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首页> 外文期刊>The Journal of biological chemistry >Caspase-activated DNase Is Necessary and Sufficient for Oligonucleosomal DNA Breakdown, but Not for Chromatin Disassembly during Caspase-dependent Apoptosis of LN-18 Glioblastoma Cells
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Caspase-activated DNase Is Necessary and Sufficient for Oligonucleosomal DNA Breakdown, but Not for Chromatin Disassembly during Caspase-dependent Apoptosis of LN-18 Glioblastoma Cells

机译:Caspase-活化的DNase是必要的,并且足以用于寡核糖结构DNA分解,但在LN-18胶质母细胞瘤细胞的依赖性凋亡期间,不适用于染色质

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摘要

Caspase-dependent apoptosis is a controlled type of cell death characterized by oligonucleosomal DNA breakdown and major nuclear morphological alterations. Other kinds of cell death do not share these highly distinctive traits because caspase-activated DNase (DFF40/CAD) remains inactive. Here, we report that human glioblastoma multiforme-derived LN-18 cells do not hydrolyze DNA into oligonucleosomal fragments after apoptotic insult. Furthermore, their chromatin remains packaged into a single mass, with no signs of nuclear fragmentation. However, ultrastructural analysis reveals that nuclear disassembly occurs, although compacted chromatin does not localize into apoptotic nuclear bodies. Caspases become properly activated, and ICAD, the inhibitor of DFF40/CAD, is correctly processed. Using cell-free in vitro assays, we show that chromatin from isolated nuclei of LN-18 cells is suitable for hydrolysis into oligonuclesomal fragments by staurosporine-pretreated SH-SY5Y cytoplasms. However, staurosporine-pretreated LN-18 cytoplasms do not induce DNA laddering in isolated nuclei from either LN-18 or SH-SY5Y cells because LN-18 cells express lower amounts of DFF40/CAD. DFF40/CAD overexpression makes LN-18 cells fully competent to degrade their DNA into oligonucleosome-sized fragments, and yet they remain unable to arrange their chromatin into nuclear clumps after apoptotic insult. Indeed, isolated nuclei from LN-18 cells were resistant to undergoing apoptotic nuclear morphology in vitro. The use of LN-18 cells has uncovered a previously unsuspected cellular model, whereby a caspase-dependent chromatin package is DFF40/CAD-independent, and DFF40/CAD-mediated double-strand DNA fragmentation does not warrant the distribution of the chromatin into apoptotic nuclear bodies. The studies highlight a not-yet reported DFF40/CAD-independent mechanism driving conformational nuclear changes during caspase-dependent cell death.
机译:Caspase依赖性细胞凋亡是一种受控类型的细胞死亡,其特征在于寡核科核糖剂DNA分解和主要核形态改变。其他种类的细胞死亡不共享这些高度独特的性状,因为Caspase-as活化的DNase(DFF40 / CAD)保持不活跃。在这里,我们认为人胶质母细胞瘤多形态衍生的LN-18细胞在凋亡损伤后不会将DNA水解成寡核糖囊剂片段。此外,将它们的染色质保持成包装成单一质量,没有核碎片的迹象。然而,超微结构分析表明,核拆卸发生,尽管压实的染色质不会定位到凋亡核体中。胱天蛋白酶被正确激活,并且ICAD,DFF40 / CAD的抑制剂被正确地处理。使用无细胞的体外测定,我们表明来自LN-18细胞的分离核的染色质是通过Staurosporine-PrepReated的SH-Sy5Y细胞质水解成寡核苷酸碎片。然而,Staurosporine-Preatered的LN-18细胞质不会从LN-18或SH-SY5Y细胞中诱导分离核中的DNA梯子,因为LN-18细胞表达较少量的DFF40 / CAD。 DFF40 / CAD过度表达使LN-18细胞完全胜过将其DNA降解成寡核苷酸尺寸的碎片,但它们仍然无法将它们的染色质子安排到凋亡损伤后将它们的染色质排列成核团块。实际上,来自LN-18细胞的分离核在体外耐受凋亡核形态。 LN-18细胞的使用已经发现了先前未缺点的蜂窝模型,由此依赖于Caspase依赖性染色质包装是DFF40 / CAD的染色质包,而DFF40 / CAD介导的双链DNA碎片不保证染色质分布到凋亡中核体。该研究突出了尚未报道的DFF40 / CAD独立机制,在依赖于胱天蛋白酶依赖性细胞死亡期间驾驶构象核变化。

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