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Plasma membrane repair and cellular damage control: The annexin survival kit

细胞生物学 膜联蛋白A2 生物 膜联蛋白 细胞 化学 生物化学
作者
Annette Draeger,Katia Monastyrskaya,Eduard B. Babiychuk
出处
期刊:Biochemical Pharmacology [Elsevier BV]
卷期号:81 (6): 703-712 被引量:219
标识
DOI:10.1016/j.bcp.2010.12.027
摘要

Plasmalemmal injury is a frequent event in the life of a cell. Physical disruption of the plasma membrane is common in cells that operate under conditions of mechanical stress. The permeability barrier can also be breached by chemical means: pathogens gain access to host cells by secreting pore-forming toxins and phospholipases, and the host's own immune system employs pore-forming proteins to eliminate both pathogens and the pathogen-invaded cells. In all cases, the influx of extracellular Ca2+ is being sensed and interpreted as an “immediate danger” signal. Various Ca2+-dependent mechanisms are employed to enable plasma membrane repair. Extensively damaged regions of the plasma membrane can be patched with internal membranes delivered to the cell surface by exocytosis. Nucleated cells are capable of resealing their injured plasmalemma by endocytosis of the permeabilized site. Likewise, the shedding of membrane microparticles is thought to be involved in the physical elimination of pores. Membrane blebbing is a further damage-control mechanism, which is triggered after initial attempts at plasmalemmal resealing have failed. The members of the annexin protein family are ubiquitously expressed and function as intracellular Ca2+ sensors. Most cells contain multiple annexins, which interact with distinct plasma membrane regions promoting membrane segregation, membrane fusion and – in combination with their individual Ca2+-sensitivity – allow spatially confined, graded responses to membrane injury.
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