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Gap junction mediated miRNA intercellular transfer and gene regulation: A novel mechanism for intercellular genetic communication

机译:间隙结介导的miRNA细胞间转移和基因调节:细胞间遗传交流的新机制

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摘要

Intercellular genetic communication is an essential requirement for coordination of cell proliferation and differentiation and has an important role in many cellular processes. Gap junction channels possess large pore allowing passage of ions and small molecules between cells. MicroRNAs (miRNAs) are small regulatory RNAs that can regulate gene expression broadly. Here, we report that miRNAs can pass through gap junction channels in a connexin-dependent manner. Connexin43 (Cx43) had higher permeability, whereas Cx30 showed little permeability to miRNAs. In the tested connexin cell lines, the permeability to miRNAs demonstrated: Cx43?>?Cx26/30?>?Cx26?>?Cx31?>?Cx30?=?Cx-null. However, consistent with a uniform structure of miRNAs, there was no significant difference in permeability to different miRNAs. The passage is efficient; the miRNA level in the recipient cells could be up to 30% of the donor level. Moreover, the transferred miRNA is functional and could regulate gene expression in neighboring cells. Connexin mutation and gap junctional blockers could eliminate this miRNA intercellular transfer and gene regulation. These data reveal a novel mechanism for intercellular genetic communication. Given that connexin expression is cell-specific, this connexin-dependent, miRNA intercellular genetic communication may play an important role in synchronizing and coordinating proliferation and differentiation of specific cell types during multicellular organ development.
机译:细胞间遗传通信是对细胞增殖和分化协调的基本要求,并且在许多细胞过程中具有重要作用。间隙结沟道具有大孔,允许离子和细胞之间的小分子通过。 microRNA(miRNA)是小型调节RNA,可广泛调节基因表达。在这里,我们报告MiRNA可以以Connexin依赖方式通过间隙结渠道。 Connexin43(CX43)具有较高的渗透性,而CX30表现出对miRNA的几乎没有渗透性。在测试的Connexin细胞系中,对miRNA的渗透性证明:CX43?>Δε?Cx26 / 30?>ΔCX26?>?CX31?>?CX30?=?CX-NULL。然而,与miRNA的均匀结构一致,对不同的miRNA没有显着性渗透性。这段经文有效;受体细胞中的miRNA水平可高达供体水平的30%。此外,转移的miRNA是功能性的,可以调节相邻细胞中的基因表达。 Connexin突变和间隙结阻滞剂可以消除这种miRNA细胞间转移和基因调控。这些数据揭示了细胞间遗传通信的新机制。鉴于Connexin表达是特异性细胞的,依赖于细胞素,MiRNA细胞间遗传通信可能在多细胞器官发展期间同步和协调特定细胞类型的增殖和分化中起重要作用。

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