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Mitochondrial apoptosis: killing cancer using the enemy within

British Journal of Cancer · 2015 · Vol. 112(6) · pp. 957–962
Jonathan LopezStephen W. G. Tait

Abstract

Apoptotic cell death inhibits oncogenesis at multiple stages, ranging from transformation to metastasis. Consequently, in order for cancer to develop and progress, apoptosis must be inhibited. Cell death also plays major roles in cancer treatment, serving as the main effector function of many anti-cancer therapies. In this review, we discuss the role of apoptosis in the development and treatment of cancer. Specifically, we focus upon the mitochondrial pathway of apoptosis-the most commonly deregulated form of cell death in cancer. In this process, mitochondrial outer membrane permeabilisation or MOMP represents the defining event that irrevocably commits a cell to die. We provide an overview of how this pathway is regulated by BCL-2 family proteins and describe ways in which cancer cells can block it. Finally, we discuss exciting new approaches aimed at specifically inducing mitochondrial apoptosis in cancer cells, outlining their potential pitfalls, while highlighting their considerable therapeutic promise.

Cell death mechanisms and regulationMitochondrial Function and PathologyRNA Interference and Gene DeliveryApoptosisCancer cellProgrammed cell deathCarcinogenesisCancerCancer researchMitochondrionBiologyCell biologyMetastasis

MeSH terms

AnimalsCell Membrane PermeabilityHumansMitochondriaNeoplasmsSignal TransductionApoptosisCarcinogenesis

Funding

  • Royal Society
  • Fondation ARC pour la Recherche sur le Cancer
  • Biotechnology and Biological Sciences Research Council
Citations
789
FWCI
22.60
field-weighted impact
References
43
Percentile
100%
vs. same field & year
Citations per year
Cited by
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International Journal of Molecular Sciences · 2018 · 1,516 citations
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