Department of Biochemistry, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.
Department of Nanobiotechnology, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.
Arch Biochem Biophys. 2018 Mar 15;642:46-51. doi: 10.1016/j.abb.2018.01.017. Epub 2018 Feb 1.
Apaf-1 is a cytosolic multi-domain protein in the apoptosis regulatory network. When cytochrome c releases from mitochondria; it binds to WD-40 repeats of Apaf-1 molecule and induces oligomerization of Apaf-1. Here in, a split luciferase assay was used to compare apoptosome formation in cell-free and cell-based systems. This assay uses Apaf-1 tagged with either N-terminal fragment or C-terminal fragment of P. pyralis luciferase. In cell based-system, the apoptosome formation is induced inside the cells which express Apaf-1 tagged with complementary fragments of luciferase while in cell-free system, the apoptosome formation is induced in extracts of the cells. In cell-free system, cytochrome c dependent luciferase activity was observed with full length Apaf-1. However, luciferase activity due to apoptosome formation was much higher in cell based system compared to cell-free system. The truncated Apaf-1 which lacks WD-40 repeats (ΔApaf-1) interacted with endogenous Apaf-1 in a different fashion compared to native form as confirmed by different retention time of eluate in gel filtration and binding to affinity column. The interactions between endogenous Apaf-1 and ΔApaf-1 is stronger than its interaction with native exogenous Apaf-1 as indicated by dominant negative effect of ΔApaf-1 on caspase-3 processing.
凋亡蛋白激活因子 1(Apaf-1)是细胞凋亡调控网络中的一种胞浆多功能蛋白。当细胞色素 c 从线粒体释放时,它与 Apaf-1 分子的 WD-40 重复序列结合,并诱导 Apaf-1 的寡聚化。在这里,我们使用裂萤光素酶测定法比较了无细胞和基于细胞的系统中凋亡小体的形成。该测定法使用与 Pyralis 萤光素酶的 N 端或 C 端片段标记的 Apaf-1。在基于细胞的系统中,凋亡小体的形成是在表达与萤光素酶互补片段的 Apaf-1 的细胞内诱导的,而在无细胞系统中,凋亡小体的形成是在细胞提取物中诱导的。在无细胞系统中,观察到全长 Apaf-1 依赖细胞色素 c 的萤光素酶活性。然而,与无细胞系统相比,基于细胞的系统中凋亡小体形成导致的萤光素酶活性要高得多。缺乏 WD-40 重复序列的截短 Apaf-1(ΔApaf-1)与内源性 Apaf-1 的相互作用方式与天然形式不同,这一点通过凝胶过滤洗脱物的保留时间和与亲和柱的结合得到了证实。内源性 Apaf-1 与 ΔApaf-1 的相互作用比其与天然外源性 Apaf-1 的相互作用更强,这表现为 ΔApaf-1 对 caspase-3 加工的显性负效应。