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Monocyte Derived Microvesicles Deliver a Cell Death Message via Encapsulated Caspase-1

机译:单核细胞衍生的微泡通过封装的Caspase-1传递细胞死亡信息

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摘要

Apoptosis depends upon the activation of intracellular caspases which are classically induced by either an intrinsic (mitochondrial based) or extrinsic (cytokine) pathway. However, in the process of explaining how endotoxin activated monocytes are able to induce apoptosis of vascular smooth muscle cells when co-cultured, we uncovered a transcellular apoptosis inducing pathway that utilizes caspase-1 containing microvesicles. Endotoxin stimulated monocytes induce the cell death of VSMCs but this activity is found in 100,000 g pellets of cell free supernatants of these monocytes. This activity is not a direct effect of endotoxin, and is inhibited by the caspase-1 inhibitor YVADcmk but not by inhibitors of Fas-L, IL-1β and IL-18. Importantly, the apoptosis inducing activity co-purifies with 100 nm sized microvesicles as determined by TEM of the pellets. These microvesicles contain caspase-1 and caspase-1 encapsulation is required since disruption of microvesicular integrity destroys the apoptotic activity but not the caspase-1 enzymatic activity. Thus, monocytes are capable of delivering a cell death message which depends upon the release of microvesicles containing functional caspase-1. This transcellular apoptosis induction pathway describes a novel pathway for inflammation induced programmed cell death.
机译:凋亡取决于细胞内胱天蛋白酶的激活,经典的内源性(基于线粒体)或外源性(细胞因子)诱导细胞内胱天蛋白酶。然而,在解释内毒素激活的单核细胞在共培养时如何能够诱导血管平滑肌细胞凋亡的过程中,我们发现了利用含有caspase-1的微泡的跨细胞凋亡诱导途径。内毒素刺激的单核细胞诱导VSMC的细胞死亡,但是在100,000 g这些单核细胞的无细胞上清液沉淀中发现了这种活性。该活性不是内毒素的直接作用,并且被caspase-1抑制剂YVADcmk抑制,但不受Fas-L,IL-1β和IL-18抑制剂的抑制。重要的是,通过沉淀的TEM确定,凋亡诱导活性与100nm大小的微泡共同纯化。这些微囊泡包含caspase-1,并且需要封装caspase-1,因为破坏微泡完整性会破坏细胞凋亡活性,但不会破坏caspase-1酶促活性。因此,单核细胞能够传递细胞死亡信息,这取决于含有功能性caspase-1的微泡的释放。该跨细胞凋亡诱导途径描述了炎症诱导的程序性细胞死亡的新途径。

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