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Caspase-3-dependent export of TCTP: a novel pathway for antiapoptotic intercellular communication

机译:依赖Caspase-3的TCTP输出:抗凋亡细胞间通讯的新途径。

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摘要

The apoptotic program incorporates a paracrine component of importance in fostering tissue repair at sites of apoptotic cell deletion. As this paracrine pathway likely bears special importance in maladaptive intercellular communication leading to vascular remodeling, we aimed at further defining the mediators produced by apoptotic endothelial cells (EC), using comparative and functional proteomics. Apoptotic EC were found to release nanovesicles displaying ultrastructural characteristics, protein markers and functional activity that differed from apoptotic blebs. Tumor susceptibility gene 101 and translationally controlled tumor protein (TCTP) were identified in nanovesicle fractions purified from medium conditioned by apoptotic EC and absent from purified apoptotic blebs. Immunogold labeling identified TCTP on the surface of nanovesicles purified from medium conditioned by apoptotic EC and within multivesicular blebs in apoptotic EC. These nanovesicles induced an extracellular signal-regulated kinases 1/2 (ERK 1/2)-dependent antiapoptotic phenotype in vascular smooth muscle cells (VSMC), whereas apoptotic blebs did not display antiapoptotic activity on VSMC. Caspase-3 biochemical inhibition and caspase-3 RNA interference in EC submitted to a proapoptotic stimulus inhibited the release of nanovesicles. Also, TCTP siRNAs in EC attenuated the antiapoptotic activity of purified nanovesicles on VSMC. Collectively, these results identify TCTP-bearing nanovesicles as a novel component of the paracrine apoptotic program of potential importance in vascular repair.
机译:凋亡程序结合了旁分泌成分,该成分在促进凋亡细胞缺失位点的组织修复中具有重要作用。由于这种旁分泌途径可能在导致血管重塑的适应不良的细胞间通讯中特别重要,因此我们旨在使用比较和功能蛋白质组学进一步定义凋亡性内皮细胞(EC)产生的介体。发现细胞凋亡的EC释放纳米囊泡,显示出与凋亡泡不同的超微结构特征,蛋白质标记和功能活性。肿瘤易感性基因101和翻译控制的肿瘤蛋白(TCTP)在从通过凋亡EC调节的培养基中纯化而在纯化的凋亡小泡中不存在的纳米囊部分中鉴定。免疫金标记鉴定了从凋亡EC调节的培养基中纯化的纳米囊泡表面以及凋亡EC中多囊泡内的TCTP。这些纳米囊泡诱导血管平滑肌细胞(VSMC)中的细胞外信号调节激酶1/2(ERK 1/2)依赖性抗凋亡表型,而凋亡泡则不显示对VSMC的抗凋亡活性。 Caspase-3生化抑制和caspase-3 RNA干扰在EC中受到促凋亡刺激,从而抑制了纳米囊泡的释放。此外,EC中的TCTP siRNA减弱了纯化的纳米囊泡对VSMC的抗凋亡活性。总的来说,这些结果确定了携带TCTP的纳米囊泡是旁分泌凋亡程序中在血管修复中具有潜在重要性的新成分。

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