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中性粒细胞在黏附于纤连蛋白时的铺展、膜微管泡状延伸(丝状伪足)形成及细胞内pH的代谢调控。

Metabolic regulation of neutrophil spreading, membrane tubulovesicular extensions (cytonemes) formation and intracellular pH upon adhesion to fibronectin.

作者信息

Galkina Svetlana I, Sud'ina Galina F, Klein Thomas

机构信息

A. N. Belozersky Institute of Physico-Chemical Biology, M. V. Lomonosov Moscow State University, 119992 Leninskie gory, Bldg. A, Moscow, Russia.

出版信息

Exp Cell Res. 2006 Aug 1;312(13):2568-79. doi: 10.1016/j.yexcr.2006.04.011. Epub 2006 May 3.

Abstract

Circulating leukocytes have a round cell shape and roll along vessel walls. However, metabolic disorders can lead them to adhere to the endothelium and spread (flatten). We studied the metabolic regulation of adhesion, spreading and intracellular pH (pHi) of neutrophils (polymorphonuclear leukocytes) upon adhesion to fibronectin-coated substrata. Resting neutrophils adhered and spread on fibronectin. An increase in pHi accompanied neutrophil spreading. Inhibition of oxidative phosphorylation or inhibition of P- and F-type ATPases affected neither neutrophil spreading nor pHi. Inhibition of glucose metabolism or V-ATPase impaired neutrophil spreading, blocked the increase in the pHi and induced extrusion of membrane tubulovesicular extensions (cytonemes), anchoring cells to substrata. Omission of extracellular Na(+) and inhibition of chloride channels caused a similar effect. We propose that these tubulovesicular extensions represent protrusions of exocytotic trafficking, supplying the plasma membrane of neutrophils with ion exchange mechanisms and additional membrane for spreading. Glucose metabolism and V-type ATPase could affect fusion of exocytotic trafficking with the plasma membrane, thus controlling neutrophil adhesive state and pHi. Cl(-) efflux through chloride channels and Na(+) influx seem to be involved in the regulation of the V-ATPase by carrying out charge compensation for the proton-pumping activity and through V-ATPase in regulation of neutrophil spreading and pHi.

摘要

循环白细胞呈圆形,沿血管壁滚动。然而,代谢紊乱会导致它们黏附于内皮并铺展(变扁平)。我们研究了中性粒细胞(多形核白细胞)在黏附于纤连蛋白包被的基质上时,其黏附、铺展及细胞内pH(pHi)的代谢调节。静息中性粒细胞能黏附并铺展在纤连蛋白上。中性粒细胞铺展时伴随着pHi升高。抑制氧化磷酸化或抑制P型和F型ATP酶对中性粒细胞铺展及pHi均无影响。抑制葡萄糖代谢或V型ATP酶会损害中性粒细胞铺展,阻断pHi升高,并诱导膜管状囊泡延伸(细胞线)的挤出,从而将细胞锚定在基质上。去除细胞外Na⁺并抑制氯通道也会产生类似效果。我们提出,这些管状囊泡延伸代表胞吐运输的突起,为中性粒细胞的质膜提供离子交换机制和用于铺展的额外膜。葡萄糖代谢和V型ATP酶可能影响胞吐运输与质膜的融合,从而控制中性粒细胞的黏附状态和pHi。通过氯通道的Cl⁻外流和Na⁺内流似乎通过对质子泵活性进行电荷补偿参与V型ATP酶的调节,并通过V型ATP酶参与中性粒细胞铺展和pHi的调节。

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