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迁移中的人类中性粒细胞在膜脂组织中表现出动态的时空变化。

Migrating human neutrophils exhibit dynamic spatiotemporal variation in membrane lipid organization.

作者信息

Sitrin Robert G, Sassanella Timothy M, Landers Jeffrey J, Petty Howard R

机构信息

Pulmonary and Critical Care Medicine Division, Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

Am J Respir Cell Mol Biol. 2010 Oct;43(4):498-506. doi: 10.1165/rcmb.2009-0286OC. Epub 2009 Nov 20.

Abstract

Highly ordered sphingolipid-enriched lipid raft microdomains (LRMs) within plasma membranes purportedly function as specialized signaling platforms. Leukocyte migration is believed to entail LRM redistribution, but progress in studying LRMs in situ during cell movement has been limited. By using an improved method for imaging the spectral shift of the environmentally sensitive probe, laurdan (expressed as a generalized polarization function), the plasma membrane order (i.e., tight packing of membrane bilayer lipids) of human polymorphonuclear neutrophils (PMNs) was mapped in real time during migration. Morphologically polarized PMNs exhibited prominent LRM clusters at the uropod, where in every instance membrane order was found to oscillate with mean periodicities of 37.0 ± 1.46 and 149.9 ± 9.0 seconds (P < 0.01). LRM aggregates were also demonstrated in punctate and clustered distributions of nonpolarized cells and transiently at the lamellipodia of polarized PMNs. Cellular polarization was not accompanied by an overall increase in membrane order. LRM disorganization with methyl-β-cyclodextrin had small negative effects on cell velocity, but it abrogated directionally biased migration toward chemotactic gradients of FMLP or leukotriene B(4). LRMs disruption also caused redistribution of Rac 1/2 GTPase and GM3 ganglioside away from the lamellipodium, as well as extension of multiple pseudopods simultaneously or in rapid succession, rather than formation of a defined leading edge. Thus, we demonstrate that the plasma membrane order of migrating PMNs changes dynamically, with prominent oscillations consistently seen at the uropod. These findings solidify the existence of rapidly reorganizing LRMs in situ and support a role for LRMs in chemotaxin responsiveness.

摘要

质膜内高度有序的富含鞘脂的脂筏微结构域(LRMs)据称可作为特殊的信号平台发挥作用。白细胞迁移被认为需要LRM重新分布,但在细胞运动过程中原位研究LRMs的进展有限。通过使用一种改进的方法对环境敏感探针劳丹(以广义极化函数表示)的光谱位移进行成像,在迁移过程中实时绘制了人类多形核中性粒细胞(PMN)的质膜有序性(即膜双层脂质的紧密堆积)。形态极化的PMN在尾足处表现出突出的LRM簇,在每一个实例中,发现膜有序性以37.0±1.46秒和149.9±9.0秒的平均周期振荡(P<0.01)。LRM聚集体也在非极化细胞的点状和簇状分布中以及在极化PMN的片状伪足处短暂出现。细胞极化并未伴随着膜有序性的整体增加。用甲基-β-环糊精破坏LRM对细胞速度有较小的负面影响,但它消除了向FMLP或白三烯B(4)趋化梯度的定向偏向迁移。LRM破坏还导致Rac 1/2 GTP酶和GM3神经节苷脂从片状伪足重新分布,以及同时或快速连续形成多个伪足,而不是形成明确的前沿。因此,我们证明迁移的PMN的质膜有序性动态变化,在尾足处始终观察到突出的振荡。这些发现证实了原位快速重组LRMs的存在,并支持LRMs在趋化因子反应性中的作用。

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