RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Mesenchymal Stem Cell-derived Extracellular Vesicles Transmitting MicroRNA-34a-5p Suppress Tumorigenesis of Colorectal Cancer Through c-MYC/DNMT3a/PTEN Axis.
Mesenchymal Stem Cell-derived Extracellular Vesicles Transmitting MicroRNA-34a-5p Suppress Tumorigenesis of Colorectal Cancer Through c-MYC/DNMT3a/PTEN Axis.
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间充质干细胞来源的细胞外囊泡(MSC-EV)可将微小RNA(miRNA)转运至结直肠癌(CRC)细胞,从而抑制癌细胞的恶性表型。
本研究探查MSC-EV能否递送miR-34a-5p以抑制CRC发展。检测CRC组织和细胞系中的miR-34a-5p、c-MYC、DNA甲基转移酶3a(DNMT3a)及10号染色体缺失的磷酸酶和张力蛋白同源物(PTEN)表达。通过转染改变HCT-116细胞中的miR-34a-5p和c-MYC表达。将与miR-34a-5p和c-MYC相关的寡核苷酸转染入MSC-EV,再与HCT-116细胞共培养,并观察处理后的HCT-116细胞生长。
此外,在体内探究miR-34a-5p和c-MYC的功能作用,并评估miR-34a-5p/c-MYC/DNMT3a/PTEN轴的协同相互作用。CRC中miR-34a-5p和PTEN表达下调,而c-MYC和DNMT3a表达上调。耗竭miR-34a-5p促进CRC细胞生长,而耗竭c-MYC则限制其生长。MSC-EV延缓CRC进展;此外,携带过表达miR-34a-5p或耗竭c-MYC的MSC-EV进一步抑制CRC细胞进展。miR-34a-5p靶向c-MYC以调节DNMT3a和PTEN。c-MYC过表达抵消了MSC-EV来源的miR-34a-5p上调所产生的作用。在MSC-EV中恢复miR-34a-5p或耗竭c-MYC可限制CRC肿瘤形成。MSC-EV来源的miR-34a-5p通过调控c-MYC与DNMT3a的结合并从表观遗传层面调节PTEN,从而抑制CRC发展。
Mesenchymal stem cell-derived extracellular vesicles (MSC-EV) can transport microRNAs (miRNAs) into colorectal cancer (CRC) cells, thus to inhibit the malignant phenotype of cancer cells. Whether MSC-EV could deliver miR-34a-5p to suppress CRC development was surveyed through the research.
miR-34a-5p, c-MYC, DNA methyltransferase 3a (DNMT3a), and phosphatase and tensin homolog deleted on chromosome 10 (PTEN) expression were measured in CRC tissues and cell lines. miR-34a-5p and c-MYC expression were altered by transfection in HCT-116 cells. MSC-EV were transfected with miR-34a-5p- and c-MYC-related oligonucleotides and co-cultured with HCT-116 cells. HCT-116 cell growth after treatment was observed.
Furthermore, the functional roles of miR-34a-5p and c-MYC were explored in vivo. The combined interactions of miR-34a-5p/c-MYC/DNMT3a/PTEN axis were assessed. miR-34a-5p and PTEN were downregulated while c-MYC and DNMT3a were upregulated in CRC. Depletion of miR-34a-5p drove while that of c-MYC restricted CRC cell growth. MSC-EV retarded CRC progression.
Moreover, MSC-EV carrying overexpressed miR-34a-5p or depleted c-MYC further disrupted CRC cell progression. miR-34a-5p targeted c-MYC to regulate DNMT3a and PTEN. c-MYC overexpression abrogated EV-derived miR-34a-5p upregulation-induced effects on CRC. Restoring miR-34a-5p or depleting c-MYC in MSC-EV limited CRC tumor formation. MSC-EV-derived miR-34a-5p depresses CRC development through modulating the binding of c-MYC to DNMT3a and epigenetically regulating PTEN.
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