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巨噬细胞中的Toll样受体信号传导将自噬途径与吞噬作用联系起来。

Toll-like receptor signalling in macrophages links the autophagy pathway to phagocytosis.

作者信息

Sanjuan Miguel A, Dillon Christopher P, Tait Stephen W G, Moshiach Simon, Dorsey Frank, Connell Samuel, Komatsu Masaaki, Tanaka Keiji, Cleveland John L, Withoff Sebo, Green Douglas R

机构信息

Department of Immunology, St Jude Children's Research Institute, Memphis, Tennessee 38105, USA.

出版信息

Nature. 2007 Dec 20;450(7173):1253-7. doi: 10.1038/nature06421.

Abstract

Phagocytosis and autophagy are two ancient, highly conserved processes involved, respectively, in the removal of extracellular organisms and the destruction of organisms in the cytosol. Autophagy, for either metabolic regulation or defence, involves the formation of a double membrane called the autophagosome, which then fuses with lysosomes to degrade the contents, a process that has similarities with phagosome maturation. Toll-like-receptor (TLR) engagement activates a variety of defence mechanisms within phagocytes, including facilitation of phagosome maturation, and also engages autophagy. Therefore we speculated that TLR signalling might link these processes to enhance the function of conventional phagosomes. Here we show that a particle that engages TLRs on a murine macrophage while it is phagocytosed triggers the autophagosome marker LC3 to be rapidly recruited to the phagosome in a manner that depends on the autophagy pathway proteins ATG5 and ATG7; this process is preceded by recruitment of beclin 1 and phosphoinositide-3-OH kinase activity. Translocation of beclin 1 and LC3 to the phagosome was not associated with observable double-membrane structures characteristic of conventional autophagosomes, but was associated with phagosome fusion with lysosomes, leading to rapid acidification and enhanced killing of the ingested organism.

摘要

吞噬作用和自噬作用是两个古老且高度保守的过程,分别参与清除细胞外病原体和破坏胞质溶胶中的病原体。自噬作用,无论是用于代谢调节还是防御,都涉及形成一种称为自噬体的双膜结构,然后自噬体与溶酶体融合以降解其内容物,这一过程与吞噬体成熟过程有相似之处。Toll样受体(TLR)的激活会在吞噬细胞内启动多种防御机制,包括促进吞噬体成熟,同时也会引发自噬作用。因此我们推测,TLR信号传导可能会将这些过程联系起来,以增强传统吞噬体的功能。在此我们表明,一种在小鼠巨噬细胞吞噬过程中与TLR结合的颗粒,会以依赖自噬途径蛋白ATG5和ATG7的方式,触发自噬体标志物LC3迅速募集到吞噬体上;在此过程之前会有beclin 1的募集和磷酸肌醇-3-OH激酶活性。beclin 1和LC3向吞噬体的转位与传统自噬体特有的可观察到的双膜结构无关,但与吞噬体与溶酶体的融合有关,从而导致快速酸化并增强对摄入病原体的杀伤作用。

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