Cell Biology Laboratories, Department of Biochemistry, University of Bristol, School of Medical and Veterinary Sciences, University Walk, Bristol, UK.
Histol Histopathol. 2010 Nov;25(11):1457-72. doi: 10.14670/HH-25.1457.
The accurate control of cell death is a vital aspect of development in metazoans and plays crucial roles in the prevention of disease. Apoptosis is the main form of regulated cell death in multicellular organisms, although there are other contributory pathways. During apoptosis, mammalian cells undergo dramatic changes in organelle structure ad organisation that define the apoptotic execution phase. Although the roles of apoptotic protease machinery (the caspases) in these rearrangements are quite well understood, the purpose of organelle disruption during cell death is not yet entirely appreciated. Indeed, recent evidence implicates caspase targeting of organellar proteins and subsequent organelle disruption upstream of apoptotic execution proper, suggesting the existence of pathways linking organelle damage to cell death. In this review, we describe the changes to the endomembrane system that are inherent during the apoptotic execution phase, and examine the evidence for endomembrane-mediated pathways towards apoptotic execution. We also discuss aspects of the molecular control of autophagy - an important contributor to a cell's response to stress, and a membrane trafficking process whose regulation is linked to the apoptotic machinery at multiple levels.
细胞死亡的精确控制是后生动物发育的一个重要方面,在疾病预防中起着至关重要的作用。细胞凋亡是多细胞生物中受调控的细胞死亡的主要形式,尽管还有其他辅助途径。在细胞凋亡过程中,哺乳动物细胞的细胞器结构和组织发生剧烈变化,定义了凋亡执行阶段。虽然凋亡蛋白酶机制(半胱天冬酶)在这些重排中的作用已经相当清楚,但细胞器在细胞死亡过程中的破坏目的尚未完全理解。事实上,最近的证据表明,半胱天冬酶靶向细胞器蛋白,并随后在凋亡执行之前破坏细胞器,这表明存在将细胞器损伤与细胞死亡联系起来的途径。在这篇综述中,我们描述了凋亡执行阶段固有内质网系统的变化,并检查了内质网介导的凋亡执行途径的证据。我们还讨论了自噬的分子控制的各个方面——这是细胞对应激反应的重要贡献,也是一个膜运输过程,其调控在多个水平上与凋亡机制相关。