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Mesenchymal Stromal Cells Accelerate Epithelial Tight Junction Assembly via the AMP-Activated Protein Kinase Pathway, Independently of Liver Kinase B1

机译:间充质基质细胞通过AMP激活的蛋白激酶途径,独立于肝激酶B1加速上皮紧密连接。

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摘要

Background. Mesenchymal stromal cells (MSC) are fibroblast-like multipotent cells capable of tissue-repair properties. Given the essentiality of tight junctions (TJ) in epithelial integrity, we hypothesized that MSC modulate TJ formation, via the AMP-activated kinase (AMPK) pathway. Liver kinase-β1 (LKB1) and Ca2+-calmodulin-dependent protein kinase kinase (CaMKK) represent the main kinases that activate AMPK. Methods. The in vitro Ca2+ switch from 5 μM to 1.8 mM was performed using epithelial Madin-Darby canine kidney (MDCK) cells cultured alone or cocultured with rat bone marrow-derived MSC or preexposed to MSC-conditioned medium. TJ assembly was measured by assessing ZO-1 relocation to cell-cell contacts. Experiments were conducted using MDCK stably expressing short-hairpin-RNA (shRNA) against LKB1 or luciferase (LUC, as controls). Compound STO-609 (50 μM) was used as CaMKK inhibitor. Results. Following Ca2+ switch, ZO-1 relocation and phosphorylation/activation of AMPK were significantly higher in MDCK/MSC compared to MDCK. No difference in AMPK phosphorylation was observed between LKB1-shRNA and Luc-shRNA MDCK following Ca2+ switch. Conversely, incubation with STO-609 prior to Ca2+ switch prevented AMPK phosphorylation and ZO-1 relocation. MSC-conditioned medium slightly but significantly increased AMPK activation and accelerated TJ-associated distribution of ZO-1 post Ca2+ switch in comparison to regular medium. Conclusions. MSC modulate the assembly of epithelial TJ, via the CaMKK/AMPK pathway independently of LKB1.
机译:背景。间充质基质细胞(MSC)是具有组织修复特性的成纤维细胞样多能细胞。鉴于紧密连接(TJ)在上皮完整性中的必要性,我们假设MSC通过AMP激活的激酶(AMPK)途径调节TJ的形成。肝激酶-β1(LKB1)和Ca2 +-钙调蛋白依赖性蛋白激酶(CaMKK)代表激活AMPK的主要激酶。方法。使用单独培养或与大鼠骨髓源性MSC共培养或预先暴露于MSC条件培养基的上皮Madin-Darby犬肾(MDCK)细胞进行体外Ca2 +从5μm到1.8μmM的转换。通过评估ZO-1重定位至细胞间接触来测量TJ装配。使用稳定表达针对LKB1或荧光素酶(LUC,作为对照)的短发夹RNA(shRNA)的MDCK进行实验。化合物STO-609(50μm)用作CaMKK抑制剂。结果。在Ca2 +转换后,与MDCK相比,MDCK / MSC中ZO-1的重新定位和AMPK的磷酸化/激活明显更高。在Ca2 +转换后,LKB1-shRNA和Luc-shRNA MDCK之间的AMPK磷酸化没有差异。相反,在Ca2 +转换之前与STO-609孵育可防止AMPK磷酸化和ZO-1重定位。与常规培养基相比,MSC条件培养基略微但显着增加了Ca2 +转换后AMP-1的激活和ZO-1的TJ相关加速分布。结论。 MSC通过CaMKK / AMPK途径独立于LKB1调节上皮TJ的组装。

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