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颗粒酶 F 诱导一种新型的死亡途径,其特征是Bid 依赖性细胞色素 c 释放而无半胱天冬酶激活。

Granzyme F induces a novel death pathway characterized by Bid-independent cytochrome c release without caspase activation.

机构信息

National Laboratory of Biomacromolecules and Center for Infection and Immunity, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Cell Death Differ. 2009 Dec;16(12):1694-706. doi: 10.1038/cdd.2009.101. Epub 2009 Jul 31.

Abstract

Granzyme F (GzmF) belongs to a unique group of granzymes in mice. Murine GzmF is highly expressed in NK3.1 cells and in lymphokine-activated killer (LAK) cells. However, the manner in which GzmF works in granule-mediated cytolysis is unknown. In this study, we first demonstrated that GzmF causes a novel cell death pathway. The death is characterized by an externalization of phosphatidylserine, by nuclear condensation, mitochondrial damage, cytochrome c (cyt c) release, caspase inactivation and single-stranded DNA nicking. GzmF-induced chromatin was incompletely condensed and segmented at the nuclear periphery. Cellular organelles were damaged and the cytoplasm showed an extensive vacuolization that is reminiscent of necroptosis. GzmF can cause rapid mitochondrial swelling, depolarization and reactive oxygen species accumulation. GzmF-induced death does not involve caspase activation, Bid cleavage or activation of DNA nickase NM23H1. GzmF-silenced LAK cells showed reduced cytotoxicity against caspase-inhibited target tumor cells. Moreover, cyt c release is independent of Bid or Bax/Bak. We further showed that GzmF impairs mitochondrial electron transport to abolish ATP generation. ATP decline may contribute to a failure of apoptosome formation, leading to caspase inactivation.

摘要

颗粒酶 F(GzmF)属于小鼠中一种独特的颗粒酶群。鼠 GzmF 在 NK3.1 细胞和淋巴因子激活的杀伤(LAK)细胞中高度表达。然而,GzmF 在颗粒介导的细胞溶解中发挥作用的方式尚不清楚。在这项研究中,我们首先证明 GzmF 引起一种新的细胞死亡途径。死亡的特征是磷脂酰丝氨酸的外翻、核浓缩、线粒体损伤、细胞色素 c(cyt c)释放、半胱天冬酶失活和单链 DNA 切口。GzmF 诱导的染色质在核周缘不完全浓缩和分段。细胞器官受损,细胞质出现广泛的空泡化,类似于坏死样细胞死亡。GzmF 可导致线粒体迅速肿胀、去极化和活性氧物质积累。GzmF 诱导的死亡不涉及半胱天冬酶激活、Bid 切割或 DNA 核酸内切酶 NM23H1 的激活。沉默 GzmF 的 LAK 细胞对 caspase 抑制的靶肿瘤细胞的细胞毒性降低。此外,cyt c 的释放不依赖于 Bid 或 Bax/Bak。我们进一步表明,GzmF 损害线粒体电子传递以消除 ATP 的产生。ATP 下降可能导致凋亡小体形成失败,从而导致半胱天冬酶失活。

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