The binding sites between NEAT1 and miR-26a/b-5p. Luciferase analysis (F) and RIP assay (G) was performed to determine interaction between NEAT1 and miR-26a/b-5p. The expression of STAT3 and YKL-40 in HEC-1A and RL95-2 cells received various treatments was assessed by RT-qPCR (H) and Western blot (I). All data from three independent experiments were shown as mean ± SD (n = 6). *, P < 0.05; **, P < 0.01; ***, P < 0.001, ns = no significant.
Techniques Used: Expressing, Quantitative RT-PCR, Derivative Assay, Cell Culture, Infection, Over Expression, Western Blot, Binding Assay, Luciferase
Figure Legend Snippet: MiR-26a/b-5p suppresses YKL-40 expression via targeting STAT3 in EC cells. (A) Two binding sites of miR-26a/b-5p to the 3’-UTR of STAT3. The interaction between STAT3 and miR-26a/b-5p was detected by luciferase analysis (B) and RIP assay (C). (D) The protein level of STAT3 in HEC-1A and RL95-2 cells after the transfection of STAT3 expression plasmid was assessed by Western blot. RT-qPCR (E) and Western blot (F) were used for determining YKL-40 and STAT3 expression in HEC-1A cells from various groups. (G) Three p-STAT3-binding sites (BS1, BS2, and BS3) at YKL-40 promoter were shown. (H) ChIP assay using anti-p-STAT3 antibody was used to verify the binding between p-STAT3 and the promoter of YKL-40 under exosome treatment. (I) The interaction between p-STAT3 and YKL-40 was assessed by the dual luciferase reporter assay. All data from three independent experiments were shown as mean ± SD (n = 6). **, P < 0.01; ***, P < 0.001, ns = no significant.
Techniques Used: Expressing, Binding Assay, Luciferase, Transfection, Plasmid Preparation, Western Blot, Quantitative RT-PCR, Reporter Assay
Figure Legend Snippet: CAFs-derived exosomal NEAT1 accelerates tumor growth in vivo via up-regulating YKL-40. Nude mice were subcutaneously injected with HEC-1A cells with or without CAFs. GW4869 (2 mg/kg) was intraperitoneally injected into the mice every other day. (A) The tumor growth curve was shown. (B) RT-qPCR analysis of NEAT1 and miR-26a/b-5p expression in tumor tissues. (C) Immunohistochemical staining for Ki-67 expression in tumor tissues. (D) Western blot analysis of YKL-40 and STAT3 protein level in tumor tissues. Nude mice were subcutaneously injected with HEC-1A cells with or without CAFs that were stably transfected with sh-NC or sh-Rab27a. (E) The tumor growth curve was shown. (F) RT-qPCR analysis of NEAT1 and miR-26a/b-5p expression in tumor tissues. (G) Immunohistochemical staining for Ki-67 expression in tumor tissues. (H) Western blot analysis of YKL-40 and STAT3 protein level in tumor tissues. HEC-1A cells with or without CAFs stably transfected with sh-NEAT1 or NEAT1 gene were subcutaneously injected into the nude mice. (I) The tumor growth curve was shown. (J) RT-qPCR analysis of NEAT1 and miR-26a/b-5p expression in tumor tissues. (K) Immunohistochemical staining for Ki-67 expression in tumor tissues. (L) Western blot analysis of YKL-40 and STAT3 protein levels in tumor tissues. All data from three independent experiments were shown as mean ± SD (n = 6). *, P < 0.05; **, P < 0.01; ***, P < 0.001.
Techniques Used: Derivative Assay, In Vivo, Injection, Quantitative RT-PCR, Expressing, Immunohistochemical staining, Staining, Western Blot, Stable Transfection, Transfection
Figure Legend Snippet: Overexpression of miR-26a/b-5p reverses exosomal NEAT1-mediated protumorigenic effect in vivo . HEC-1A cells stably transfected with miR-26a/b-5p mimics or NC mimics were mixed with or without CAFs stably expressing NC vector or NEAT1, which were subcutaneously injected into the nude mice. (A) The tumor growth curve was shown. (B) Immunohistochemical staining for Ki-67 expression in tumor tissues. (C) Western blot analysis of YKL-40 and STAT3 protein levels in tumor tissues. All data from three independent experiments were shown as mean ± SD (n = 6). *, P < 0.05; **, P < 0.01; ***, P < 0.001.
Techniques Used: Over Expression, In Vivo, Stable Transfection, Transfection, Expressing, Plasmid Preparation, Injection, Immunohistochemical staining, Staining, Western Blot
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